The present invention relates to gloves, and more particularly to gloves having impact protection for the dorsal side of a user's hand.
In certain activities, it is desirable to use gloves that provide impact protection for the dorsal side of the hand. It is known to provide gloves that include a resilient material such as rubber on the dorsal side to provide some cushioning.
Some examples of gloves that provide protection on the dorsal side are disclosed in CN202760233U and KR10-1681731.
There remains a need to provide improved impact protection for the dorsal sides of gloves, particularly for the vulnerable knuckles.
In one aspect, an impact damper for a glove comprises a solid convex element formed from a resilient material. The convex element has a zenith cavity formed at its zenith. Upon an impact on the convex element, the zenith cavity enables resilient outward deformation of the convex element, and the resilient outward deformation dissipates energy from the impact.
In some embodiments, the impact damper may further comprise an outwardly deformable wall formed from a resilient material, with the wall circumferentially surrounding and spaced from the convex element. Upon an impact on the convex element, the convex element engages the wall as the convex element deforms, and resilient outward deformation of the wall under urging from the deforming convex element further dissipates the energy from the impact. In one particular embodiment, the wall is divided into circumferentially spaced sectors. In another particular embodiment, the wall is continuous.
A finger protector formed from resilient material may comprise a longitudinally extending flexible digitiform base carrying a plurality of instances of the impact damper arranged in spaced-apart relation to one another and adapted to be aligned in registration with respective knuckles on a finger of a correspondingly sized human hand. The finger protector may be monolithic. The finger protector may further comprise respective series of spaced-apart protrusions extending between the impact dampers. The base may extend beyond a distal one of the impact dampers and may include a terminal projection.
A metacarpal protector formed from resilient material may comprise a flexible metacarpal linkage and a plurality of flexible metacarpal prongs extending from the metacarpal linkage in side-by-side spaced apart maniform relation, with each metacarpal prong carrying at least one instance of the impact damper. The metacarpal protector may be monolithic. Each metacarpal prong may extend beyond the respective impact damper and may include a terminal projection.
A glove may have a plurality of instances of the impact damper affixed on a dorsal side of the glove. The instances of the impact damper may be carried by a metacarpal protector and a plurality of finger protectors affixed to the glove. The instances of the impact damper may be carried by one or more of a metacarpal protector, a plurality of finger protectors and a thumb protector, all affixed to the glove.
These and other features of the invention will become more apparent from the following description in which reference is made to the appended drawings wherein:
Reference is now made to
The glove 100 has a plurality of impact dampers 110 affixed on a dorsal side 112 of the glove. In the illustrated embodiment, the impact dampers 110 are carried by a metacarpal protector 114, a plurality of finger protectors 116 and a thumb protector 118. The metacarpal protector 114, finger protectors 116 and thumb protector 118 are affixed to the glove 100 on the dorsal side 112 thereof, and may be affixed by any suitable means, including adhesive, stitching and injection molding, for example. As can be seen, the metacarpal protector 114 is affixed to the main body portion 102, the finger protectors 116 are affixed to the four finger portions 104 and the thumb protector 118 is affixed to the thumb portion 106. Thus, the glove 100 has a plurality of the impact dampers 110 affixed on the dorsal side 112 of the glove 100.
The metacarpal protector 114 is flexible, and is preferably formed from a resilient material. Examples of suitable resilient material include, but are not limited to, polyvinyl chloride and thermoplastic rubber. The metacarpal protector 114 comprises a base formed by a flexible metacarpal linkage 120 and a plurality of flexible metacarpal prongs 122 extending from the metacarpal linkage 120 in side-by-side spaced-apart maniform relation. Thus, when the glove 100 is suitably sized and is worn by a human person, the metacarpal prongs 122 will be substantially in registration with the metacarpal bones of the human person's hand. Each metacarpal prong 122 carries an impact damper 110. In the illustrated embodiment, each metacarpal prong 122 extends beyond the respective impact damper 110 and includes a chevron-shaped terminal projection 124. A series of spaced-apart protrusions 126 extend from the metacarpal prongs 122 between the impact dampers 110 and the metacarpal linkage 120; the protrusions provide additional impact protection while the spacing permits flexibility.
