Skate with injected boot form

Information

  • Patent Grant
  • 10413804
  • Patent Number
    10,413,804
  • Date Filed
    Thursday, January 18, 2018
    6 years ago
  • Date Issued
    Tuesday, September 17, 2019
    4 years ago
Abstract
A boot form for a hockey skate is made of multiple plastic materials having different hardness properties, or different flexural moduli, and is formed via an injection-molding process or another similar process. One or more of the plastic materials may be reinforced with fibers of glass, carbon, aramid, or another stiffening material to strengthen one or more regions of the boot form. For example, pellets of a first plastic material having a flexural modulus of approximately 190 MPa (e.g., a polyamide elastomer block amide) may be injected into a mold to form a softer upper region of the boot form. And pellets of a second plastic having a flexural modulus of approximately 20,000 MPa (e.g., a Nylon 12 with long glass fibers) may be injected into the mold to form a stiffer lower region of the boot form. Additional skate components may then be attached to the boot form.
Description
BACKGROUND

The boot portions of hockey skates typically are constructed of substantially rigid materials. While these rigid constructions generally provide a wearer with suitable protection against impacts from pucks, sticks, and the like, the lack of flexibility in the skate boots—particularly in the upper regions of the skate boots—tends to restrict movement and limits the motions a skater can execute. Further, it is difficult to stitch or otherwise attach many materials to these rigid constructions, thus limiting the design options available to a skate designer.


SUMMARY

A boor form for a hockey skate is made of multiple plastic materials having different hardness properties, or different flexural moduli, and is formed via an injection-molding process or another similar process. One or more of the plastic materials may be reinforced with fibers of glass, carbon, aramid, or another stiffening material to strengthen one or more regions of the boot form. For example, pellets of a first plastic material having a flexural modulus of approximately 190 MPa (e.g., a polyamide elastomer block amide) may be injected into a mold to form a softer upper region of the boot form. And pellets of a second plastic having a flexural modulus of approximately 20,000 MPa (e.g., a Nylon 12 with long glass fibers) may be injected into the mold to form a stiffer lower region of the boot form. A skate quarter and other skate components may then be attached to the boot form.


To achieve a different performance characteristic, a first plastic having a flexural modulus of approximately 2100 MPa (e.g., a Nylon 12 with short glass fibers) may be injected into the mold to form a softer upper region of the boot form. And pellets of a second plastic having a flexural modulus of approximately 4200 MPa (e.g., a Nylon 12 with a higher content of short glass fibers) may be injected into the mold to form a stiffer lower region of the boot form. A skate quarter and other skate components may then be attached to the boot form.


Other features and advantages will appear hereinafter. The features described above can be used separately or together, or in various combinations of one or more of them.





BRIEF DESCRIPTION OF THE DRAWINGS

In the drawings, wherein the same reference number indicates the same element throughout the views:



FIG. 1 is a perspective view of a boot form, according to one embodiment.



FIG. 2 is a perspective view of a hockey skate including the boot form shown in FIG. 1, according to one embodiment.



FIG. 3 is a perspective view of the toe cap of a skate boot, according to one embodiment.



FIG. 4 is a perspective view of a boot form, according to another embodiment.





DETAILED DESCRIPTION OF THE DRAWINGS

Various embodiments of the invention will now be described. The following description provides specific details for a thorough understanding and enabling description of these embodiments. One skilled in the art will understand, however, that the invention may be practiced without many of these details. Additionally, some well-known structures or functions may not be shown or described in detail so as to avoid unnecessarily obscuring the relevant description of the various embodiments.


The terminology used in the description presented below is intended to be interpreted in its broadest reasonable manner, even though it is being used in conjunction with a detailed description of certain specific embodiments of the invention. Certain terms may even be emphasized below; however, any terminology intended to be interpreted in any restricted manner will be overtly and specifically defined as such in this detailed description section.


Where the context permits, singular or plural terms may also include the plural or singular term, respectively. Moreover, unless the word “or” is expressly limited to mean only a single item exclusive from the other items in a list of two or more items, then the use of “or” in such a list is to be interpreted as including (a) any single item in the list, (b) all of the items in the list, or (c) any combination of items in the list. Further, unless otherwise specified, terms such as “attached” or “connected” are intended to include integral connections, as well as connections between physically separate components.


