Apparel with selectively attachable and detachable elements

Information

  • Patent Grant
  • 11950644
  • Patent Number
    11,950,644
  • Date Filed
    Wednesday, March 16, 2022
    2 years ago
  • Date Issued
    Tuesday, April 9, 2024
    24 days ago
  • Inventors
  • Original Assignees
  • Examiners
    • Annis; Khaled
    Agents
    • Shook, Hardy & Bacon L.L.P.
Abstract
An apparel system comprises an article of apparel and an attachment element positionable between first and second layers of the article of apparel. The attachment element may be releasably fastened to the article of apparel. The attachment element may comprise a polymer foam material, a fluid- or gas-filled chamber, or a plate, for example.
Description
BACKGROUND OF THE INVENTION

Articles of apparel intended for use during athletic activities generally exhibit characteristics that enhance the performance, comfort, or protection of a wearer. As an example, apparel may incorporate a stretch material that provides a relatively tight fit, thereby imparting the wearer with a lower profile that minimizes wind resistance. Apparel may also be formed from a material that wicks moisture away from the wearer in order to reduce the quantity of perspiration that accumulates adjacent to the skin. Furthermore, apparel may incorporate materials that attenuate compression forces (i.e., impart padding or cushioning) to provide impact protection to areas of the wearer. Accordingly, the configurations of articles of apparel for athletic activities may be specifically selected to enhance the performance or comfort of the wearer.


BRIEF SUMMARY OF THE INVENTION

Various apparel systems are disclosed below as including an article of apparel and at least one attachment element. The apparel has a surface with a first part of a fastening system, and the attachment element has an outer area with a second part of the fastening system. The first part of the fastening system is joinable to the second part of the fastening system to attach the attachment element to the apparel. The first part of the fastening system is also separable from the second part of the fastening system to separate the attachment element from the apparel. The attachment element may be formed from a polymer foam material, may include a fluid-filled chamber, or may incorporate an electronic device, for example. In some configurations, the attachment element is secured to an exterior of the apparel. In other configurations, the attachment element is secured between two layers of the apparel.


The advantages and features of novelty characterizing aspects of the invention are pointed out with particularity in the appended claims. To gain an improved understanding of the advantages and features of novelty, however, reference may be made to the following descriptive matter and accompanying figures that describe and illustrate various configurations and concepts related to the invention. Additional objects, advantages, and novel features of the invention will be set forth in part in the description which follows, and in part will become apparent to those skilled in the art upon examination of the following, or may be learned by practice of the invention.





BRIEF DESCRIPTION OF THE SEVERAL VIEWS OF THE DRAWING

The present invention is described in detail below with reference to the attached figures, which are incorporated herein by reference. Directly below is a listing of the figures together with a brief description.



FIG. 1 is a front elevational view of a first article of apparel.



FIGS. 2A-2C are front elevational views of the first article of apparel in combination with a plurality of attachment elements.



FIGS. 3A-3E are front elevational views of further configurations of the first article of apparel.



FIG. 4 is a front elevational view of a second article of apparel.



FIGS. 5A-5C are front elevational views of the second article of apparel in combination with a plurality of attachment elements.



FIGS. 6A-6E are front elevational views of further configurations of the second article of apparel.



FIG. 7 is a top plan view of a first attachment element.



FIG. 8 is a bottom plan view of the first attachment element.



FIG. 9 is a cross-sectional view of the first attachment element, as defined by section line 9-9 in FIG. 7.



FIG. 10 is a cross-sectional view corresponding with FIG. 9 and depicting the first attachment element in a flexed configuration.



FIGS. 11A-11D are cross-sectional views corresponding with FIG. 9 and depicting further configurations of the first attachment element.



FIG. 12 is a front elevational view of the first article of apparel in combination with a pair of the first attachment element.



FIG. 13 is a cross-sectional view of the first article of apparel and a portion of the first attachment element, as defined by section line 13-13 in FIG. 12.



FIG. 14 is a top plan view of a second attachment element.



FIG. 15 is a bottom plan view of the second attachment element.



FIG. 16 is a front elevational view of the second article of apparel in combination with a pair of the second attachment element.



FIG. 17 is a cross-sectional view of the second article of apparel and the second attachment element, as defined by section line 17-17 in FIG. 16.



FIG. 18 is a top plan view of a third attachment element.



FIG. 19 is a bottom plan view of the third attachment element.



FIG. 20 is a top plan view of a fourth attachment element.



FIG. 21 is a bottom plan view of the fourth attachment element.



FIG. 22 is a cross-sectional view of the fourth attachment element, as defined by section line 22-22 in FIG. 20.



FIG. 23 is a top plan view of a fifth attachment element.



FIG. 24 is a bottom plan view of the fifth attachment element.



FIG. 25 is a front elevational view of a third article of apparel incorporating a plurality of attachment elements.



FIG. 26 is an exploded front elevational view of the third article of apparel and the attachment elements.



FIG. 27 is a cross-sectional view of the third article of apparel and one of the attachment elements, as defined by section line 27-27 in FIG. 25.



FIGS. 28A-28D are front elevational views of further configurations of the third article of apparel and the attachment elements.



FIG. 29 is a front elevational view of a fourth article of apparel incorporating a plurality of attachment elements.



FIG. 30 is an exploded front elevational view of the fourth article of apparel and the attachment elements.



FIG. 31 is a cross-sectional view of the fourth article of apparel and one of the attachment elements, as defined by section line 31-31 in FIG. 29.



FIGS. 32A-32D are front elevational views of further configurations of the fourth article of apparel and the attachment elements.



FIG. 33 is a top plan view of a sixth attachment element.



FIG. 34 is a bottom plan view of the sixth attachment element.



FIG. 35 is a cross-sectional view of the sixth attachment element, as defined by section line 35-35 in FIG. 33.



FIG. 36 is a cross-sectional view corresponding with FIG. 35 and depicting the sixth attachment element in a flexed configuration.



FIG. 37 is a top plan view of a seventh attachment element.



FIG. 38 is a bottom plan view of the seventh attachment element.



FIG. 39 is a top plan view of an eighth attachment element.



FIG. 40 is a bottom plan view of the eighth attachment element.



FIG. 41 is a cross-sectional view of the eighth attachment element, as define by section line 41-41 in FIG. 39.





DETAILED DESCRIPTION OF THE INVENTION

The following discussion and accompanying figures disclose concepts associated with various articles of apparel and attachment elements. In general, the attachment elements may be repeatedly attached to and detached from various areas of the apparel. A variety of attachment element configurations may be utilized, depending upon the activities, particular needs, and preferences of a wearer. For example, the attachment elements may be (a) foam members, gas-filled chambers, or plates that attenuate compression forces (i.e., impart padding or cushioning) to provide impact protection to areas of the wearer where the attachment elements are located, (b) liquid-filled chambers that impart either heating or cooling to areas of the wearer where the attachment elements are located, or (c) electronic devices that provide information or enjoyment to the wearer, such as, mobile phones, portable music players, timing devices, heart-rate monitors, locator beacons, global positioning systems, or mobile computing devices.


Although a variety of types of apparel may be utilized with the attachment elements, examples of both shirt-type garments and pants-type garments are disclosed in the following discussion and accompanying figures. Shirt-type garments include any of a plurality of garments that cover a portion of a torso of the wearer and may extend over arms of the wearer. Examples of shirt-type garments include long-sleeved shirts, short-sleeved shirts, tank tops, undershirts, jackets, and coats. Similarly, pants-type garments include any of a plurality of garments that cover a portion of a pelvic region of the wearer and may extend over legs of the wearer. Examples of pants-type garments include pants, shorts, briefs, jeans, and underwear. In some configurations, the articles of apparel may be combinations of shirt-type garments and pants-type garments, including bodysuits, leotards, unitards, and wetsuits. In addition, the articles of apparel may have configurations that cover other areas of the wearer, such as hats, helmets, gloves, socks, and footwear, for example. Accordingly, a variety of types of articles of apparel may be utilized.


