Child-resistant container for tobacco-containing products

Information

  • Patent Grant
  • 12070059
  • Patent Number
    12,070,059
  • Date Filed
    Friday, September 4, 2020
    4 years ago
  • Date Issued
    Tuesday, August 27, 2024
    3 months ago
Abstract
The present disclosure relates to child resistant containers and methods of making same for products made or derived from tobacco, or that otherwise incorporate tobacco, and are intended for human consumption.
Description
TECHNOLOGICAL FIELD

The present disclosure relates to containers and related packaging methods for products made or derived from tobacco, or that otherwise incorporate tobacco, and are intended for human consumption. More particularly, this disclosure relates to child resistant containers.


BACKGROUND

Tobacco may be enjoyed in a so-called “smokeless” form. Particularly popular smokeless tobacco products are employed by inserting some form of processed tobacco or tobacco-containing formulation into the mouth of the user. See, for example, the types of smokeless tobacco formulations, ingredients, and processing methodologies set forth in U.S. Pat. No. 1,376,586 to Schwartz; U.S. Pat. No. 3,696,917 to Levi; U.S. Pat. No. 4,513,756 to Pittman et al.; U.S. Pat. No. 4,528,993 to Sensabaugh, Jr. et al.; U.S. Pat. No. 4,624,269 to Story et al.; U.S. Pat. No. 4,991,599 to Tibbetts; U.S. Pat. No. 4,987,907 to Townsend; U.S. Pat. No. 5,092,352 to Sprinkle, III et al.; U.S. Pat. No. 5,387,416 to White et al.; U.S. Pat. No. 6,668,839 to Williams; U.S. Pat. No. 6,834,654 to Williams; U.S. Pat. No. 6,953,040 to Atchley et al.; U.S. Pat. No. 7,032,601 to Atchley et al.; U.S. Pat. No. 7,694,686 to Atchley et al.; U.S. Pat. No. 7,810,507 to Dube et al.; U.S. Pat. No. 7,819,126 to Strickland et al.; U.S. Pat. No. 7,861,728 to Holton, Jr. et al.; U.S. Pat. No. 7,901,512 to Quinter et al.; U.S. Pat. No. 8,168,855 to Neilsen et al.; U.S. Pat. No. 8,336,557 to Kumar et al.; U.S. Pat. No. 8,469,036 to Strickland et al.; U.S. Pat. No. 8,627,828 to Strickland et al.; U.S. Pat. No. 8,940,344 to Crawford et al.; and U.S. Pat. No. 9,155,772 to Gao et al.; and U.S. Pat. Pub. Nos. 2004/0020503 to Williams; 2007/0062549 to Holton, Jr. et al.; 2008/0029116 to Robinson et al.; 2008/0029117 to Mua et al.; 2008/0173317 to Robinson et al.; 2008/0196730 to Engstrom et al.; 2009/0065013 to Essen et al.; and 2013/0206153 to Beeson et al.; PCT Pub. Nos. WO 04/095959 to Arnarp et al.; and WO 100/134,444 to Atchley; each of which is incorporated herein by reference.


Representative smokeless tobacco products that have been marketed include those referred to as CAMEL Orbs, CAMEL Strips and CAMEL Sticks by R. J. Reynolds Tobacco Company; GRIZZLY moist tobacco, KODIAK moist tobacco, LEVI GARRETT loose tobacco and TAYLOR'S PRIDE loose tobacco by American Snuff Company, LLC; KAYAK moist snuff and CHATTANOOGA CHEW chewing tobacco by Swisher International, Inc.; REDMAN chewing tobacco by Pinkerton Tobacco Co. LP; COPENHAGEN moist tobacco and RED SEAL long cut by U.S. Smokeless Tobacco Company; and Taboka by Philip Morris USA.


Representative types of snuff products, commonly referred to as “snus,” which may comprise pasteurized or heat treated tobacco products, are manufactured in Europe, particularly in Sweden, by or through companies such as Swedish Match AB, Fiedler & Lundgren AB, Gustavus AB, Skandinavisk Tobakskompagni A/S and Rocker Production AB. Snus products available in the U.S.A. have been marketed under the trade names such as CAMEL Snus Frost, CAMEL Snus Original and CAMEL Snus Spice by R. J. Reynolds Tobacco Company. Snus products, such as CAMEL Snus Original, are commonly supplied in small teabag-like pouches. The pouches are typically a nonwoven fleece material, and contain about 0.4 to 1.5 grams of pasteurized tobacco. These products typically remain in a user's mouth for about 10-30 minutes. Unlike certain other smokeless tobacco products, snus products typically do not require expectoration by the user. Other pouch types of smokeless tobacco products include those marketed as COPENHAGEN Pouches, SKOAL Bandits, SKOAL Pouches, REVEL Mint Tobacco Packs by U.S. Smokeless Tobacco Company; and MARLBORO Snus by Philip Morris USA.


Various types of containers for dispensing moistened solid components, particularly components intended for human consumption, are known in the art. Such containers are often characterized by a hand-held size that can be easily stored and transported. For example, snus products have been packaged in tins, “pucks” or “pots” that are manufactured from metal or plastic. See, for example, those types of containers generally disclosed in U.S. Pat. No. 4,098,421 to Foster; U.S. Pat. No. 4,190,170 to Boyd and U.S. Pat. No. 8,440,023 to Carroll et al.; and U.S. Patent Pub. Nos. 2010/0065076 to Bergstrom et al.; 2010/0065077 to Lofgreen-Ohrn et al.; 2012/0024301 to Carroll et al. and 2012/0193265 to Patel et al.; each of which is incorporated by reference herein. Yet other types of containers for smokeless types of tobacco products are set forth in U.S. Pat. No. 8,458,996 to Bried et al.; D574,709 to Crotts et al. and D649,284 to Patel et al.; U.S. Patent Pub. Nos. 2008/0202956 to Welk et al., 2010/0012534 to Hoffman, 2010/0018883 to Patel et al., and 2014/0197054 to Pipes et al.; as well as the various types of containers referenced in U.S. Patent Pub. No. 2013/0206153 to Beeson et al.; each of which is incorporated by reference herein. Further, U.S. Pat. No. 8,567,597 to Gibson et al. discloses a compartment container for snus, and is incorporated herein by reference in its entirety.


A desirable feature for certain containers is the incorporation of child-resistant features that make it difficult for children to open or otherwise access the contents of the container, thereby reducing the risk of poisoning in children via the ingestion of potentially hazardous items. However, such features may increase the cost and complexity of the container and the manufacturing thereof.


BRIEF SUMMARY

Example implementations of the present disclosure are directed to child-resistant containers having a base or body portion and a cover or lid, where the cover, the body portion, or both include structure to make it difficult for a child to separate the cover and the body portion, thereby reducing the risk of children accessing the contents of the container. However, typical adults will have sufficient strength to separate the cover and body portion. In addition, the container may include a visual and/or tactical cue to assist an adult with opening.


The present disclosure includes, without limitation, the following example implementations.


Some example implementations provide a container including a body portion defining an internal space accessible via an opening and a cover configured to securely and removably engage the body portion. The body portion has a bottom wall and a sidewall extending upwardly from a peripheral edge of the bottom wall, where the sidewall includes a primary wall extending along a perimeter of the bottom wall and having an inner surface and an outer surface and an upper rim defining the opening, and a secondary wall spaced inwardly from and at least partially surrounding a portion of the inner surface of the primary wall thereby defining a channel between the primary and secondary walls, where the secondary wall has a first vertical edge, a second vertical edge, a top horizontal edge, and a bottom horizontal edge and the secondary wall is coupled to the primary wall along the first and second vertical edges, thereby defining a top gap between the top horizontal edge of the secondary wall and the primary wall proximate the upper rim and a bottom gap between the bottom horizontal edge of the secondary wall and the primary wall proximate the peripheral edge of the bottom wall, such that a portion of the primary wall flexes relative to the secondary wall upon application of a force thereto (i.e., when depressed). The primary wall returns to an unflexed or neutral position after removal of the force.


Additional example implementations provide a container including a body portion defining an internal space accessible via an opening and a cover configured to securely and removably engage the body portion. The body portion includes a bottom wall and a sidewall extending upwardly from a peripheral edge of the bottom wall, the sidewall extending along a perimeter of the bottom wall and having an inner surface and an outer surface and an upper rim defining the opening, where a portion of the sidewall has a gap extending along a length of the sidewall and between the inner and outer surfaces, such that the gap defines a channel running from an area proximate the upper rim to an area proximate the peripheral edge of the bottom wall, such that the outer surface of the sidewall flexes relative to the inner surface of the sidewall upon application of a force thereto. The sidewall returns to an unflexed or neutral position after removal of the force.


