Weighted Exercise Sliding Device
Abstract
A weighted exercise slide device for use in performing a variety of exercise routines is comprised of a weight plate encapsulated within a layer of high density polyethylene. The upper surface of the device may be provided with a plurality of small shear connectors for aid in securing a gripping surface comprised of a layer a soft or friction enhanced material. The weight plate is of a standard overall dimension but the weight of the weight plate may be altered to allow for manufacture of a plurality of differently weighted exercise slide devices of a uniform shape and size from a single mold.
Claims
exact text as granted — not AI-modifiedI claim:
1 . A weighted exercise slide device comprising:
(a) a weight; (b) a thermoplastic layer encapsulating said weight; said thermoplastic layer encapsulating said weight having a top surface and a bottom surface; and (c) a friction enhanced gripping surface on said top surface of said thermoplastic layer encapsulating said weight.
2 . The weighted exercise slide device as recited in claim 1 wherein said bottom surface of said thermoplastic layer encapsulating said weight provides a bottom sliding surface.
3 . The weighted exercise slide device as recited in claim 2 wherein said weight is a weight plate having a desired dimension and a predetermined weight.
4 . The weighted exercise slide device as recited in claim 3 wherein said weight plate has at least one borehole reducing said predetermined weight of said weight plate.
5 . The weighted exercise slide device as recited in claim 4 wherein said friction enhanced gripping surface is comprised of a layer of thermoplastic elastomer material.
6 . The weighted exercise slide device as recited in claim 5 further comprising a plurality of shear connectors anchoring said layer of thermoplastic elastomer material to said top surface of said thermoplastic layer encapsulating said weight.
7 . The weighted exercise slide device as recited in claim 6 wherein said shear connectors are molded integrally with said top surface of said thermoplastic layer encapsulating said weight.
8 . The weighted exercise slide device as recited in claim 6 wherein said shear connectors are cut into said top surface of said thermoplastic layer encapsulating said weight.
9 . The weighted exercise slide device as recited in claim 4 wherein said thermoplastic layer encapsulating said weight is comprised of high density polyethylene.
10 . A method of producing a weighted exercise slide device for use in a low friction exercise routine comprising the steps of:
(a) providing a weight plate having a predetermined dimension and a predetermined weight; (b) encapsulating said weight plate within thermoplastic material, said thermoplastic material having a top surface and a bottom surface; and (c) providing a friction enhanced gripping surface on said top surface of said thermoplastic material.
11 . The method of producing a weighted exercise slide device for use in a low friction exercise routine recited in claim 10 wherein said thermoplastic material is comprised of high density polyethylene.
12 . The method of producing a weighted exercise slide device for use in a low friction exercise routine recited in claim 11 wherein said friction enhanced gripping surface on said top surface of said thermoplastic material is a layer of thermoplastic elastomer material.
13 . The method of producing a weighted exercise slide device for use in a low friction exercise routine recited in claim 10 further comprising the additional steps of:
(a) providing at least one borehole in said weight plate; and
(b) determining if said borehole reduces the weight of said weight plate to a desired weight.
14 . The method of producing a weighted exercise slide device for use in a low friction exercise routine recited in claim 13 including the additional step of:
(a) providing a plurality of shear connectors on said top surface of said thermoplastic material; and
(b) bonding said layer of thermoplastic elastomer material to said top surface of said thermoplastic material over said plurality of shear connectors.
15 . A weighted exercise device comprising:
(a) a top structure composed of thermoplastic elastomers said top structure of a pre-determined size and shape; (b) a bottom structure composed of thermoplastic elastomers releasably connected to said top structure, said top structure and said bottom creating an internal space between said top structure and said bottom structure; and (c) a weight plate positioned within said internal space.
16 . The weighted exercise device recited in claim 15 wherein said top structure has a friction enhanced gripping surface.
17 . The weighted exercise device recited in claim 16 further comprising a space plate positioned within said internal space.
18 . The weighted exercise device recited in claim 17 wherein said weight plate is selected from a plurality of differently weighted weight plates.
19 . The weighted exercise device recited in claim 18 wherein said top structure and said bottom structure are comprised of high density polyethylene.
20 . The weighted exercise slide device as recited in claim 19 further comprising a strap or handle attached to said top structure.Join the waitlist — get patent alerts
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