The present disclosure relates to bras, and more specifically to a collection of bras that provide different levels of support to a wearer's breasts.
U.S. Pat. No. 8,262,432 discloses a lightweight enhanced modesty sports bra. The sports bra comprises an interior liner layer having two faces and an exterior shell layer having two faces and a printed obscuration pattern in between the interior liner layer and the exterior shell layer. The interior liner layer and the exterior shell layer with the printed obscuration pattern are assembled in a way that provides modesty and the printed pattern is not visible from the outside. An optional layer called the intermediate liner layer may be placed in between the exterior shell layer and the interior liner layer.
U.S. Pat. No. 9,456,638 discloses a breast cup for a brassiere, a brassiere, and a method of making the breast cup. The breast cup includes a molded body having an inner surface, an outer surface and an apex. A layer of flock is adhered to the molded body at a location corresponding with the apex in order to provide increased modesty for the breast cup.
U.S. Pat. No. 9,788,579 discloses a brassiere that includes a back portion and a front portion coupled to the back portion at side areas. Straps are coupled to the front portion and the back portion. Cup panels are provided on the front portion and extend to the straps. Each cup panel includes a perimeter cup region and a central cup region located on the front portion and a strap region located on one of the straps. The perimeter cup region and the strap region having a greater elastic modulus than the central cup region. In at least one embodiment, each cup panel includes a first layer and a second layer. The second layer is provided by a polymer sheet including a plurality of openings formed in the polymer sheet. The arrangement of the openings on the polymer sheet contributes to the elastic modulus in the central cup region, the perimeter cup region, and the strap region of the cup panel.
U.S. Pat. No. 9,883,702, which is incorporated herein by reference in its entirety, discloses a portion of a bra, such as a bra wing or bra cup, that includes a double-faced fabric made with a polyurethane-based elastomer yarn. A silicone pattern is printed on a first face of the fabric, and at least partially penetrates the first face. In a first zone on the first face of the fabric, the printed silicone pattern has a first surface density, and in a second zone it has a second surface density. The first surface density imparts a first elastic modulus to the fabric in the first zone, while the second surface density imparts a second elastic modulus to the fabric in the second zone that is different than the first elastic modulus. A plurality of zones can be provided in order to provide a smoothing and/or support effect to the portion of the bra.
U.S. Pat. No. 11,284,647 discloses a breast support garment for use in active environments, where the wearer of such garment is engaged in an activity that results in accelerating movements. In some preferred embodiments, these garments may be athletic or sports bras that redirect momentum related to a wearer's accelerating movements, for example, during exercise.
U.S. Pat. Nos. 11,771,144 and 12,096,806 and U.S. patent application Ser. No. 18/815,395, filed Aug. 26, 2024, which are incorporated herein by reference in their entireties, disclose a bra cup for a bra that includes an inner layer of material configured to face a wearer's breast when the bra is worn and an outer layer of material configured to face away from the wearer when the bra is worn. An outer face of the inner layer of material is adjacent an inner face of the outer layer of material. A thin polymer web is disposed on the outer face of the inner layer of material. A bra including the bra cup and a method of manufacturing the bra cup are also disclosed.
U.S. Patent Publication No. 2022/0400780 discloses an article of clothing that includes a first fabric layer having an inner surface and an outer surface. The article of clothing also includes a second fabric layer having an inner surface and an outer surface. The article of clothing further includes a silicone layer embedded with at least one of the inner surface of the first fabric layer and the inner surface of the second fabric layer, and thereby joining the first fabric layer and the second fabric layer. The article of clothing includes a first zone of a first thickness and a second zone of a second thickness. The first thickness is greater than the second thickness, and the first zone is disposed along an edge of the article of clothing while the second zone is disposed further away from the edge than the first zone.
International Application Publication No. WO 2023/173231 A1 discloses examples of a garment with a support structure. The garment includes a front portion, a back portion, and first and second side portions. The front portion covers a portion of a wearer's chest and includes a lower edge, an upper edge portion, and first and second sides. The back portion covers a portion of the wearer's back, and includes a lower edge, an upper edge portion, and first and second sides. The first and second side portions extend between the front and back portions, and include lower edges. The first and second side portions include two or more stretching module zones that have a low stretching module zone in proximity to the arm openings of the garment and a lower edge stretching module zone in proximity to the first and second lower edges.