Turning now to FIGS. 1 and 2, a boot form 10 for a hockey skate 5 includes a rigid lower portion 12 and a less rigid upper portion 14. The upper portion 14 may be made of a thermoformable composite material, such as low density polyethylene, or of another material suitable for providing both structural support and relative flexibility in the upper portion 14. The lower portion 12 of the boot form 10 may be made of a rigid composite material, such as a carbon-fiber reinforced composite material, or of another suitable rigid material. The lower portion 12 of the boot form 10 may include an integral toe portion 16 made of the same material, or of a material having a similar rigidity, as the remainder of the lower portion 12. The various regions of the boot form 10 may be laid up and then cured together to form a unitary structure.


The boot form 10 may include multiple layers of material to yield an optimal flexibility for a given skate size. As the length and width of the skate 5 varies throughout the size ranges, the overall stiffness of the skate 5, if constructed in a uniform manner, also varies. A smaller-sized skate, for example, would have a greater stiffness than a similarly constructed larger-sized skate. Accordingly, the stiffness of the individual composite layers, particularly in the lower region 12 or the boot form 10, may be varied across different skate sizes to achieve a substantially equivalent skate stiffness or flexibility.


In one embodiment, the angles of the fibers in one or more layers of the boot form 10 may be adjusted based on the size of the skate 5. In skates having sizes 4 to 6.5, for example, the carbon or other fibers in the boot form 10 may be oriented to provide less relative stiffness than similarly situated fibers in skates having sizes 7-9.5, which may in turn have carbon or other fibers oriented to provide less relative stiffness than similarly situated fibers in skates having sizes 10 to 12.5. By varying the fiber angles in this manner, the overall flexion or torsional rigidity of the skate 5 can be substantially equalized throughout the available size ranges.


In one embodiment, the transition region between the upper portion 14 and the lower portion 12 of the boot form 10 is staggered during the layup process to provide a gradually changing flexibility along the length of the transition region. For example, the lower portion 12 of the boot form 10 may include one or more regions that extend upward beyond a neighboring region of the lower portion 12, or the lower portion 12 may include a stepped upper region providing a gradual increase or decrease in flexibility along the transition region. These arrangements may aid in the performance and durability of the skate 5.


Fastener elements 18 may be attached to or molded into the upper portion 14 of the boot form 10 to facilitate attachment of a tendon guard 20, a skate quarter 22, or other components. Screws 24, bolts, rivets, or other suitable fasteners may be used to engage the fastener elements 18 and to attach the components. In the illustrated embodiment, a portion of the skate quarter 22, as well as medial and lateral connecting portions of the tendon guard 20, are attached to the boot form 10 via screws 24 or similar connectors.


In one embodiment, two or more fastener elements 18 are included on each side of the boot form 10. As a result, the tendon guard 20 may be secured to multiple locations on each side of the boot form 10, thus preventing the tendon guard 20 from pivoting about the connection location. In another embodiment, stoppers 21 may additionally or alternatively be included at the upper regions of the skate boot to inhibit forward rotation of the tendon guard 20, as described, for example, in U.S. patent application Ser. No. 13/418,052, filed Mar. 12, 2012, which is incorporated herein by reference.


In one embodiment, a U-shaped notch or other opening is included in the rear of the skate boot to facilitate rearward extension of a wearer's ankle and lower leg during the skating motion. The tendon guard 20 may include a narrow mid-region to facilitate rearward flexing of the tendon guard 20, as described, for example, in U.S. patent application Ser. No. 13/271,029, filed Oct. 11, 2011, which is incorporated herein by reference.


The skate quarter 22 may be made of a thermoformable material, such as Surlyn®, high density polyethylene, or of another suitable material. Because the upper portion 14 of the boot form 10 is made of a thermoformable material or a similar material, the skate quarter 22 may be attached to the upper portion 14 of the boot form 10 via adhesives or stitching, as well as by the fasteners 18 described above. The use of a thermoformable upper portion 14 of the boot form 10, as well as a thermoformable skate quarter 22, facilitates conforming of the skate boot to the shape of a wearer's foot and ankle.


A molded protector 23 made of thermoplastic polyurethane, or of another suitable material, may be positioned over the lower edge of the skate quarter 22 to protect it from abrasion and from prying forces that could separate or delaminate the quarter 22 from the upper portion 14 of the boot form 10. Additionally, a molded toe cap 26 may be integral with or positioned over the integral toe portion 16 of the boot form 10. The toe cap 26 may be made of a plastic material, such as thermoplastic polyurethane, or of any other material suitable for providing protection to the toe region of the skate 5.


