IP Library Granted Patent US 8,672,110
Granted Patent B2
US 8,672,110 · App. 13/232,709 · Granted Mar 18, 2014

Automatic torque overload clutch

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Quick Facts
Patent No.
US 8,672,110
App. No.
13/232,709
Granted
Mar 18, 2014
Kind
B2
Abstract

A torque overload clutch comprises outer and inner members. A recess is formed in the outer member and a radial opening is formed in the inner member. A driving member is slideably captured in the opening to move between an extended, engaged position with the recess and a retracted, disengaged position. An actuator ring is urged by a spring into engagement with the driving member to bias the driving member toward the engaged position. An end of the driving member may engage the recess to define an engagement angle that is approximately between thirty-four and seventy degrees relative to a radially oriented reference. The driving member may be slideably captured in a liner seated in the opening, and one or both may be impregnated with a lubricant. A bearing may be positioned between the inner and outer members to inhibit relative movement along the clutch axis.

Claims (93)

1. A torque overload clutch capable of rotation about a clutch axis, comprising:

an outer member;

an inner member positioned radially inward from the outer member;

a recess formed in the outer member;

an opening formed through the inner member and oriented substantially radially relative to the clutch axis;

a driving member slideably captured in the opening such that the driving member moves along a driving member axis between an engaged position at which the driving member is extended radially outward to engage the recess and a disengaged position at which the driving member is retracted radially inward to disengage the recess;

an actuator ring between the outer member and the inner member, and positioned adjacent the driving member; and

a spring positioned adjacent the actuator ring and urging the actuator ring along the clutch axis into engagement with the driving member, thereby biasing the driving member toward the engaged position;

wherein when the driving member is in the engaged position, an end of the driving member engages the recess defining an engagement plane oriented at an engagement angle that is approximately between thirty-four degrees and seventy degrees relative to a reference plane extending radially outward from the clutch axis along the driving member axis; and wherein the driving member includes a port extending along the driving member axis from an inward end opposite the end to an undercut portion.

2. The torque overload clutch of claim 1 , wherein the engagement angle is approximately thirty-five degrees.

3. The torque overload clutch of claim 1 , wherein:

the spring comprises a first spring washer and a second spring washer;

the first spring defines a first spring rate and the second spring defines a second spring rate different from the first spring rate.

4. The torque overload clutch of claim 1 , wherein:

when the driving member is in the engaged position, the end of the driving member that engages the recess defines a second engagement plane; and

the second engagement plane is oriented at a second engagement angle relative to the reference plane and opposite to the engagement plane.

5. The torque overload clutch of claim 4 , wherein the second engagement angle is greater than the engagement angle.

6. The torque overload clutch of claim 1 , wherein:

the recess includes a first recess, a second recess, and a third recess;

the opening includes a first opening, a second opening, and a third opening;

the driving member includes a first driving member, a second driving member, and a third driving member;

the driving member axis includes a first driving member axis, a second driving member axis, and a third driving member axis;

a first angle defined about the clutch axis between the first driving member axis and the second driving member axis;

a second angle defined about the clutch axis between the second driving member axis and the third driving member axis;

a third angle defined about the clutch axis between the third driving member axis and the first driving member axis; and

the first angle, the second angle, and the third angle are not substantially equal.

7. The torque overload clutch of claim 1 , further comprising a plurality of protrusions circumferentially spaced about an exterior surface of the outer member.

8. The torque overload clutch of claim 1 , wherein the driving member is generally cylindrical.

9. A torque overload clutch capable of rotation about a clutch axis, comprising:

an outer member;

an inner member positioned radially inward from the outer member;

a recess formed in the outer member;

an opening formed through the inner member and oriented substantially radially relative to the clutch axis;

a liner seated in the opening;

a driving member slideably captured in the liner such that the driving member moves between an engaged position at which the driving member is extended radially outward to engage the recess and a disengaged position at which the driving member is retracted radially inward to disengage the recess;

an actuator ring between the outer member and the inner member, and positioned adjacent the driving member; and

a spring positioned adjacent the actuator ring and urging the actuator ring along the clutch axis into engagement with the driving member, thereby biasing the driving member toward the engaged position;

wherein at least one of the liner and the driving member is impregnated with a lubricant.