This Summary is provided to introduce a selection of concepts that are further described below in the Detailed Description. This Summary is not intended to identify key or essential features of the claimed subject matter, nor is it intended to be used as an aid in limiting the scope of the claimed subject matter.
According to one example of the present disclosure, a collection of bras comprises a first set of bras configured to provide a first level of support to breast tissue. Each of the bras in the first set of bras includes a first inner layer, a first outer layer, and a first printed reinforcement layer positioned between the first inner layer and the first outer layer. The collection of bras further comprises a second set of bras configured to provide a second level of support to breast tissue. Each of the bras in the second set of bras includes a second inner layer, a second outer layer, and a second printed reinforcement layer positioned between the second inner layer and the second outer layer. A material weight of the first inner layer and the first outer layer is less than a material weight of the second inner layer and the second outer layer, an amount of printed material comprising the first printed reinforcement layer is less than an amount of printed material comprising the second printed reinforcement layer, and the first level of support is less than the second level of support.
According to one example, the first inner layer, the first outer layer, the second inner layer, and the second outer layer each comprise a microfiber material.
According to one example, the first printed reinforcement layer and the second printed reinforcement layer each comprise a silicone material.
According to one example, the material weight of the first inner layer and the first outer layer is about 150 grams per square meter, and the material weight of the second inner layer and the second outer layer is about 190 grams per square meter.
According to one example, the first set of bras comprises bras having a first set of bra cup sizes, the second set of bras comprises bras having a second set of bra cup sizes, and the first set of bra cup sizes is different from the second set of bra cup sizes.
According to one example, the collection of bras further comprises a third set of bras configured to provide a third level of support to breast tissue. Each of the bras in the third set of bras comprises a third inner layer, a third outer layer, and a third printed reinforcement layer positioned between the third inner layer and the third outer layer. The third level of support is greater than the first level of support and the second level of support.
According to one example, a material weight of the third inner layer and the third outer layer is greater than a material weight of the first inner layer, the first outer layer, the second inner layer, and the second outer layer.
According to one example, an amount of printed material comprising the third printed reinforcement layer is greater than an amount of printed material comprising the first printed reinforcement layer.
According to one example, an amount of printed material comprising the third printed reinforcement layer is less than an amount of printed material comprising the second printed reinforcement layer.
According to one example, the material weight of the first inner layer and the first outer layer is about 150 grams per square meter, the material weight of the second inner layer and the second outer layer is about 190 grams per square meter, and the material weight of the third inner layer and the third outer layer is about 220 grams per square meter.
According to one example, the first set of bras comprises bras having a first set of bra cup sizes, the second set of bras comprises bras having a second set of bra cup sizes, the third set of bras comprises bras having a third set of bra cup sizes, and the third set of bra cup sizes is different from at least one of the first set of bra cup sizes and the second set of bra cup sizes.
According to another example of the present disclosure, a collection of undergarments is provided. The collection of undergarments comprises a plurality of sets of undergarments, wherein each set in the plurality of sets is configured to provide a corresponding level of support to a wearer's body, and wherein each undergarment in the plurality of sets comprises an inner layer, an outer layer, and a printed reinforcement layer bonding the inner layer to the outer layer. At least one of the following conditions is satisfied in the collection of undergarments: a material weight of the inner layer and the outer layer of each undergarment in one set of the plurality of sets is different from a material weight of the inner layer and the outer layer of each undergarment in every other set in the plurality of sets; and an amount of printed material comprising the printed reinforcement layer of each undergarment in one set of the plurality of sets is different from an amount of printed material comprising the printed reinforcement layer of each undergarment in every other set in the plurality of sets.
According to one example, the inner layer and the outer layer each comprise a microfiber material.
According to one example, the printed reinforcement layer comprises a silicone material.
According to one example, each undergarment in the plurality of sets is a bra.
According to one example, each bra comprises a pair of bra cup regions, and printed material of the printed reinforcement layer is located between the pair of bra cup regions.
According to one example, each bra comprises a pair of bra cup regions, and printed material of the printed reinforcement layer is located underneath the pair of bra cup regions.
According to one example, each bra comprises a pair of straps, and printed material of the printed reinforcement layer is located within at least a portion of each strap in the pair of straps.
According to one example, the plurality of sets of undergarments comprises a first set of bras associated with a first set of bra cup sizes and a second set of bras associated with a second set of bra cup sizes, and the first set of bra cup sizes is different from the second set of bra cup sizes.