In some example implementations of the container of any preceding example implementation, or any combination of any preceding example implementations, the cover comprises a top wall and a sidewall extending downwardly from and about a peripheral edge of the top wall.


In some example implementations of the container of any preceding example implementation, or any combination of any preceding example implementations, the sidewall of the cover engages with at least a portion of the sidewall of the body portion.


In some example implementations of the container of any preceding example implementation, or any combination of any preceding example implementations, the cover is removable by flexing a portion of the primary wall aligning with the secondary wall inwardly to expose an edge of the sidewall of the cover.


In some example implementations of the container of any preceding example implementation, or any combination of any preceding example implementations, the cover engages the body portion via an interference fit or a snap fit.


In some example implementations of the container of any preceding example implementation, or any combination of any preceding example implementations, an outer surface of the cover sidewall is configured to sit substantially flush with the outer surface of the sidewall of the body portion when engaged.


In some example implementations of the container of any preceding example implementation, or any combination of any preceding example implementations, at least a portion of the cover sidewall and a portion of the body portion sidewall abut when engaged.


In some example implementations of the container of any preceding example implementation, or any combination of any preceding example implementations, the sidewall of the body portion comprises a plurality of secondary walls, each spaced inwardly from and at least partially surrounding a portion of the inner surface of the primary wall, the secondary walls and the primary wall defining a plurality of channels therebetween, wherein each secondary wall comprises a first vertical edge, a second vertical edge, a top horizontal edge, and a bottom horizontal edge and each secondary wall is coupled to the primary wall along their respective first and second vertical edges, thereby defining top gaps between the top horizontal edges of the secondary walls and the primary wall proximate the upper rim and bottom gaps between the bottom horizontal edges of the secondary walls and the primary wall proximate the peripheral edge of the bottom wall, such that the portions of the primary wall flex relative to the plurality of secondary walls upon application of a force thereto.


In some example implementations of the container of any preceding example implementation, or any combination of any preceding example implementations, the secondary walls are spaced equidistant about a perimeter of the body portion.


In some example implementations of the container of any preceding example implementation, or any combination of any preceding example implementations, a plurality of portions of the sidewall each comprise a gap extending along a length of the sidewall and between the inner and outer surfaces, such that each gap defines a channel running from an area proximate the upper rim to an area proximate the bottom wall and the outer surfaces of the plurality of portions of the sidewall flex relative to the inner surface of the sidewall upon application of a force thereto.


In some example implementations of the container of any preceding example implementation, or any combination of any preceding example implementations, the portions of the sidewall comprising a gap are spaced equidistant about a perimeter of the body portion.


In some example implementations of the container of any preceding example implementation, or any combination of any preceding example implementations, the cover further comprises an inner ring extending downwardly from the top wall and spaced inwardly from the sidewall, wherein the cover is configured to provide an interference fit between the cover and the sidewall of the body portion.


In some example implementations of the container of any preceding example implementation, or any combination of any preceding example implementations, the inner ring comprises a plurality of non-contiguous segments.


In some example implementations of the container of any preceding example implementation, or any combination of any preceding example implementations, the cover comprises a top wall, an outer sidewall extending downwardly from a peripheral edge of the top wall, and an inner sidewall or ring extending downwardly from the top wall and spaced inwardly from the outer sidewall, wherein the outer and inner sidewalls define a receptacle configured to engage at least a portion the sidewall of the body portion via an interference fit.


Additional example implementations provide a container comprising a body portion defining an internal space accessible via an opening, the body portion comprising a bottom wall and a sidewall extending upwardly from a peripheral edge of the bottom wall; and a cover configured to securely and removably engage the body portion, the cover comprising a top wall; an outer sidewall extending downwardly from a peripheral edge of the top wall; and an inner sidewall extending downwardly from the top wall and spaced inwardly from the outer sidewall, wherein the outer and inner sidewalls define a receptacle configured to engage at least a portion of the sidewall of the body portion via an interference fit.


In some example implementations of the container of any preceding example implementation, or any combination of any preceding example implementations, the inner sidewall comprises a plurality of non-contiguous segments.


In some example implementations of the container of any preceding example implementation, or any combination of any preceding example implementations, the cover further comprises a plurality of buttresses spaced about an inner perimeter of the inner sidewall and coupled to the top wall.


In some example implementations of the container of any preceding example implementation, or any combination of any preceding example implementations, the buttresses are spaced equidistant about the inner perimeter of the inner sidewall.


In some example implementations of the container of any preceding example implementation, or any combination of any preceding example implementations, the sidewall of the body portion comprises an inner surface and an outer surface and an upper rim defining the opening, a portion of the sidewall of the body portion comprises a gap extending along a length of the sidewall and between the inner and outer surfaces, such that the gap defines a channel running from an area proximate the upper rim to an area proximate the peripheral edge of the bottom wall, such that the outer surface of the sidewall flexes relative to the inner surface of the sidewall upon the application of a force thereto. The sidewall returns to an unflexed or neutral position after removal of the force.


In some example implementations of the container of any preceding example implementation, or any combination of any preceding example implementations, the sidewall of the body portion comprises a primary wall extending along a perimeter of the bottom wall and having an inner surface and an outer surface and an upper rim defining the opening; and a secondary wall spaced inwardly from and at least partially surrounding a portion of the inner surface of the primary wall thereby defining a channel between the primary and secondary walls, wherein the secondary wall comprises a first vertical edge, a second vertical edge, a top horizontal edge, and a bottom horizontal edge and the secondary wall is coupled to the primary wall along the first and second vertical edges, thereby defining a top gap between the top horizontal edge of the secondary wall and the primary wall proximate the upper rim and a bottom gap between the bottom horizontal edge of the secondary wall and the primary wall proximate the peripheral edge of the bottom wall, such that a portion of the primary wall flexes relative to the secondary wall upon the application of a force thereto. The primary wall returns to an unflexed or neutral position after removal of the force.


Additional example implementations provide a method for manufacturing a container comprising providing a body portion according to any one of the example implementations disclosed herein, where the body portion defines an internal space accessible via an opening, and providing a cover configured to engage the body portion so as to cover the opening and enclose the internal space.


Additional example implementations provide a method for manufacturing a container comprising providing a body portion defining an internal space accessible via an opening, the body portion comprising a bottom wall and a sidewall extending upwardly from a peripheral edge of the bottom wall; and providing a cover configured to securely and removably engage the body portion so as to cover the opening and enclose the internal space, the cover comprising a top wall; an outer sidewall extending downwardly from a peripheral edge of the top wall; and an inner sidewall extending downwardly from the top wall and spaced inwardly from the outer sidewall, wherein the outer and inner sidewalls define a receptacle configured to engage at least a portion the sidewall of the body portion via an interference fit.


In some example implementations of the container of any preceding example implementation, or any combination of any preceding example implementations, the cover comprises a top wall; an outer sidewall extending downwardly from a peripheral edge of the top wall; and an inner sidewall extending downwardly from the top wall and spaced inwardly from the outer sidewall, wherein the outer and inner sidewalls define a receptacle configured to engage at least a portion the sidewall of the body portion via an interference fit.


In some example implementations of the container of any preceding example implementation, or any combination of any preceding example implementations, at least one of the body portion or the cover are manufactured via injection molding.


In some example implementations of the container of any preceding example implementation, or any combination of any preceding example implementations, at least one of the body portion or the cover comprises a polypropylene.


These and other features, aspects, and advantages of the present disclosure will be apparent from a reading of the following detailed description together with the accompanying figures, which are briefly described below. The present disclosure includes any combination of two, three, four or more features or elements set forth in this disclosure, regardless of whether such features or elements are expressly combined or otherwise recited in a specific example implementation described herein. This disclosure is intended to be read holistically such that any separable features or elements of the disclosure, in any of its aspects and example implementations, should be viewed as combinable, unless the context of the disclosure clearly dictates otherwise.


It will therefore be appreciated that this Brief Summary is provided merely for purposes of summarizing some example implementations so as to provide a basic understanding of some aspects of the disclosure. Accordingly, it will be appreciated that the above described example implementations are merely examples and should not be construed to narrow the scope or spirit of the disclosure in any way. Other example implementations, aspects and advantages will become apparent from the following detailed description taken in conjunction with the accompanying figures which illustrate, by way of example, the principles of some described example implementations.