As shown in FIG. 3, the toe cap 26 may include one or more flanges 25 or similar elements to which the skate quarter 22, the molded protector 23, or a skate tongue 30 may be attached. Connection of these components to the toe cap 26 may be advantageous, as it would be difficult to attach them directly to the rigid lower portion 12 of the boot form 10.


In one embodiment, the skate tongue 30 extends inside the toe region 16 of the boot form 10 to fill the space between the top of a wearer's foot and the upper, inner surface of the toe region 16. This arrangement provides comfort for the user, while also providing sensation and feedback during skating motions. In another embodiment, a separate filler element is positioned inside the toe region 16 adjacent to the end of the tongue 30 to provide similar benefits.


A blade holder 32 is attached to the lower portion 12 of the boot form 10 via screws, bolts, rivets, or other suitable connectors. The blade holder 32 may be made of DuPont Zytel® ST801 or of another suitable material. A blade 34 made of steel or of another suitable material is secured to the blade holder 32 via screws 36, rivets, bolts, or other suitable connectors. In one embodiment, the bottom of the boot form 10 includes a plurality of premolded openings to which the blade holder 32 is attached.


Multiple layers of material may be included on the interior region of the lower portion 12 of the boot form 10 to facilitate increased grip or holding strength of the screws or other connectors used to secure the blade holder 32 to the lower portion 12 of the boot form 10. Because the lower portion 12 of the boot form 10 is rigid, it does not readily accept connectors. Providing additional layers of material, however, increases the holding strength of the connectors. Additionally, the toe cap 26 preferably does not wrap underneath the toe region 16 so that it does not interfere with the attachment of the lower portion 12 of the boot form 10 to the blade holder 32.


The skate boot 5 described herein may be constructed by arranging in a mold the composite layers that make up the lower portion 12, upper portion 14, and toe region 16 of the boot form 10. As described above, the fiber angles in the given layers may be selected to provide the stiffness properties desired for a given skate size. Also as described above, the layers of the lower and upper portions 12, 14 of the boot form 10 optionally may be staggered to provide a graduated transition region between them.


Once the layers are arranged in the mold they are be cured under heat and pressure to create the boot form 10. The thermoformable upper portion 14 of the boot form 10 softens at a temperature range that does not affect the rigidity of the rigid lower portion 12 of the boot form 10. The upper portion 14, therefore, is able to conform to the shape of a wearer's foot and, after cooling, remain in that shape so that the skate 5 remains conformed to a wearer's foot. The skate quarter 22, toe cap 26, tongue 30, tendon guard 20, blade holder 32, and other skate components may then be attached to the boot form 10, or to each other, as described above.


As illustrated in FIG. 4, in another embodiment, a boot form 50 may be made of multiple plastic materials having different hardness properties, or different flexural moduli, and may be formed via an injection-molding process or another similar process. One or more of the plastic materials may be reinforced with fibers of glass, carbon, aramid, or another stiffening material to strengthen one or more regions of the boot form 50. For example, pellets of a first plastic material having a flexural modulus of approximately 190 MPa (e.g., a polyamide elastomer block amide) may be injected into a mold to form the softer upper region 52 of the boot form. And pellets of a second plastic having a flexural modulus of approximately 20,000 MPa (e.g., a Nylon 12 with long glass fibers) may be injected into the mold to form the stiffer lower region 54 of the boot form.


To achieve a different performance characteristic, a first plastic having a flexural modulus of approximately 2100 MPa (e.g., a Nylon 12 with short glass fibers) may be injected into the mold to form a softer upper region of the boot form. And pellets of a second plastic having a flexural modulus of approximately 4200 MPa (e.g., a Nylon 12 with a higher content of short glass fibers) may be injected into the mold to form a stiffer lower region of the boot form. A skate quarter and other skate components may then be attached to the boot form.


The second plastic material preferably bonds with the first plastic material during heating and curing in the mold but could otherwise be attached in another suitable manner. If desired, a smaller amount of the stiffer, second plastic material may be introduced into the upper region 52 of the boot form 50 to increase the stiffness of the upper region 52 relative to a boot form including only the first plastic material in the upper region.


The use of different plastics having different flexural moduli facilitates customization of the boot form 50 to meet the preferences of a variety of users. For example, some users may prefer a very flexible upper region 52, while others may prefer an upper region 52 that, while more flexible than the lower region 54, is relatively close in stiffness to the lower region 54. In one embodiment, the upper region 52 of the boot form 50 is formed from a plastic material that is soft enough to receive stitches, such that a skate quarter or other elements of the skate may be stitched to the upper region 52.