According to one example, a difference between the material weight of the inner layer and the outer layer of each bra in the first set of bras and the material weight of the inner layer and the outer layer of each bra in the second set of bras is at least 30 grams per square meter.
The present disclosure is described with reference to the following Figures. The same numbers are used throughout the Figures to reference like features and like components.
Before any embodiments of the invention are explained in detail, it is to be understood that the invention is not limited in its application to the details of construction and the arrangement of components set forth in the following description or illustrated in the drawings. The invention is capable of other embodiments and of being practiced or of being carried out in various ways. Also, it is to be understood that the phraseology and terminology used herein is for the purpose of description and should not be regarded as limiting. The use of “including,” “comprising,” or “having” and variations thereof herein is meant to encompass the items listed thereafter and equivalents thereof as well as additional items.
Unless otherwise specified or limited, the phrases “at least one of A, B, and C,” “one or more of A, B, and C,” and the like, are meant to indicate A, or B, or C, or any combination of A, B, and/or C, including combinations with multiple instances of A, B, and/or C. Likewise, unless otherwise specified or limited, the terms “mounted,” “connected,” “linked,” “supported,” and “coupled” and variations thereof are used broadly and encompass both direct and indirect mountings, connections, supports, and couplings. Further, unless otherwise specified or limited, “connected” and “coupled” are not restricted to physical or mechanical connections or couplings.
As used herein, unless otherwise limited or defined, discussion of particular directions is provided by example only, with regard to particular embodiments or relevant illustrations. For example, discussion of “top,” “bottom,” “front,” “back,” “left,” “right,” “lateral” or “longitudinal” features is generally intended as a description only of the orientation of such features relative to a reference frame of a particular example or illustration. Correspondingly, for example, a “top” feature may sometimes be disposed below a “bottom” feature (and so on), in some arrangements or embodiments. Additionally, use of the words “first,” “second”, “third,” etc. is not intended to connote priority or importance, but merely to distinguish one of several similar elements from another. Unless otherwise specified or limited, the word “about” means ±10%. The phrase “at least about” means greater than or equal to the value recited ±10%.
Reference will be made herein to the “inner face” of a layer or to the “outer face” of a layer. The inner face is the surface that faces toward and touches a wearer's skin when the bra is worn as intended. The outer face is the surface that faces outwardly away from the wearer when the bra is worn as intended.
Bra cup size is defined in various ways across different styles, brands, and/or manufacturers. In general, bra cup size is related to and determined from bra band size. In one example, band size is measured around a wearer's torso, with a tape measure across her shoulder blades in the back and draped across the top of her breasts in the front. The measurement is directly translated to band size if even, or rounded up to the next even number if odd. In another example, band size is measured around the circumference of the wearer's torso just below her breasts. The measurement is directly translated to band size if even, or rounded up to the next even number if odd. In still another example, band size is determined by measuring the circumference of the wearer's torso just below her breasts and adding 4 inches (about 10.2 cm) if the measurement is even, or 5 inches (about 12.7 cm) if the measurement is odd, to arrive at band size. In any example for determining band size, cup size is then based on a difference between (a) a measurement around the fullest part of the wearer's bust and (b) her band size. To measure the fullest part of her bust, the measuring tape is wrapped around the circumference of her torso, parallel to the floor, over the fullest part of her breasts. A difference between the bust size measurement and the band size (regardless of how it was determined) is then correlated to a cup size. In most cases, an “AA” cup will fit a wearer with no difference between bust and band size, an “A” cup will fit a wearer with 1 inch (about 2.5 cm) of difference between bust and band size; a “B” cup will fit a wearer with 2 inches (about 5.1 cm) of difference between bust and band size; a “C” cup will fit a wearer with 3 inches (about 7.6 cm) of difference between bust and band size; etc.
Note that internationally, the letters AA, A, B, C, D, etc. are not universally used to denote cup size. For instance, by way of non-limiting example, cup size DD is sometimes referred to as E. Cup size DDD is sometimes referred to as F, and sometimes referred to as E. The present disclosure will henceforward describe bra sizing in terms of inches and A, B, C, D, etc. according to United States sizing standards. However, it should be understood that the present disclosure and claims apply equally to metric measurements and international variations on band and cup sizing. Further, style (e.g., sport versus lingerie, demi versus balconette, padded versus unlined), brand, and manufacturer can all affect bra size.
