IP Library Granted Patent US 11,226,167
Granted Patent B2
US 11,226,167 · App. 16/919,698 · Granted Jan 18, 2022

Tension amplifying assembly and method for archery bows

Inventor: Anders Thalberg (Hafslundsoey, NO)
Assignee: Krysse AS
F41B5/1403F41B5/10F41B5/14
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Quick Facts
Patent No.
US 11,226,167
App. No.
16/919,698
Granted
Jan 18, 2022
Kind
B2
Abstract

A tension amplifying assembly and method are disclosed herein. The tension amplifying assembly, in an embodiment, includes a plurality of connection points or connection members configured to be coupled to a structure of an archery bow. Each of the connection members is configured to movably couple one of the limbs to the structure so that each of the limbs is movable from a first position relative to the structure to a second position relative to the structure. The tension amplifying assembly also includes a plurality of piston-cylinder assemblies, at least one reservoir tillable with a fluid, at least one valve, and a switch device configured to be operatively coupled to the at least one valve. The connection members are configured to cause the limbs to move from the first positions to the second positions in response to an operation of the switch device, and the movements cause the tension in the bow string to increase.

Claims (82)

1. A tension amplifying assembly comprising:

a plurality of pivot points, wherein each of the pivot points is configured to be moveably coupled to one of a plurality of limbs of an archery bow;

a plurality of connection members configured to be coupled to a frame of the archery bow, wherein:

the archery bow comprises a bow string coupled to the limbs; and

each of the connection members is configured to move one of the pivot points that is coupled to one of the limbs so that the one of the limbs is pivotal from a first position relative to the frame to a second position relative to the frame;

a plurality of piston-cylinder assemblies configured to be coupled to the archery bow, wherein:

each of the piston-cylinder assemblies is configured to be operatively coupled to one of the connection members; and

each of the piston-cylinder assemblies comprises a pressure chamber and a piston rod;

at least one gas reservoir tillable with a gas, wherein the at least one gas reservoir is configured to be fluidly connected to the pressure chambers;

at least one valve configured to be fluidly connected to the at least one gas reservoir; and

a switch device configured to be operatively coupled to the at least one valve,

wherein the connection members are configured to cause the limbs to move from the first positions to the second positions in response to an operation of the switch device,

wherein the movements to the second positions cause a tension in the bow string to increase to a tension level.

2. The tension amplifying assembly of claim 1 , wherein:

the frame comprises a riser, and

the archery bow comprises a compound bow.

3. The tension amplifying assembly of claim 1 , wherein:

the tension level comprises a second tension level; and

the switch device is operable in a plurality of states comprising a relief state and a load state,

wherein, when the switch device comprises the relief state, the connection members are configured to enable the limbs to comprise the first positions, which enables the tension to comprise a first tension level,

wherein, in response to the switch device being changed to the load state, the connection members are configured to cause the limbs to pivot to the second positions,

wherein the pivoting of the limbs to the second positions causes the tension to comprise the second tension level that is greater than the first tension level.

4. The tension amplifying assembly of claim 3 , wherein:

each of the connection members is coupled to one of the pivot points;

the connection members are configured to cause each of the pivot points to move away from the frame in response to the switch device being changed to the load state;

the connection members are configured to cause each of the pivot points to move toward the frame in response to the switch device being changed to the relief state; and

the second tension level is sufficient to enable the bow string to launch a projectile to shoot a target.

5. The tension amplifying assembly of claim 1 , comprising one or more supply lines configured to fluidly connect the at least one gas reservoir to the pressure chambers, wherein at least part of the one or more supply lines is configured to be positioned within a cavity defined by the archery bow.

6. The tension amplifying assembly of claim 1 , comprising a muffler operatively coupled to the at least one valve.

7. The tension amplifying assembly of claim 1 , comprising a silencer operatively coupled to the at least one valve.

8. The tension amplifying assembly of claim 1 , wherein:

the at least one gas reservoir is configured to be detached from the archery bow; and

the at least one gas reservoir comprises a container that comprises a threaded portion.

9. The tension amplifying assembly of claim 1 , wherein:

the gas is pressurized within the at least one least one gas reservoir so as to cause a force;

the force affects the second positions, which affects the tension; and

the tension amplifying assembly comprises a regulator configured to adjust a magnitude of the force, which adjusts the tension.

10. The tension amplifying assembly of claim 9 , wherein the regulator comprises a gas volume output regulator fluidly connected to the at least one gas reservoir.