In one embodiment, one or more flexible flanges or tabs 56 may be molded to, or otherwise attached to, one or more regions of the boot form 50. Components of a hockey skate may be attached to the tabs 56 via stitching, adhesive, or another suitable connector. For example, a flexible tab 56 may be molded or otherwise connected to the toe region of the boot form 50 for connection to a tongue of the skate. A flexible tab 56 may additionally or alternatively be molded or otherwise connected to the rear of the boot form for attachment to an inner liner of the skate boot or attachment to a tendon guard. Attaching a tendon guard to the flexible tab 56, for example, allows the tendon guard to flex rearward and forward via movement of the tab 56. Accordingly, the tendon guard may be made of a relatively stiff material to enhance protection, while still allowing the user to maximize range of leg motion in the rearward and forward directions due to the flexibility of the tab 56.


Once the boot form 50 is formed, a skate quarter, toe cap, tongue, tendon guard, blade holder, or other skate components may be attached to the boot form 50, or to each other, as described in the above embodiments. In one embodiment, a fabric layer or a composite-fiber layer may be positioned in the mold to enhance bonding of the injected pellets when they melt such that they from an integral boot form with excellent impact resistance properties. In another embodiment, a toe cap or heel cup having a different flexural modulus than the boot form itself may be separately injected and then placed in the mold to bond with the boot form during the subsequent injection process to provide increased impact protection.


Any of the above-described embodiments may be used alone or in combination with one another. Further, the hockey skate may include additional features not described herein. While several embodiments have been shown and described, various changes and substitutions may of course be made, without departing from the spirit and scope of the invention. The invention, therefore, should not be limited, except by the following claims and their equivalents.