The present inventors have recognized that bust and band size tends to directly correlate with the level of support provided by the bra to a wearer's breasts: smaller bust and band sizes tend to provide little support, while larger sizes tend to provide much greater support. In the context of the present application, “support” refers to structural elements of the bra or undergarment that provide a lifting force to the wearer's body in opposition to gravity. For example, as described in further detail below, fabricating the bra out of thicker fabric and incorporating other support elements (e.g., underwires or other supports that stiffen the bra, wider straps) can increase the amount of support provided to a wearer's body.
The present inventors have further recognized that bust and band size does not always correspond to a wearer's desired level of support. For example, a wearer may desire a lower level of support for bras worn as loungewear or during sleep and a higher level of support for day to day or physically intensive activities, regardless of bust size. In addition, the composition of the wearer's breast tissue may also contribute to a desired level of support. For example, wearers having soft to medium breast tissue may desire a higher level of support than wearers having firm or augmented breast tissue. The present inventors have therefore devised a collection of bras utilizing discrete levels of fabric weight for the microfiber fabric forming the inner and outer layers of the bra, as well as discrete levels of deposited silicone to form structural supports between the inner and outer layers of the bra. Each of the discrete levels is provided in the collection in a variety of sizes, such that wearers having any bust and band size may select from the collection to achieve a customized fit.
Each bra cup region 12a, 12b has a curved or straight bottom edge 18, a curved or straight neckline edge 20, and an underarm edge 22. The bra 10 also includes straps 24a, 24b, an eye closure part 26, and a hook closure part (not shown, but well known in the art) for engagement with the eye closure part 26. In an exemplary embodiment, the bra 10 may be constructed by forming the bra cup regions 12a, 12b, the wings 16a, 16b, and the straps 24a, 24b out of a pair of single pieces of fabric comprising the outer layer 28 and the inner layer 30. The outer and inner layers 28, 30 can be subsequently bonded to each other via a printed reinforcement layer that is generally silicone, described in further detail below with reference to
As is known, the hook closure part (not shown) can be connected to the eye closure part 26 to secure the distal ends of the wings 16a, 16b together and thus to secure the chest band 14 around the wearer's ribcage. In other examples, the bra 10 is strapless and/or has stretchy wings 16a, 16b that allow a wearer to put on and take off the bra 10 by pulling it over her head. In still another example, the bra 10 is a front-close bra, with one back band extending from the outer edge of one bra cup region 12a to the outer edge of the other bra cup region 12b and a center-front closure between the two bra cup regions 12a, 12b. Various other styles and constructions of bras are contemplated within the scope of the present disclosure.
In an exemplary embodiment, each of the inner layer 30 and the outer layer 28 may be fabricated from a microfiber fabric exhibiting stretch characteristics in 360 degrees. The weight of the microfiber fabric depends on the level of support intended to be provided by the bra. Higher fabric weights apply a greater amount of support to a wearer. For example, in an exemplary embodiment, a bra providing level 1 support to a wearer's breasts may include outer and inner layers 28, 30 fabricated from microfiber material having a material weight of about 150 grams per square meter. A bra providing level 2 support to a wearer's breasts may include outer and inner layers 28, 30 fabricated from microfiber material having a material weight of about 190 grams per square meter. A bra providing level 3 support to a wearer's breasts may include outer and inner layers 28, 30 fabricated from microfiber material having a material weight of about 220 grams per square meter. In other examples, the fabric of the outer and inner layers 28, 30 can be other synthetic blends, cotton, lace, etc. depending on the desired aesthetic, level of support, and skin feel. The fabric weights provided above are merely exemplary, and, for example, may vary if the fabric is not microfiber, but instead cotton, lace, or sheer. Note that the outer and inner layers 28, 30 need not be the same fabrics, but could be different fabrics from one another. In examples in which a lace or other type of textured fabric is used as the outer layer 28, the lace or textured fabric may be bonded to a smooth fabric, and the reinforcement layer is sandwiched between the additional smooth fabric and the inner layer 30.
Referring now to
The printed reinforcement layers 101, 201, 301 are shown to be provided in various locations on the bras 100, 200, 300. In an exemplary embodiment, strap reinforcements 130, 230, 330 may be printed within the straps of the bras (i.e., 124a, 124b of
Each of the strap reinforcements 130, 230, 330, upper and lower middle reinforcements 134, 136, 234, 236, 334, 336, and wing reinforcements 138a, 138b, 238a, 238b, 338a, 338b is shown to include multiple sets of unbroken lines of reinforcement material that are generally parallel to each other. Such patterns are merely exemplary, and other reinforcement material patterns (e.g., cross-hatch, grid, dots, dashes, lace-like patterns, swirls, curved lines) are contemplated within the scope of the present disclosure.
