IP Library Granted Patent US 8,123,711
Granted Patent B2
US 8,123,711 · App. 12/507,773 · Granted Feb 28, 2012

Snap lock assisted mechanical joint

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Quick Facts
Patent No.
US 8,123,711
App. No.
12/507,773
Granted
Feb 28, 2012
Kind
B2
Abstract

A compact close contour mechanical joint that uses a snap ring, a transfer gear partially press-fit into a brake wheel, a distal bar having integral gear teeth that engage the exposed portion of the transfer gear, a second bar with a T-shaped proximal end, a handle disengaging an unlocking pin to separates gear teeth that allows incremental distal bar movement, and a two-axis arrangement for distal bar rotation. Instead of using a spring biasing member, the mechanical joint uses a gear ratio reduction that provides a smaller stop increment, less travel, enhanced joint strength, less stress on gear teeth, and less force required to unlock it than prior close contour joints. Although it is contemplated for use of the mechanical joint to be primarily in orthotic, any application for which the mechanical joint's compact configuration would provide some assistance or technical advantage is considered to be within its scope.

Claims (49)

1. A strong mechanical joint for use with orthotic hardware, said mechanical joint comprising:

a housing with interior space;

a distal bar associated with said housing so as to create a first axis of rotation, said distal bar having a proximal end and an opposed end, said distal bar also having a large gear configuration integral to said proximal end and said opposed end configured for connection to orthotic hardware secured to the lower portion of a body limb;

a proximal bar associated with said housing so as to create a second axis of rotation and co-linear construction for rotation of said distal bar relative to said proximal bar, said proximal bar having an end configured for connection to orthotic hardware secured to the upper portion of a body limb;

a snap ring positioned within said interior space of said housing, said snap ring having an interior surface and ratchet teeth associated with said interior surface;

a brake wheel positioned within said interior space of said housing, said brake wheel having an exterior circumference that is configured as a pawl surface complementary to said ratchet teeth of said snap ring so as to provide one-direction movement of said brake wheel with incremental stops;

a transfer gear positioned within said interior space of said housing, said transfer gear partially press-fit into said brake wheel to create a press-fit portion and an exposed portion and so that rotation of said brake wheel produces rotation of said transfer gear, said exposed portion of said transfer gear positioned to engage said large gear configuration integral to said proximal end of said distal bar, said transfer gear also sized relative to said large gear configuration to create a gear ratio reduction;

an unlocking pin having a non-symmetrical perimeter configuration,

a handle associated with said unlocking pin and configured for causing rotational movement of said unlocking pin; and

a plurality of fasteners configured and positioned to secure said distal bar and said proximal bar relative to said housing in said co-linear construction, wherein once secured in their usable positions by said fasteners said snap ring, said brake wheel, and said transfer gear in combination produce a gear ratio reduction that allows a small stop increment for said distal bar during travel toward a position of maximum extension, and said handle rotated into an unlocked position where said snap ring around said brake wheel is held open by said unlocking pin which allows free rotation of said brake wheel, and corresponding free rotation of said distal bar relative to said proximal bar.

2. The mechanical joint of claim 1 wherein said gear ratio reduction allows stop increments of approximately three-degrees for said distal bar during travel toward a position of maximum extension.

3. The mechanical joint of claim 1 further comprising a stop pin configured and positioned to engage said large gear configuration integral to said proximal end of said distal bar so as to stop rotational movement of said distal bar at a position of maximum extension.

4. The mechanical joint of claim 3 wherein said stop pin allows said distal bar to travel approximately 135-degrees from a position of complete flexion to a position of full extension.

5. The mechanical joint of claim 1 wherein said proximal bar is a T-bar having a T-shaped proximal end and further wherein said housing has a complementary T-shaped recess sized to receive said T-shaped proximal end.

6. The mechanical joint of claim 1 wherein said fasteners comprise two pivot screws.

7. The mechanical joint of claim 1 further comprising a removable cover associated with said housing.

8. The mechanical joint of claim 7 wherein said fasteners secure said removable cover to said housing.

9. The mechanical joint of claim 7 wherein said fasteners comprise two pivot screws and said pivot screws are used to secure said removable cover to said housing.