Claims
  • 1. A hockey skate comprising: a boot form for receiving a wearer's foot, the boot form including a lower portion and an upper portion, the lower portion including a heel region and a toe region, the upper portion including a lateral side region and a medial side region;a skate quarter attached to the boot form, the skate quarter comprising a series of eyelets for receiving at least one lace to tighten the hockey skate on the wearer's foot when worn;a toe cap positioned over the toe region of the lower portion of the boot form, the toe cap extending rearwards in a longitudinal direction toward the heel region of the lower portion of the boot form so as to span in the longitudinal direction at least two eyelets of the series of eyelets, the toe cap comprising a lateral visible region and a medial visible region beneath the at least two eyelets of the series of eyelets of the skate quarter;a tongue extending between the lateral side region and the medial side region of the upper portion of the boot form to cover a forefoot and an ankle of the wearer when the hockey skate is worn; anda blade holder attached to the lower portion of the boot form.
  • 2. The hockey skate of claim 1, a material of the lower portion of the boot form being a composite and a material of the upper portion of the boot form being a composite.
  • 3. The hockey skate of claim 2, wherein the toe region is integral with the lower portion of the boot form.
  • 4. The hockey skate of claim 3, wherein the toe cap does not wrap underneath the toe region of the lower portion of the boot form.
  • 5. The hockey skate of claim 2, wherein the toe cap is attached to the skate quarter.
  • 6. The hockey skate of claim 5, wherein the toe cap includes at least one attachment portion for attaching the toe cap to the skate quarter.
  • 7. The hockey skate of claim 6, wherein the attachment portion includes a flange.
  • 8. The hockey skate of claim 2, wherein the toe cap is made of a plastic material.
  • 9. The hockey skate of claim 2, the tongue being connected to the toe cap by at least one connector.
  • 10. The hockey skate of claim 9, the at least one connector is one of adhesive and stitching.
  • 11. The hockey skate of claim 1, wherein the at least two eyelets include at least two consecutive eyelets in the series.
  • 12. The hockey skate of claim 1, wherein the at least two eyelets include the two first eyelets in the front of the skate.
  • 13. A hockey skate comprising: a boot form including at least a heel region to cover a heel of a wearer's foot when the hockey skate is worn;a skate quarter attached to the boot form, the skate quarter comprising pairs of eyelets for receiving at least one lace to tighten the hockey skate on the wearer's foot when worn;a toe cap positioned in a front region of the hockey skate, the toe cap extending rearwards in a longitudinal direction toward the heel region of the boot form so as to span longitudinally at least two of said pairs of eyelets of the skate quarter, the toe cap comprising a lateral visible region and a medial visible region beneath the at least two of said pairs of eyelets of the skate quarter;a tongue configured to cover at least a forefoot of the wearer when the hockey skate is worn; anda blade holder attached to the boot form.
  • 14. The hockey skate of claim 13, wherein the at least two of said pairs of eyelets include the two first two pairs of eyelets towards the front of the skate.
  • 15. A hockey skate comprising: a boot form including at least a heel region to cover a heel of a wearer's foot when the hockey skate is worn;a skate quarter attached to the boot form, the skate quarter comprising a series of eyelets for receiving at least one lace to tighten the hockey skate on the wearer's foot when worn;a toe cap attached to the boot form and positioned in a front region of the hockey skate such as to cover a portion of the boot form, the toe cap extending rearwards toward the heel region of the boot form so as to span longitudinally at least two eyelets of the series of eyelets of the skate quarter, the toe cap comprising a lateral visible region and a medial visible region beneath the at least two eyelets of the series of eyelets of the skate quarter;a tongue configured to cover at least a forefoot of the wearer when the hockey skate is worn, the tongue being attached to the toe cap by at least one connector; anda blade holder attached to the boot form.
  • 16. The hockey skate of claim 15, further comprising a tendon guard configured to cover at least part of an Achilles tendon of the wearer when the hockey skate is worn.
  • 17. The hockey skate of claim 16, wherein the tendon guard being removably connected to the boot form by at least one mechanical fastener.
  • 18. The hockey skate of claim 17, wherein the at least one mechanical fastener is a screw, a bolt or a rivet.
  • 19. The hockey skate of claim 15, wherein the tongue is hingedly attached to the toe cap.
  • 20. The hockey skate of claim 15, a material of a lower portion of the boot form being a composite and a material of an upper portion of the boot form being a composite.
  • 21. The hockey skate of claim 20, wherein the boot form is made of a thermoformable material to facilitate conforming of the boot form to the shape of the wearer's foot and ankle.
  • 22. The hockey skate of claim 21, wherein the skate quarter is layered over the upper portion of the boot form.
  • 23. The hockey skate of claim 22, wherein the skate quarter is made of a thermoformable material.
  • 24. The hockey skate of claim 15, wherein the toe cap is attached to the skate quarter.
  • 25. The hockey skate of claim 24, the tongue being connected to the toe cap by at least one connector.
  • 26. The hockey skate of claim 25, wherein the at least one connector is one of adhesive and stitching.
  • 27. A hockey skate comprising: a boot form for receiving a wearer's foot, the boot form including a lower portion and an upper portion, the lower portion including a heel region and a toe region, the upper portion including a lateral side region and a medial side region;a skate quarter attached to the boot form, the skate quarter comprising a series of eyelets for receiving at least one lace to tighten the hockey skate on the wearer's foot when worn;a toe cap positioned over the toe region of the lower portion of the boot form;a tongue extending between the lateral side region and the medial side region of the upper portion of the boot form to cover a forefoot and an ankle of the wearer when the hockey skate is worn; anda blade holder attached to the lower portion of the boot form;wherein the toe region of the lower portion of the boot form comprises an inner front surface for facing a front of toes of the wearer's foot.
  • 28. The hockey skate of claim 27, wherein the toe region of the lower portion of the boot form comprises an inner upper surface for covering a top of the toes of the wearer's foot.
  • 29. The hockey skate of claim 27, wherein the toe cap extends rearwards in a longitudinal direction toward the heel region of the lower portion of the boot form so as to span in the longitudinal direction at least two eyelets of the series of eyelets.
CROSS-REFERENCE TO RELATED APPLICATION

This application is a continuation of U.S. patent application Ser. No. 14/094,599 filed on Dec. 2, 2013, which is a continuation in part of U.S. patent application ser. No. 13/794,071 filed on Mar. 11, 2013 now issued to U.S. pat. No. 9,510,639 on Dec. 6, 2016. The contents of the above-noted applications are incorporate herein by reference.