In some examples, slits may be provided in the inner layer 30 to allow for insertion of removable pads 248a, 248b into pockets 250a, 250b (
Variations in the application of the reinforcement material between the level 1 (see
Variations in the application of the reinforcement material between the level 1 (see
The overall amount of printed reinforcement material applied to the bras may further affect the amount of support provided to a wearer's breasts. For example, the level 1 bras 100, 500 may comprise “low build” silicone, the level 2 bras 200, 600 may comprise “high build” silicone, and the level 3 bras 300, 700 may comprise “mid build” silicone. “Build” in this instance refers to the height of the silicone from the face of the fabric onto which it is applied. In one example, “low build” silicone has a weight of 160-200 grams per square meter (gsm), “mid build” silicone has a weight of 360-400 gsm, and “high build” silicone has a weight of 450-490 gsm. In other words, the amount of printed material used in the level 1 bra may be less than the amount of printed material used in the level 3 bra, which may in turn be less than the amount of printed material used in the level 2 bra. Although it may seem counterintuitive that the higher support level 3 bra includes less printed reinforcement material than the medium support level 2 bra, the present inventors have recognized that when the microfiber material weights are as provided above (i.e., about 150 gsm for level 1, about 190 gsm for level 2, and about 220 gsm for level 3), the combinations of lower material weight and higher silicone build in level 2 and higher material weight and lower silicone build in level 3 result in desired support levels. In one particular example, a level 1 bra is made of microfiber material having a weight of 150 gsm, and application of low build silicone having a weight of 160-200 gsm results in a front panel for the bra having a modulus of 0.821 lbf (LTD06 at 40% stretch). In one particular example, a level 2 bra is made of microfiber material having a weight of 190 gsm, and application of high build silicone having a weight of 450-490 gsm results in a front panel for the bra having a modulus of 1.079 lbf (LTD06 at 40% stretch). In one particular example, a level 3 bra is made of microfiber material having a weight of 220 gsm, and application of mid build silicone having a weight of 360-400 gsm results in a front panel for the bra having a modulus of 1.180 lbf (LTD06 at 40% stretch). In some examples, a highest material weight and a highest silicone build may be used together to create a bra with more support than that of the level 3 bra (i.e., a level 4 bra). In general, the desired support for a given level of bra is achieved through a combination of fabric weight and modulus, reinforcement layer build, and reinforcement layer placement and coverage.
As shown in
As shown in
As shown in
As with the examples of
A level 1 bra may be lightweight, may provide subtle lift to the wearer's breasts, and may provide minimal coverage over the wearer's breasts in comparison to a level 2 or level 3 bra. A level 2 bra may provide enhanced lift and definition to the wearer's breasts in comparison to a level 1 bra by virtue of the greater amount of printed material and higher material weight in a level 2 versus a level 1 bra, and may provide separation of the wearer's breasts by virtue of the laterally wider coverage of the printed material at upper and lower middle reinforcements 234, 236 in a level 2 bra than at upper and lower middle reinforcements 134, 136 in a level 1 bra. A level 3 bra may provide smoothing, sculpting, and bounce control by virtue of the greater amount of printed material in a level 3 versus a level 1 bra and a higher material weight than in a level 2 or level 1 bra, as well as full coverage over the wearer's breast tissue.
Turning now to
Note that the number of levels disclosed herein is merely exemplary, and other collections of bras containing different numbers of levels (e.g., four levels or support or more) are contemplated within the scope of the present disclosure and may be achieved by varying the characteristics of the inner and outer material layers, as well as the printed reinforcement layer. Nor is the present invention limited to bras. In other embodiments, the techniques disclosed herein may be utilized to fabricate a variety of garments, including undergarments. For example, underwear and shapewear garments (e.g., bike shorts, body suits, tanks) could incorporate printed reinforcement layers in regions where additional support to the wearer's body is desired (e.g., waist region, leg region).