BRIEF DESCRIPTION OF THE FIGURES

Having thus described aspects of the disclosure in the foregoing general terms, reference will now be made to the accompanying figures, which are not necessarily drawn to scale, and wherein:



FIG. 1A is a schematic perspective view of a child resistant container for holding a tobacco-containing material according to some example implementations of the present disclosure;



FIG. 1B is a schematic exploded perspective view of the child resistant container of FIG. 1A according to some example implementations of the present disclosure;



FIG. 2 is a schematic cross-sectional view of the container of FIG. 1A taken at line A-A in FIG. 1A according to some example implementations;



FIG. 3 is a schematic cross-sectional perspective view of the body portion of the container of FIG. 1A taken at line B-B in FIG. 2 according to some example implementations;



FIGS. 4A-4D are schematic top, side, front, and bottom views of the body portion of FIG. 3 according to some example implementations;



FIGS. 5A-5G are pictorial representations of alternative body portions for a container according to some example implementations;



FIGS. 6A and 6B are pictorial bottom perspective views and FIGS. 6C and 6D are corresponding cross-sectional views taken at lines E-E and F-F of FIGS. 6A and 6B, respectively, illustrating the operation of a child resistant container according to some example implementations of the present disclosure;



FIG. 7 is a schematic exploded perspective view of another child resistant container for holding a tobacco-containing material according to some example implementations of the present disclosure;



FIG. 8 is a schematic cross-sectional view of the container of FIG. 7 taken at line C-C in FIG. 7 according to some example implementations;



FIGS. 9A and 9B are schematic bottom perspective views of two different cover configurations for the container of FIG. 7 according to some example implementations;



FIG. 10 is an enlarged pictorial cross-sectional view illustrating the engagement the cover and a body portion of the child resistant container of FIG. 7 according to some example implementations of the present disclosure;



FIG. 11 is a schematic exploded perspective view of another child resistant container for holding a tobacco-containing material according to some example implementations of the present disclosure;



FIG. 12 is a schematic perspective view of the body portion of the container of FIG. 11 according to some example implementations of the present disclosure; and



FIG. 13 is an enlarged pictorial cross-sectional view illustrating the engagement the cover and a body portion of the child resistant container of FIG. 11 taken at line D-D in FIG. 11 according to some example implementations of the present disclosure.





DETAILED DESCRIPTION

Some implementations of the present disclosure will now be described more fully hereinafter with reference to the accompanying figures, in which some, but not all implementations of the disclosure are shown. Indeed, various implementations of the disclosure may be embodied in many different forms and should not be construed as limited to the implementations set forth herein; rather, these example implementations are provided so that this disclosure will be thorough and complete, and will fully convey the scope of the disclosure to those skilled in the art. Like reference numerals refer to like elements throughout.


Unless specified otherwise or clear from context, references to first, second or the like should not be construed to imply a particular order. A feature described as being above another feature (unless specified otherwise or clear from context) may instead be below, and vice versa; and similarly, features described as being to the left of another feature else may instead be to the right, and vice versa. Also, while reference may be made herein to quantitative measures, values, geometric relationships or the like, unless otherwise stated, any one or more if not all of these may be absolute or approximate to account for acceptable variations that may occur, such as those due to engineering tolerances or the like.


As used herein, unless specified otherwise or clear from context, the “or” of a set of operands is the “inclusive or” and thereby true if and only if one or more of the operands is true, as opposed to the “exclusive or” which is false when all of the operands are true. Thus, for example, “[A] or [B]” is true if [A] is true, or if [B] is true, or if both [A] and [B] are true. Further, the articles “a” and “an” mean “one or more,” unless specified otherwise or clear from context to be directed to a singular form. Furthermore, it should be understood that unless otherwise specified, the terms “data,” “content,” “digital content,” “information,” and similar terms may be at times used interchangeably.


Example implementations of the present disclosure are generally directed to containers used to store various solid products, but are particularly well-suited for products designed for oral consumption. Exemplary consumable products that are often packaged in such containers include a wide variety of consumer products, including tobacco products of the type that have a smokeless form. Various forms of suitable smokeless tobacco products are those types products set forth and described generally in U.S. Patent Pub. Nos. 2012/0193265 to Patel et al. and 2013/0206153 to Beeson et al.; which are incorporated by reference herein. Of particular interest, are exemplary tobacco products that include tobacco formulations in a loose form, such as moist snuff products. Other exemplary types of smokeless tobacco products include the types of products set forth in U.S. Pat. No. 2012/0024301 to Carroll et al., the disclosure of which is incorporated by reference herein. Exemplary loose form tobacco used with the containers of the present disclosure may include tobacco formulations associated with, for example, commercially available GRIZZLY moist tobacco products and KODIAK moist tobacco products that are marketed by American Snuff Company, LLC. Exemplary snus forms of tobacco products are commercially available as CAMEL Snus by R. J. Reynolds Tobacco Company.


The shape of the outer surface of the containers of the disclosure can vary. Although the container embodiments illustrated in the drawings have certain contours and shapes, containers with other exterior and interior surface designs also can be suitably adapted and used. For example, the sides or edges of the containers of the disclosure can be flattened, rounded, or beveled, and the various surfaces or edges of the container exterior can be concave or convex. Further, the opposing sides, ends, or edges of the container can be parallel or non-parallel such that the container becomes narrower in one or more dimensions. See, for example, the types of containers, components, component arrangements and configurations, and constructions thereof set forth in U.S. Pat. No. 8,458,996 to Bried et al., U.S. Pat. No. 8,910,781 to Pipes et al., and D649,284 to Patel et al.; U.S. Patent Pub. No. 2010/0018883 to Patel et al; as well as the various types of containers referenced in U.S. Patent Pub. No. 2013/0206153 to Beeson et al.; each of which is incorporated by reference herein.


The dimensions of the containers described herein can vary without departing from the disclosure. However, in certain embodiments, the containers can be described as having a cylindrical shape suitable for handheld manipulation and operation. Exemplary dimensions for such handheld generally cylindrical embodiments include diameters in the range of about 50 mm to about 100 mm, and more typically about 60 mm to about 80 mm. Exemplary wall thicknesses include the range of about 0.5 mm to about 1.5 mm, and more typically about 0.8 mm to about 1.4 mm. Exemplary depths for handheld container embodiments of the present disclosure range from about 5 mm to about 50 mm, more typically about 8 mm to about 30 mm, and most often about 15 mm to about 25 mm. An exemplary general outward appearance of the container is comparable in many regards to that which has been used for commercially available GRIZZLY and KODIAK products that are marketed by American Snuff Company, LLC.


Further, the size of the containers described herein may be changed. For example, the containers may be sized for promotional purposes by providing either increased or decreased dimensions. For example, the dimensions of the containers may be scaled upwardly or downwardly by certain multipliers. By way of further example, the dimensions of the container may be scaled upwardly or downwardly by a multiple of about 1 to about 10 times. In this regard, whereas a conventional container according to embodiments of the present disclosure may be configured to store about 1.2 ounces of a tobacco-containing material, an oversized container may be configured to store, for example, 2.4 ounces or 7.2 ounces of the tobacco containing material. In specialty markets the containers may define a larger cylindrical configuration having a diameter from about 100 mm to about 125 mm (e.g., about 114 mm) and a depth from about 30 mm to about 50 mm (e.g., about 38 mm). Accordingly, the dimensions and capacities disclosed herein are provided for example purposes only and may be modified to suit particular purposes.



FIGS. 1A, 1B, and 2, depict a first example implementation of a container 100 in accordance with one or more embodiments of the disclosure, with FIGS. 4A-4D depicting the base portion 102 in greater detail. The container 100 includes a base or body portion 102 that is typically configured to hold the consumer product and a lid or cover 104 configured to be securely, but removably, coupled to the body portion 102. As shown in FIG. 1A, the cover 104 and body portion 102 abut one another when engaged and their respective outer surfaces are substantially flush with one another, which makes it difficult to separate the two parts. In some implementations, the cover 104 is secured to the body portion 102 via a snap or interference fit, which provides additional resistance to separating the two parts. The engagement of the cover 104 and body portion 102 are shown in greater detail and described with respect to FIG. 2 below.


The body portion 102 includes a bottom wall 108 and a sidewall 110 extending upwardly from, and about, a peripheral edge 106 (506 in FIGS. 7 and 606 in FIG. 13) of the bottom wall 108. The sidewall 110 has a top edge or upper rim 112 (512 in FIGS. 10 and 612 in FIG. 11) that in turn defines an opening 114 through which the contents of the container 100 may be accessed. The material of construction of the body portion 102 may vary to suit a particular application. Exemplary materials include metal, synthetic plastic materials, and cellulosic materials (e.g., cardboard). Polymeric materials that can be extruded and/or molded into desired shapes are typically utilized, such as polypropylene, polyethylene, polystyrene, polyamide, and the like. The body portion 102 may be manufactured via injection molding, blow molding, thermoforming, extrusion, bonding, machining, or combinations thereof, as known to a person of skill in the art.