First Shirt-Type Garment Configuration


An article of apparel 100 having the configuration of a shirt-type garment is depicted in FIG. 1. Apparel 100 includes a torso region 101 and a pair of arm regions 102 and 103 that extend outward from torso region 101. Torso region 101 corresponds with a torso of a wearer and covers at least a portion of the torso when worn. An upper area of torso region 101 defines a neck opening 104 through which the neck and head of the wearer protrude when apparel 100 is worn. Similarly, a lower area of torso region 101 defines a waist opening 105 through which the waist or pelvic area of the wearer protrudes when apparel 100 is worn. Arm region 102 corresponds with a right arm of the wearer and covers at least a portion of the right arm, and arm region 103 corresponds with a left arm of the wearer and covers at least a portion of the left arm. Each of arm regions 102 and 103 define a wrist opening 106 through which a hand and wrist of the wearer protrude when apparel 100 is worn. Additionally, apparel 100 includes an outer surface 107 that faces away from the wearer, and apparel 100 includes an inner surface 108 that faces toward the wearer and may contact the wearer when apparel 100 is worn.


A variety of attachment elements 111-115 are secured to apparel 100, as depicted in FIG. 2A. More particularly, attachment elements 111-115 may be secured to outer surface 107 in any of torso region 101 and arm regions 102 and 103, although attachment elements 111-115 may be secured to inner surface 108 in some configurations of apparel 100. Attachment elements 111-115 may be any of foam members, fluid-filled chambers (e.g., gas-filled or liquid-filled), plates, or electronic devices, for example. Similarly, the shapes and sizes of attachment elements 111-115 may vary significantly. For example, attachment elements 111 and 114 exhibit generally rectangular configurations, whereas attachment element 112 is generally triangular, attachment element 113 is generally circular, and attachment element 115 exhibits a non-geometrical form. The thicknesses of attachment elements 111-115 may also vary significantly to include generally flat, non-uniform, or protruding configurations, depending upon the composition and intended use of attachment elements 111-115. Accordingly, the configurations of attachment elements 111-115 may vary significantly.


Attachment elements 111-115 are secured to apparel 100 in a variety of different locations. More particularly, attachment element 111 is secured to an upper area of torso region 101, attachment element 112 is secured to a lower area of torso region 101, attachment element 113 is secured to a side area of the torso region 101, attachment element 114 is secured to arm region 102, and attachment element 115 is secured to arm region 103. Apparel 100 and attachment elements 111-115 each incorporate portions of a fastening system that is utilized to secure attachment elements 111-115 to outer surface 107. A variety of fastening systems may be utilized, including hook-and-loop fastening systems (e.g., VELCRO, which is manufactured by VELCRO USA, Inc. of Manchester, New Hampshire, United States of America), magnetic fastening systems, adhesive fastening systems, and button-type fastening systems, for example. For purposes of reference, portions of apparel 100, other articles of apparel, and other elements incorporating the fastening system or a part of the fastening system are depicted as having a stippled or otherwise textured configuration in the figures.


In addition to attaching or otherwise securing attachment elements 111-115 to apparel 100, the fastening system permits attachment elements 111-115 to be detached or otherwise separated from apparel 100. Referring to FIG. 2B, therefore, each of attachment elements 111-115 are depicted as being separated from apparel 100. Moreover, the fastening system also permits attachment elements 111-115 to be (a) repeatedly attached to and detached from apparel 100, (b) attached to apparel 100 in a variety of different locations, and (c) attached in a variety of different orientations. Referring to FIG. 2C, therefore, each of attachment elements 111-115 are depicted as being re-attached to apparel 100 in different locations and with different orientations.


A variety of materials may be utilized in manufacturing apparel 100. In general, apparel 100 may be formed from knitted, woven, or non-woven textile materials that include rayon, nylon, polyester, polyacrylic, cotton, wool, or silk, for example. Although apparel 100 may be knitted as a unitary (i.e., one-piece) article, apparel 100 may also be formed from a plurality of textile elements that are sewn, bonded, adhered, or otherwise joined together to form torso region 101 and arm regions 102 and 103. As depicted in FIG. 1, for example, a variety of seams 109 join textile elements that form arm regions 102 and 103 to textile elements that form torso region 101, and a seam 109 joins a collar in the area of neck opening 104. In some configurations, the textile materials may include coatings that form a breathable and water-resistant barrier, or polymer sheets may be utilized in place of textile materials. Apparel 100 may also be formed from laminated or otherwise layered materials that include two or more layers of textile materials, polymer sheets, or combinations of textile materials and polymer sheets.


Depending upon the specific fastening system that is utilized for attachment elements 111-115, apparel 100 may also incorporate elements related to the fastening system. For example, magnetic elements or buttons may be incorporated into the textile materials of apparel 100 when a magnetic fastening system or a button-type fastening system is utilized. As another example, elements of either a hook part or a loop part of a hook-and-loop fastening system may be secured to apparel 100 in order to form a portion of outer surface 107. Alternatively, the textile material forming apparel 100 may be manufactured to define the hook part or the loop part of the hook-and-loop fastening system. That is, the hook part or the loop part of the hook-and-loop fastening system may be knitted as an integral part of the textile material forming apparel 100. An advantage of this configuration is that additional elements (e.g., magnetic elements, buttons, strips of the hook part or the loop part) are absent from apparel 100, which decreases the number of components within apparel 100 and simplifies the overall manufacturing process. An example of a suitable material incorporating the loop part of the hook-and-loop fastening system is manufactured by RUEY TAY of Taipei, Taiwan, Republic of China and is a warp knit mesh that includes ninety-one percent polyester having 1/75/72 textured microfiber semi-dull and nine percent spandex (i.e., elastane).


Apparel 100 is depicted as having the configuration of a shirt-type garment, particularly a long-sleeved shirt. In some configurations, apparel 100 may be intended for use as a compression garment. In addition to therapeutic uses, compression garments are often worn by athletes as a base layer under jerseys or other athletic apparel. In general, compression garments or other garments intended as base layers (a) exhibit a relatively tight fit that lays adjacent to the skin of the wearer and (b) stretch to conform with the contours of the wearer. While the textile materials forming compression garments may have one-directional stretch of, for example, more than ten percent prior to tensile failure, the textile materials forming other compression garments have two-directional stretch of at least thirty percent prior to tensile failure. Accordingly, when apparel 100 is formed to have a relatively tight fit and to stretch to conform with the contours of the wearer, the textile materials forming apparel 100 may have two-directional stretch of at least thirty percent prior to tensile failure.


Substantially all of outer surface 107 has a configuration that provides locations for securing attachment elements 111-115. That is, at least ninety percent of outer surface 107 provides locations for securing attachment elements 111-115. When, for example, the loop part of the hook-and-loop fastening system is knitted as an integral part of the textile material forming apparel 100, substantially all of outer surface 107 may be formed from the textile material. In some configurations, however, only portions of outer surface 107 may provide locations for securing attachment elements 111-115. That is, a part of the fastening system may be absent from portions of outer surface 107 or textile materials that do not provide locations for securing attachment elements 111-115 may be utilized for portions of outer surface 107.


Although substantially all of outer surface 107 may have a configuration that provides locations for securing attachment elements 111-115, apparel 100 is depicted in FIG. 3A as having a configuration wherein the fastening system is absent from torso region 101. Given that portions of apparel 100 incorporating the fastening system or a part of the fastening system are depicted as having a stippled or otherwise textured configuration in the figures, areas without the stippled or otherwise textured configuration represent areas where the fastening system or a part of the fastening system is absent. Similarly, FIG. 3B depicts a configuration wherein the fastening system is absent in arm regions 102 and 103, but forms at least seventy-five percent of outer surface 107. A configuration wherein the fastening system is present in only central and upper areas of torso region 101, but forms at least fifty percent of outer surface 107, is depicted in FIG. 3C. Additionally, a configuration wherein the fastening system is present in only selected areas of regions 101-103 is depicted in FIG. 3D. In each of the configurations of FIGS. 3A-3D, seams 109 may be utilized to join textile elements without the fastening system to textile elements with the fastening system. Although apparel 100 is depicted as having the configuration of a long-sleeved shirt in each of FIGS. 1-3D, concepts associated with apparel 100 may also incorporated into other shirt-type garments. As an example, apparel 100 is depicted as having the configuration of a short-sleeved shirt in FIG. 3E, but may also be a tank top, undershirt, jacket, or coat.


