The present invention relates generally to a protective glove for use in contact sports, such as hockey or lacrosse. More particularly, the present invention relates to a protective sports glove having a finger knuckle protection system.
In contact sports, such as lacrosse or hockey, where sticks are essential elements of the game, a player's hands, including their fingers and thumb, and wrists are especially vulnerable to injury when being checked by another player's stick. For this reason, players typically utilize padded gloves to protect their hands, wrists and lower forearms during play.
Typical gloves for such contact sports generally include a hand portion coupled to a plurality of finger portions and a thumb portion. The hand portion, the finger portions, and the thumb portion each have a respective palm portion and a protective back with a plurality of protective portions such as pads, disposed thereon to provide protection to a wearer's hand from forces applied thereto during play. The gloves also may have a protective cuff or portion that is coupled to a lower edge of the hand portion and extends downwardly from the back portion to protect the wearer's wrist and forearm. The protective back portions of the hand portion, the plurality of finger portions and the thumb portion are formed in such a way so as to allow them to flex during play in a manner corresponding to a wearer's hand, finger or thumb without significantly impacting the protection provided thereto.
One issue with gloves of this type is the degree of protection from impact provided to the wearer during usage. Foam padding or other protective structures on the outer portions of the gloves generally provide an adequate amount of relief from impact due to a stick, ball or puck. The amount of protection depends primarily upon the thickness and composition of the padding as well as the angle of impact of the device contacting the glove. In order to provide flexibility to the wearer's fingers, gloves are typically provided with flex or break lines between adjacent pads that are located over the respective knuckles of the fingers and thumb to accommodate increased movement of the wearer's fingers and thumb. Flex or break lines are also provided in the back of the hand for increased flexibility such that a glove is allowed to accommodate movement of a wearer's hand.
While these gloves have increased protection, it is known that to provide the desired flexibility, flex or break lines are provided in the glove. Thus, when a wearer flexes his fingers around the stick or otherwise flexes that hand, a gap is created between the adjacent pads in the area of the knuckles and exposes the knuckle making it particularly vulnerable to impact from a stick, ball or puck. Such impact can result in a serious injury to a wearer's fingers or thumb. Thus, there exists a need for a protective sports glove that provides protection to the knuckles or other exposed areas of a player's hand during usage, regardless of the amount of flex of the fingers or thumb, yet does not affect the degree of flex of the fingers or thumb during that same usage.
Accordingly, it is an advantage of the present invention to provide a protective sports glove that yields increased protection to the knuckles of the fingers of a wearer without adversely affecting the degree of flex or movement of the wearer's fingers during play.
It is another advantage of the present invention to provide a protective knuckle system for a sports glove that covers any gap or space created between adjacent protective portions when a glove is flexed by a wearer during play and protect any exposed area of a wearer's hand.
In accordance with the above and the other advantages of the present invention, a protective finger knuckle system for a protective sports glove is provided. The glove includes a protective knuckle system disposed on the outside or back portion of the glove generally in the finger portions to cover the seams in the regions of the pads corresponding to the knuckles of the fingers. The protective finger knuckle system is coupled to the glove and includes a pair of cap portions coupled together via a flexible middle portion, wherein the middle portion covers the seams or flex lines in the regions corresponding to the knuckles of the fingers. Each of the cap portions includes a pair of side flanges. The side flanges have a pair of slots. The cap portions are made of an impact resistant material, such as plastic or metal that protects a wearer's knuckle. A strap, preferably an elastic strap, is passed through the slots on each of the pair of side flanges to secure the cap portions to the glove.
The flexible middle portion spans the gap, corresponding to the seam or flex lines, between the adjacent protective portions of the fingers and/or the thumb. The middle portion allows flexing of the knuckles but maintains the cap portions in a position to provide protection to the knuckles of the wearer when the fingers or thumb are flexed. Because the protective knuckle portion is not coupled to the protective portions that move to create the gap, they are maintained in position over the widening gap as the finger is flexed. The knuckle protection system thus allows the finger to flex and unflex freely without restriction and without compromising protection as it covers the open space between adjacent protective portions and overlies the knuckle throughout the full range of wearer movement.
These and other features and advantages of the present invention will become apparent from the following description of the invention, when viewed in accordance with the accompanying drawings and appended claims.