The cover 104 includes a top wall 116 (or outer lid 116a depending on configuration) (616 and 616a in FIG. 11) and a sidewall 118 that extends downwardly, and about, a peripheral edge 120 of the top wall 116. In some implementations, the top wall 116 spans the entire area bounded by its peripheral edge 120, while in other configurations, the top wall 116 does not span the entire area and forms a frame for accepting an outer lid 116a secured thereto, as shown in FIG. 1B. In some implementations, the cover 104 includes a recess 122 (522 in FIG. 7) or similar structure that may, for example, assist a user in handling the container 100 and/or manipulating the cover 104. For example, the recess 122 may allow a user to pry open the outer lid 116a (e.g., by using a tool or finger nail) to access an internal space 150 between the top wall 116 and outer lid 116a. The internal space 150 (550 in FIG. 8) may be used to hold or store waste or spent materials. In some implementations, the cover 104 may be made of the same materials and by the same processes as the body portion 102. In certain implementations, the cover 104 may be formed from a metallic material, such as, for example, aluminum or tinplate. In implementations incorporating the outer lid 116a, it may be manufactured separately from and of a different material than the remainder of the cover 104 to, for example, provide labeling or other indicia or to serve an aesthetic purpose.



FIGS. 3 and 4A-4D depict the body portion 102 in greater detail. The bottom wall 108 and sidewall 110 define an internal space 140 (540 in FIG. 8), which may be accessible via the opening 114 when the cover 104 is removed therefrom. The internal space 140 of the body portion 102 may be configured to receive a tobacco-containing material, which may comprise any of the various tobacco-containing materials described herein. While the sidewall 110 depicted in the figures is a single, contiguous circular wall, the sidewall 110 may comprise multiple wall portions as would be necessary, for example, if the container 100 had a non-cylindrical shape (e.g., rectangular, octagonal, etc.). The sidewall 110 includes at least one flex feature 124 that assists in separating the cover 104 and body portion 102, but provides sufficient resistance to the cover 104 and body portion 102 being separated by a child.


As shown in FIGS. 3 and 4A, the sidewall 110 extends around the entire perimeter of the body portion 102 and has an inner surface 110a and an outer surface 110b. The flex feature 124 may be formed in the sidewall 110 in different manners. In one implementation, the sidewall 110 is the primary wall and the body portion 102 includes at least one secondary wall 126. The secondary wall 126 (526 in FIG. 8) includes first and second vertical edges 128a, 128b and top and bottom horizontal edges 130a, 130b. The vertical edges 128a, 128b join with the inner surface 110a of the sidewall 110, such that the secondary wall 126 extends inwardly from the inner surface 110a, partially surrounds a portion of the primary sidewall 110, and defines a channel 132 (532 in FIG. 8) between the primary and secondary walls. The bottom horizontal edge 130b of the secondary wall 126 joins with the bottom wall 108 at its peripheral edge 106. The channel 132 extends essentially the entire height of the body portion 102 with an upper opening of the channel 132 disposed proximate the top rim 112 of the body portion and a lower opening of the channel 132 disposed proximate the peripheral edge of the bottom wall 108.


The channel configuration allows the primary sidewall 110 to be flexed inwardly (i.e., depressed towards the secondary wall 126) upon application of a force to the outer surface 110b, thereby providing access to a bottom edge 138 of the cover 104 to assist in removing the cover 104. See FIGS. 2 and 6 for additional details regarding the removal of the cover 104. The amount of force required may vary to suit a particular application and may depend on, for example, the wall thicknesses, materials of construction, and/or the size of the channel 132 or channel openings. The container 100 may be configured to meet any minimum force required to make the container child proof, such as, for example, materials of construction and number of and location of certain structural features. Additionally, although only one flex feature 124 is shown in FIGS. 3 and 4, essentially any number of flex features 124 may be included and disposed about the perimeter of the body portion 102, for example, they may be spaced equidistant about the body portion. See FIG. 5A, which depicts three flex features 424 disposed about 120° apart about the perimeter of a body portion 402. Furthermore, the size, shape, and visibility of the channel openings may vary to suit a particular application. For example, the height of the sidewall 110 at the flex feature 124 may be reduced so that the channel opening is larger and more readily visible to a user to, for example, provide a visible clue to the location of the flex feature 124 when the cover 104 is engaged with the body portion 102. See, for example, FIGS. 5B-5D, which depict three different sidewall heights at the flex feature 124, 224, 324. Specifically, as the height (or overall vertical length of the sidewall) is reduced, the openings of the channel 132, 232, 332 are increased, thereby rendering the flex feature 124, 224, 324 more visible to a user. In addition, a tactile feature may be included on the flex feature, such as, for example, a protuberance or other minimally raised structure that a user can feel when gripping the container. Additionally or alternatively, the side wall of the body portion 102, 202, 302 may include a structure that provides an audible cue when engaged, for example, a force is applied.


In another implementation of a flex feature 124, the sidewall 110 is a continuous wall having the aforementioned inner and outer surfaces 110a, 110b and including one or more gaps therebetween and extending along a length of the sidewall 110, thereby forming the channel(s) 132. Similar to the flex feature 124 described above the channel 132 extends essentially the entire height of the body portion 102 with an upper gap or opening of the channel 132 disposed proximate the upper rim 112 of the body portion and a lower gap or opening of the channel 132 disposed proximate the peripheral edge of the bottom wall 108.


Referring to FIGS. 2 and 6, the engagement between the body portion 102 and cover 104 are clearly depicted. As shown and previously described, the body portion 102 includes a bottom wall 108 and a sidewall 110 extending upwardly therefrom and defining a flex feature 124, and the cover 104 includes a top wall 116 and a sidewall 118 extending downwardly therefrom. An upper region of the body portion sidewall 110 is configured to engage with at least a portion of the cover sidewall 118. As shown, an inner surface 118a of the cover sidewall 118 engages with the outer surface 110b of the body portion sidewall 110 via an interference or snap fit. In some implementations, the sidewalls 110, 118 include mating structure 134 to enable the snap fit. The bottom edge 138 of the cover sidewall 118 abuts against a top edge of or recess 136 (536 in FIG. 8) in the body portion sidewall 110 and, in some embodiments, the outer surface 118b of the cover 104 sits flush with or slightly inward of the outer surface 110b of the sidewall 110 to make it difficult to engage with and remove the cover 104 from the body portion 102. See FIG. 6A.


To remove the cover 104, a user applies a force (F) to the outer surface 110b of the sidewall (i.e., depresses the sidewall 110) at the flex feature 124, thereby exposing the bottom edge 138 of the cover sidewall 118, as shown in FIG. 6B. This allows the user to apply a force to the bottom edge 138 (e.g., via the use of a tool or finger nail) sufficient to overcome the holding force of the interference or snap fit, thereby separating the cover 104 from the body portion 102. For example, a fingernail can be used to apply the force (F) and, in some cases, inserted into the gap of the flex feature 124 and/or into a space behind the sidewall 118 of the cover 104 to remove the cover/lid while the force is applied. The user can release (i.e., remove the applied force) the flex feature 124 and the body portion 102 returns to its neutral/normal or unflexed configuration. The cover 104 can be reattached to the body portion 102 by pushing the cover back onto the body portion with sufficient force to reengage the interference or snap fit, which should be evident once the cover and body portion are back in an abutting configuration as described above.



FIGS. 7 and 8 depict another example implementation of a container 500 in accordance with one or more embodiments of the disclosure, with FIGS. 9A, 9B, and 10 depicting the cover 504 in greater detail. As shown, the container 500 includes the same or a substantially similar body portion 502 to that described above. Accordingly, the body portion 502 will not be discussed in any detail with respect to this implementation of the container 500.


Generally, the cover 504 of FIG. 7 is similar to the cover 102 of FIG. 1B; however, cover 504 includes additional structure to provide further resistance to opening the container 500 by a child. Specifically, the modified cover 504 is configured to increase the rigidity of the cover and the amount of opening force required to remove the cover 504 from the body portion 502 even after the flex feature 524 is engaged.


As shown in FIGS. 7-10, the cover 504, 504′ includes a top wall 516, 516′ (or outer lid 516a depending on configuration) and a sidewall 518, 518′ that extends downwardly, and about, a peripheral edge 520, 520′ of the top wall 516, 516′. In some implementations, the top wall 516, 516′ spans the entire area bounded by its peripheral edge 520, 520′, while in other configurations, the top wall 516, 516′ does not span the entire area and forms a frame for having an outer lid 516a secured thereto. In some implementations, the cover 504, 504′ may be made of the same materials and by the same processes as those described above.