First Pants-Type Garment Configuration


An article of apparel 200 having the configuration of a pants-type garment is depicted in FIG. 4. Apparel 200 includes a pelvic region 201 and a pair of leg regions 202 and 203 that extend outward from pelvic region 201. Pelvic region 201 corresponds with a pelvic area of a wearer and covers at least a portion of the pelvic area when worn. An upper area of pelvic region 201 defines a waist opening 204 that extends around the waist when apparel 200 is worn. Leg region 202 corresponds with a right leg of the wearer and covers at least a portion of the right leg, and leg region 203 corresponds with a left leg of the wearer and covers at least a portion of the left leg. Each of leg regions 202 and 203 define an ankle opening 205 through which a foot and ankle of the wearer protrude when apparel 200 is worn. Additionally, apparel 200 includes an outer surface 207 that faces away from the wearer, and apparel 200 includes an inner surface 208 that faces toward the wearer and may contact the wearer when apparel 200 is worn.


A variety of attachment elements 211-214 are secured to apparel 200, as depicted in FIG. 5A. More particularly, attachment elements 211-214 may be secured to outer surface 207 in any of pelvic region 201 and leg regions 202 and 203, although attachment elements 211-214 may be secured to inner surface 208 in some configurations of apparel 200. As with attachment elements 111-115, attachment elements 211-214 may be any of foam members, fluid-filled chambers (e.g., gas-filled or liquid-filled), plates, or electronic devices. Similarly, the shapes, sizes, and thicknesses of attachment elements 211-214 may vary. Accordingly, the configurations of attachment elements 211-214 may vary significantly.


Attachment elements 211-214 are secured to apparel 200 in a variety of different locations. As with apparel 100 and attachment elements 111-115, apparel 200 and attachment elements 211-214 each incorporate portions of a fastening system that is utilized to secure attachment elements 211-214 to outer surface 107. A variety of fastening systems may be utilized, including hook-and-loop fastening systems, magnetic fastening systems, adhesive fastening systems, and button-type fastening systems, for example. For purposes of reference, portions of apparel 200 and other elements incorporating the fastening system or a part of the fastening system are depicted as having a stippled or otherwise textured configuration in the figures.


In addition to attaching or otherwise securing attachment elements 211-214 to apparel 200, the fastening system permits attachment elements 211-214 to be detached or otherwise separated from apparel 200. Referring to FIG. 5B, therefore, each of attachment elements 211-214 are depicted as being separated from apparel 200. Moreover, the fastening system also permits attachment elements 211-214 to be (a) repeatedly attached to and detached from apparel 200, (b) attached to apparel 200 in a variety of different locations, and (c) attached in a variety of different orientations. Referring to FIG. 5C, therefore, each of attachment elements 211-214 are depicted as being re-attached to apparel 200 in different locations and with different orientations.


Any of the materials discussed above for apparel 100 may be utilized in manufacturing apparel 200. Depending upon the specific fastening system that is utilized for attachment elements 211-214, apparel 200 may also incorporate elements related to the fastening system. For example, magnetic elements or buttons may be incorporated into the textile materials of apparel 200 when a magnetic fastening system or a button-type fastening system is utilized. As another example, elements of either a hook part or a loop part of a hook-and-loop fastening system may be secured to apparel 200 in order to form a portion of outer surface 207. Alternatively, the hook part or the loop part of the hook-and-loop fastening system may be knitted as an integral part of the textile material forming apparel 200.


Apparel 200 is depicted as having the configuration of a pants-type garment, particularly a pair of pants. In some configurations, apparel 200 may be intended for use as a compression garment that (a) exhibits a relatively tight fit that lays adjacent to the skin of the wearer and (b) stretches to conform with the contours of the wearer. Although the textile materials of apparel 200 may have one-directional stretch, the textile materials forming apparel 200 may have two-directional stretch of at least thirty percent prior to tensile failure.


Substantially all of outer surface 207 has a configuration that provides locations for securing attachment elements 211-214. That is, at least ninety percent of outer surface 207 provides locations for securing attachment elements 211-214. When, for example, the loop part of the hook-and-loop fastening system is knitted as an integral part of the textile material forming apparel 200, substantially all of outer surface 207 may be formed from the textile material. In some configurations, however, only portions of outer surface 207 may provide locations for securing attachment elements 211-214. That is, a part of the fastening system may be absent from portions of outer surface 207 or textile materials that do not provide locations for securing attachment elements 211-214 may be utilized for portions of outer surface 207.


Apparel 200 is depicted in a configuration wherein the fastening system is absent from a majority of leg regions 202 and 203 in FIG. 6A. Given that portions of apparel 100 incorporating the fastening system or a part of the fastening system are depicted as having a stippled or otherwise textured configuration in the figures, areas without the stippled or otherwise textured configuration represent areas where the fastening system or a part of the fastening system is absent. FIG. 6B depicts a configuration wherein the fastening system is absent from pelvic region 201, but forms at least seventy-five percent of outer surface 207. Additionally, a configuration wherein the fastening system is present in only selected areas of regions 201-203 is depicted in FIG. 6C. Although apparel 200 is depicted as having the configuration of a pair of pants in each of FIGS. 4-6C, concepts associated with apparel 200 may also incorporated into other pants-type garments. As an example, apparel 200 is depicted as having the configuration of a pair of shorts in FIG. 6D, but may also be briefs, jeans, or underwear. Furthermore, a shorts configuration wherein the fastening system is present in at least fifty percent of the outer surface is depicted in FIG. 6E.


Attachment Element Configurations


Attachment elements 111-115 and 211-214 may exhibit a variety of different configurations, depending upon the activities, particular needs, and preferences of a wearer. As discussed above, attachment elements 111-115 and 211-214 may be (a) foam members, gas-filled chambers, or plates, (b) liquid-filled chambers, or (c) electronic devices, such as, mobile phones, portable music players, timing devices, locator beacons, global positioning systems, or mobile computing devices. Moreover, the shapes, sizes, and thicknesses, for example, of attachment elements 111-115 and 211-214 may vary significantly. In general, however, each of attachment elements 111-115 and 211-214 incorporate a part of the fastening system that permits attachment elements 111-115 and 211-214 to be (a) repeatedly attached to and detached from apparel 100 and apparel 200, (b) attached to apparel 100 and apparel 200 in a variety of different locations, and (c) attached in a variety of different orientations.


A more specific example of an attachment element 301 is depicted in FIGS. 7-9 as including a plurality of portions 302 that are joined by a fastening part 303. Portions 302 may be formed from a polymer foam material, for example, and are separated from each other by a plurality of incisions 304. Each of portions 302 may also include at least one aperture 305, which enhances breathability and reduces the overall weight of attachment element 301. Fastening part 303 is secured to each of portions 302 and generally incorporates a part of the fastening system that secures attachment element 301 to apparel 100 or apparel 200. When, for example, the textile material forming apparel 100 or apparel 200 incorporates the loop part of the hook-and-loop fastening system, fastening part 303 may incorporate the hook part of the hook-and-loop fastening system.


An advantage of incisions 304 is that the flex properties of attachment element 301 are enhanced. Referring to FIG. 10, attachment element 301 is shown in a flexed configuration, wherein incisions 304 separate to provide flex grooves that permit attachment element to curve or otherwise bend. As discussed in greater detail below, flexing permits attachment element 301 to conform with the shape of apparel 100 or apparel 200 in the location where attachment element 301 is secured to either apparel 100 or apparel 200. Although incisions 304 may extend entirely through the polymer foam material of portions 302, incisions 304 may also extend partially (e.g., at least fifty percent) through the polymer foam material, as depicted in FIG. 11A. Although incisions 304 may extend from an upper surface of portions 302 toward a lower surface, incisions 304 may also extend from the lower surface toward the upper surface and through fastening part 303, as depicted in FIG. 11B. Moreover, apertures 305 may also be absent from attachment element 301, as depicted in FIG. 11B. In other configurations, incisions 304 may be absent, as depicted in FIG. 11C, or portions 302 may impart a tapered configuration to attachment element 301.


As with attachment elements 111-115, attachment element 301 may be secured to apparel 100, detached from apparel 100, and subsequently re-attached to apparel 100. Referring to FIG. 12, two of attachment element 301 are depicted as being secured to apparel 100. Whereas one of attachment elements 301 is in a complete state, the other of attachment elements 301 is separated into different sections and secured to different areas of apparel 100. In addition to providing flex, therefore, incisions 304 form separation lines where attachment element 301 may be divided into different sections. The wearer may, therefore, separate attachment element 301 into different sections in order to customize or otherwise tailor the shape and size of attachment element 301 to meet particular needs or purposes. Referring to FIG. 13, one section of attachment element 301 is shown as being attached to apparel 100, particularly arm region 103. An incision 304 between two portions 302 permits the section of attachment element 301 to flex to conform with the curvature in arm region 103.