According to one example of the present disclosure, a collection of bras 100, 200, 300, 500, 600, 700, 800, 900, 1000 comprises a first set of bras 100, 500, 800 configured to provide a first level of support to breast tissue. Each of the bras in the first set of bras includes a first inner layer 30, a first outer layer 28, and a first printed reinforcement layer 101, 501, 801 positioned between the first inner layer 30 and the first outer layer 28. The collection of bras further comprises a second set of bras 200, 600, 900 configured to provide a second level of support to breast tissue. Each of the bras in the second set of bras includes a second inner layer 30, a second outer layer 28, and a second printed reinforcement layer 201, 601, 901 positioned between the second inner layer 30 and the second outer layer 28. A material weight of the first inner layer 30 and the first outer layer 28 is less than a material weight of the second inner layer 30 and the second outer layer 28, an amount of printed material comprising the first printed reinforcement layer 101, 501, 801 is less than an amount of printed material comprising the second printed reinforcement layer 201, 601, 901, and the first level of support is less than the second level of support.
According to one aspect, the first inner layer 30, the first outer layer 28, the second inner layer 30, and the second outer layer 28 each comprise a microfiber material.
According to one aspect, the first printed reinforcement layer 101, 501, 801 and the second printed reinforcement layer 201, 601, 901 each comprise a silicone material.
According to one aspect, the material weight of the first inner layer 30 and the first outer layer 28 is about 150 grams per square meter, and the material weight of the second inner layer 30 and the second outer layer 28 is about 190 grams per square meter.
According to one aspect, the first set of bras 100, 500, 800 comprises bras having a first set of bra cup sizes, the second set of bras 200, 600, 900 comprises bras having a second set of bra cup sizes, and the first set of bra cup sizes is different from the second set of bra cup sizes.
According to one aspect, the collection of bras further comprises a third set of bras 300, 700, 1000 configured to provide a third level of support to breast tissue. Each of the bras in the third set of bras comprises a third inner layer 30, a third outer layer 28, and a third printed reinforcement layer 301, 701, 1001 positioned between the third inner layer 30 and the third outer layer 28. The third level of support is greater than the first level of support and the second level of support.
According to one aspect, a material weight of the third inner layer 30 and the third outer layer 28 is greater than a material weight of the first inner layer 30, the first outer layer 28, the second inner layer 30, and the second outer layer 28.
According to one aspect, an amount of printed material comprising the third printed reinforcement layer 301, 701, 1001 is greater than an amount of printed material comprising the first printed reinforcement layer 101, 501, 801.
According to one aspect, an amount of printed material comprising the third printed reinforcement layer 301, 701, 1001 is less than an amount of printed material comprising the second printed reinforcement layer 201, 601, 901.
According to one aspect, the material weight of the first inner layer 30 and the first outer layer 28 is about 150 grams per square meter, the material weight of the second inner layer 30 and the second outer layer 28 is about 190 grams per square meter, and the material weight of the third inner layer 30 and the third outer layer 28 is about 220 grams per square meter.
According to one example, the first set of bras 100, 500, 800 comprises bras having a first set of bra cup sizes, the second set of bras 200, 600, 900 comprises bras having a second set of bra cup sizes, the third set of bras 300, 700, 1000 comprises bras having a third set of bra cup sizes, and the third set of bra cup sizes is different from at least one of the first set of bra cup sizes and the second set of bra cup sizes.
According to another example of the present disclosure, a collection of undergarments is provided. The collection of undergarments comprises a plurality of sets of undergarments, wherein each set in the plurality of sets is configured to provide a corresponding level of support to a wearer's body, and wherein each undergarment in the plurality of sets comprises an inner layer 30, an outer layer 28, and a printed reinforcement layer 101, 201, 301, 501, 601, 701, 801, 901, 1001 bonding the inner layer to the outer layer. At least one of the following conditions is satisfied in the collection of undergarments: a material weight of the inner layer 30 and the outer layer 28 of each undergarment in one set of the plurality of sets is different from a material weight of the inner layer 30 and the outer layer 28 of each undergarment in every other set in the plurality of sets; and an amount of printed material comprising the printed reinforcement layer 101, 201, 301, 501, 601, 701, 801, 901, 1001 of each undergarment in one set of the plurality of sets is different from an amount of printed material comprising the printed reinforcement layer 101, 201, 301, 501, 601, 701, 801, 901, 1001 of each undergarment in every other set in the plurality of sets.
According to one example, the inner layer 30 and the outer layer 28 each comprise a microfiber material.
According to one example, the printed reinforcement layer 101, 201, 301, 501, 601, 701, 801, 901, 1001 comprises a silicone material.
