IP Library Granted Patent US 11,754,125
Granted Patent B2
US 11,754,125 · App. 17/221,906 · Granted Sep 12, 2023

Universal joint with reinforced yoke ears

Inventor: Thomas John Kingston (Loveland, CO)
Assignee: SPIDERTRAX, INC.
F16D3/40F16D2250/0084Y10T29/49963Y10T403/7098
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 11,754,125
App. No.
17/221,906
Granted
Sep 12, 2023
Kind
B2
Abstract

A universal joint for vehicle drivetrains and the like that eliminates the spinning of bearing caps relative to yoke years and trunnions and inhibits inadvertent spreading of opposing ears of a yoke away from each other under increasing torsional loads to reduce wear and failure of the joint. Broadly, the disclosed universal joint includes a central body having a plurality of pairs of opposite apertures, first and second yokes that are disposed about the central body over respective ones of the pairs of apertures, and a plurality of trunnions inserted through the yoke ears and into the apertures of the body to pivotally secure the yokes to the body. Each trunnion is non-rotatable relative to its respective yoke and a locking assembly inhibits movement of each opposite pair of trunnions away from each other thereby inhibiting movement of the opposite ears of each respective yoke away from each other.

Claims (39)

1. A universal joint comprising:

a central body having first and second opposite apertures through which a first reference axis is defined;

a first yoke portion that is configured to be secured to a first torque transmitting shaft, wherein the first yoke portion includes a first yoke ear and a second yoke ear that are respectively disposed over the first and second opposite apertures, the first yoke ear and the second yoke ear each having a depression formed in an outward-facing surface, the depression having a non-circular outer perimeter that surrounds a through-hole;

a first attachment member seated in the depression of the first yoke ear and securing the first yoke ear to the central body by extending through the through-hole of the first yoke ear; and

a second attachment member seated in the depression of the second yoke ear and securing the second yoke ear to the central body by extending through the through-hole of the second yoke ear.

2. The universal joint of claim 1 , wherein the first attachment member has a non-circular outer perimeter that is seated within the depression of the first yoke ear of the first yoke portion to prevent rotation of the first attachment member relative to the first yoke ear, and wherein the second attachment member has a non-circular outer perimeter that is seated within the depression of the second yoke ear of the first yoke portion to prevent rotation of the second attachment member relative to the second yoke ear.

3. The universal joint of claim 1 , wherein the depression of each of the first and second opposite apertures of the first yoke portion is defined by a lower surface, wherein the first and second attachment members each include a surface that contacts the lower surface of the corresponding depression of the first yoke portion to inhibit movement of the first yoke ear and t the second yoke ear of the first yoke portion in first and second opposite direction along the first reference axis.

4. The universal joint of claim 1 , wherein the central body further includes third and fourth opposite apertures through which a second reference axis is defined and wherein the universal joint further comprises:

a second yoke portion that is configured to be secured to a second torque transmitting shaft, wherein the second yoke portion includes first and second spaced opposite ears that are respectively disposed over the third and fourth opposite apertures.

5. The universal joint of claim 4 , wherein the first yoke ear and the second yoke ear of the second yoke portion each have a depression formed in an outward-facing surface, the depression having a non-circular outer perimeter that surrounds a through-hole.

6. The universal joint of claim 5 , further comprising:

a third attachment member seated in the depression of the first yoke ear of the second yoke portion and securing the first yoke portion to the central body along the second reference axis; and

a fourth attachment member seated in the depression of the second yoke ear of the second yoke portion and securing the second yoke portion to the central body along the second reference axis.

7. A universal joint comprising:

a central body having first and second opposite apertures through which a first reference axis is defined;

a first yoke portion that is configured to be secured to a first torque transmitting shaft, wherein the first yoke portion includes a first yoke ear and a second yoke ear that are respectively disposed over the first and second opposite apertures;

a first attachment member inserted through the first yoke ear of the first yoke portion to secure the first yoke ear to the central body, the first attachment member having a non-circular outer perimeter seated within a corresponding depression formed on an outer surface of the first yoke ear, the corresponding depression having a non-circular outer perimeter sized and shaped to receive the non-circular outer perimeter of the first attachment member to inhibit rotation of the first attachment member relative to the first yoke portion and thereby prevent wear on the first yoke ear of the first yoke portion; and

a second attachment member inserted through the second yoke ear of the first yoke portion to secure the second yoke ear to the central body, the second attachment member having a non-circular outer perimeter being seated within a corresponding depression formed on an outer surface of the second yoke ear, the corresponding depression having a non-circular outer perimeter sized and shaped to receive the non-circular outer perimeter of the second attachment member to inhibit rotation of the second attachment member relative to the first yoke portion and thereby prevent wear on the second yoke ear of the first yoke portion.

8. The universal joint of claim 7 , wherein the central body further includes third and fourth opposite apertures through which a second reference axis is defined and wherein the universal joint further comprises:

a second yoke portion that is configured to be secured to a second torque transmitting shaft, wherein the second yoke portion includes first and second spaced opposite ears that are respectively disposed over the third and fourth opposite apertures.