US Referenced Citations (220)
Number Name Date Kind
41694 Getty Feb 1864 A
61998 Bushman Feb 1867 A
275482 Gregg Apr 1883 A
439161 Krause Oct 1890 A
70382 Read Jul 1902 A
159850 Pierce Aug 1926 A
2211822 Jennings Aug 1940 A
2230553 Weisman Feb 1941 A
2563763 Vietas Aug 1951 A
2617207 Jennett Nov 1952 A
2789374 Planert Apr 1957 A
2918734 Hyde Dec 1959 A
3235978 Hyde Feb 1966 A
3243191 Weisman Mar 1966 A
3668793 Stohr et al. Jun 1972 A
3729841 Wagner May 1973 A
4072317 Pommerening Feb 1978 A
4107856 Bourque Aug 1978 A
4222184 Kastinger Sep 1980 A
4280286 Santor Jul 1981 A
4351537 Seidel Sep 1982 A
4384413 Bourque May 1983 A
4453727 Bourque Jun 1984 A
4509276 Bourque Apr 1985 A
4561196 Petrini Dec 1985 A
4615127 Delery Oct 1986 A
4655465 Schaeffer Apr 1987 A
4773658 Bourque Sep 1988 A
4835885 Hoshizaki Jun 1989 A
4865023 Craythorne Sep 1989 A
4869001 Brown Sep 1989 A
4901455 Morell Feb 1990 A
4964229 Laberge Oct 1990 A
5016623 Krahenbuhl May 1991 A
5050620 Cooper Sep 1991 A
5072529 Graf Dec 1991 A
5090138 Borden Feb 1992 A
D324447 Purdom Mar 1992 S
5171033 Olson Dec 1992 A
5210963 Harwood May 1993 A
5255929 Lemelson Oct 1993 A
5272823 Perrissoud Dec 1993 A
5295316 Bergamin Mar 1994 A
5329705 Grim Jul 1994 A
5342070 Miller Aug 1994 A
5397141 Hoshizaki Mar 1995 A
5400529 Bell Mar 1995 A
5406721 Marcolin Apr 1995 A
5408763 Sartor Apr 1995 A
5437466 Meibock Aug 1995 A
5452907 Meibock Sep 1995 A
5491911 Chen Feb 1996 A
5498033 Hoshizaki Mar 1996 A
5505467 Hill Apr 1996 A
5575091 Mattiuzzo Nov 1996 A
5596820 Edauw Jan 1997 A
5662338 Steinhauser, Jr. Sep 1997 A
5694703 Diaz Dec 1997 A
5768807 Caeran Jun 1998 A
5769434 Wurthner Jun 1998 A
5778565 Holt Jul 1998 A
5779246 Bengtsson Jul 1998 A
5794362 Polk Aug 1998 A
5799955 Iverson Sep 1998 A
5819440 Okajima Oct 1998 A
5822887 Turner Oct 1998 A
5839736 Chiu Nov 1998 A
5875566 Bourdeau Mar 1999 A
5887361 Cabanis Mar 1999 A
5913526 Olson Jun 1999 A
5926978 Smith Jul 1999 A
5933986 Donnadieu Aug 1999 A
5937546 Messmer Aug 1999 A
5966843 Sand Oct 1999 A
5967531 Saillet Oct 1999 A
5971405 Edauw Oct 1999 A
6018892 Acheson Feb 2000 A
6047975 Benoit Apr 2000 A
6070886 Cornelius Jun 2000 A
6070887 Cornelius Jun 2000 A
6076285 Caeran Jun 2000 A
6079128 Hoshizaki Jun 2000 A
6102881 Quackenbush Aug 2000 A
6105280 Marcolin Aug 2000 A
6109622 Reynolds Aug 2000 A
6112434 Seltzer Sep 2000 A
6120038 Dong Sep 2000 A
6138384 Messmer Oct 2000 A
6139030 Meibock Oct 2000 A
6148546 Demarchi Nov 2000 A
6152459 Meibock Nov 2000 A
6168172 Meibock Jan 2001 B1
6217036 Rowledge Apr 2001 B1
6223457 Graf May 2001 B1
6254110 Meibock Jul 2001 B1
6260290 Chenevert Jul 2001 B1
6293564 Gabrielli Sep 2001 B1
6293565 Bouchard Sep 2001 B1
6295679 Chenevert Oct 2001 B1
6321466 Bordin Nov 2001 B1
D455836 Lammers Apr 2002 S
6364321 Steinhauser, Jr. Apr 2002 B1
6367818 Meibock Apr 2002 B2
6371494 Bonventure Apr 2002 B1
6374516 Bonaventure Apr 2002 B1
6381877 Filice May 2002 B2
6419241 Chenevert Jul 2002 B1
6519877 Oetting Feb 2003 B2
6533295 Gonthier Mar 2003 B2
6550159 Madore Apr 2003 B1
6557864 Lenoir May 2003 B1
6601042 Lyden Jul 2003 B1
6725577 Mazzarolo Apr 2004 B2
6769203 Wright Aug 2004 B1
6935054 Hall Aug 2005 B2
6993860 Bettiol Feb 2006 B2
7039977 Wilder May 2006 B2
