IP Library Granted Patent US 10,126,091
Granted Patent B2
US 10,126,091 · App. 15/657,979 · Granted Nov 13, 2018

Zero torque riser

Inventor: Kirk L. Wendelburg (Los Angeles, CA)
F41B5/1426F41B5/10F41B5/14F41B5/1403
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Quick Facts
Patent No.
US 10,126,091
App. No.
15/657,979
Granted
Nov 13, 2018
Kind
B2
Abstract

A zero torque riser for an archery bow that provides an hemispherical pivoting connection between a hand grip and a riser body by using a ball and socket connection. A spherical head is variably mounted in a spherical socket on a hand grip. The spherical head is mounted on a variable position peg on the riser body.

Claims (32)

1. A zero torque riser for an archery bow, comprising:

a riser body having a forward riser beam disposed on an anterior portion of the riser body;

a mounting peg attached to a posterior surface of the forward riser beam;

a hand grip; and

a hemispherical pivoting means for attaching the hand grip to the mounting peg, wherein the mounting peg comprises a tapered stem and the hemispherical pivoting means comprises a spherical head having a tapered port received on and securely connected to the tapered stem.

2. The zero torque riser of claim 1 , the riser body further comprising an upper riser portion extending above the forward riser beam, an arrow shelf disposed between the forward riser beam and the upper riser portion, a lower riser portion extending below the forward riser beam, and a rear riser beam spanning from the lower riser portion to the upper riser portion.

3. The zero torque riser of claim 2 , the riser body further comprising multiple lateral bridge supports spanning from the lower riser portion to the upper riser portion or the arrow shelf.

4. The zero torque riser of claim 2 , the riser body further comprising a sight window bridge support spanning from the arrow shelf to an upper end of the upper riser portion.

5. The zero torque riser of claim 1 , wherein the spherical head is rotatably mounted in a spherical socket on the hand grip.

6. The zero torque riser of claim 5 , wherein the spherical socket is formed by an upper cap and a lower cap surrounding the spherical head within an anterior channel on the hand grip, wherein the upper cap and lower cap are secured within the anterior channel.

7. The zero torque riser of claim 6 , further comprising a base plate to which the upper cap and lower cap are securely mounted, wherein the base plate is secured to an anterior surface of the hand grip.

8. A zero torque riser for an archery bow, comprising:

a riser body having a forward riser beam disposed on an anterior portion of the riser body;

a mounting peg attached to a posterior surface of the forward riser beam;

a hand grip; and

a hemispherical pivoting means for attaching the hand grip to the mounting peg, wherein the hemispherical pivoting means comprises a pivoting ball mount having an elongated central stem having a spherical head attached to one end and a base attached to an opposite end, wherein the spherical head is rotatably mounted in a spherical socket on the hand grip and the base includes a tapered port configured to receive and securely connect to a tapered stem on the mounting peg.

9. The zero torque riser of claim 8 , further comprising a plurality of mounting holes on the forward riser beam, and an adjustable clamp configured to adjustably attach the mounting peg to the forward riser beam by one or more of the plurality of mounting holes.

10. The zero torque riser of claim 9 , further comprising vibration padding between the forward riser beam, the mounting peg, and the adjustable clamp.

11. A zero torque riser for an archery bow, comprising:

a riser body having a forward riser beam disposed on an anterior portion of the riser body, wherein the forward riser beam comprises a plurality of mounting holes;

an adjustable clamp configured to adjustably attach to the forward riser beam by one or more of the plurality of mounting holes;

a mounting peg attached to a posterior surface of the forward riser beam by the adjustable clamp;

a hand grip; and

a spherical head securely connected to the mounting peg and rotatably mounted in a spherical socket on the hand grip, wherein the hand grip is attached to the mounting peg in a hemispherically pivoting manner.

12. The zero torque riser of claim 11 , the riser body further comprising an upper riser portion extending above the forward riser beam, an arrow shelf disposed between the forward riser beam and the upper riser portion, a lower riser portion extending below the forward riser beam, and a rear riser beam spanning from the lower riser portion to the upper riser portion.

13. The zero torque riser of claim 12 , the riser body further comprising multiple lateral bridge supports spanning from the lower riser portion to the upper riser portion or the arrow shelf.

14. The zero torque riser of claim 12 , the riser body further comprising a sight window bridge support spanning from the arrow shelf to an upper end of the upper riser portion.

15. The zero torque riser of claim 11 , wherein the mounting peg has a tapered stem and the spherical head has a tapered port configured to receive and securely connect to the tapered stem.

16. The zero torque riser of claim 11 , wherein the spherical socket is formed by an upper cap and a lower cap surrounding the spherical head within an anterior channel on the hand grip, wherein the upper cap and lower cap are secured within the anterior channel.

17. The zero torque riser of claim 16 , further comprising a base plate to which the upper cap and lower cap are securely mounted, wherein the base plate is secured to an anterior surface of the hand grip.

18. The zero torque riser of claim 11 , further comprising a pivoting ball mount consisting of an elongated central stem having the spherical head attached to one end and a base attached to an opposite end, wherein the base includes a tapered port configured to receive and securely connect to a tapered stem on the mounting peg.

19. The zero torque riser of claim 11 , further comprising vibration padding between the forward riser beam, the mounting peg, and the adjustable clamp.

Continuity (2)
Provisional Application 62367008 · Jul 26, 2016
Related Publication 20180031348A1 · Feb 1, 2018
Cited By (4)
US 1,103,323 US 12,264,893 US 12,281,870 US 12,435,944