The polymer foam material forming portions 302 attenuate compression forces (i.e., impart padding or cushioning) to provide impact protection to areas of the wearer where attachment element 301 or sections of attachment element 301 are located. For example, if the wearer has an injury to a shoulder area, attachment element 301 may be secured to apparel 100 and placed over the shoulder area to provide protection to the shoulder area during athletic activities. Similarly, if the wearer has an injury in the abdomen area, attachment element 301 may be located to protect to the abdomen area. Accordingly, attachment element 301 or sections of attachment element 301 may be utilized to impart protection to specific areas of the wearer.


An example of another attachment element 311 is depicted in FIGS. 14 and 15 as including a plurality of portions 312 that are joined by a fastening part 313. Portions 312 may be formed from a polymer foam material, for example, and are separated from each other by a plurality of incisions 314. Each of portions 312 may also include at least one aperture 315. Fastening part 313 is secured to each of portions 312 and generally incorporates a part of the fastening system that secures attachment element 311 to apparel 100 or apparel 200. When, for example, the textile material forming apparel 100 or apparel 200 incorporates the loop part of the hook-and-loop fastening system, fastening part 313 may incorporate the hook part of the hook-and-loop fastening system. An advantage of incisions 314 is that the flex properties of attachment element 311 are enhanced.


As with attachment elements 211-214, attachment element 311 may be secured to apparel 200, detached from apparel 200, and subsequently re-attached to apparel 200. Referring to FIG. 16, two of attachment element 311 are depicted as being secured to apparel 200. Whereas one of attachment elements 311 is in a complete state, the other of attachment elements 311 is separated into different sections and secured to different areas of apparel 200. In addition to providing flex, therefore, incisions 314 form separation lines where attachment element 311 may be divided into different sections. The wearer may, therefore, separate attachment element 311 into different sections in order to customize or otherwise tailor the shape and size of attachment element 311 to meet particular needs or purposes. Referring to FIG. 17, attachment element 311 is shown as being attached to apparel 200, particularly leg region 202. Incisions 314 permit attachment element 311 to flex to conform with the curvature in leg region 202. As with attachment element 301, attachment element 311 or sections of attachment element 311 may be utilized to impart protection to specific areas of the wearer.


Another example of an attachment element 321 is depicted in FIGS. 18 and 19 as having a plate 322 and a fastening part 323. Whereas portions 302 and 312 were discussed as being formed from polymer foam materials, plate 322 may be formed from non-foamed polymer materials or rubber, for example. In some configurations, however, polymer foam materials may also be utilized for plate 322. Each of plate 322 and fastening part 323 may also define a plurality of apertures 325. As with the polymer foam materials of attachment elements 301 and 311, the plate configuration of attachment element 321 may be utilized to impart protection to specific areas of the wearer.


Yet another example of an attachment element 331 is depicted in FIGS. 20-22 as having a chamber portion 332 and a fastening part 333. Chamber portion 332 is formed from a polymer material that defines an interior void for receiving a fluid. Fastening part 333 is secured to chamber portion 332 and generally incorporates a part of the fastening system that secures attachment element 331 to apparel 100 or apparel 200. A plurality of indentations 334 are formed in a surface of chamber portion 332 to enhance the flexibility of attachment element 331. Either a gas or a liquid may be located within the void in chamber portion 332. In some configurations, chamber portion 332 may include an opening that permits the wearer to locate a liquid within chamber portion 332 or drain the liquid from chamber portion 332.


When chamber portion 332 includes a gas, such as a pressurized gas, attachment element 331 may be utilized to attenuate compression forces (i.e., impart padding or cushioning) to provide impact protection to areas of the wearer where attachment element 331 is located. That is, attachment element 331 may be utilized to impart protection to specific areas of the wearer. When a liquid is located within the void in chamber portion 332, the liquid may be utilized to impart heating or cooling to areas of the wearer where attachment element 331 is located. More particularly, attachment element 331 and the liquid within attachment element 331 may be heated or cooled. Once located adjacent to a specific area of the wearer, attachment element 331 and the liquid within attachment element 331 may impart heat to or draw heat away from the area of the wearer.


A further example of an attachment element 341 is depicted in FIGS. 23 and 24 as having including an electronic device 342. A fastening part 343 is secured to a back surface of device 342 and generally incorporates a part of the fastening system that secures attachment element 341 to apparel 100 or apparel 200. As examples, electronic device 342 may be any of a mobile phone, portable music player, timing device, locator beacon, global positioning system, or mobile computing device.


Second Shirt-Type Garment Configuration


An article of apparel 400 having the configuration of a shirt-type garment is depicted in FIG. 25. Apparel 400 includes a torso region 401 and a pair of arm regions 402 and 403 that extend outward from torso region 401. Torso region 401 corresponds with a torso of a wearer and covers at least a portion of the torso when worn. An upper area of torso region 401 defines a neck opening 404 through which the neck and head of the wearer protrude when apparel 400 is worn. Similarly, a lower area of torso region 401 defines a waist opening 405 through which the waist or pelvic area of the wearer protrudes when apparel 400 is worn. Arm region 402 corresponds with a right arm of the wearer and covers at least a portion of the right arm, and arm region 403 corresponds with a left arm of the wearer and covers at least a portion of the left arm. Each of arm regions 402 and 403 define a wrist opening 406 through which a hand and wrist of the wearer protrude when apparel 400 is worn.


Apparel 400 exhibits a two-layer configuration having an outer layer 407 and an adjacent inner layer 408 that extend through each of regions 401-403. Whereas outer layer 407 forms an outer portion of apparel 400, inner layer 408 forms an inner portion that may contact the wearer when apparel 400 is worn. A variety of attachment elements 411 are secured between layers 407 and 408. More particularly, attachment elements 411 are located between layers 407 and 408 in torso region 401 and in each of arm regions 402 and 403. Attachment elements 411 may be any of foam members, fluid-filled chambers (e.g., gas-filled or liquid-filled), plates, or electronic devices. Although depicted as having a generally square aspect for purposes of example, the shapes, sizes, and thicknesses of attachment elements 411 may vary significantly.


Apparel 400 and attachment elements 411 each incorporate portions of a fastening system that is utilized to secure attachment elements 411 between layers 407 and 408. In addition to attaching or otherwise securing attachment elements 411 to apparel 400, the fastening system permits attachment elements 411 to be detached or otherwise separated from apparel 400. As with apparel 100 and 200, a variety of fastening systems may be utilized, including hook- and loop fastening systems, magnetic fastening systems, adhesive fastening systems, and button-type fastening systems, for example. For purposes of reference, portions of apparel 400 and attachment elements 411 incorporating the fastening system or a part of the fastening system are depicted as having a stippled or otherwise textured configuration in the figures. More particularly, and with reference to FIG. 26, (a) surfaces of layers 407 and 408 that contact each other and (b) opposite surfaces of attachment elements 411 each include a part of the fastening system. That is, (a) an inwardly-facing surface of outer layer 407 includes a part of the fastening system, (b) an outwardly-facing surface of inner layer 408 includes a part of the fastening system, and (c) both surfaces of each attachment element 411 include a part of the fastening system. Accordingly, when one of attachment elements 411 is located between layers 407 and 408, as depicted in FIG. 27, parts of the fastening system associated with facing surfaces of layers 407 and 408 each join with parts of the fastening system located on opposite sides of the attachment element 411.


Whereas only one surface of attachment elements 111-115, 211-214, 301, 311, 321, 331, and 341, incorporates a part of a fastening system that joins with an article of apparel, both surfaces of attachment elements 411 incorporate a part of a fastening system and join with apparel 400 (i.e., layers 407 and 408). Advantages to this configuration are that attachment elements 411 may be positively-secured to apparel 400 and are less likely to be inadvertently-removed from apparel 400. More particularly, securing both sides of attachment elements 411 to apparel 400 and between layers 407 and 408 reduces the probability that attachment elements 411 may be stripped from apparel 400 or will fall off of apparel 400. In configurations where attachment elements 411 incorporate a liquid-filled chamber, each of attachment elements 411 may be relatively heavy and may benefit from being secured on both surfaces. Accordingly, the two-layer configuration of apparel 400 imparts a configuration wherein attachment elements 411 are positively-secured and less likely to be inadvertently-removed from apparel 400.