Referring now to the Figures, which illustrate a protective sports glove 10 in accordance with the present invention. While the drawings illustrate the right hand glove, it will be understood that the left hand glove has the same configuration, but opposite orientation and thus need not be described separately. The disclosed glove 10 is preferably for use in the game of hockey. However, it will be understood by one of ordinary skill in the art that the disclosed glove 10 may be used in a variety of other contact stick sports, including lacrosse. Additionally, the protective sports glove may have a variety of other suitable uses.
Referring now to
The cuff portion 16 preferably has a first cuff portion 24, an adjacent second cuff portion 26, and an adjacent third cuff portion 28 that are each secured at an upper border portion located near the hand portion 18. Preferably, the edge portions of the cuff portions 24, 26, 28 overlap to yield a split cuff, as generally indicated by reference number 29, which provides added protection to a wearer's wrist and forearm because of the double layer of padding and because the cuff portions 24, 26, 28 can move with respect to one another they provide increased flexibility for a wearer's wrist as it moves during play. For example, the overlapping configurations of the cuff portions 24, 26, 28 allow them to move as a wearer's hand flexes and not open any undesirable gaps that would expose a wearer to injury. As will also be understood by one of ordinary skill in the art, a split cuff portion without overlapping portions or edges, but instead are simply aligned edge to edge, may also be employed. Further, the cuff portion 16 can be formed of a single structure or multiple structures secured together.
As shown in one embodiment, the first cuff portion 24 and the third cuff portion 28 do not extend entirely around the wearer's wrist and are connected by a lace 31 that passes through openings 34 in each of the cuff portions. Alternatively, the cuff portion 16 can consist of either a single or multiple pieces that extend entirely around a wearer's wrist, as will be readily understood by one of ordinary skill in the art. Other securing mechanism beside a lace may also be employed.
The floating subcuff portion 33 is substantially contained within the cuff portion 16 and is either flexibly attached to the cuff portion 16 or glove 10 using a plurality of elastic straps (not shown). The floating subcuff portion 33 remains closely coupled to the wrist and forearm regardless of how the wrist is flexed, therein providing additional protection to a wearer during use. A preferred subcuff portion 33 utilized in the present invention is described in U.S. patent application Ser. No. 10/904,445, and entitled “Protective Sports Glove with Floating Cuff Portion”, which claims priority from U.S. Provisional Patent Application No. 60/518,772 filed Nov. 10, 2003, the disclosure of which are herein incorporated by reference.
Additionally, a wrist guard 36 is preferably coupled to the glove 10 such that it covers the space 38 between the bottom edge 40 of the hand portion 18 and the upper edge 42 of the cuff portion 16 as a wearer's hand moves and flexes during play to provide increased protection. The wrist guard 36 can be attached to the hand portion 18 or the cuff portion 16 or both and can be secured thereto by a variety of other suitable ways. Alternatively, the wrist guard 36 may be disposed within the interior space of the glove 10 to cover the space 38 from below the back side portion 12.
The hand portion 18 extends generally between the space or gap 38 and the finger portions 20 and has a rear portion 44 and a palm portion 46. The rear portion 44 preferably has a plurality of protective portions 50, such as padded portions, secured thereto to provide protection to a wearer's hand. However, protective portions constructed of other suitable material, such as plastic or rubber, may also be utilized. Each pair of protective portions 50 defines a flex line, break line or seam 52 there between, which allow the glove 10 to move as a wearer's hand moves to provide better fit and comfort. The number of padded portions 50, and hence the number of flex lines 52, may vary as desired to provide different flexing and protection characteristics and is not limited to the arrangement displayed herein.
The rear portion 44 of the hand portion 18 may also include one or more vent openings 76 to provide ventilation to a wearer's hand. The vent openings 76 can be formed along flex or break lines 52, or be contained entirely within a respective protective portion 50. It should be understood that the number of vent openings 76, as well as the location of the vent openings along flex or break lines 52 or within protective portions 50, may vary in a wide variety of ways not displayed on the accompanying figures.
The thumb portion 22 has a plurality of protective portions 102 formed thereon that extend to its tip portion 100. A flex line 104 is defined between each respective pair of the protective portions 102 to provide flexibility to the thumb.