11. The tension amplifying assembly of claim 1 , wherein:

the gas is pressurized within the at least one least one gas reservoir so as to cause a force;

the force affects the second positions; and

the tension amplifying assembly comprises a reduction device configured to reduce a magnitude of the force, which adjusts the tension.

12. An archery bow comprising the tension amplifying assembly of claim 11 .

13. A tension amplifying assembly comprising:

a plurality of pivot points, wherein each of the pivot points is configured to be moveably coupled to one of a plurality of limbs of an archery bow;

a plurality of connection members configured to be coupled to a structure of the archery bow, wherein:

the archery bow comprises a bow string coupled to the limbs; and

each of the connection members is configured to move one of the pivot points that is coupled to one of the limbs so that the one of the limbs is movable from a first position relative to the structure to a second position relative to the structure;

a plurality of piston-cylinder assemblies configured to be coupled to the archery bow, wherein each of the piston-cylinder assemblies is configured to be operatively coupled to one of the connection members;

at least one reservoir fillable with a fluid, wherein the at least one reservoir is configured to be fluidly connected to the piston-cylinder assemblies;

at least one valve configured to be fluidly connected to the at least one reservoir; and

a switch device configured to be operatively coupled to the at least one valve,

wherein the connection members are configured to cause the limbs to move from the first positions to the second positions in response to an operation of the switch device,

wherein the movements to the second positions cause a tension in the bow string to increase.

14. The tension amplifying assembly of claim 13 , wherein:

each of the connection members is coupled to one of the pivot points;

the connection members are configured to cause each of the pivot points to move away from the structure in response to the switch device being changed to a load state:

the connection members are configured to cause each of the pivot points to move toward the structure in response to the switch device being changed to a relief state; and

the movements of the pivot points cause the tension to increase to a tension level; and

the tension level is sufficient to enable the bow string to launch a projectile to shoot a target.

15. The tension amplifying assembly of claim 13 , comprising one or more supply lines configured to fluidly connect the at least one reservoir to the piston-cylinder assemblies, wherein at least part of the one or more supply lines is configured to be positioned within a cavity defined by the archery bow.

16. The tension amplifying assembly of claim 13 , wherein:

the tension amplifying assembly comprises a silencer operatively coupled to the at least one valve;

the at least one reservoir is configured to be detached from the archery bow; and

the at least one reservoir comprises a container that comprises a threaded portion.

17. The tension amplifying assembly of claim 13 , wherein:

the fluid is pressurized within the at least one reservoir so as to cause a force:

the force affects the second positions; and

the tension amplifying assembly comprises a regulator configured to adjust a magnitude of the force.

18. The tension amplifying assembly of claim 17 , wherein the regulator comprises a fluid volume output regulator fluidly connected to the at least one reservoir.

19. An archery bow comprising the tension amplifying assembly of claim 13 .

20. A method for manufacturing a tension amplifying assembly, the method comprising:

configuring each one of a plurality of pivot points to be coupled to one of a plurality of limbs of an archery bow;

configuring a plurality of connection members to be coupled to a structure of t archery bow, wherein:

the archery bow comprises a bow string coupled to the limbs; and

each of the connection members is configured to move one of the pivot points that is coupled to one of the limbs so that the one of the limbs is movable from a first position relative to the structure to a second position relative to the structure;

obtaining a plurality of piston-cylinder assemblies that are configured to be coupled to the archery bow, wherein each of the piston-cylinder assemblies comprises a piston rod configured to be operatively coupled to one of the connection members;

obtaining at least one reservoir fillable with a fluid, wherein the at least one reservoir is configured to be fluidly connected to the piston-cylinder assemblies;

obtaining at least one valve configured to be fluidly connected to the at least one reservoir; and

obtaining a switch device configured to be operatively coupled to the at least one valve,

wherein the connection members are configured to cause the limbs to move from the first positions to the second positions in response to an operation of the switch device,

wherein the movements to the second positions cause a tension in the bow string to increase.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 2, 2020
From: THALBERG, ANDERS
To: BAKKE INVEST AS
Reel/Frame 053109/0816 →
CHANGE OF NAME Recorded Jul 2, 2020
From: BAKKE INVEST AS
To: KRYSSE AS
Reel/Frame 054342/0834 →
Continuity (2)
Continuation 16317645 · Jan 15, 2019
Related Publication 20200333102A1 · Oct 22, 2020