10. The torque overload clutch of claim 9 , wherein the at least one of the liner and the driving member are coated with the lubricant.

11. The torque overload clutch of claim 9 , wherein the lubricant includes polytetraflouroethylene.

12. The torque overload clutch of claim 9 , wherein at least one of the driving member and the liner are comprised of brass.

13. A torque overload clutch capable of rotation about a clutch axis, comprising:

an outer member;

an inner member positioned radially inward from the outer member;

an intermediate member positioned between the outer member and the inner member;

a recess formed in the outer member;

a cavity formed in the intermediate member and oriented substantially radially relative to the clutch axis;

a driving member slideably captured in the cavity such that the driving member moves between an engaged position at which the driving member is extended radially outward from the cavity to engage the recess thereby rotatably coupling the outer member and the intermediate member and a disengaged position at which the driving member is retracted radially inward into the cavity to disengage the recess thereby uncoupling the outer member and the intermediate member;

an actuator ring between the outer member and the inner member, and positioned adjacent the driving member;

a spring positioned adjacent the actuator ring and urging the actuator ring along the clutch axis into engagement with the driving member, thereby biasing the driving member toward the engaged position; and

a bearing positioned between the inner member and the outer member to inhibit relative movement between the inner member and the outer member along the clutch axis.

14. The torque overload clutch of claim 13 , further comprising:

a pocket formed in one of the intermediate member and the inner member;

a ramp formed in the one of the intermediate member and the inner member in which the pocket is not formed;

a link member seated in the pocket; and

a resilient member positioned between the pocket and the link member, and urging the link member toward the ramp;

wherein rotating the inner member relative to the intermediate member in a first direction engages the link member with a notch formed along the ramp to couple the inner member and the intermediate member, and rotating the inner member relative to the intermediate member in a second direction opposite the first direction disengages the link member with the notch to uncouple the inner member and the intermediate member.

15. The torque overload clutch of claim 13 , wherein the outer member further comprises:

a housing; and

a yoke integrally formed with the housing;

wherein the housing is case hardened relative to the yoke.

16. The torque overload clutch of claim 15 , wherein the housing is carburized.

17. The torque overload clutch of claim 13 , further comprising:

a plate adjacent the spring and positioned between the intermediate member and the outer member;

a first annular seal seated between the inner member and the intermediate member;

a second annular seal seated between the intermediate member and the plate;

a third annular seal seated between the plate and the outer member;

a bore formed through the inner member; and

an end cap seated within the bore;

wherein a lubricant is within a cavity formed by the outer member, the plate, the intermediate member, the inner member, and the end cap.

18. A torque overload clutch capable of rotation about a clutch axis, comprising:

an outer member;

an inner member positioned radially inward from the outer member;

a recess formed in the outer member;

an opening formed through the inner member and oriented substantially radially relative to the clutch axis;

a driving member slideably captured in the opening such that the driving member moves along a driving member axis between an engaged position at which the driving member is extended radially outward to engage the recess and a disengaged position at which the driving member is retracted radially inward to disengage the recess;

an actuator ring between the outer member and the inner member, and positioned adjacent the driving member; and

a spring positioned adjacent the actuator ring and urging the actuator ring along the clutch axis into engagement with the driving member, thereby biasing the driving member toward the engaged position;

wherein when the driving member is in the engaged position, an end of the driving member engages the recess defining an engagement plane oriented at an engagement angle that is approximately between thirty-four degrees and seventy degrees relative to a reference plane extending radially outward from the clutch axis along the driving member axis;

wherein the recess includes a first recess, a second recess, and a third recess;

wherein the opening includes a first opening, a second opening, and a third opening;

wherein the driving member includes a first driving member, a second driving member, and a third driving member; and

wherein the driving member axis includes a first driving member axis, a second driving member axis, and a third driving member axis;

a first angle defined about the clutch axis between the first driving member axis and the second driving member axis;

a second angle defined about the clutch axis between the second driving member axis and the third driving member axis;

a third angle defined about the clutch axis between the third driving member axis and the first driving member axis; and

wherein the first angle, the second angle, and the third angle are not substantially equal.

19. The torque overload clutch of claim 18 , wherein:

the spring comprises a first spring washer and a second spring washer;

the first spring defines a first spring rate and the second spring defines a second spring rate different from the first spring rate.