10. A strong mechanical joint for use with orthotic hardware, said mechanical joint comprising:

a housing with interior space;

a removable cover associated with said housing;

a distal bar associated with said housing so as to create a first axis of rotation, said distal bar having a proximal end and an opposed end, said distal bar also having a large gear configuration integral to said proximal end and said opposed end configured for connection to orthotic hardware secured to the lower portion of a body limb;

a stop pin configured and positioned to engage said large gear configuration integral to said proximal end of said distal bar so as to stop rotational movement of said distal bar at a position of maximum extension;

a proximal bar associated with said housing so as to create a second axis of rotation and co-linear construction for rotation of said distal bar relative to said proximal bar, said proximal bar having an end configured for connection to orthotic hardware secured to the upper portion of a body limb;

a snap ring positioned within said interior space of said housing, said snap ring having an interior surface and ratchet teeth associated with said interior surface;

a brake wheel positioned within said interior space of said housing, said brake wheel having an exterior circumference that is configured as a pawl surface complementary to said ratchet teeth of said snap ring so as to provide one-direction movement of said brake wheel with incremental stops;

a transfer gear positioned within said interior space of said housing, said transfer gear partially press-fit into said brake wheel to create a press-fit portion and an exposed portion and so that rotation of said brake wheel produces rotation of said transfer gear, said exposed portion of said transfer gear positioned to engage said large gear configuration integral to said proximal end of said distal bar, said transfer gear also sized relative to said large gear configuration to create a gear ratio reduction;

an unlocking pin having a non-symmetrical perimeter configuration,

a handle associated with said unlocking pin and configured for causing rotational movement of said unlocking pin; and

at least two fasteners configured and positioned to secure said distal bar and said proximal bar relative to said housing in said co-linear construction, wherein once secured in their usable positions by said fasteners said snap ring, said brake wheel, and said transfer gear in combination produce a gear ratio reduction that allows a small stop increment for said distal bar during travel toward a position of maximum extension, and said handle rotated into an unlocked position where said snap ring around said brake wheel is held open by said unlocking pin which allows free rotation of said brake wheel, and corresponding free rotation of said distal bar relative to said proximal bar.

11. The mechanical joint of claim 10 wherein said gear ratio reduction allows stop increments of approximately three-degrees for said distal bar during travel toward a position of maximum extension.

12. The mechanical joint of claim 10 wherein said stop pin allows said distal bar to travel approximately 135-degrees from a position of complete flexion to a position of full extension.

13. The mechanical joint of claim 10 wherein said proximal bar is a T-bar having a T-shaped proximal end and further wherein said housing has a complementary T-shaped recess sized to receive said T-shaped proximal end.

14. The mechanical joint of claim 13 wherein said fasteners comprise two pivot screws.

15. The mechanical joint of claim 14 wherein said fasteners comprise two pivot screws and said pivot screws are used to secure said removable cover to said housing.

16. The mechanical joint of claim 15 wherein said gear ratio reduction allows stop increments of approximately three-degrees for said distal bar during travel toward a position of maximum extension, and further wherein said stop pin allows said distal bar to travel approximately 135-degrees from a position of complete flexion to a position of full extension.

17. A strong mechanical joint for use with orthotic hardware, said mechanical joint comprising:

a housing with interior space, said housing also having an exterior surface with a T-shaped recess;

a distal bar associated with said housing so as to create a first axis of rotation, said distal bar having a proximal end and an opposed end, said distal bar also having a large gear configuration integral to said proximal end and said opposed end configured for connection to orthotic hardware secured to the lower portion of a body limb;

a stop pin configured and positioned to engage said large gear configuration integral to said proximal end of said distal bar so as to stop rotational movement of said distal bar at a position of maximum extension;