FIGS. 9A and 9B depict two different implementations of the additional child-resistant feature in greater detail. Both covers 504, 504′ include an additional inner ring or sidewall 542, 542′ extending downwardly from the top wall 516, 516′ (shown upwardly extending in the figures because they are bottom perspective views). The inner ring 542, 542′ is spaced inwardly of the sidewall 518, 518′ and configured to define a receptacle 544, 544′ therebetween that provides for an interference fit with the sidewall 510 of the body portion 502. The inner ring 542, 542′ also provides additional rigidity to the overall cover 504, which may further provide resistance to its removal from the body portion. In some implementations, the cover 504, 504′ and body portion 502, engage via a snap fit and the additional rigidity of the inner ring 542, 542′ further strengthens that engagement.


In various implementations, the inner ring or sidewall 542, 542′ has a height greater than the height of the sidewall 518, 518′ (i.e., the inner ring extends further from the top cover than the sidewall), however the height of the inner ring 542, 542′ may be about the same or even less than the height of the sidewall 518, 518′ to suit a particular application. In some implementations, the height of the inner ring may vary along its length. Additionally, the cover may include one or more buttresses 548, 548′ (or similar structure) spaced about an inner perimeter of the inner ring 542, 542′ and coupled to the top wall 516, 516′. The buttresses 548, 548′ may be spaced equidistant about the inner perimeter of the inner ring.


As shown in FIG. 9B, the inner ring 542′ is a single continuous wall; however, the inner ring may comprise a plurality of contiguous walls to accommodate other (e.g., non-circular) shapes. As shown in FIG. 9A, however, the inner ring 542 may include a plurality of segments 542a, 542b spaced relative to and about the sidewall 518. The length and the number of the segments 542a, 542b, and the spaces 546 therebetween, may vary to suit a particular application, for example, the size and shape of the container and the desired opening force. In some implementations, the segments 542a, 542b are non-contiguous, but in others, the segments may be defined by recesses or cut-outs in the inner ring 542′ depicted in FIG. 9B. In some implementations, these recesses or spaces 546 between segments may be disposed on opposite sides of the cover to provide assistance in gripping the cover 504 and aiding in its removal from the body portion by an adult hand.



FIG. 10 is an enlarged cross-sectional view of a portion of the container that provides a better view of the cover 504 and body portion 502 engagement. As shown, the cover 504 engages with the body portion 502 via insertion of the body portion sidewall 510 into the receptacle 544 defined by the sidewall 518 and inner ring 542 of the cover 504. In some implementations, the cover engages the sidewall 510 with an interference or frictional fit. However, as shown in FIG. 10, the container 500 includes a snap fit mechanism 534 and the inner ring 542 provides resistance to the inward flexing of the top portion of the body portion sidewall 510, thereby requiring additional force to remove the cover, even where the flex feature 524 (not shown in FIG. 10) is used to expose the edge 538 of the cover 504.



FIG. 11 depicts another example implementation of a container 600 in accordance with one or more embodiments of the disclosure, with FIG. 12 depicting the body portion 602 in greater detail. As shown, the container 600 includes the same or a substantially similar cover 604 to that described above. Accordingly, the cover 604 will not be discussed in any detail with respect to this implementation of the container 600.



FIG. 12 depicts the body portion 602 in greater detail. The bottom wall 608 and sidewall 610 define an internal space 640, which may be accessible via the opening 614 when the cover 604 is removed therefrom. The internal space 640 of the body portion 602 may be configured to receive a tobacco-containing material, which may comprise any of the various tobacco-containing materials described herein. While the sidewall 610 depicted in the figures is a single, contiguous circular wall, the sidewall 610 may comprise multiple contiguous wall portions as would be necessary, for example, if the container 600 had a non-cylindrical shape (e.g., rectangular, octagonal, etc.). In some implementations, the body 602 may be made of the same materials and by the same processes as those described above.



FIG. 13 is an enlarged cross-sectional view of a portion of the container that provides a better view of the cover 604 and body portion 602 engagement. As shown, the cover 604 engages with the body portion 602 via insertion of the body portion sidewall 610 into the receptacle 644 defined by the sidewall 618 and inner ring 642 of the cover 604. In some implementations, the cover engages the sidewall 610 with an interference or frictional fit. However, as shown in FIG. 12, the container 600 includes a snap fit mechanism 634 and the inner ring 642 provides resistance to the inward flexing of the top portion of the body portion sidewall 610, thereby requiring additional force to remove the cover.


In various implementations of the containers described herein, the containers may include additional features, such as a barrier film or membrane configured to cover the opening in the body portion, thereby enclosing the internal space. By way of example, the barrier film may comprise a foil or a film (e.g., a polymer film) and/or may contain a material selected and configured to be substantially fluid-impervious so as to prevent the flow of fluids from the internal space to an external environment or allow the transmission of gasses therethrough (e.g., diffusion of oxygen into the internal space) to maintain the freshness of the tobacco-containing material by supporting the health of aerobic microbes within the tobacco-containing material. Another feature that may be included is a vent mechanism disposed in the body portion, the cover, or both to help regulate an internal pressure or other environmental condition within the container.


Many modifications and other implementations of the disclosure will come to mind to one skilled in the art to which this disclosure pertains having the benefit of the teachings presented in the foregoing descriptions and the associated figures. Therefore, it is to be understood that the disclosure is not to be limited to the specific implementations disclosed herein and that modifications and other implementations are intended to be included within the scope of the appended claims. Although specific terms are employed herein, they are used in a generic and descriptive sense only and not for purposes of limitation.