9. The universal joint of claim 8 , further comprising:

a third attachment member secured to the central body and inserted through the first yoke ear of the second yoke portion, the first attachment member having a non-circular outer perimeter seated within a corresponding depression formed on an outer surface of the second yoke ear, the corresponding depression having a non-circular outer perimeter sized and shaped to receive the non-circular outer perimeter of the third attachment member to inhibit rotation of the third attachment member relative to the second yoke portion; and

a fourth attachment member secured to the central body and inserted through the second yoke ear of the second yoke portion, the second attachment member having a non-circular outer perimeter seated within a corresponding depression formed on an outer surface of the second yoke ear of the second yoke portion, the corresponding depression having a non-circular outer perimeter sized and shaped to receive the non-circular outer perimeter of the fourth attachment member to inhibit rotation of the fourth attachment member relative to the second yoke portion.

10. The universal joint of claim 9 , further including a locking assembly disposed within the central body and secured to the first, second, third, and fourth attachment members to inhibit movement thereof along the first reference axis and second reference axis, respectively.

11. The universal joint of claim 9 , wherein the depression of each of the first and second opposite apertures of the second yoke portion is defined by a lower surface, wherein each of the third and fourth attachment members includes a surface that contacts the lower surface of the corresponding depression of second yoke portion to inhibit movement of the first yoke ear and the second yoke ear of the second yoke portion in first and second opposite direction along the second reference axis.

12. The universal joint of claim 7 , wherein the depression of each of the first and second opposite apertures of the first yoke portion is defined by a lower surface, wherein the first and second attachment members each include a surface that contacts the lower surface of the corresponding depression in the first yoke portion to inhibit movement of the first yoke ear and the second yoke ear of the first yoke portion in first and second opposite direction along the first reference axis.

13. A method of assembling a universal joint, comprising:

positioning a first yoke ear and a second yoke ear of a first yoke portion over respective first and second spaced apertures of a central body, the central body having first and second opposite apertures through which a first reference axis is defined;

inserting a first attachment member through the first yoke ear of the first yoke portion and the first aperture of the central body along a first reference axis until a non-circular perimeter of the first attachment member is seated within a corresponding depression with a non-circular outer perimeter formed on an outer surface of the first yoke ear of the first yoke portion to inhibit relative rotation between the first attachment member and the first yoke portion;

inserting a second attachment member through the second yoke ear of the first yoke portion and the first aperture of the central body along a second reference axis until a non-circular perimeter of the second attachment member is seated within a corresponding depression with a non-circular outer perimeter formed on an outer surface of the first yoke ear of the first yoke portion to inhibit relative rotation between the first attachment member and the first yoke portion.

14. The method of claim 13 , wherein the central body further includes third and fourth opposite apertures through which a second reference axis is defined and wherein the method further comprises:

securing a second yoke portion to the central body, wherein the second yoke portion includes first and second spaced opposite ears that are respectively disposed over the third and fourth opposite apertures.

15. The method of claim 14 , wherein securing a second yoke portion to the central body further comprises:

coupling a third attachment member to the central body by inserting the third attachment member through the first yoke ear of the second yoke portion and the third aperture of the central body until a non-circular perimeter of the third attachment member is seated within a corresponding depression with a non-circular outer perimeter formed on an outer surface of the first yoke ear of the second yoke portion;

coupling a fourth attachment member to the central body by inserting the fourth attachment member through the second yoke ear of the second yoke portion and the fourth aperture of the central body until a non-circular perimeter of the fourth attachment member is seated in a corresponding depression with a non-circular outer perimeter formed on an outer surface of the second yoke ear of the second yoke portion.

16. The method of claim 15 , further including a locking assembly disposed within the central body and secured to the first, second, third, and fourth attachment members to inhibit movement thereof along the first reference axis and second reference axis, respectively.

17. The method of claim 15 , wherein the depression of each of the first and second opposite apertures of the second yoke portion is defined by a lower surface, wherein each of the third and fourth attachment members includes a surface that contacts the lower surface of the corresponding depression of the second yoke portion to inhibit movement of the first yoke ear and the second yoke ear of the second yoke portion in first and second opposite direction along the second reference axis.

18. The method of claim 14 , wherein the first reference axis and the second reference axis are perpendicular to one another.

19. The method of claim 13 , wherein the depression of each of the first and second opposite apertures of the first yoke portion is defined by a lower surface, wherein the first and second attachment members each include a surface that contacts the lower surface of the corresponding depression in the first yoke portion to inhibit movement of the first yoke ear and the second yoke ear of the first yoke portion in first and second opposite direction along the first reference axis.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 22, 2025
From: SPIDERTRAX, INC.
To: SPIDERTRAX SALES, LLC
Reel/Frame 072643/0768 →
SECURITY INTEREST Recorded Oct 21, 2025
From: SPIDERTRAX SALES, LLC
To: SPIDERTRAX, INC.
Reel/Frame 072628/0887 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 20, 2021
From: KINGSTON, THOMAS JOHN
To: SPIDERTRAX, INC.
Reel/Frame 056303/0592 →
Continuity (2)
Continuation 16001642 · Jun 6, 2018
Related Publication 20210270326A1 · Sep 2, 2021
Cited By (3)
US 1,057,534 US 1,071,715 US 12,327,536