7082703 Greene Aug 2006 B2
7140127 Yang Nov 2006 B2
7171768 Klein Feb 2007 B2
7219450 Langley May 2007 B2
7219900 Meibock May 2007 B2
7290355 Labonté Nov 2007 B2
7290773 Eck Nov 2007 B2
7325813 Bock Feb 2008 B2
RE40363 Grim Jun 2008 E
7380354 Yamashita Jun 2008 B2
7387302 Goldsmith Jun 2008 B2
7392990 Bussiere Jul 2008 B2
7398609 Labonté Jul 2008 B2
7451991 Labonté Nov 2008 B2
7533479 Labonté´ May 2009 B2
7562881 Crowder Jul 2009 B2
7712173 Labonté May 2010 B2
7770930 McLeod Aug 2010 B2
7793947 Labonté Sep 2010 B2
7806418 Labonté Oct 2010 B2
7896363 Lovejoy Mar 2011 B2
7908771 Foxen Mar 2011 B2
7950676 Goldsmith May 2011 B2
8109536 Labonté Feb 2012 B2
8302329 Hurd Nov 2012 B2
8353535 Salmon Jan 2013 B2
8387286 Koyess Mar 2013 B2
8479416 Auger Jul 2013 B2
8684368 Van Home Apr 2014 B2
8745898 Stewart Jun 2014 B2
9510639 Cruikshank Dec 2016 B2
9554615 Labonté Jan 2017 B2
9878229 Lefebvre Jan 2018 B2
20010006282 Green Jul 2001 A1
20010022434 Sauter Sep 2001 A1
20010026054 Olson Oct 2001 A1
20020108272 Parisotto Aug 2002 A1
20030015848 Pham Jan 2003 A1
20030097769 Gabrielli May 2003 A1
20030102641 Liu Jun 2003 A1
20030115775 Mazzarolo Jun 2003 A1
20030115777 Hall Jun 2003 A1
20030193152 Meibock Oct 2003 A1
20030196351 Hipp Oct 2003 A1
20030204971 Fauver Nov 2003 A1
20040007836 Sauter Jan 2004 A1
20040016150 Labonté Jan 2004 A1
20040049950 Van Home Mar 2004 A1
20040083625 Wilder May 2004 A1
20040090023 Crowder May 2004 A1
20040140631 Goldsmith Jul 2004 A1
20040168357 Meibock Sep 2004 A1
20040194350 Mazzarolo Oct 2004 A1
20040200099 Chenevert Oct 2004 A1
20040207164 Meibock Oct 2004 A1
20040226113 Wright Nov 2004 A1
20040261298 Howard Dec 2004 A1
20050116379 Goldsmith Jun 2005 A1
20050126046 Labonté Jun 2005 A1
20050134010 Blackenburg Jun 2005 A1
20050144809 Yang Jul 2005 A1
20050193594 Murphy Sep 2005 A1
20050204585 Loveridge Sep 2005 A1
20050217146 Jones Oct 2005 A1
20050223604 Neuner Oct 2005 A1
20050229436 Bock Oct 2005 A1
20050267775 Willis Dec 2005 A1
20050273028 Reynolds Dec 2005 A1
20050280222 Sauter Dec 2005 A1
20060053662 Yang Mar 2006 A1
20060064904 Confortin Mar 2006 A1
20060145434 Crowder Jul 2006 A1
20060179686 Labonté Aug 2006 A1
20060179687 Labonté Aug 2006 A1
20060181035 Labonté Aug 2006 A1
20060181076 Labonté Aug 2006 A1
20060201030 Wilder Sep 2006 A1
20070013152 Goldsmith Jan 2007 A1
20070063457 Labonté Mar 2007 A1
20070186448 Meibock Aug 2007 A1
20080018066 Pickford Jan 2008 A1
20080150242 Wurthner Jun 2008 A1
20080172906 Jou Jul 2008 A1
20080238006 Labonté Oct 2008 A1
20090000151 Cavasin Jan 2009 A1
20090020967 Weber Jan 2009 A1
20090188056 Labonté Jul 2009 A1
20090243238 Van Home Oct 2009 A1
20090289427 Lovejoy Nov 2009 A1
20100109312 Salmon May 2010 A1
20100156058 Koyess Jun 2010 A1
20100192412 Stewart Aug 2010 A1
20100275393 Jou Nov 2010 A1
20110016617 Shrewsburg Jan 2011 A1
20110101665 Van Home May 2011 A1
20120011742 Yang Jan 2012 A1
20120025478 Van Home Feb 2012 A1
20120144703 Trinkaus Jun 2012 A1
20120167418 Frappier Jul 2012 A1
20120204452 Van Home Aug 2012 A1
20130119580 Yang May 2013 A1
20130214499 Koyess Aug 2013 A1
20140097583 Vaughn Apr 2014 A1
Foreign Referenced Citations (12)
Number Date Country
1190571 Jul 1985 CA
