IP Library Granted Patent US 9,151,342
Granted Patent B2
US 9,151,342 · App. 14/300,484 · Granted Oct 6, 2015

Cone roller lock device

Inventors: Allan Triebold (Cottage Grove, MN); John Nutter (Stacy, MN); George D. Larson (Roseville, MN)
Assignee: Reell Precision Manufacturing Corporation
F16D41/061F16D41/086Y10T403/32295Y10T403/32501Y10T403/7071
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Quick Facts
Patent No.
US 9,151,342
App. No.
14/300,484
Granted
Oct 6, 2015
Kind
B2
Abstract

A roller lock device has a shaft and a housing configured over the shaft for selective relative movement thereto. A plurality of rollers is configured between the housing and the shaft, at least some of which are substantially conically shaped. A cage is configured between the housing and the shaft and adjacent the rollers such that the rollers are at least partially constrained from movement by the cage. A control is configured to move the rollers axially thereby engaging and disengaging the roller lock. The housing has ramps configured to receive the rollers, the ramps having a curved contour.

Claims (29)

1. A roller lock device comprising:

a shaft configured for rotation about a shaft axis;

a housing configured over the shaft for selective relative rotation about the shaft axis;

a plurality of rollers configured between the housing and the shaft and in contact with the shaft, at least some of which are substantially conically shaped and each of which are configured to rotate about a roller axis, which extends the length of each roller and generally parallel to the shaft axis;

a cage configured between the housing and the shaft and adjacent each of the plurality of rollers such that the rollers are at least partially constrained from movement by the cage; and

a control configured to move the rollers axially relative to the shaft;

wherein the housing comprises ramps configured with a ramp center axis extending parallel to and receiving the rollers, the ramps comprising a curved contour that is symmetrical about the ramp center axis thereby enabling bi-directional locking.

2. The roller lock device of claim 1 , wherein the ramps have an increasing ramp angle moving away from the ramp center axis thereby forming the curved contour.

3. The roller lock device of claim 1 , wherein the ramps comprise a twisted ramp surface.

4. The roller lock device of claim 3 , wherein the ramps have first and second opposing ramp sides, wherein the first ramp side is longer than the second ramp side thereby creating a twisted ramp surface.

5. The roller lock device of claim 1 , wherein axial movement of the rollers alternatively locks the roller lock device into a locked state where relative movement between the shaft and the housing is prevented, and unlocks the roller lock device into an unlocked state where relative movement between the shaft and the housing is allowed.

6. The roller lock device of claim 5 , wherein a load is coupled to one of the shaft and the housing, such that the load is alternatively held and released as the roller lock device is alternatively locked and unlocked.

7. The roller lock device of claim 5 , wherein the shaft is configured to rotate within the housing when the roller lock is in the unlocked state.

8. The roller lock device of claim 1 further comprising a spring cap coupled to the housing and configured with recesses to receive roller springs coupled to the rollers, the recesses comprising centering features for centering the rollers on a center axis of the ramps.

9. The roller lock device of claim 1 , wherein the cage aligns each of the rollers to ensure they remain substantially axially aligned with the shaft during rotation.

10. The roller lock device of claim 1 , wherein each of the plurality of rollers are substantially frusto-conically shaped.

11. The roller lock device of claim 1 , wherein in a neutral state, each roller has two lines of contact with the ramp and one line of contact with the shaft, and wherein in a locked state each roller has one line of contact with the ramp and one line of contact with the shaft.

12. A roller lock device comprising:

a shaft configured for rotation about a shaft axis;

a housing configured over the shaft for selective relative rotation about the shaft axis;

a plurality of rollers configured between the housing and the shaft, at least some of which are substantially conically shaped and each of which are configured to rotate about a roller axis, which extends the length of each roller and generally parallel to the shaft axis;

a cage between the housing and the shaft and adjacent the rollers that at least partially constrains the rollers; and

a control that moves the rollers axially relative to the shaft;

wherein the housing comprises ramps with a ramp center axis extending parallel to and receiving the plurality of rollers, the ramps comprising a curved contour that is symmetrical about the ramp center axis.

13. The roller lock device of claim 12 , wherein the ramps have an increasing nonlinear ramp angle moving away from the ramp center axis thereby forming the curved contour.

14. The roller lock device of claim 12 , wherein the ramps have first and second opposing ramp sides, wherein the first ramp side is longer than the second ramp side thereby creating a twisted ramp surface.

15. The roller lock device of claim 12 , wherein axial movement of the rollers alternatively locks the roller lock device into a locked state where relative rotation between the shaft and the housing is prevented, and unlocks the roller lock device into an unlocked state where relative rotation between the shaft and the housing is allowed.

16. The roller lock device of claim 12 further comprising a spring cap coupled to the housing and configured with recesses to receive roller springs coupled to the rollers, the recesses comprising centering features for centering the rollers on a center axis of the ramps.

17. The roller lock device of claim 12 , wherein in a neutral state, each roller has two lines of contact with the ramp and one line of contact with the shaft, and wherein in a locked state each roller has one line of contact with the ramp and one line of contact with the shaft.

Assignments (2)
SECURITY INTEREST Recorded Jan 25, 2017
From: REELL PRECISION MANUFACTURING CORPORATION
To: JPMORGAN CHASE BANK, N.A.
Reel/Frame 041075/0799 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 2, 2015
From: TRIEBOLD, ALLAN; NUTTER, JOHN; LARSON, GEORGE D.
To: REELL PRECISION MANUFACTURING CORPORATION
Reel/Frame 036474/0779 →
Continuity (3)
Division 12908609 · Oct 20, 2010
Provisional Application 61253416 · Oct 20, 2009
Related Publication 20150129387A1 · May 14, 2015