For purposes of the following discussion, assume that the fastening system incorporated into apparel 400 and attachment elements 411 is a hook-and-loop fastening system. The hook part and the loop part of the hook-and-loop fastening system may be associated with various portions of apparel 400 and attachment elements 411. As examples, (a) each of layers 407 and 408 may incorporate the loop part, and the opposite surfaces of attachment elements 411 may incorporate the hook part; (b) each of layers 407 and 408 may incorporate the hook part, and the opposite surfaces of attachment elements 411 may incorporate the loop part; (c) layer 407 may incorporate the hook part, layer 408 may incorporate the loop part, and the opposite surfaces of attachment elements 411 may incorporate the hook part and the loop part; or (d) layer 407 may incorporate the loop part, layer 408 may incorporate the hook part, and the opposite surfaces of attachment elements 411 may incorporate the hook part and the loop part. Although any of the configurations discussed above may be utilized, an advantage to forming apparel 400 such that each of layers 407 and 408 incorporate the loop part or the hook part (i.e., examples (a) or (b)) is that layers 407 and 408 exhibit less of a tendency to join with each other.


Any of the materials discussed above for apparel 100 may be utilized in manufacturing apparel 400. When apparel 400 and attachment elements 411 incorporate a hook-and-loop fastening system, elements of either a hook part or a loop part may be secured to facing surfaces of layers 407 and 408, as well as opposite surfaces of attachment elements 411. Alternatively, the hook part or the loop part of the hook-and-loop fastening system may be knitted as an integral part of the textile material forming each of layers 407 and 408. In some configurations, the textile materials may include coatings that form a breathable and water-resistant barrier, or polymer sheets may be utilized in place of textile materials. Each of layers 407 and 408 may also be formed from laminated or otherwise layered materials that include two or more layers of textile materials, polymer sheets, or combinations of textile materials and polymer sheets.


Apparel 400 is depicted as having the configuration of a shirt-type garment, particularly a long-sleeved shirt. While apparel 400 may be intended to have a loose-fitting configuration, apparel 400 may also be intended for use as a compression garment. As discussed above, compression garments or other garments intended as base layers (a) exhibit a relatively tight fit that lays adjacent to the skin of the wearer and (b) stretch to conform with the contours of the wearer. While the textile materials forming compression garments may have one-directional stretch of, for example, more than ten percent prior to tensile failure, the textile materials forming other compression garments have two-directional stretch of at least thirty percent prior to tensile failure. Accordingly, when apparel 400 is formed to have a relatively tight fit and to stretch to conform with the contours of the wearer, the textile materials forming apparel 400 (i.e., layers 407 and 408) may have two-directional stretch of at least thirty percent prior to tensile failure. In some configurations, outer layer 407 may impart a loose-fitting configuration, whereas inner layer 408 may provide a relatively tight and stretchable fit. In other configurations, inner layer 408 may impart a loose-fitting configuration, whereas outer layer 407 may provide a relatively tight and stretchable fit.


Each of outer layer 407 and inner layer 408 extend through substantially all of regions 401-403, which permits attachment elements 411 to be secured to any area of regions 401-403. In some configurations, only a portion of layers 407 and 408 may incorporate a part of the fastening system. For example, although layers 407 and 408 may extend through substantially all of regions 401-403, the fastening system may be absent from torso region 401 or may alternately be absent from arm regions 402 and 403. In other configurations, layers 407 and 408 may cover different areas of the wearer. As an example, a configuration wherein inner layer 408 is limited to an upper area of torso region 401 and upper areas of arm regions 402 and 403 is depicted in FIG. 28A. In this configuration, the fastening system is present in at least fifty percent of apparel 400. Inner layer 408 may also be absent from arm regions 402 and 403, as depicted in FIG. 28B. A configuration wherein inner layer 408 is only located in arm regions 402 and 403 is illustrated in FIG. 28C. In this configuration, the fastening system is present in at least twenty percent of apparel 400. Moreover, FIG. 28D depicts a configuration wherein (a) outer layer 407 is absent in lower portions of arm regions 402 and 403, whereas inner layer 408 extends through each or regions 401-403. Although apparel 400 is depicted as having the configuration of a long-sleeved shirt in each of FIGS. 25-28D, concepts associated with apparel 400 may also incorporated into other shirt-type garments, including a short-sleeved shirt, a tank top, undershirt, jacket, or coat. Accordingly, the relative areas covered by the fastening system and layers 407 and 408 may vary significantly.


Second Pants-Type Garment Configuration


Various concepts associated with apparel 400 may also be incorporated into other types of apparel. An article of apparel 500 having the configuration of a pants-type garment is depicted in FIGS. 29 and 30. Apparel 500 includes a pelvic region 501 and a pair of leg regions 502 and 503 that extend outward from pelvic region 501. As with apparel 400, apparel 500 has a two-layer configuration that includes an outer layer 507 and an adjacent inner layer 508 that extend through each of regions 501-503. Whereas outer layer 507 forms an outer portion of apparel 500, inner layer 508 forms an inner portion that may contact the wearer when apparel 500 is worn. Any of the materials discussed above may be utilized in manufacturing apparel 500. A variety of attachment elements 511 are secured between layers 507 and 508, as depicted in FIG. 31. Attachment elements 511 may be any of foam members, fluid-filled chambers (e.g., gas-filled or liquid-filled), plates, or electronic devices. Although depicted as having a generally square aspect for purposes of example, the shapes, sizes, and thicknesses of attachment elements 511 may vary significantly.


Apparel 500 and attachment elements 511 each incorporate portions of a fastening system that is utilized to secure attachment elements 511 between layers 507 and 508. In addition to attaching or otherwise securing attachment elements 511 to apparel 500, the fastening system permits attachment elements 511 to be detached or otherwise separated from apparel 500. A variety of fastening systems may be utilized, including hook-and-loop fastening systems, magnetic fastening systems, adhesive fastening systems, and button-type fastening systems, for example. When incorporating the hook-and-loop fastening system, an advantage to forming apparel 500 such that each of layers 507 and 508 incorporate the loop part or the hook part is that layers 507 and 508 exhibit less of a tendency to join with each other. For purposes of reference, portions of apparel 500 and attachment elements 511 incorporating the fastening system or a part of the fastening system are depicted as having a stippled or otherwise textured configuration in the figures.


While apparel 500 may be intended to have a loose-fitting configuration, apparel 500 may also be intended for use as a compression garment. As discussed above, compression garments or other garments intended as base layers (a) exhibit a relatively tight fit that lays adjacent to the skin of the wearer and (b) stretch to conform with the contours of the wearer. While the textile materials forming compression garments may have one-directional stretch of, for example, more than ten percent prior to tensile failure, the textile materials forming other compression garments have two-directional stretch of at least thirty percent prior to tensile failure. Accordingly, when apparel 500 is formed to have a relatively tight fit and to stretch to conform with the contours of the wearer, the textile materials forming apparel 500 (i.e., layers 507 and 508) may have two-directional stretch of at least thirty percent prior to tensile failure. In some configurations, outer layer 507 may impart a loose-fitting configuration, whereas inner layer 508 may provide a relatively tight and stretchable fit. In other configurations, inner layer 508 may impart a loose-fitting configuration, whereas outer layer 507 may provide a relatively tight and stretchable fit.


Each of outer layer 507 and inner layer 508 extend through substantially all of regions 501-503, which permits attachment elements 511 to be secured to any area of regions 501-503. In some configurations, only a portion of layers 507 and 508 may incorporate a part of the fastening system. For example, although layers 507 and 508 may extend through substantially all of regions 501-503, the fastening system may be absent from pelvic region 501 or may alternately be absent from leg regions 502 and 503. In other configurations, layers 507 and 508 may cover different areas of the wearer. As an example, a configuration wherein inner layer 508 is limited to pelvic region 501 is depicted in FIG. 32A. In this configuration, the fastening system is present in at least fifty percent of apparel 400. Inner layer 508 may also be absent from pelvic region 501, as depicted in FIG. 32B. A configuration wherein inner layer 508 is only located in side areas of apparel 500 is illustrated in FIG. 32C. In this configuration, the fastening system is present in at least twenty percent of apparel 400. Although apparel 500 is depicted as having the configuration of a pair of shorts in each of FIGS. 29-32C, concepts associated with apparel 500 may also incorporated into a pair of pants, as in FIG. 32D, or into briefs, jeans, and underwear. Accordingly, the relative areas covered by the fastening system and layers 507 and 508 may vary significantly.


