IP Library Granted Patent US 10,953,297
Granted Patent B2
US 10,953,297 · App. 15/927,576 · Granted Mar 23, 2021

Roping dummy hop mechanism

Inventor: Joshua Love (Loveland, CO)
Assignee: PRO EQUINE GROUP, INC.
A63B69/0068A63B21/0058A63B21/156A63B2225/093
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Quick Facts
Patent No.
US 10,953,297
App. No.
15/927,576
Granted
Mar 23, 2021
Kind
B2
Abstract

An apparatus for use in roping skills training and practice provides a practical, effective, lightweight, and economical alternative to using live animals for heeling practice, which involves the roping of the hind legs of the animal. This apparatus includes a simulated animal torso and a pair of simulated hind legs. The apparatus includes a support frame and a drive system. The drive system includes mechanical links that provide interconnection between the pair of simulated hind legs and the drive system, thus providing for lifelike and coordinated leg and torso movement.

Claims (58)

1. A mobile roping training apparatus comprising:

a simulated animal torso;

a pair of simulated hind legs, wherein the simulated hind legs are rotatably coupled to a rear of the simulated animal torso, such that the simulated hind legs may pivot forward and backward about the rear of the simulated animal torso;

a support frame, wherein the simulated animal torso is rotatably coupled to the support frame, such that the simulated animal torso may pivot up and down about the support frame; and

a drive system, including:

a drive shaft,

a drive pulley, coupled to the drive shaft, and

a plurality of mechanical linkages, wherein each mechanical linkage includes:

a first link having a first end and a second end, wherein the first end of the first link is non-rotatably coupled to one of the simulated hind legs, such that an angle between the first link and one of the simulated hind legs is fixed, and wherein the second end of the first link is rotatably coupled to a second link, and

the second link having a first end and a second end, wherein the first end of the second link is rotatably coupled to the second end of the first link and wherein the second end of the second link is non-rotatably coupled to one of the drive pulley and the drive shaft,

such that the first link and the second link are the only linkage components disposed between the pair of simulated hind legs and the drive pulley or the drive shaft.

2. The apparatus in claim 1 , wherein the simulated animal torso comprises a hollow shell.

3. The apparatus in claim 1 , further comprising a load spring coupled to both the simulated animal torso and to the support frame, the load spring configured to reduce a force required to raise the simulated animal torso and configured to reduce vibration.

4. The apparatus of claim 1 , wherein the support frame is vertically adjustable, such that the height of the simulated animal torso and simulated hind legs may be modified.

5. The apparatus of claim 1 , wherein the support frame includes frame skid members, configured to permit the apparatus to slide along the ground while being towed.

6. The apparatus of claim 1 , wherein the support frame includes a hitch, such that a towing device may be coupled to the support frame with the hitch.

7. The apparatus of claim 1 , further comprising a plurality of wheels rotatably coupled to the support frame, such that, responsive to the apparatus being towed by a towing device, the plurality of wheels rotate and rotational force of the plurality of wheels is translated to the drive system, wherein the drive system is powered by the plurality of wheels via kinetic energy of the apparatus.

8. The apparatus of claim 1 , further comprising a motor, wherein the drive system is powered by the motor.

9. The apparatus of claim 1 , wherein the drive pulley is an adjustment pulley, configured to adjust a speed of movement for the simulated animal torso and the simulated hind legs.

10. A mobile roping training apparatus comprising:

a simulated animal torso;

a pair of simulated hind legs, wherein the simulated hind legs are rotatably coupled to a rear of the simulated animal torso, such that the simulated hind legs may pivot forward and backward about the rear of the simulated animal torso;

a support frame, wherein the simulated animal torso is rotatably coupled to the support frame, such that the simulated animal torso may pivot up and down about the support frame; and

a drive system, including:

a drive shaft,

a drive pulley, coupled to the drive shaft,

a first drive cam, coupled to a first end of the drive shaft, and

a second drive cam, coupled to a second end of the drive shaft,

wherein each of the first drive cam and the second drive cam includes:

a rotational cam, coupled to the drive shaft,

a first link having a first end and a second end, wherein the first end of the first link is non-rotatably coupled to one of the simulated hind legs, such that an angle between the first link and one of the simulated hind legs is fixed, and wherein the second end of the first link is rotatably coupled to a second link, and

the second link having a first end and a second end, wherein the first end of the second link is rotatably coupled to the second end of the first link and wherein the second end of the second link is non-rotatably coupled to the rotational cam,

such that the first link and the second link are the only linkage components disposed between the pair of simulated hind legs and the rotational cam.