Claims
  • 1. A container comprising: a body portion defining an internal space accessible via an opening, the body portion comprising a bottom wall and a sidewall extending upwardly from a peripheral edge of the bottom wall, wherein the sidewall comprises: a primary wall extending along a perimeter of the bottom wall and having an inner surface and an outer surface and an upper rim defining the opening; anda secondary wall spaced inwardly from and at least partially surrounding a portion of the inner surface of the primary wall thereby defining a channel between the primary and secondary walls, wherein the secondary wall comprises a first vertical edge, a second vertical edge, a top horizontal edge, and a bottom horizontal edge and the secondary wall is coupled to the primary wall along the first and second vertical edges, further defining the channel between the primary wall and the secondary wall and extending from the top horizontal edge of the secondary wall and the primary wall proximate the upper rim and the bottom horizontal edge of the secondary wall and the primary wall proximate the peripheral edge of the bottom wall, such that a portion of the primary wall flexes relative to the secondary wall upon application of a force thereto; anda cover configured to securely and removably engage the body portion, wherein the cover comprises: a top wall;a cover sidewall extending downwardly from and about a peripheral edge of the top wall; andan inner ring extending downwardly from the top wall and spaced inwardly from the cover sidewall, wherein an outer surface of the inner ring is configured to engage the inner surface of the primary wall.
  • 2. The container of claim 1, wherein the inner ring and the cover sidewall define a receptacle configured to engage at least a portion the sidewall of the body portion via an interference fit or a snap fit.
  • 3. The container of claim 1, wherein the primary wall returns to an unflexed position after removal of the force.
  • 4. The container of claim 1, wherein the cover sidewall is configured to engage the outer surface of the primary wall.
  • 5. The container of claim 1, wherein the cover is removable by flexing the portion of the primary wall aligning with the secondary wall inwardly to expose an edge of the cover sidewall.
  • 6. The container of claim 1, wherein an outer surface of the cover sidewall is configured to sit flush with the outer surface of the primary wall of the body portion when engaged.
  • 7. The container of claim 6, wherein at least a portion of the cover sidewall and a portion of the body portion sidewall abut when engaged.
  • 8. The container of claim 1, wherein the secondary wall comprises a plurality of secondary walls, each spaced inwardly from and at least partially surrounding respective portions of the inner surface of the primary wall, each one of the plurality of secondary walls and each of the respective portions of the inner surface of the primary wall defining a channel therebetween, wherein each one of the plurality of secondary walls comprises a first vertical edge, a second vertical edge, a top horizontal edge, and a bottom horizontal edge and each one of the plurality of secondary walls is coupled to the primary wall along their respective first and second vertical edges, further defining the channels between the respective portions of the primary wall and the secondary walls and extending from the top horizontal edges of the secondary walls and the respective portions of the primary wall proximate the upper rim and the bottom horizontal edge of the secondary walls and the respective portions of the primary wall proximate the peripheral edge of the bottom wall, such that such that the respective portions of the primary wall flex relative to the plurality of secondary walls upon application of the force thereto.
  • 9. The container of claim 8, wherein the plurality of secondary walls are spaced equidistant about a perimeter of the body portion.
  • 10. The container of claim 1, wherein the inner ring comprises a plurality of non-contiguous segments.
US Referenced Citations (463)
Number Name Date Kind
197760 Brewer Dec 1877 A
1292935 Walsh Jan 1919 A
1485052 Reutter Feb 1924 A
1634569 Bray Jul 1927 A
2504850 Lermer Apr 1950 A
2722328 Bell Nov 1955 A
2752060 Martin Jun 1956 A
2827193 Martin Mar 1958 A
2837261 Stenger Jun 1958 A
2851191 Semsch Sep 1958 A
2889958 Af Ekenstam et al. Jun 1959 A
2917162 Horland Dec 1959 A
2947431 Haynes Aug 1960 A
2994447 Haynes Aug 1961 A
3006340 Meshberg Oct 1961 A
3019931 Elbert Feb 1962 A
3027034 Christian Mar 1962 A
3050219 Sagarin et al. Aug 1962 A
3065846 Amick Nov 1962 A
3071271 Thomas Jan 1963 A
3091367 Fredrickson May 1963 A
3101856 Whiteman, Jr. Aug 1963 A
3129834 Kimball Apr 1964 A
3130848 Chancellor Apr 1964 A
3130862 Lab Apr 1964 A
3141570 Englesson et al. Jul 1964 A
3173565 Alton, V Mar 1965 A
3175853 Gilbertson Mar 1965 A
3185333 Sharp May 1965 A
3199489 Geigy et al. Aug 1965 A
3200979 Powers Aug 1965 A
3219220 Hakim Nov 1965 A
3233769 Jessop Feb 1966 A
3240324 Braun Mar 1966 A
3261490 Gonsalves et al. Jul 1966 A
3276573 Kaufman et al. Oct 1966 A
3290856 Rumberger Dec 1966 A
3292293 Giampiero et al. Dec 1966 A
3302775 Finkelston, Jr. et al. Feb 1967 A
3308979 Hailes Mar 1967 A
3319827 Lalin et al. May 1967 A
3323688 Sher et al. Jun 1967 A
3324996 Jordt Jun 1967 A
3334763 Grimm et al. Aug 1967 A
3343709 Henderson et al. Sep 1967 A
3349935 Cochin Oct 1967 A
3355067 Martin et al. Nov 1967 A
3360147 Schaefer Dec 1967 A
3362530 Lab Jan 1968 A
3365088 Wiser et al. Jan 1968 A
3376991 Deaver Apr 1968 A
3393816 Grimm Jul 1968 A
3395642 Foster et al. Aug 1968 A
3398852 Katz Aug 1968 A
3399796 Maurice et al. Sep 1968 A
3402842 Millian Sep 1968 A
3402850 Barton et al. Sep 1968 A
3403803 Markowitz Oct 1968 A
3410460 Musher Nov 1968 A
3419137 Walck, III Dec 1968 A
3432058 Burgess Mar 1969 A
3441159 Wiser et al. Apr 1969 A
3445022 Cilluffo May 1969 A
3451576 Lewis Jun 1969 A
3454194 Becker Jul 1969 A
3469726 Slack et al. Sep 1969 A
3527190 Huck Sep 1970 A
3608762 Fitzgerald Sep 1971 A
3696917 Levi Oct 1972 A
3830393 Schaefer Aug 1974 A
3895737 Phillips Jul 1975 A
3968871 Briscoe Jul 1976 A
4126224 Laauwe et al. Nov 1978 A
4219116 Borkan Aug 1980 A
4254871 Poore Mar 1981 A
4298125 Berghahn et al. Nov 1981 A
4364488 Anjou et al. Dec 1982 A
4375858 Shah et al. Mar 1983 A
4444326 Musel Apr 1984 A
4511032 Bush Apr 1985 A
4561544 Reeve Dec 1985 A
4611727 Graff Sep 1986 A
4746008 Heverly et al. May 1988 A
4759455 Wilson Jul 1988 A
4787526 Pehr Nov 1988 A
4826026 Gach et al. May 1989 A
4833819 Sherman May 1989 A
4890742 Allison Jan 1990 A
4940167 Fillmore et al. Jul 1990 A
5019125 Esslinger et al. May 1991 A
5033634 Hartsig et al. Jul 1991 A
5080222 McNary Jan 1992 A
5082137 Weinstein Jan 1992 A
5150793 Tannenbaum Sep 1992 A
5174471 Kozlowski et al. Dec 1992 A
5249676 Ashcraft et al. Oct 1993 A
5275291 Sledge Jan 1994 A
5323907 Kalvelage Jun 1994 A
5325968 Sowden Jul 1994 A
5346069 Intini Sep 1994 A
5356017 Rohr et al. Oct 1994 A
5411160 Goulet May 1995 A
5451437 Insley et al. Sep 1995 A
5586671 Thomas et al. Dec 1996 A