a T-bar associated with said housing so as to create a second axis of rotation and co-linear construction for rotation of said distal bar relative to said T-bar, said T-bar having a T-shaped proximal end with a configuration and dimension complementary to that of said T-shaped recess so that said T-shaped proximal end is able to be received within said T-shaped recess, said T-bar also having an opposed distal end configured for connection to orthotic hardware secured to the upper portion of a body limb;

a snap ring positioned within said interior space of said housing, said snap ring having an interior surface and ratchet teeth associated with said interior surface;

a brake wheel positioned within said interior space of said housing, said brake wheel having an exterior circumference that is configured as a pawl surface complementary to said ratchet teeth of said snap ring so as to provide one-direction movement of said brake wheel with incremental stops;

a transfer gear positioned within said interior space of said housing, said transfer gear partially press-fit into said brake wheel to create a press-fit portion and an exposed portion and so that rotation of said brake wheel produces rotation of said transfer gear, said exposed portion of said transfer gear positioned to engage said large gear configuration integral to said proximal end of said distal bar, said transfer gear also sized relative to said large gear configuration to create a gear ratio reduction;

an unlocking pin having a non-symmetrical perimeter configuration,

a handle associated with said unlocking pin and configured for causing rotational movement of said unlocking pin; and

at least two fasteners configured and positioned to secure said distal bar and said proximal bar relative to said housing in said co-linear construction, wherein once secured in their usable positions by said fasteners said snap ring, said brake wheel, and said transfer gear in combination produce a gear ratio reduction that allows a small stop increment for said distal bar during travel toward a position of maximum extension, and said handle rotated into an unlocked position where said snap ring around said brake wheel is held open by said unlocking pin which allows free rotation of said brake wheel, and corresponding free rotation of said distal bar relative to said proximal bar.

18. The mechanical joint of claim 17 wherein said gear ratio reduction allows stop increments of approximately three-degrees for said distal bar during travel toward a position of maximum extension.

19. The mechanical joint of claim 17 wherein said stop pin allows said distal bar to travel approximately 135-degrees from a position of complete flexion to a position of full extension.

Assignments (6)
RELEASE OF SECOND LIEN INTELLECTUAL PROPERTYSECURITY AGREEMENT Recorded Oct 24, 2024
From: ARES CAPITAL CORPORATION
To: FILLAUER COMPANIES, INC.; FILLAUER COMPOSITES LLC; FILLAUER TRS, INC.; FILLAUER, LLC; MOTION CONTROL, INC.
Reel/Frame 069240/0310 →
RELEASE OF FIRST LIEN INTELLECTUAL PROPERTY SECURITY AGREEMENT Recorded Oct 24, 2024
From: ARES CAPITAL CORPORATION
To: FILLAUER COMPANIES, INC.; FILLAUER COMPOSITES LLC; FILLAUER TRS, INC.; FILLAUER, LLC; MOTION CONTROL, INC.
Reel/Frame 069269/0099 →
SECURITY INTEREST Recorded Mar 29, 2024
From: FILLAUER COMPANIES, INC.; FILLAUER COMPOSITES LLC; FILLAUER TRS, INC.; FILLAUER, LLC; MOTION CONTROL, INC.
To: ARES CAPITAL CORPORATION
Reel/Frame 066954/0254 →
SECURITY INTEREST Recorded Mar 29, 2024
From: FILLAUER COMPANIES, INC.; FILLAUER COMPOSITES LLC; FILLAUER TRS, INC.; FILLAUER, LLC; MOTION CONTROL, INC.
To: ARES CAPITAL CORPORATION
Reel/Frame 066955/0058 →
CORRECTIVE ASSIGNMENT TO CORRECT THE ADD DAVID LEE STUBBERS AS AN ASSIGNOR PREVIOUSLY RECORDED ON REEL 023387 FRAME 0454. ASSIGNOR(S) HEREBY CONFIRMS THE N/A. Recorded Oct 26, 2009
From: STUBBERS, DAVID LEE
To: FILLAUER COMPANIES, INC.
Reel/Frame 023447/0134 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 19, 2009
From: PANSIERA, TIMOTHY THOMAS
To: FILLAUER COMPANIES, INC.
Reel/Frame 023387/0454 →