Further Attachment Element Configurations


Attachment elements 411 and 511 may exhibit a variety of different configurations, depending upon the activities, particular needs, and preferences of a wearer. An example of an attachment element 601 is depicted in FIGS. 33-35 as including a plurality of portions 602 that are separated from each other by a plurality of incisions 604. A pair of fastening parts 603a and 603b are secured to opposite sides of portions 602. Whereas incisions 604 extend through fastening part 603a, fastening part 603b extends across incisions 604. Fastening parts 603a and 603b incorporate a part of the fastening system that secures attachment element 601 to apparel 400 or apparel 500. That is, fastening parts 603a and 603b are located on opposite surfaces of portions 602 and join with facing surfaces of layers 407 and 408 or 507 and 508. When, for example, the textile material forming apparel 400 or apparel 500 incorporates the loop part of the hook-and-loop fastening system, fastening parts 603a and 603b may incorporate the hook part of the hook-and-loop fastening system. An advantage of incisions 604 is that the flex properties of attachment element 601 are enhanced, as depicted in FIG. 36. In general, therefore, attachment element 601 is similar to attachment element 301, but includes an additional part of the fastening system on an opposite surface.


Another example of an attachment element 611 is depicted in FIGS. 37 and 38 as having a plate (not depicted) that is located between two fastening parts 613a and 613b. Fastening parts 613a and 613b are located on opposite surfaces of the plate and join with facing surfaces of layers 407 and 408 or 507 and 508. In general, therefore, attachment element 611 is similar to attachment element 321, but includes an additional part of the fastening system on an opposite surface.


Yet another example of an attachment element 621 is depicted in FIGS. 39-41 as having a chamber portion 622 located between two fastening parts 623a and 623b. Chamber portion 622 is formed from a polymer material that defines an interior void for receiving a fluid. Either a gas or a liquid may be located within the void in chamber portion 622. In some configurations, chamber portion 622 may include an opening that permits the wearer to locate a liquid within chamber portion 622 or drain the liquid from chamber portion 622. Fastening parts 623a and 623b are located on opposite surfaces of chamber portion 622 and join with facing surfaces of layers 407 and 408 or 507 and 508. In general, therefore, attachment element 621 is similar to attachment element 331, but includes an additional part of the fastening system on an opposite surface.


The invention is disclosed above and in the accompanying figures with reference to a variety of configurations. The purpose served by the disclosure, however, is to provide an example of the various features and concepts related to the invention, not to limit the scope of the invention. One skilled in the relevant art will recognize that numerous variations and modifications may be made to the configurations described above without departing from the scope of the present invention, as defined by the appended claims.


From the foregoing, it will be seen that this invention is one well adapted to attain all the ends and objects hereinabove set forth together with other advantages which are obvious and which are inherent to the structure.


It will be understood that certain features and subcombinations are of utility and may be employed without reference to other features and subcombinations. This is contemplated by and is within the scope of the claims.


Since many possible embodiments may be made of the invention without departing from the scope thereof, it is to be understood that all matter herein set forth or shown in the accompanying drawings is to be interpreted as illustrative and not in a limiting sense.

Claims
  • 1. An apparel system comprising: an article of apparel comprising a first layer having a first surface and a second layer having a second surface, wherein the first surface and the second surface each include a first part of a fastening system; andan attachment element positionable between the first layer and the second layer, the attachment element comprising a third surface, a fourth surface, and a cushioning element between the third surface and the fourth surface, wherein the third surface and the fourth surface each include a second part of the fastening system, which releasably fastens to the first part of the fastening system, and wherein the second part of the fastening system is secured directly to the cushioning element.
  • 2. The apparel system of claim 1, wherein the cushioning element comprises any one of a foam member, a fluid-filled chamber, a gas-filled chamber, a plate, or a combination thereof.
  • 3. The apparel system of claim 2, wherein the first layer of the article of apparel includes a pants-type garment comprising one or more regions, and wherein the second layer of the article of apparel covers a first part of at least one region of the one or more regions and is absent from a second part of the at least one region.
  • 4. The apparel system of claim 3, wherein the one or more regions of the pants-type garment include a leg region and a pelvic region.
  • 5. The apparel system of claim 2, wherein the fastening system is a hook-and-loop fastening system.
  • 6. The apparel system of claim 2, wherein the fastening system is a magnetic fastening system.
  • 7. The apparel system of claim 2, wherein the fastening system is an adhesive fastening system.
  • 8. An apparel system comprising: an article of apparel comprising a first layer having a first surface and a second layer having a second surface, wherein the first surface and the second surface each include a first part of a fastening system; anda cushioning element positionable between the first layer and the second layer, the cushioning element comprising a third surface and a fourth surface, wherein the third surface and the fourth surface each include a second part of the fastening system adapted to releasably fasten to the first part of the fastening system, and wherein the second part of the fastening system is secured directly to the cushioning element.
  • 9. The apparel system of claim 8, wherein the cushioning element comprises any one of a foam member, a fluid-filled chamber, a gas-filled chamber, a plate, or a combination thereof.
  • 10. The apparel system of claim 9, wherein the first layer of the article of apparel includes a pants-type garment comprising one or more regions, and wherein the second layer of the article of apparel covers a first part of at least one region of the one or more regions and is absent from a second part of the at least one region.
  • 11. The apparel system of claim 10, wherein the one or more regions of the pants-type garment include a leg region and a pelvic region.
  • 12. The apparel system of claim 9, wherein the fastening system is a hook-and-loop fastening system.
  • 13. The apparel system of claim 9, wherein the fastening system is a magnetic fastening system.
  • 14. The apparel system of claim 9, wherein the fastening system is an adhesive fastening system.
CROSS-REFERENCE TO RELATED APPLICATIONS

This application, entitled “Apparel with Selectively Attachable and Detachable Elements,” is a continuation application of co-pending U.S. application Ser. No. 16/522,215, filed Jul. 25, 2019, and entitled “Apparel with Selectively Attachable and Detachable Elements,” which is a continuation application of U.S. application Ser. No. 14/579,002, filed Dec. 22, 2014, issued as U.S. Pat. No. 10,390,573 on Aug. 27, 2019, and entitled “Apparel with Selectively Attachable and Detachable Elements,” which is a divisional application of U.S. application Ser. No. 12/184,650, filed Aug. 1, 2008, and entitled “Apparel with Selectively Attachable and Detachable Elements,” which is now abandoned. The entireties of the aforementioned applications are incorporated by reference herein.