5657901 Farside Aug 1997 A
5740938 Hofmann et al. Apr 1998 A
5782359 McAllister et al. Jul 1998 A
5816441 Farside Oct 1998 A
5862935 Dubois Jan 1999 A
5873482 Conti Feb 1999 A
5899348 Konefal et al. May 1999 A
5909822 George et al. Jun 1999 A
5915560 George et al. Jun 1999 A
5979680 Farside Nov 1999 A
6021901 Wolfe Feb 2000 A
6047829 Johnstone et al. Apr 2000 A
6095364 Dickie et al. Aug 2000 A
6098835 DeJonge Aug 2000 A
6146729 Nihda Nov 2000 A
6170710 Suffa Jan 2001 B1
6173838 Brozell Jan 2001 B1
6286520 Lin Sep 2001 B1
6349831 Buss Feb 2002 B1
6375956 Hermelin et al. Apr 2002 B1
6394275 Paliotta et al. May 2002 B1
6564967 Stringfield et al. May 2003 B1
6681935 Lewis Jan 2004 B1
6997320 Kancsar et al. Feb 2006 B1
D625178 Bailey et al. Oct 2010 S
D631353 Gelardi et al. Jan 2011 S
D631354 Gelardi et al. Jan 2011 S
D631747 Gelardi et al. Feb 2011 S
7878324 Bellamah et al. Feb 2011 B2
D638297 Gelardi et al. May 2011 S
7946450 Gelardi et al. May 2011 B2
D639162 Gelardi et al. Jun 2011 S
D639163 Gelardi et al. Jun 2011 S
8033425 Gelardi Oct 2011 B2
8066123 Gelardi Nov 2011 B2
8087540 Bailey et al. Jan 2012 B2
8096411 Bailey et al. Jan 2012 B2
8117807 Bellamah et al. Feb 2012 B2
D658377 Corwin et al. May 2012 S
D663943 Althorpe et al. Jul 2012 S
D667301 Jones et al. Sep 2012 S
D667302 Jones et al. Sep 2012 S
D667303 Jones et al. Sep 2012 S
D667304 Jones et al. Sep 2012 S
D673848 Bailey et al. Jan 2013 S
D674688 Loftin et al. Jan 2013 S
8353421 Rosazza et al. Jan 2013 B2
8360235 Gibson Jan 2013 B2
D675516 Horton et al. Feb 2013 S
D676321 Jones et al. Feb 2013 S
D677163 Jones et al. Mar 2013 S
D677164 Jones et al. Mar 2013 S
D678067 Jones et al. Mar 2013 S
8393465 Clark et al. Mar 2013 B2
8397945 Gelardi et al. Mar 2013 B2
8413832 Mazurkiewicz et al. Apr 2013 B2
8458996 Bried et al. Jun 2013 B2
D687300 Jones et al. Aug 2013 S
D688938 Bailey et al. Sep 2013 S
D689772 Jones et al. Sep 2013 S
8540113 Bailey Sep 2013 B2
D690588 Pipes et al. Oct 2013 S
D692298 Pipes et al. Oct 2013 S
8556070 Bried et al. Oct 2013 B2
D702765 Williams Apr 2014 S
8701881 Gibson et al. Apr 2014 B2
D704050 Pipes et al. May 2014 S
D709953 Williams Jul 2014 S
8794434 Scatterday et al. Aug 2014 B2
8869980 Berggren Oct 2014 B2
8881896 Gibson et al. Nov 2014 B2
8910781 Pipes et al. Dec 2014 B2
8915362 Erickson et al. Dec 2014 B2
D727723 Pipes et al. Apr 2015 S
D727724 Pipes et al. Apr 2015 S
9010570 Gelardi et al. Apr 2015 B2
9016512 Ichikawa et al. Apr 2015 B2
9032969 Sinclair, Jr. May 2015 B1
9072320 Coatney et al. Jul 2015 B2
9108784 Pipes et al. Aug 2015 B2
9131761 Kalyanpur et al. Sep 2015 B2
9248935 Bailey et al. Feb 2016 B2
9321568 Gelardi et al. Apr 2016 B2
9346594 Pipes et al. May 2016 B2
9445631 Patel et al. Sep 2016 B1
9468233 Macko et al. Oct 2016 B2
9493291 Pipes et al. Nov 2016 B2
9497992 Evans Nov 2016 B2
9533803 Giraud Jan 2017 B1
9538785 Loos et al. Jan 2017 B2
9717272 Patel et al. Aug 2017 B2
9731876 Giraud et al. Aug 2017 B1
9795165 Bried et al. Oct 2017 B2
9938042 Anav et al. Apr 2018 B1
10076753 Yi Sep 2018 B2
10285439 Macko et al. May 2019 B2
10306921 Hermans Jun 2019 B2
10463075 Beardsall Nov 2019 B2
10548347 Playford Feb 2020 B2
D885919 Beardsall Jun 2020 S
10986859 Gerardi et al. Apr 2021 B2
11076640 Bjoerkholm Aug 2021 B2
11097872 Evans Aug 2021 B2
11291237 Rushforth et al. Apr 2022 B2
20020100487 St. Charles et al. Aug 2002 A1
20020162768 Bolnick et al. Nov 2002 A1
20020175137 Rousselet Nov 2002 A1
20030015438 Huffman et al. Jan 2003 A1
20030085262 Evans et al. May 2003 A1
20030102321 Maietta Jun 2003 A1
20030183551 Hulick et al. Oct 2003 A1
20030209558 Cross Nov 2003 A1
20040016763 Hilliard Jan 2004 A1
20040035740 Paliotta et al. Feb 2004 A1
20040035876 Lo et al. Feb 2004 A1
20040050748 Ehrlund Mar 2004 A1
20040055613 Horian Mar 2004 A1
20040074917 McHutchinson et al. Apr 2004 A1
20040089668 Lambelet et al. May 2004 A1
20040108322 Maietta et al. Jun 2004 A1
20040111836 Agler et al. Jun 2004 A1
20040159625 Kwon Aug 2004 A1
20040168945 Houze et al. Sep 2004 A1
20040173497 Kancsar et al. Sep 2004 A1
20040178112 Flynn et al. Sep 2004 A1
20040181195 Bennwik et al. Sep 2004 A1
20040187882 Henrikus et al. Sep 2004 A1
20040188311 Paliotta et al. Sep 2004 A1
20040188313 Tedham et al. Sep 2004 A1
20040256277 Gedanke Dec 2004 A1
20050011773 Intini Jan 2005 A1
20050172964 Anderson et al. Aug 2005 A1
20050183981 Gelardi Aug 2005 A1
20050205598 Gelardi et al. Sep 2005 A1
20050274643 Arnold et al. Dec 2005 A1
20060086640 Leslie et al. Apr 2006 A1
20060124658 Coe et al. Jun 2006 A1
20060131205 Marcus et al. Jun 2006 A1
20060180604 Ginsberg et al. Aug 2006 A1
20060231453 Shilajeet et al. Oct 2006 A1
20060283721 Kutsch et al. Dec 2006 A1
20060283760 Nivala Dec 2006 A1
20070012711 Deverry et al. Jan 2007 A1
20070045147 Albrecht et al. Mar 2007 A1
20070045149 Hession Mar 2007 A1
20070054525 Jones et al. Mar 2007 A1
20070084747 Gherdan et al. Apr 2007 A1
20070102318 Bertram et al. May 2007 A1
20070144996 Sawyer Jun 2007 A1
20070151893 Gherdan, Jr. et al. Jul 2007 A1
20070246395 Arnold et al. Oct 2007 A1
20070261984 Gelardi et al. Nov 2007 A1
20070284277 Gnepper et al. Dec 2007 A1
20070284372 Gnepper et al. Dec 2007 A1
20070289893 Williams, Jr. Dec 2007 A1
20080017542 Freeze et al. Jan 2008 A1
20080027291 Hartman et al. Jan 2008 A1
20080078690 Zumbiel Apr 2008 A1
20080105582 Michael et al. May 2008 A1
20080156686 Hluchan et al. Jul 2008 A1
20080164259 Coe et al. Jul 2008 A1
20080197043 Freeze et al. Aug 2008 A1
20080200321 Bittner et al. Aug 2008 A1
20080251410 Gelardi et al. Oct 2008 A1
20080257773 Gelardi et al. Oct 2008 A1
20080272022 Kulkarni et al. Nov 2008 A1
20080283434 Gelardi Nov 2008 A1
20080290109 Williams Nov 2008 A1
20080290110 Gelardi et al. Nov 2008 A1
20090008391 Bjoerkholm et al. Jan 2009 A1
20090014350 Gaumont Jan 2009 A1
20090014450 Bjoerkholm et al. Jan 2009 A1
20090045078 Freeze et al. Feb 2009 A1
20090057173 Mitten et al. Mar 2009 A1
20090065383 Schardt et al. Mar 2009 A1
20090084801 Coe Apr 2009 A1
20090178949 Reilley et al. Jul 2009 A1
20090183744 Beardsall et al. Jul 2009 A1
20090184023 Brollier et al. Jul 2009 A1
20090194434 Ellis et al. Aug 2009 A1
20090200332 Intini Aug 2009 A1
20090223989 Gelardi Sep 2009 A1
20090236357 Giraud et al. Sep 2009 A1
20090250360 Griffin et al. Oct 2009 A1
20090266837 Gelardi et al. Oct 2009 A1
20090272081 Panson et al. Nov 2009 A1
20090283437 Angelucci et al. Nov 2009 A1
20090283439 Barndt et al. Nov 2009 A1
20090283440 Krumme et al. Nov 2009 A1
20100011714 Royer Jan 2010 A1
20100065076 Beijer et al. Mar 2010 A1
20100078341 Rasmussen et al. Apr 2010 A1
20100084308 Rigby Apr 2010 A1
20100084414 Dehlin et al. Apr 2010 A1
20100084424 Bailey et al. Apr 2010 A1
20100126886 Le et al. May 2010 A1
20100133140 Bailey et al. Jun 2010 A1
20100163561 Gelardi et al. Jul 2010 A1
20100181335 Farrar et al. Jul 2010 A1
20100193395 Mowery Aug 2010 A1
20100193397 Farrar et al. Aug 2010 A1
20100206320 Hodgson et al. Aug 2010 A1
20100236944 Dehlin et al. Sep 2010 A1
20100243488 Gibson Sep 2010 A1
20100243509 Gelardi et al. Sep 2010 A1
20100264157 Bailey et al. Oct 2010 A1
20100288669 Arndt et al. Nov 2010 A1