2292995 Jun 2000 CA
2497037 Aug 2006 CA
2726580 Jun 2012 CA
2750906 Oct 2012 CA
2801233 Mar 2013 CA
658795 Dec 1986 CH
2777417 May 2016 EP
2473280 Jul 1981 FR
2766065 Jan 1999 FR
2774563 Aug 1999 FR
2013137970 Sep 2013 WO
Non-Patent Literature Citations (28)
Entry
Written Opinion in connection with PCT/US2013/20763 dated May 21, 2013, 6 pages.
Examiner's Report in connection with Canadian Application 2,801,233 dated Aug. 12, 2013, 2 pages.
Examiner's Report in connection with Canadian Application 2,801,233 dated Apr. 22, 2013, 2 pages.
European Search Report in connection with EP 14158831.9 dated Jul. 24, 2014, 6 pages.
European Search Report in connection with EP 14158854.1 dated Jul. 24, 2014, 9 pages.
Non-Final Office Action dated Oct. 8, 2015 in connection with U.S. Appl. No. 13/794,071, 12 pages.
Final Office Action dated Mar. 21, 2016 in connection with U.S. Appl. No. 13/794,071, 18 pages.
Notice of Allowance dated Nov. 8, 2016 in connection with U.S. Appl. No. 13/794,071, 6 pages.
Restriction Requirement dated May 3, 2016 in connection with U.S. Appl. No. 14/094,599, 6 pages.
Non-Final Office Action dated Aug. 1, 2016 in connection with U.S. Appl. No. 14/094,599, 14 pages.
Final Office Action dated Jan. 23, 2017 in connection with U.S. Appl. No. 14/094,599, 20 pages.
Notice of Allowance dated Sep. 15, 2017 in connection with U.S. Appl. No. 14/094,599, 15 pages.
Notice of Allowance dated Oct. 6, 2017 in connection with U.S. Appl No. 14/094,599, 12 pages.
Non-Final Office Action dated Feb. 14, 2019, in connection with U.S. Appl. No. 15/874,625, 16 pages.
Extended Search Report dated Jul. 25, 2014 in connection with European Patent Application No. 13194324.3, 7 pages.
Non-Final Office Action dated Sep. 25, 2015 in connection with U.S. Appl. No. 14/087,092, 17 pages.
Final Office Action dated Feb. 25, 2016 in connection with United States Patent Application No. 14/087,092, 18 pages.
Notice of Allowance dated Dec. 23, 2016 in connection with U.S. Appl. No. 14/087,092, 19 pages.
Examiner's Report dated Jul. 16, 2018 in connection with Canadian Patent Application No. 2,834,525, 3 pages.
Examiner's Report dated Nov. 6, 2018 in connection with Canadian Patent Application No. 2,834,525, 4 pages.pages.
Examiner's Report dated Dec. 10, 2018 in connection with Canadian Patent Application No. 2,834,525, 3 pages.
Examiner's Report dated Jan. 8, 2019 in connection with Canadian Patent Application No. 3,024,025, 4 pages.
Reinhardt, Five Popular Women's Ice Hockey Skates, Yohoo Contributor Network, Dec. 9, 2009. Retrieved from the Internet: http://voices.yahoo.com/five-popular-womens-ice-skates-2039696.html.
Bauer Turbo Molded Hockey Skates, Aug. 2013.
Bauer Lil Champ toddler ice skates, Aug. 2013.
CCM Champion 90 Ice Hockey Skates, Aug. 2013.
KOR Hockey, Shift 2 model ice skates, NHL Digest product review dated Oct. 8, 2007.
Notice of Allowance dated Feb. 26, 2019 in connection with Canadian Patent Application No. 2,834,525, 1 page.
Related Publications (1)
Number Date Country
20180147475 A1 May 2018 US
Continuations (1)
Number Date Country
Parent 14094599 Dec 2013 US
Child 15874625 US
Continuation in Parts (1)
Number Date Country
Parent 13794071 Mar 2013 US
Child 14094599 US