20. The torque overload clutch of claim 18 , wherein:

when the driving member is in the engaged position, the end of the driving member that engages the recess defines a second engagement plane; and

the second engagement plane is oriented at a second engagement angle relative to the reference plane and opposite to the engagement plane.

Assignments (10)
RELEASE OF SECURITY INTEREST (FIRST LIEN) Recorded Sep 11, 2023
From: JPMORGAN CHASE BANK, N.A.
To: CARLISLE BRAKE & FRICTION, INC.; B.W. ELLIOTT MANUFACTURING CO., LLC; POWER PACKER NORTH AMERICA, INC.; MAXIMA TECHNOLOGIES & SYSTEMS, LLC; WEASLER ENGINEERING, INC.
Reel/Frame 064859/0910 →
RELEASE OF SECURITY INTEREST (ABL) Recorded Sep 11, 2023
From: JPMORGAN CHASE BANK N.A.
To: CARLISLE BRAKE & FRICTION, INC.; B.W. ELLIOTT MANUFACTURING CO., LLC; POWER PACKER NORTH AMERICA, INC.; MAXIMA TECHNOLOGIES & SYSTEMS, LLC; WEASLER ENGINEERING, INC.
Reel/Frame 064859/0884 →
FIRST LIEN PATENT SECURITY AGREEMENT Recorded Aug 11, 2021
From: CARLISLE BRAKE & FRICTION, INC.; B.W. ELLIOTT MANUFACTURING CO., LLC; POWER PACKER NORTH AMERICA, INC.; MAXIMA TECHNOLOGIES & SYSTEMS, LLC; WEASLER ENGINEERING, INC.
To: JPMORGAN CHASE BANK, N.A.
Reel/Frame 057177/0437 →
ABL PATENT SECURITY AGREEMENT Recorded Aug 11, 2021
From: CARLISLE BRAKE & FRICTION, INC.; B.W. ELLIOTT MANUFACTURING CO., LLC; POWER PACKER NORTH AMERICA, INC.; MAXIMA TECHNOLOGIES & SYSTEMS, LLC; WEASLER ENGINEERING, INC.
To: JPMORGAN CHASE BANK, N.A.
Reel/Frame 057177/0472 →
RELEASE OF ABL PATENT SECURITY AGREEMENT Recorded Aug 11, 2021
From: PNC BANK, NATIONAL ASSOCIATION
To: B.W. ELLIOTT MANUFACTURING CO., LLC; MAXIMA TECHNOLOGIES & SYSTEMS, LLC; POWER PACKER NORTH AMERICA, INC.; WEASLER ENGINEERING, INC.
Reel/Frame 057177/0659 →
RELEASE OF SECURITY INTEREST Recorded Aug 11, 2021
From: SJC DLF III-S, LLC
To: B.W. ELLIOTT MANUFACTURING CO., LLC; MAXIMA TECHNOLOGIES & SYSTEMS, LLC; POWER PACKER NORTH AMERICA, INC.; WEASLER ENGINEERING, INC.
Reel/Frame 057151/0118 →
ASSIGNMENT FOR SECURITY - - PATENTS Recorded Nov 21, 2019
From: B.W. ELLIOT MANUFACTURING CO., LLC; MAXIMA TECHNOLOGIES & SYSTEMS, LLC; POWER PACKER NORTH AMERICA, INC.; WEASLER ENGINEERING, INC.
To: SJC DLF III-S, LLC, AS COLLATERAL AGENT
Reel/Frame 051080/0398 →
SECURITY AGREEMENT Recorded Nov 8, 2019
From: B.W. ELLIOTT MANUFACTURING CO., LLC; MAXIMA TECHNOLOGIES & SYSTEMS, LLC; POWER PACKER NORTH AMERICA, INC.; WEASLER ENGINEERING, INC.
To: PNC BANK, NATIONAL ASSOCIATION, AS ADMINISTRATIVE AGENT
Reel/Frame 050969/0258 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 2, 2019
From: ACTUANT CORPORATION
To: WEASLER ENGINEERING, INC.
Reel/Frame 049656/0820 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 14, 2011
From: JAEGER, DARYL J.
To: ACTUANT CORPORATION
Reel/Frame 026905/0881 →