IP Library Granted Patent US 10,201,729
Granted Patent B2
US 10,201,729 · App. 15/397,094 · Granted Feb 12, 2019

Exercise device having damped oscillating foot platforms

Inventor: Benjamin F. Bailar (Philadelphia, PA)
A63B22/203A63B21/0087A63B21/023A63B21/4034A63B21/4045A63B23/04A63B23/0494A63B21/0051A63B21/00065A63B21/015A63B21/027A63B21/028A63B21/0552A63B21/06A63B21/154A63B21/225A63B2071/0063A63B2208/0233
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Quick Facts
Patent No.
US 10,201,729
App. No.
15/397,094
Granted
Feb 12, 2019
Kind
B2
Abstract

An exercise device including two foot platforms riding on elongated rails for longitudinal motion relative thereto. The platforms are directly connected to each other by one or more elastic elements. The platforms are also connected by linear and/or rotary dampers to provide motion damping. In addition, weights and/or flywheels may be used to smooth the oscillations. When the two platforms are side-by-side, the elastic elements run in a substantially crosswise direction. A seated user may place the user's feet on the platforms and move his/her feet and lower legs back and forth in a scissoring motion to move the platforms in opposing directions along the rails. In so doing, the user overcomes the resistance of the elastic elements and dampers connecting the platforms. This provides the user with exercise and its accompanying benefits.

Claims (33)

1. An oscillating exercise device comprising:

a rigid frame extending in a longitudinal direction, and defining a pair of adjacent and longitudinally-extending raceways;

a pair of platforms supported on said frame, each of said pair of platforms being supported for translational movement within a respective one of said pair of raceways;

at least one resilient member having first and second ends, the first end being joined to one of said pair of platforms, and the second end being joined to the other of said pair of platforms to resist translational movement of said pair of platforms said at least one resilient member extending linearly between said pair of platforms; and

at least one rotary damper connected to said pair of platforms to resist translational movement of said pair of platforms said rotary damper comprising at least one rotary damper hub supported by a rotary damper axle, said rotary damper axle being supported by said frame, each said rotary damper hub supporting a drive component, each said drive component supporting at least one flexible drive member connecting said pair of platforms, each said drive component comprising a toothed belt pulley, said at least one flexible drive member comprising at least on toothed belt.

2. The oscillating exercise device of claim 1 , wherein said rotary damper hub supports at least one magnet and said frame supports at least one conductive surface.

3. The oscillating exercise device of claim 1 , wherein said rotary damper hub supports at least one conductive surface and said frame supports at least one magnet.

4. The oscillating exercise device of claim 1 , wherein said rotary damper hub supports at least one friction shoe and said frame supports at least one friction surface.

5. The oscillating exercise device of claim 4 , wherein said hub comprises radial rails and said friction shoe comprises at least one groove.

6. The oscillating exercise device of claim 5 , wherein said drive component comprises a sprocket and said flexible drive member comprises a chain.

7. The oscillating exercise device of claim 5 , wherein said drive component comprises a drive pulley and said flexible drive member comprises a drive cord.

8. The oscillating exercise device of claim 7 , wherein said drive cord is wrapped at least once around said drive pulley.

9. An oscillating exercise device comprising:

a rigid frame extending in a longitudinal direction, and defining a pair of adjacent and longitudinally-extending raceways;

a pair of platforms supported on said frame, each of said pair of platforms being supported for translational movement within a respective one of said pair of raceways;

at least one resilient member having first and second ends, the first end being joined to one of said pair of platforms, and the second end being joined to the other of said pair of platforms to resist translational movement of said pair of platforms said at least one resilient member extending linearly between said pair of platforms and biasing said pair of platforms toward a neutral position adjacent one another; and

at least one rotary damper connected to said pair of platforms to resist translational movement of said pair of platforms said rotary damper comprising at least one rotary damper hub supported by a rotary damper axle, said rotary damper axle being supported by said frame, each said rotary damper hub supporting a drive component, each said drive component supporting at least one flexible drive member connecting said pair of platforms, each said drive component comprising a toothed belt pulley, said at least one flexible drive member comprising at least on toothed belt.

10. The oscillating exercise device of claim 9 , wherein said rotary damper hub supports at least one magnet and said frame supports at least one conductive surface.

11. The oscillating exercise device of claim 9 , wherein said rotary damper hub supports at least one conductive surface and said frame supports at least one magnet.

12. The oscillating exercise device of claim 9 , wherein said rotary damper hub supports at least one friction shoe and said frame supports at least one friction surface.

13. The oscillating exercise device of claim 12 , wherein said hub comprises radial rails and said friction shoe comprises at least one groove.

14. The oscillating exercise device of claim 13 , wherein said drive component comprises a sprocket and said flexible drive member comprises a chain.

15. The oscillating exercise device of claim 13 , wherein said drive component comprises a drive pulley and said flexible drive member comprises a drive cord.

16. The oscillating exercise device of claim 15 , wherein said drive cord is wrapped at least once around said drive pulley.

17. An oscillating exercise device comprising:

a rigid frame extending in a longitudinal direction, and defining a pair of adjacent and longitudinally-extending raceways;

a pair of platforms supported on said frame, each of said pair of platforms being supported for translational movement within a respective one of said pair of raceways;

at least one resilient member having first and second ends, the first end being joined to one of said pair of platforms, and the second end being joined to the other of said pair of platforms to resist translational movement of said pair of platforms said at least one resilient member extending linearly between said pair of platforms; and

at least one rotary damper connected to said pair of platforms to resist translational movement of said pair of platforms said rotary damper comprising at least one rotary damper hub supported by a rotary damper axle, said rotary damper axle being supported by said frame, each said rotary damper hub supporting a drive component, each said drive component supporting at least one flexible drive member connecting said pair of platforms, each said drive component comprising a toothed belt pulley, said at least one flexible drive member comprising at least on toothed belt;

whereby forcible movement of said platforms of said pair of platforms in opposite directions stretches said at least one resilient member, said at least one resilient member resisting such movement in opposite directions and biasing said pair of platforms toward a neutral position.

18. The oscillating exercise device of claim 17 , wherein said rotary damper hub supports at least one magnet and said frame supports at least one conductive surface.

19. The oscillating exercise device of claim 17 , wherein said rotary damper hub supports at least one conductive surface and said frame supports at least one magnet.

20. The oscillating exercise device of claim 17 , wherein said rotary damper hub supports at least one friction shoe and said frame supports at least one friction surface.

Continuity (4)
Continuation In Part 15211037 · Jul 15, 2016
Continuation In Part 15089636 · Apr 4, 2016
Provisional Application 62144501 · Apr 8, 2015
Related Publication 20170113094A1 · Apr 27, 2017