Each of the finger portions 20 includes a plurality of protective portions 94, 96, 98 that are sewn to an outer material 99 or liner. Each of the plurality of protective portions 94, 96, 98 on one or more of the finger portions 20 is separated by a gap 97, space or break in the protective portions. In accordance with a preferred embodiment, a protective finger knuckle system 30, as will be described in further detail below in connection with
Referring now to
The middle portion 111 covers or overlies the die cut regions, or gaps 97, corresponding to the knuckles of the fingers. Each of the cap portions 110, 110′ includes a pair of side flanges 112 that extend generally downwardly and perpendicularly from the cap portion 110, 110′. Each cap portion 110, 110′ is generally dome-shaped such that it has an apex 160. The cap portions 110, 110′ as shown, includes a pair of side portions 162, 162′, a rounded front 164, 164′, and a rounded back 166, 166′. The caps 110, 110′ are preferably constructed of an impact-resistant material, such as plastic, rubber, or metal that provides protection to a wearer's finger knuckle. Other suitable materials may also be utilized. Due to the dome-shaped configuration, the thickness of the cap portions 110, 110′ can vary such that their thickest part is at the apex 160, which is the area that provides greater impact resistance. Further, the dome-shape assists in dispensing the force of the blow impacted thereto. It will be understood that the cap portion 110, 110′ can have a variety of different shapes and configurations.
Each of the side flanges 112 extends downwardly toward the glove liner and includes a pair of slots 114 formed on each side. One of the slots is an upper slot and one is a lower slot. More or less slots, or slots having varying configurations may also be employed. Each of the upper slot and the lower slot receives an elastic strap threaded or passed therethrough to secure the knuckle finger protection system 30 to the glove 10. Each end of the strap 120 is secured to the finger portion 20 such that the strap passes through both slots on one side, spans the space between the side flanges 112, and engages the slots on the other side flange 112.
The flexible middle portion 111 spans the gaps 97, corresponding to the die cuts or seams, between the adjacent protective portions 94, 96 or 96, 98 of the fingers and the thumb. The middle portion 111 allows flexing of the knuckles, but maintains the cap portions 110, 110′ in a position to provide protection to the knuckles of the wearer when the fingers or thumb are flexed. Because the protective knuckle portion 30 is not coupled to the pads 94, 96 or 96, 98 defining the gap 97, the middle portion 111 is maintained in position over the widening gap 97 as the finger is flexed. The knuckle protection system 30 thus allow the finger to flex and unflex freely without restriction and without compromising protection. The knuckle protection system can obviously be configured to cover multiple knuckles on a single finger portion by including three cap portions and two middle portions. A protective finger knuckle portion 30, is preferably disposed on each of the finger portions 20 to protect at least one of the gaps 97 between adjacent protective portions 94, 96, 98. It will be understood that a protective finger knuckle portion can be utilized on each finger as desired.
As best shown in
As shown, the middle portion 111 of the finger knuckle protective portion 30 is preferably sized in a side-to-side direction to cover the entire gap 97. Further, the cap portions 110, 110′ are sized to span the width of the finger portion 20. Specifically, the side flanges 112 have inside portions 128 that are spaced apart a distance (d) that is slightly greater than the width of the corresponding protective portions 94, 96, 98 of the finger portions 20, such that the cap portions 110, 110′ substantially overlie the respective protective portion. Thus, the inside portions 128 are disposed outwardly from the outside surface of the protective portions and preferably contact the outer side thereof. Additionally, the height (h) of the side flanges 112 from its base 129 to the underside 122 of the cap portion 110, 110′ is positioned such that it is slightly greater than and is configured such that the underside 122 of the cap portion 110, 110′ is slightly above the upper surface of the protective portions 94, 96, 98.
Referring now to
In the unflexed position, as shown in
While the present invention is directed to a finger knuckle protective system, a similar knuckle protective system could also be fashioned for use on a protective sports glove to protect a wearer's thumb knuckles. Moreover, while the protective sports glove is primarily used in the games of hockey and lacrosse, a protective glove having the finger knuckle protective system of the present invention could be utilized in other sports in which impacting blows to the hand may occur. In addition, the finger knuckle protective system could be utilized on non-sports related protective gloves.
While particular embodiments of the invention have been shown and described, numerous variations or alternate embodiments will occur to those skilled in the art. Accordingly, it is intended that the invention be limited only in terms of the appended claims.
The present application claims priority from U.S. Provisional Patent Application Ser. No. 60/895,502, filed Mar. 19, 2007, and entitled “Sports Glove Having Protective Knuckle.”
Number | Date | Country | |
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60895502 | Mar 2007 | US |