US Referenced Citations (303)
Number Name Date Kind
921352 Blaker et al. May 1909 A
1282411 Golembiowski Oct 1918 A
1910810 Nash May 1933 A
1924677 Ernest Aug 1933 A
2247961 Mulvey Jul 1941 A
2266886 Mccoy Dec 1941 A
2569398 Burd et al. Sep 1951 A
2723214 Meyer Nov 1955 A
2738834 Harry et al. Mar 1956 A
2751609 Fred et al. Jun 1956 A
2785739 Mcgregor et al. Mar 1957 A
3012926 Wintermute et al. Dec 1961 A
3020186 Leonard Feb 1962 A
3119904 Anson Jan 1964 A
3137746 Edwin et al. Jun 1964 A
3233885 Propst Feb 1966 A
3258800 Robinsky Jul 1966 A
3285768 Habib Nov 1966 A
3293671 Griffin Dec 1966 A
3305423 Le Feb 1967 A
3404406 Balliet Oct 1968 A
3441638 Patchell et al. Apr 1969 A
3465364 Edelson Sep 1969 A
3471865 Molitoris Oct 1969 A
3476102 Sarnoff Nov 1969 A
3484974 Culmone Dec 1969 A
3500472 Castellani Mar 1970 A
3512190 Buff May 1970 A
3515625 Sedlak et al. Jun 1970 A
3679263 Cadiou Jul 1972 A
3722355 King Mar 1973 A
3746602 Caroli et al. Jul 1973 A
3746605 Dillon et al. Jul 1973 A
3771170 Leon Nov 1973 A
3775526 Gilmore Nov 1973 A
3832265 Denommee Aug 1974 A
3867238 Johannsen Feb 1975 A
3867239 Alesi et al. Feb 1975 A
3882547 Morgan May 1975 A
3911185 Wright, Jr. Oct 1975 A
3914487 Azoulay Oct 1975 A
3922329 Kim et al. Nov 1975 A
3950789 Konz et al. Apr 1976 A
3977406 Roth Aug 1976 A
4023213 Rovani May 1977 A
4126177 Smith et al. Nov 1978 A
4136222 Jonnes Jan 1979 A
4138283 Hanusa Feb 1979 A
4190696 Fuoco et al. Feb 1980 A
4197342 Bethe Apr 1980 A
4249268 Berler Feb 1981 A
4249302 Crepeau Feb 1981 A
4255552 Schollenberger et al. Mar 1981 A
4272850 Rule Jun 1981 A
4276341 Tanaka Jun 1981 A
4287250 Rudy Sep 1981 A
4322858 Douglas Apr 1982 A
4345958 Kuroda Aug 1982 A
4384369 Prince May 1983 A
4407497 Gracie Oct 1983 A
4415622 Kamat Nov 1983 A
4422183 Landi et al. Dec 1983 A
4440525 Perla Apr 1984 A
4482592 Kramer Nov 1984 A
4485919 Sandel Dec 1984 A
4493865 Kuhlmann et al. Jan 1985 A
4507801 Kavanagh et al. Apr 1985 A
4512037 Vacanti Apr 1985 A
4516273 Gregory et al. May 1985 A
4525875 Tomczak Jul 1985 A
4534354 Bonner et al. Aug 1985 A
4538301 Sawatzki et al. Sep 1985 A
4559251 Wachi Dec 1985 A
4581186 Larson Apr 1986 A
4602384 Schneider Jul 1986 A
4631221 Disselbeck et al. Dec 1986 A
4642814 Godfrey Feb 1987 A
4646367 El Hassen Mar 1987 A
4688269 Maeshima Aug 1987 A
4692199 Kozlowski et al. Sep 1987 A
4696066 Ball et al. Sep 1987 A
4713854 Graebe Dec 1987 A
4718214 Waggoner Jan 1988 A
4730761 Spano Mar 1988 A
4734306 Lassiter Mar 1988 A
4744189 Wilson May 1988 A
4756026 Pierce, Jr. Jul 1988 A
4774724 Sacks Oct 1988 A
4780167 Hill Oct 1988 A
4809374 Saviez Mar 1989 A
4815149 Erhardt et al. Mar 1989 A
4846176 Golden Jul 1989 A
4852274 Wilson Aug 1989 A
4856393 Braddon Aug 1989 A
4867826 Wayte Sep 1989 A
4884295 Cox Dec 1989 A
4964936 Ferro Oct 1990 A
4982447 Henson Jan 1991 A
4985933 Lemoine Jan 1991 A
4989265 Nipper et al. Feb 1991 A
4991230 Vacanti Feb 1991 A
5007111 Adams Apr 1991 A
5020156 Neuhalfen Jun 1991 A
5020157 Dyer Jun 1991 A
5029341 Wingo, Jr. Jul 1991 A
5030501 Colvin et al. Jul 1991 A
5034998 Kolsky Jul 1991 A
5038779 Barry Aug 1991 A
5042318 Franz Aug 1991 A
5048123 Monson Sep 1991 A
5048125 Libertini et al. Sep 1991 A
5052053 Peart et al. Oct 1991 A
5054127 Zevchak Oct 1991 A
5060313 Neuhalfen Oct 1991 A
5071698 Scheerder et al. Dec 1991 A
5093931 Laberge et al. Mar 1992 A
5129295 Geffros et al. Jul 1992 A
5136726 Kellin et al. Aug 1992 A
5155869 Ralli et al. Oct 1992 A
5160785 Davidson, Jr. Nov 1992 A
5168576 Krent et al. Dec 1992 A
5188879 Hill et al. Feb 1993 A
5214797 Tisdale Jun 1993 A
5232762 Ruby Aug 1993 A
5233767 Kramer Aug 1993 A
5274846 Kolsky Jan 1994 A
5289830 Levine Mar 1994 A
5302806 Simmons Apr 1994 A
5322730 Ou Jun 1994 A
5325537 Marion Jul 1994 A
5334082 Barker Aug 1994 A
5349893 Dunn Sep 1994 A
5353455 Loving et al. Oct 1994 A
5360653 Ackley Nov 1994 A
5380392 Imamura et al. Jan 1995 A
5399418 Hartmanns et al. Mar 1995 A
5405665 Shukushima et al. Apr 1995 A
5407421 Goldsmith Apr 1995 A
5423087 Krent et al. Jun 1995 A
5427563 Manning Jun 1995 A
5452477 Mann Sep 1995 A
5454743 Simonson Oct 1995 A
5459896 Raburn et al. Oct 1995 A
5477558 Voelker et al. Dec 1995 A
5484448 Steele et al. Jan 1996 A
5530966 West Jul 1996 A
5534208 Barr et al. Jul 1996 A
5534343 Landi et al. Jul 1996 A
5536246 Saunders Jul 1996 A
5539934 Ponder Jul 1996 A
5551082 Stewart et al. Sep 1996 A
5592689 Matthews Jan 1997 A
5594954 Huang Jan 1997 A
5601895 Cunningham Feb 1997 A
5614301 Katz Mar 1997 A
5621914 Ramone et al. Apr 1997 A
5628063 Reed May 1997 A
5636377 Wiener Jun 1997 A
5659898 Bell, Jr. Aug 1997 A
5660572 Buck Aug 1997 A
5675844 Guyton et al. Oct 1997 A
5689836 Fee et al. Nov 1997 A
5692935 Smith Dec 1997 A
5697101 Aldridge Dec 1997 A
5720714 Penrose Feb 1998 A
5727252 Oetting et al. Mar 1998 A
5729832 Grilliot et al. Mar 1998 A
5734911 Lai Mar 1998 A
5734991 Schmid Apr 1998 A
5738925 Chaput Apr 1998 A
5742939 Williams Apr 1998 A
5780147 Sugahara et al. Jul 1998 A
5823981 Grim et al. Oct 1998 A
5826273 Eckes Oct 1998 A
5860163 Aldridge Jan 1999 A
5915819 Gooding Jun 1999 A
5920915 Bainbridge et al. Jul 1999 A
5938878 Hurley et al. Aug 1999 A
5940888 Sher Aug 1999 A
5953757 Blanks Sep 1999 A
5957692 Mccracken et al. Sep 1999 A
5987643 Beutler Nov 1999 A
6000983 Pressman et al. Dec 1999 A
6005222 Hicks Dec 1999 A
6010387 Nemec et al. Jan 2000 A
6032300 Bainbridge Mar 2000 A
6041436 Keen Mar 2000 A
6041447 Endler Mar 2000 A
6053005 Boitnott Apr 2000 A
6058503 Williams May 2000 A
6070267 Mckewin Jun 2000 A
6070273 Sgro Jun 2000 A
6085353 Van Der Jul 2000 A
6093468 Toms et al. Jul 2000 A
6098198 Jacobs et al. Aug 2000 A
6105162 Douglas et al. Aug 2000 A
6125478 Alaloof Oct 2000 A
6139928 Sloot Oct 2000 A
6167790 Bambara et al. Jan 2001 B1
6193678 Brannon Feb 2001 B1
6202217 Karall Mar 2001 B1
6219852 Bain et al. Apr 2001 B1
6228108 Lamb et al. May 2001 B1
6235661 Khanamirian May 2001 B1
6253376 Ritter Jul 2001 B1
6282729 Oikawa et al. Sep 2001 B1