11. The apparatus of claim 10 , wherein the drive pulley includes:

a split pulley, having at least two different diameters,

a drive belt, connecting the split pulley to a power source, and

a spring loaded tensioner, configured to provide adjustment of the tension of the drive belt,

such that by adjusting a position of the drive belt from a first diameter on the split pulley to a second diameter on the split pulley, a gearing ratio between the split pulley and the power source changes.

12. The apparatus of claim 11 , further comprising a plurality of wheels rotatably coupled to the support frame such that, responsive to the apparatus being towed by a towing device, the plurality of wheels rotate and rotational force of the plurality of wheels is translated to the drive system, wherein the drive system is powered by the plurality of wheels via kinetic energy of the apparatus.

13. The apparatus of claim 11 , wherein the power source is a motor.

14. The apparatus of claim 13 , wherein the motor is mounted to the support frame.

15. The apparatus in claim 10 , wherein the simulated animal torso comprises a hollow shell.

16. The apparatus in claim 10 , further comprising a load spring coupled to both the simulated animal torso and to the support frame, the load spring configured to reduce a force required to raise the simulated animal torso and configured to reduce vibration.

17. The apparatus of claim 10 , wherein the support frame is vertically adjustable, such that the height of the simulated animal torso and simulated hind legs may be modified.

18. The apparatus of claim 10 , wherein the support frame includes frame skid members, configured to permit the apparatus to slide along the ground while being towed.

19. The apparatus of claim 10 , wherein the support frame includes a hitch, such that a towing device may be coupled to the support frame with the hitch.

20. A mobile roping training apparatus comprising:

a simulated animal torso;

a pair of simulated hind legs, wherein the simulated hind legs are rotatably coupled to a rear of the simulated animal torso, such that the simulated hind legs may pivot forward and backward about the rear of the simulated animal torso;

a support frame, wherein the simulated animal torso is rotatably coupled to the support frame, such that the simulated animal torso may pivot up and down about the support frame; and

a drive system, including:

a drive shaft,

a drive pulley, coupled to the drive shaft, and

a plurality of mechanical linkages, wherein each mechanical linkage includes:

a first link having a first end and a second end, wherein the first end of the first link is non-rotatably coupled to one of the simulated hind legs, such that an angle between the first link and one of the simulated hind legs is fixed, and wherein the second end of the first link is rotatably coupled to a second link, and

the second link having a first end and a second end, wherein the first end of the second link is rotatably coupled to the second end of the first link and wherein the second end of the second link is non-rotatably coupled to one of the drive pulley and the drive shaft,

such that the first link and the second link are the only linkage components disposed between the pair of simulated hind legs and the drive pulley or the drive shaft,

wherein rotation of the drive pulley and the drive shaft causes movement of the plurality of mechanical linkages, such that the simulated hind legs pivot and move in a rearward direction as the animal torso moves toward an upward position, and such that the simulated hind legs pivot and move in a forward direction as the animal torso moves toward a downward position, thereby simulating an anatomical movement of a running animal.

Assignments (5)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 9, 2023
From: SMART ROPING, LLC
To: SMARTY RODEO, LLC
Reel/Frame 065163/0217 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 14, 2022
From: PRO EQUINE GROUP INC
To: SMART ROPING LLC
Reel/Frame 062088/0987 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 8, 2022
From: HEEL-O-MATIC, INC.; PRO EQUINE GROUP, INC.
To: SMART ROPING, LLC
Reel/Frame 062029/0969 →
SECURITY INTEREST Recorded Sep 14, 2021
From: PRO EQUINE GROUP, INC.
To: BMO HARRIS BANK N.A.
Reel/Frame 057474/0055 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 18, 2018
From: LOVE, JOSHUA
To: PRO EQUINE GROUP, INC.
Reel/Frame 045846/0882 →
Continuity (2)
Provisional Application 62474245 · Mar 21, 2017
Related Publication 20180272216A1 · Sep 27, 2018