20100294692 Gelardi et al. Nov 2010 A1
20100307113 Atchley et al. Dec 2010 A1
20100326999 Farrar et al. Dec 2010 A1
20110000814 Guschke et al. Jan 2011 A1
20110011765 Bogdziewicz, III et al. Jan 2011 A1
20110036743 Wharton Feb 2011 A1
20110042256 Greenland et al. Feb 2011 A1
20110042262 Harakchand et al. Feb 2011 A1
20110042375 Jones et al. Feb 2011 A1
20110067363 Merck et al. Mar 2011 A1
20110068039 Sack et al. Mar 2011 A1
20110068041 Harakchand et al. Mar 2011 A1
20110083685 Adams et al. Apr 2011 A1
20110086194 Williams Apr 2011 A1
20110114512 Gelardi May 2011 A1
20110114527 Thomas May 2011 A1
20110127320 Fraser et al. Jun 2011 A1
20110132795 Silverman Jun 2011 A1
20110155756 Ballard et al. Jun 2011 A1
20110163156 Bogdziewicz, III et al. Jul 2011 A1
20110168712 Bailey et al. Jul 2011 A1
20110168732 Antunes et al. Jul 2011 A1
20110186469 Sack et al. Aug 2011 A1
20110204074 Gelardi Aug 2011 A1
20110225936 Craft et al. Sep 2011 A1
20110226765 Gelardi et al. Sep 2011 A1
20110231006 Saltsov et al. Sep 2011 A1
20110272426 Lewis et al. Nov 2011 A1
20120006707 Krumme et al. Jan 2012 A1
20120012498 Paliotta et al. Jan 2012 A1
20120037517 Grosskopf Feb 2012 A1
20120097735 Hultberg et al. Apr 2012 A1
20120125805 Myszak May 2012 A1
20120145585 Doyle et al. Jun 2012 A1
20120152779 Akhtar et al. Jun 2012 A1
20120160724 Gelardi et al. Jun 2012 A1
20120160726 Gelardi et al. Jun 2012 A1
20120193265 Patel et al. Aug 2012 A1
20120205276 Shackford Aug 2012 A1
20120217183 Gelardi et al. Aug 2012 A1
20120234701 Albrecht et al. Sep 2012 A1
20120234854 Bailey et al. Sep 2012 A1
20120260612 Basak et al. Oct 2012 A1
20120261275 Intini et al. Oct 2012 A1
20120261285 Holloway et al. Oct 2012 A1
20120267261 Gelardi et al. Oct 2012 A1
20120285125 Bailey et al. Nov 2012 A1
20130026175 Reichardt et al. Jan 2013 A1
20130075462 Jones et al. Mar 2013 A1
20130126379 Medhal et al. May 2013 A1
20130140200 Scatterday Jun 2013 A1
20130140201 Biondi et al. Jun 2013 A1
20130186416 Gao et al. Jul 2013 A1
20130256163 Tom et al. Oct 2013 A1
20130285681 Dean et al. Oct 2013 A1
20130292279 Bengtsson et al. Nov 2013 A1
20130292398 Cote et al. Nov 2013 A1
20140001194 Clark et al. Jan 2014 A1
20140097113 Babineau et al. Apr 2014 A1
20140216968 Wagner et al. Aug 2014 A1
20140238877 Petrucci et al. Aug 2014 A1
20140251842 Pipes et al. Sep 2014 A1
20140262839 Le et al. Sep 2014 A1
20140305832 Andersson et al. Oct 2014 A1
20140305834 Knutson et al. Oct 2014 A1
20140339121 Gelardi et al. Nov 2014 A1
20140346081 Sowden et al. Nov 2014 A1
20150014203 Upchurch et al. Jan 2015 A1
20150021326 Giraud et al. Jan 2015 A1
20150090686 Batzel et al. Apr 2015 A1
20150136800 Dodo et al. May 2015 A1
20150203243 Schwester Jul 2015 A1
20150245654 Memari et al. Sep 2015 A1
20150245980 Johnston et al. Sep 2015 A1
20150274401 Mabe et al. Oct 2015 A1
20150283029 Riis et al. Oct 2015 A1
20150307246 Patwardhan Oct 2015 A1
20150307248 Patwardhan et al. Oct 2015 A1
20150320113 Stebbins et al. Nov 2015 A1
20150321787 Stebbins et al. Nov 2015 A1
20150351456 Johnson et al. Dec 2015 A1
20160001948 Collins et al. Jan 2016 A1
20160023816 Giraud et al. Jan 2016 A1
20160039591 Kinzer Feb 2016 A1
20160081391 Makarem et al. Mar 2016 A1
20160083170 Grosskopf Mar 2016 A1
20160101891 Bailey et al. Apr 2016 A1
20160106149 Potter et al. Apr 2016 A1
20160106150 Garcia et al. Apr 2016 A1
20160107796 Sibley Apr 2016 A1
20160120744 Hammond et al. May 2016 A1
20160120745 Hammond et al. May 2016 A1
20160120746 Hammond et al. May 2016 A1
20160120747 Hammond et al. May 2016 A1
20160120748 Hammond et al. May 2016 A1
20160122105 Hammond et al. May 2016 A1
20160130045 Giraud et al. May 2016 A1
20160130074 Kastha et al. May 2016 A1
20160143808 Pattison et al. May 2016 A1
20160144997 Williams-Hartman May 2016 A1
20160159555 Park Jun 2016 A1
20160176617 Bolognia et al. Jun 2016 A1
20160272382 Wagner et al. Sep 2016 A1
20160311587 Schneider et al. Oct 2016 A1
20160318651 Jones et al. Nov 2016 A1
20160325873 Smith et al. Nov 2016 A1
20160338909 Feld Nov 2016 A1
20160347524 Jones et al. Dec 2016 A1
20160360783 Patel et al. Dec 2016 A1
20160368670 Beardsall Dec 2016 A1
20170008683 Ryan et al. Jan 2017 A1
20170057688 Patwardhan et al. Mar 2017 A1
20170057711 Coker et al. Mar 2017 A1
20170073130 Giraud et al. Mar 2017 A1
20170081097 Vercoe et al. Mar 2017 A1
20170100308 Lampe et al. Apr 2017 A1
20170107038 Kim et al. Apr 2017 A1
20170137167 Warner May 2017 A1
20170210531 Parker et al. Jul 2017 A1
20170217658 Whitehurst Aug 2017 A1
20170225854 Brotzel et al. Aug 2017 A1
20170231867 Maston et al. Aug 2017 A1
20170239144 Holland et al. Aug 2017 A1
20170267396 Hammond et al. Sep 2017 A1
20170283154 Karles et al. Oct 2017 A1
20170297803 Chambers et al. Oct 2017 A1
20170325500 Senftleben et al. Nov 2017 A1
20170327291 Senftleben et al. Nov 2017 A1
20170332693 Benford Nov 2017 A1
20170341814 Altus et al. Nov 2017 A1
20170341829 Rehders Nov 2017 A1
20170349338 Ziering et al. Dec 2017 A1
20170360092 Althorpe et al. Dec 2017 A1
20170367407 Althorpe et al. Dec 2017 A1
20180000691 Holland et al. Jan 2018 A1
20180037380 Giraud et al. Feb 2018 A1
20180037381 White et al. Feb 2018 A1
20180086518 Charm Mar 2018 A1
20180099797 Biesecker, II et al. Apr 2018 A1
20180118429 Khoury May 2018 A1
20180140001 Gabbay May 2018 A1
20180153769 Dey et al. Jun 2018 A1
20180155097 Hinnerud et al. Jun 2018 A1
20180168222 Nersing et al. Jun 2018 A1
20180319556 Straughan Nov 2018 A1
20190047755 Giraud Feb 2019 A1
20190239562 Beardsall Aug 2019 A1
20200277110 Patel Sep 2020 A1
20210300640 Ludewig Sep 2021 A1
20220000175 Patel et al. Jan 2022 A1
20220071280 Patel et al. Mar 2022 A1
20220104543 Patel et al. Apr 2022 A1
Foreign Referenced Citations (55)
Number Date Country
2428862 Nov 2004 CA
2536131 Apr 2012 CA
2933955 Mar 1981 DE
3210361 Oct 1983 DE
1088769 Apr 2001 EP
1481913 Dec 2004 EP
1700796 Jul 2008 EP
1700797 Jul 2008 EP
2002856 Dec 2008 EP
2308769 Jan 2013 EP
2540641 Jan 2015 EP
1502258 Mar 1978 GB
1511664 May 1978 GB
2042476 Sep 1980 GB
2319244 May 1998 GB
2423757 Sep 2006 GB
2512620 Oct 2014 GB
2555096 Apr 2018 GB
9312007 Jun 1993 WO
9607601 Mar 1996 WO
9948391 Sep 1999 WO
0043287 Jul 2000 WO
0135772 May 2001 WO
04103857 Dec 2004 WO
2005016036 Feb 2005 WO
05021398 Mar 2005 WO
07036714 Apr 2007 WO
07065240 Jun 2007 WO
07143993 Dec 2007 WO
09000890 Dec 2008 WO
10015638 Feb 2010 WO
2010060845 Jun 2010 WO
11116091 Sep 2011 WO
12003978 Jan 2012 WO
13014462 Jan 2013 WO
13099874 Jul 2013 WO
2013142671 Sep 2013 WO
13151806 Oct 2013 WO
13187780 Dec 2013 WO
14085625 Jun 2014 WO
14198935 Dec 2014 WO
15066109 May 2015 WO
16023651 Feb 2016 WO
16079151 May 2016 WO
16122417 Aug 2016 WO
17034560 Mar 2017 WO
17046334 Mar 2017 WO
17102686 Jun 2017 WO
17125405 Jul 2017 WO
18007903 Jan 2018 WO
18015712 Jan 2018 WO
18081681 May 2018 WO
WO-2021223009 Nov 2021 WO
WO-2022242954 Nov 2022 WO
WO-2022263038 Dec 2022 WO
Non-Patent Literature Citations (2)
Entry
World Intellectual Property Organization, ISR, Jan. 18, 2022.
World Intellectual Property Organization, IPRP for PCT Application No. PCT/IB2021/058074, mailed Mar. 16, 2023, pp. 1-9.
Related Publications (1)
Number Date Country
20220071280 A1 Mar 2022 US