6289524 Wright et al. Sep 2001 B1
6295654 Farrell Oct 2001 B1
6301722 Nickerson et al. Oct 2001 B1
6317888 Mcfarlane Nov 2001 B1
6374409 Galy Apr 2002 B1
6453477 Bainbridge et al. Sep 2002 B1
6484325 Lazarus et al. Nov 2002 B1
6485448 Lamping et al. Nov 2002 B2
6519781 Berns Feb 2003 B1
6584616 Godshaw et al. Jul 2003 B2
6591456 Deluca et al. Jul 2003 B2
6654960 Cho Dec 2003 B2
6654962 Demott Dec 2003 B2
6666836 Islava Dec 2003 B1
6743325 Taylor Jun 2004 B1
6817039 Grilliot et al. Nov 2004 B1
6820279 Lesosky Nov 2004 B2
6841022 Tsukagoshi et al. Jan 2005 B2
6842915 Turner et al. Jan 2005 B2
6851124 Munoz et al. Feb 2005 B2
6860789 Bell et al. Mar 2005 B2
6936021 Smith Aug 2005 B1
6966070 Gillen et al. Nov 2005 B2
6968573 Silver Nov 2005 B2
6969548 Goldfine Nov 2005 B1
6982115 Poulos et al. Jan 2006 B2
7007356 Cudney et al. Mar 2006 B2
7018351 Iglesias et al. Mar 2006 B1
7065793 Wooten Jun 2006 B1
7065983 Trinh Jun 2006 B2
7090651 Chiang et al. Aug 2006 B2
7100216 Matechen Sep 2006 B2
7114189 Kleinert Oct 2006 B1
7114789 Keaton Oct 2006 B2
7276076 Bieberich Oct 2007 B2
7389547 Wiens Jun 2008 B1
D582608 Palmer Dec 2008 S
7506384 Ide et al. Mar 2009 B2
RE41346 Taylor May 2010 E
7761929 Mascia Jul 2010 B1
RE42689 Taylor Sep 2011 E
RE43441 Taylor Jun 2012 E
8231756 Kim Jul 2012 B2
RE43994 Taylor Feb 2013 E
8505122 Green et al. Aug 2013 B1
10390573 Turner Aug 2019 B2
10499694 Henry et al. Dec 2019 B2
11484076 Muhlenfeld Nov 2022 B2
20020184925 Mcclellan et al. Dec 2002 A1
20030070209 Falone et al. Apr 2003 A1
20030220048 Toro et al. Nov 2003 A1
20030236053 Martz Dec 2003 A1
20040019950 Rast Feb 2004 A1
20050009445 Bell et al. Jan 2005 A1
20050066407 Delaney Mar 2005 A1
20050075046 Williams Apr 2005 A1
20050081277 Matechen et al. Apr 2005 A1
20050085162 Ott Apr 2005 A1
20050229282 Davis Oct 2005 A1
20050278817 Doheny Dec 2005 A1
20060025039 Barbour et al. Feb 2006 A1
20060099884 Falla May 2006 A1
20060179538 Dodd Aug 2006 A1
20060199456 Taylor Sep 2006 A1
20060218692 Lamarque Oct 2006 A1
20060253954 Music Nov 2006 A1
20060260026 Doria et al. Nov 2006 A1
20060277647 Dobkin Dec 2006 A1
20070000005 Wang Jan 2007 A1
20070094762 Carter et al. May 2007 A1
20070106352 Carstens May 2007 A1
20070185425 Einarsson et al. Aug 2007 A1
20070186327 Hall et al. Aug 2007 A1
20070186328 Bulian Aug 2007 A1
20070250976 Beliveau Nov 2007 A1
20080040831 Nilforushan et al. Feb 2008 A1
20080060113 Walsh Mar 2008 A1
20080189830 Egglesfield Aug 2008 A1
20080201818 Nilforushan et al. Aug 2008 A1
20080264557 Kim Oct 2008 A1
20080290556 Kim Nov 2008 A1
20080313793 Skottheim Dec 2008 A1
20090070911 Chang Mar 2009 A1
20100024089 Turner Feb 2010 A1
20100024100 Sokolowski et al. Feb 2010 A1
20100024101 Berner et al. Feb 2010 A1
20100129573 Kim May 2010 A1
20100193117 Kim Aug 2010 A1
20100205716 Kim Aug 2010 A1
20100205722 Kim Aug 2010 A1
20100206472 Kim Aug 2010 A1
20110307998 Turner Dec 2011 A1
20120216327 Turner Aug 2012 A1
20150096659 Gilbert et al. Apr 2015 A1
20150101096 Turner Apr 2015 A1
20170196277 Henry et al. Jul 2017 A1
20190373966 Turner Dec 2019 A1
Foreign Referenced Citations (81)
Number Date Country
892301 Feb 1972 CA
2063814 Jan 1991 CA
2162723 Nov 1994 CA
2289622 Nov 1998 CA
638665 Oct 1983 CH
2225163 Apr 1996 CN
1157120 Aug 1997 CN
2305870 Feb 1999 CN
2745373 Dec 2005 CN
1857132 Nov 2006 CN
102112014 Jun 2011 CN
102112015 Jun 2011 CN
102112016 Jun 2011 CN
3119489 Dec 1982 DE
3530397 Mar 1987 DE
9102039 May 1991 DE
4336468 Apr 1995 DE
102005060624 May 2007 DE
0083454 Oct 1988 EP
0552304 Jul 1993 EP
0595887 Dec 1998 EP
0962156 Dec 1999 EP
1872676 Jan 2008 EP
2309884 Apr 2011 EP
2309885 Apr 2011 EP
2740303 Apr 1997 FR
832101 Apr 1960 GB
1274569 May 1972 GB
2120167 Nov 1983 GB
2177892 Feb 1987 GB
2233877 Jan 1991 GB
S58161642 Sep 1983 JP
H01316235 Dec 1989 JP
H0433608 Feb 1992 JP
433608 Mar 1992 JP
2508289 Aug 1996 JP
10053905 Feb 1998 JP
10146356 Feb 1998 JP
H10146356 Jun 1998 JP
10237708 Sep 1998 JP
H10337797 Dec 1998 JP
H11279813 Oct 1999 JP
03067817 Apr 2000 JP
3074372 Jan 2001 JP
2001115314 Apr 2001 JP
2001515548 Sep 2001 JP
2002038301 Feb 2002 JP
2002348709 Dec 2002 JP
2003105607 Apr 2003 JP
2004146199 May 2004 JP
2006028665 Feb 2006 JP
3120254 Mar 2006 JP
3120254 Mar 2006 JP
2006239394 Sep 2006 JP
2008111213 May 2008 JP
2011530016 Dec 2011 JP
2011530019 Dec 2011 JP
2011530020 Dec 2011 JP
9101095 Feb 1991 WO
9723142 Jul 1997 WO
9725953 Jul 1997 WO
9733403 Sep 1997 WO
9733493 Sep 1997 WO
9736740 Oct 1997 WO
9811793 Mar 1998 WO
9841118 Sep 1998 WO
9934972 Jul 1999 WO
9935926 Jul 1999 WO
0050336 Aug 2000 WO
0103530 Jan 2001 WO
0115892 Mar 2001 WO
0216124 Feb 2002 WO
02081202 Oct 2002 WO
2004019713 Mar 2004 WO
2006036072 Apr 2006 WO
2006062810 Jun 2006 WO
2006088734 Aug 2006 WO
2010014370 Feb 2010 WO
2010014427 Feb 2010 WO
2010014428 Feb 2010 WO
2013003126 Jan 2013 WO
Non-Patent Literature Citations (6)
Entry
Intention to Grant received for European Patent Application No. 21179423.5, dated Jun. 20, 2022, 7 pages.
Wikipedia—Polyurethane, 15 pages.
Alderson, A., “A Triumph of Lateral Thought”, in Chemistry & Industry, May 17, 1999, pp. 384-391.
Annis et al., “Development of a Space Activity Suit”, in NASA Contractor Report NASA CR-1892; dated ;, Nov. 1971, 139 pages.
Burke, Maria, “A Stretch of the Imagination”, New Scientist Magazine, vol. 154, Issue 2085, Available online at: <research.dh.umu.se/dynamic/artiklar/shape/stretch.html>, Jun. 7, 1997, pp. 1-7.
Hamill et al., “Biomechanical Analysis of Military Boots: Phase III”, In United States Army Technical Report NATICK/TR-96.013;, Mar. 11, 1996, 42 pages.
Related Publications (1)
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20220202115 A1 Jun 2022 US
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Parent 12184650 Aug 2008 US
Child 14579002 US
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Parent 16522215 Jul 2019 US
Child 17696407 US
Parent 14579002 Dec 2014 US
Child 16522215 US