According to one example, each undergarment in the plurality of sets is a bra 100, 200, 300, 500, 600, 700, 800, 900, 1000.
According to one example, each bra 100, 200, 300, 500, 600, 700, 800, 900, 1000 comprises a pair of bra cup regions, and printed material of the printed reinforcement layer is located between the pair of bra cup regions.
According to one example, each bra comprises a pair of bra cup regions 112a/b, 212a/b, 312a/b, 512a/b, 612a/b, 712a/b, 812a/b 912a/b, 1012a/b, and printed material of the printed reinforcement layer 101, 201, 301, 501, 601, 701, 801, 901, 1001 is located underneath the pair of bra cup regions.
According to one example, each bra 100, 200, 300, 500, 600, 700, 800, 900, 1000 comprises a pair of straps 124a/b, 224a/b, 324a/b, 524a/b, 624a/b, 724a/b, 824a/b, 924a/b, 1024a/b, and printed material of the printed reinforcement layer 101, 201, 301, 501, 601, 701, 801, 901, 1001 is located within at least a portion of each strap in the pair of straps.
According to one example, the plurality of sets of undergarments comprises a first set of bras 100, 500, 800 associated with a first set of bra cup sizes and a second set of bras 200, 600, 900 associated with a second set of bra cup sizes, and the first set of bra cup sizes is different from the second set of bra cup sizes.
According to one example, a difference between the material weight of the inner layer 30 and the outer layer 28 of each bra in the first set of bras 100, 500, 800 and the material weight of the inner layer 30 and the outer layer 28 of each bra in the second set of bras 200, 600, 900 is at least 30 grams per square meter.
In the present description, certain terms have been used for brevity, clarity, and understanding. No unnecessary limitations are to be implied therefrom beyond the requirement of the prior art because such terms are used for descriptive purposes only and are intended to be broadly construed. The different assemblies described herein may be used alone or in combination with other systems. Various equivalents, alternatives, and modifications are possible within the scope of the appended claims.
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| 9717289 | Fooden | Aug 2017 | B1 |
| 9788579 | Miller | Oct 2017 | B2 |
| 9854861 | Covelli | Jan 2018 | B2 |
| 9883702 | Martinet | Feb 2018 | B2 |
| 10028540 | Shearer | Jul 2018 | B2 |
| 10051896 | Miller | Aug 2018 | B2 |
| 10104917 | Liao | Oct 2018 | B2 |
| 10104925 | Farmer | Oct 2018 | B2 |
| 10123575 | Funk-Danielson | Nov 2018 | B2 |
| 10143252 | Nordstrom | Dec 2018 | B2 |
| 10188152 | Stasey | Jan 2019 | B2 |
| 10231492 | Bastug | Mar 2019 | B1 |
| 10244801 | Witek | Apr 2019 | B2 |
| 10368591 | Funk-Danielson | Aug 2019 | B2 |
| 10426202 | Wyatt | Oct 2019 | B2 |
| 10448678 | Randall | Oct 2019 | B2 |
| 10448679 | Roddis | Oct 2019 | B1 |
| 10638800 | Hoeven | May 2020 | B2 |
| 10640896 | Barnes | May 2020 | B2 |
| 10681941 | Miller | Jun 2020 | B2 |
| 10716338 | Witek | Jul 2020 | B2 |
| 10842210 | Nordstrom | Nov 2020 | B2 |
| 10993483 | Trangmar | May 2021 | B2 |
| 11058155 | Roddis | Jul 2021 | B2 |
| 11284647 | Blecha | Mar 2022 | B2 |
| 11312808 | Farmer | Apr 2022 | B2 |
| 11464262 | Miller | Oct 2022 | B2 |
| 11659872 | Hoeven | May 2023 | B2 |
| 11737499 | Miller | Aug 2023 | B2 |
| 11758953 | Witek | Sep 2023 | B2 |