The finger protectors 116 are flexible and are preferably formed from a resilient material, and each comprise a longitudinally extending digitiform base 130 carrying a plurality of impact dampers 110 arranged in spaced-apart relation to one another. Examples of suitable resilient material include, but are not limited to, polyvinyl chloride and thermoplastic rubber. As can be seen in
The illustrated thumb protector 118 is of similar construction to the finger protectors, and comprises a longitudinally extending flexible digitiform base 140 carrying two spaced-apart impact dampers 110 with a series of spaced-apart protrusions 146 from the base 140 extending between the impact dampers 110. The base 140 extends beyond the distal impact damper 110 and includes a chevron-shaped terminal projection 148 to protect the tip of the thumb from impact. Analogously to the finger protectors 116, the impact dampers 110 on the thumb protector 118 are arranged so that when a suitably sized glove 100 is worn a correspondingly sized human hand, the impact dampers 110 will be aligned in registration with respective knuckles the thumb of that hand. The thumb protector 118 is preferably formed from a resilient material, examples of which include, but are not limited to, polyvinyl chloride and thermoplastic rubber.
With reference now to
The impact damper 110 comprises a solid, monolithic convex element 802 formed from a resilient material. In the illustrated embodiment, the convex element is generally shaped as a dome-topped cylinder, although other convex shapes are also contemplated, for example polygonal convex shapes such as a partial polyhedron, e.g. a partial geodesic dome. The convex element 802 is truncated and recessed, and has a zenith cavity 804 formed at its zenith 806. Upon an impact on the convex element 802, as shown by arrow 808 in
In a preferred embodiment, the impact damper 110 further comprises an outwardly deformable wall 812 formed from a resilient material. The wall 812 circumferentially surrounds and is spaced from the convex element 802 by a spacer 814. The wall 812 and spacer 814 are formed monolithically with the convex element 802. Upon an impact 810 on the convex element 802 adjacent the zenith 806 thereof, the convex element 802 engages an inner surface 816 of the wall 812 as the convex element 802 undergoes outward elastic deformation, and resilient outward deformation of the wall 812 under urging from the deforming convex element 802 further dissipates the energy from the impact 810. In the finger protectors 116 and the thumb protector 118, the wall 812 is continuous. In the metacarpal protector 114, the wall 812 is divided into circumferentially spaced sectors 818 (see
After the impact 810, the impact damper 110, including the convex element 802 and the wall 812, resiliently returns to its original configuration.
Preferably, each of the metacarpal protector 114, the finger protectors 116 and the thumb protector 118 is of monolithic construction, including the respective base 120/122, 130, 140, convex element(s) 802, wall(s) 812, protrusions 126, 136, 146 and projections 124, 138, 148.
It is contemplated that a glove according to the present disclosure need not have all of the metacarpal protector 114, the finger protectors 116 and the thumb protector 118; one or more of these components may be omitted depending on the application in which the glove is intended to be used. In some embodiments, some finger portions of the glove may have finger protectors and other portions may not. Other configurations are also contemplated, for example impact dampers as described herein may be discretely affixed to the glove in isolation from a metacarpal protector, finger protector or thumb protector.
While a right-handed glove has been shown for purposes of illustration, one of skill in the art will of course appreciate that the embodiments taught herein are equally applicable to a left-handed glove. Furthermore, the number and configuration of the impact dampers, projections and protrusions may vary, for example depending on the size of the glove. For example,
Illustrative embodiments have been described by way of example. It will be apparent to persons skilled in the art that a number of variations and modifications can be made without departing from the scope of the claims.
This list of reference numerals is provided solely for ease of reference and is not intended to be limiting.
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Number | Date | Country |
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