IP Library Granted Patent US 9,638,234
Granted Patent B2
US 9,638,234 · App. 14/469,874 · Granted May 2, 2017

Methods and apparatus for multi-dimensional asymmetrical fastening system

Inventor: Richard Bryce Campbell (Gilbert, AZ)
Assignee: Bryce Fastener Company, Inc.
F16B23/003B25B15/004F16B23/0046
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Quick Facts
Patent No.
US 9,638,234
App. No.
14/469,874
Granted
May 2, 2017
Kind
B2
Abstract

Methods and apparatus for a multi-dimensional asymmetrical fastening system according to various aspects of the present technology include a driver and a fastener that are configured to have corresponding conforming surfaces suitably adapted to provide engagement between a plurality of driver fins and a recessed receiving area of the fastener. The driver and fastener may each be configured to include driving surfaces of varying widths. Variable widths allow for the customization of a given driver/fastener system.

Claims (73)

1. A fastening system, comprising:

a driver bit having a driving end with an exterior surface oriented around a longitudinal axis of the driver bit, wherein the exterior surface comprises:

between five and nine outwardly projecting fins, wherein:

each fin comprises a transition wall extending between a first driving surface and a second driving surface, wherein the transition wall comprises a transition wall width defined by a fin arc length;

the transition wall width of at least two of the outwardly projecting fins are not equal to each other;

the transition wall of a first outwardly projecting fin is positioned outward from the longitudinal axis a first radial distance;

the transition wall of a second outwardly projecting fin is positioned outward from the longitudinal axis a second radial distance; and

the first radial distance is not equal to the second radial distance; and

a plurality of fin gaps, wherein:

each fin gap from the plurality of fin gaps is disposed between two outwardly projecting fins and comprises a fin gap width defined by a fin gap arc length; and

the fin gap width of at least two of the plurality of fin gaps are not equal to each other; and

a fastener having a head portion and a recessed receiving area disposed within the head portion, wherein the recessed receiving area is configured to mate to the exterior surface of the driver bit.

2. A fastening system according to claim 1 , wherein a sum of all of the transition wall widths and fin gap widths equals 360 degrees.

3. A fastening system according to claim 1 , wherein:

each transition wall comprises a different width than any other transition wall; and

each fin gap comprises a different width than any other fin gap.

4. A fastening system according to claim 1 , wherein:

the transition wall of a third outwardly projecting fin is positioned outward from the longitudinal axis a third radial distance; and

the third radial distance is not equal to the first or second radial distance.

5. A fastening system according to claim 1 , wherein:

the driving end further comprises a center opening forming an interior surface oriented around the longitudinal axis; and

the head portion of the fastener further comprises a pin extending upward from a center portion of the recessed receiving area, wherein the pin is configured to fit into the center opening of the driving end when the driving bit and the fastener are mated together.

6. A driver for a fastening device having a recessed receiving area, comprising:

a body having a driving end with an exterior surface oriented around a longitudinal axis of the body, wherein the driving end is configured to mate to the recessed receiving area of the fastening device;

a plurality of outwardly projecting fins positioned on the exterior surface of the driving end, wherein:

each fin comprises a fin width forming a transition wall disposed between a driving wall and a removal wall of between about three and about one hundred eighty degrees, wherein the transition wall is disposed at a radial distance from the longitudinal axis; and

the fin width of at least one fin is different than at least one of the remaining fins;

a first transition wall of a first fin is positioned a first radial distance from the longitudinal axis;

a second transition wall of a second fin is positioned a second radial distance from the longitudinal axis; and

the first radial distance is less than the second radial distance; and

a plurality of fin gaps positioned on the exterior surface of the driving end, wherein:

the plurality of fin gaps are interspersed among the plurality of fins such that any two consecutive fins are separated by one fin gap;

the plurality of fins comprises the same number as the plurality of fin gaps;

each fin gap comprises a gap width of between about 3 and about 180 degrees; and

the fin gap width of at least one fin gap is different than at least one of the remaining fin gaps, and wherein

a sum of the widths of the plurality of fins and the plurality of fin gaps is equal to 360 degrees.

7. A driver according to claim 6 , wherein:

each fin width comprises a different value than any other fin; and

each fin gap width comprises a different value than any other fin gap.

8. A driver according to claim 6 , wherein:

a third transition wall of a third fin is positioned a third radial distance from the longitudinal axis; and

the third radial distance is greater than each of the first radial distance and the second radial distance.

9. A driver according to claim 6 , wherein:

the driving wall of any fin is not coplanar with the driving wall of any remaining fin; and

the removal wall of any fin is not coplanar with the removal wall of any remaining fin.

10. A driver according to claim 6 , further comprising a center opening in the driving end forming an interior surface oriented around the longitudinal axis.

11. A fastening device having a head portion with a recessed receiving area extending into the head portion disposed around a longitudinal axis of the head portion, comprising:

a wall defining the recessed receiving area;

a plurality of torque surfaces disposed along the wall, wherein:

each torque surface comprises a width of between about three and about one hundred eighty degrees;

the width of at least one torque surface comprises a different width than at least one of the remaining torque surfaces;

the plurality of torque surfaces each comprise a transition surface disposed between a driving surface and a removal surface, wherein the transition surface is positioned at a radial distance from the longitudinal axis;

a first transition surface of a first torque surface comprises a first radial distance;

a second transition surface of a second torque surface comprises a second radial distance; and

the first radial distance is less than the second radial distance; and

a plurality of torque surface gaps disposed along and projecting outward from the wall, wherein:

the plurality of torque surface gaps are interspersed among the plurality of torque surfaces such that any two consecutive torque surfaces are separated by one torque surface gap;

each torque surface gap comprises a gap width of between about 3 and about 180 degrees; and

the gap width of at least one torque surface gap comprises a different width than at least one of the remaining torque surface gaps, and wherein

a sum of the widths of the plurality of torque surfaces and the plurality of torque surface gaps is equal to 360 degrees.

12. A fastening device according to claim 11 , wherein:

the width of each torque surface is different than any other torque surface; and

the width of each torque surface gap is different than any other torque surface gap.

13. A fastening device according to claim 11 , wherein:

a third transition surface of a third torque surface comprises a third radial distance; and

the third radial distance is greater than each of the first radial distance and the second radial distance.

14. A fastening device according to claim 11 , wherein:

the driving surface of any torque surface is not coplanar with the driving surface of any remaining torque surface; and

the removal surface of any torque surface is not coplanar with the removal surface of any remaining torque surface.

15. A fastening device according to claim 11 , wherein the head portion further comprises a pin extending upward from a center portion of the recessed receiving area.

16. A fastening device according to claim 11 , wherein the recessed receiving area of the head portion further comprises:

an open center section extending through the head portion forming an axial pathway; and

a threaded wall disposed along the open center section.

Assignments (2)
CHANGE OF NAME Recorded Oct 5, 2016
From: BRYCE FASTENER, INC.
To: BRYCE FASTENER COMPANY, INC.
Reel/Frame 039944/0801 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 27, 2014
From: CAMPBELL, RICHARD BRYCE
To: BRYCE FASTENER, INC.
Reel/Frame 033644/0667 →
Continuity (1)
Related Publication 20160061246A1 · Mar 3, 2016