| 11766076 | Cahan | Sep 2023 | B2 |
| 11771144 | Vansia | Oct 2023 | B1 |
| 11793246 | Trangmar | Oct 2023 | B2 |
| 20020055317 | Kopelowicz | May 2002 | A1 |
| 20030092355 | Rabinowicz | May 2003 | A1 |
| 20040029485 | Pagliarulo | Feb 2004 | A1 |
| 20050097658 | Lyons | May 2005 | A1 |
| 20050159078 | Querquant | Jul 2005 | A1 |
| 20050272345 | Lau | Dec 2005 | A1 |
| 20060141905 | Lau | Jun 2006 | A1 |
| 20060183849 | Liu | Aug 2006 | A1 |
| 20060183850 | Liu | Aug 2006 | A1 |
| 20060183851 | Liu | Aug 2006 | A1 |
| 20070026767 | Scheininger | Feb 2007 | A1 |
| 20070185003 | Iavarone | Aug 2007 | A1 |
| 20070264462 | Covelli | Nov 2007 | A1 |
| 20080004395 | Covelli | Jan 2008 | A1 |
| 20090047481 | Welsch | Feb 2009 | A1 |
| 20110083246 | Vitarana | Apr 2011 | A1 |
| 20170226691 | Farmer | Aug 2017 | A1 |
| 20170342658 | Kawamura | Nov 2017 | A1 |
| 20190174841 | Bastug | Jun 2019 | A1 |
| 20190216140 | Turlan-Van Der Hoven | Jul 2019 | A1 |
| 20190284325 | Farmer | Sep 2019 | A1 |
| 20200397064 | Liu | Dec 2020 | A1 |
| 20210172114 | Farmer | Jun 2021 | A1 |
| 20220053841 | Roddis | Feb 2022 | A1 |
| 20220095704 | Salemeh | Mar 2022 | A1 |
| 20220211120 | Liu | Jul 2022 | A1 |
| 20220312874 | Nordstrom | Oct 2022 | A1 |
| 20220400780 | Liu | Dec 2022 | A1 |
| 20230015684 | Stevens | Jan 2023 | A1 |
| 20230077251 | Farmer | Mar 2023 | A1 |
| 20230088813 | Maduranga | Mar 2023 | A1 |
| 20230363468 | Abbott | Nov 2023 | A1 |
| 20230389621 | Premasiri | Dec 2023 | A1 |
| 20240016237 | Trangmar | Jan 2024 | A1 |
| 20240284995 | Wu | Aug 2024 | A1 |
| Number | Date | Country |
|---|---|---|
| 202112324 | Jan 2012 | CN |
| 203087546 | Jul 2013 | CN |
| 108201190 | Jun 2018 | CN |
| 207692981 | Aug 2018 | CN |
| 112006343 | Dec 2020 | CN |
| 114098178 | Mar 2022 | CN |
| 217446735 | Sep 2022 | CN |
| 115969107 | Apr 2023 | CN |
| 220308464 | Jan 2024 | CN |
| 19942996 | Mar 2001 | DE |
| 202018103990 | Jul 2018 | DE |
| 3238556 | Nov 2017 | EP |
| 4051040 | Sep 2022 | EP |
| 2503280 | Dec 2013 | GB |
| 2019011545 | Jan 2019 | JP |
| 200439066 | Mar 2008 | KR |
| 20190000347 | Feb 2019 | KR |
| 2012143398 | Oct 2012 | WO |
| 2020073163 | Apr 2020 | WO |
| 2020243924 | Dec 2020 | WO |
| 2021031097 | Feb 2021 | WO |
| 2021096430 | May 2021 | WO |
| 2021173081 | Sep 2021 | WO |
| 2021178372 | Sep 2021 | WO |
| 2022086453 | Apr 2022 | WO |
| 2022147738 | Jul 2022 | WO |
| 2022155761 | Jul 2022 | WO |
| Entry |
|---|
| Ceric, Paolo, “Net Series,” published on website Behance at least as early as 2013, https://www.behance.net/gallery/8303967/Net-series, accessed Nov. 4, 2022. |
| LYCRA, “Why choose LYCRA FitSense Technology?”, webpage, admitted prior art, https://www.lycra.com/en/business/search-technologies/lycra-fitsense-technology, accessed Nov. 4, 2022. |
| The LYCRA Company, “Triumph is using LYCRA® FitSense™ technology to bring lightweight, targeted support to its SS20 Summer Sheer collection,” web article, Apr. 14, 2020, available at https://www.lycra.com.cn/en/business/news/triumph-targeted-fit-leading-lingerie-brand-adopts-lycra-fitsense-technology. |
| The LYCRA Company, “LYCRA FitSense technology Processing information for screen printing,” technical document, Mar. 10, 2021. |
| The LYCRA Company, “LYCRA Fitsense Technology Intimates and Shapewear,” lookbook, 2022. |