IP Library Granted Patent US 11,661,123
Granted Patent B2
US 11,661,123 · App. 17/881,877 · Granted May 30, 2023

Shock absorbing pin box system

Inventors: Timothy D. Schultz (Mishawaka, IN); Brandon Burdine (Elkhart, IN)
Assignee: LIPPERT COMPONENTS, INC.
B62D53/0807B60D1/015B60D1/249B60D1/50B62D53/0842B62D53/0885
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Quick Facts
Patent No.
US 11,661,123
App. No.
17/881,877
Granted
May 30, 2023
Kind
B2
Abstract

A shock absorbing pin box system includes a first sidewall, a second sidewall, and an upper wall. The first sidewall defines at least a first plurality of apertures arranged in first column, and the second sidewall defines at least a second plurality of apertures arranged in a second column. A plurality of tubes extend from each of the first plurality of apertures and the second plurality of apertures. A plurality of flexible and resilient tubular bushings are received in a corresponding one of the plurality of tubes. A plurality of bolts are received within corresponding ones of the pluralities of apertures of the pin box and the plurality of tubes.

Claims (55)

1. A shock absorbing pin box system comprising:

a pin box comprising:

a first sidewall;

a second sidewall;

an upper wall;

the first sidewall of the pin box defining a first plurality of pin box apertures and a second plurality of pin box apertures;

the second sidewall of the pin box defining a third plurality of pin box apertures and a fourth plurality of pin box apertures;

a first plurality of tubes connected between corresponding ones of the first plurality of pin box apertures and the third plurality of pin box apertures;

a second plurality of tubes connected between corresponding ones of the second plurality of pin box apertures and the fourth plurality of pin box apertures;

a plurality of flexible and resilient tubular bushings, each of the first and second plurality of tubes receiving at least one flexible and resilient tubular bushing; and

a plurality of bolts, wherein ones of the plurality of bolts are received within corresponding ones of the first, second, third, and fourth pluralities of pin box apertures, and corresponding ones of the first and second pluralities of tubes.

2. The shock absorbing pin box system of claim 1 further comprising:

a mounting bracket comprising:

a first wing plate; and

a second wing plate;

the first wing plate defining a first plurality of wing plate apertures and a second plurality of wing plate apertures; and

the second wing plate defining a third plurality of wing plate apertures and a fourth plurality of wing plate apertures.

3. The shock absorbing pin box system of claim 2 further comprising a cross member connecting the first wing plate to the second wing plate so that at least a portion of the first wing plate is parallel to at least a portion of the second wing plate.

4. The shock absorbing pin box system of claim 2 wherein the first and second sidewalls are received between the first and second wing plates with ones of the first, second, third, and fourth pluralities of pin box apertures coaxially aligned with corresponding ones of the first, second, third, and fourth pluralities of wing plate apertures.

5. The shock absorbing pin box system of claim 4 wherein the plurality of bolts are received within corresponding ones of the first, second, third, and fourth pluralities of wing plate apertures, corresponding ones of the first, second, third, and fourth pluralities of pin box apertures, and corresponding ones of the first and second pluralities of tubes.

6. The shock absorbing pin box system of claim 1 wherein the first plurality of pin box apertures are separated from the third plurality of pin box apertures by a first predetermined distance.

7. The shock absorbing pin box system of claim 6 wherein the second plurality of pin box apertures are separated from the fourth plurality of pin box apertures by a second predetermined distance.

8. The shock absorbing pin box system of claim 7 wherein the second predetermined distance is equal to the first predetermined distance.

9. The shock absorbing pin box system of claim 1 further comprising a rear support bracket mounted substantially between the first and second plurality of tubes.

10. The shock absorbing pin box system of claim 1 wherein the first, second, third, and fourth pluralities of pin box apertures each receive a flexible and resilient tubular bushing.

11. The shock absorbing pin box system of claim 1 wherein the first, second, third and fourth pluralities of pin box apertures are each respectively arranged in a column.

12. A shock absorbing pin box system comprising:

a pin box comprising:

a first sidewall;

a second sidewall;

an upper wall;

the upper wall connecting the first sidewall to the second sidewall; and

the first sidewall of the pin box defining a first plurality of pin box apertures;

the second sidewall of the pin box defining a second plurality of pin box apertures;

a first plurality of tubes extending from the first plurality of pin box apertures;

a second plurality of tubes extending from the second plurality of pin box apertures;

a plurality of flexible and resilient tubular bushings, each of the first and second plurality of tubes receiving at least one flexible and resilient tubular bushing; and

a plurality of bolts, wherein ones of the plurality of bolts are received within corresponding ones of the first and second pluralities of pin box apertures, and corresponding ones of the first and second pluralities of tubes.

13. The shock absorbing pin box system of claim 12 further comprising a plurality of nuts received on corresponding ones of the plurality of bolts.

14. The shock absorbing pin box system of claim 12 further comprising:

the first sidewall of the pin box defining a third plurality of pin box apertures;

the second sidewall of the pin box defining a fourth plurality of pin box apertures;

a third plurality of tubes extending from the third plurality of pin box apertures;

a fourth plurality of tubes extending from the fourth plurality of pin box apertures;

wherein each of the third and fourth plurality of tubes receiving at least one flexible and resilient tubular bushing; and

wherein ones of the plurality of bolts are received within corresponding ones of the third and fourth pluralities of pin box apertures, and corresponding ones of the third and fourth pluralities of tubes.

15. The shock absorbing pin box system of claim 14 further comprising a plurality of nuts received on corresponding ones of the plurality of bolts.

16. A shock absorbing pin box system comprising:

a pin box including side walls with a plurality of pin box apertures;

a plurality of tubes connected between the side walls in alignment with the pin box apertures;

a pair of wing plates including a plurality of wing plate apertures;

a plurality of flexible and resilient tubular bushings positioned in the plurality of tubes through the pin box apertures and the wing plate apertures;

a plurality of bushing tubes positioned in the tubular bushings and through the pin box apertures and the wing plate apertures; and

a plurality of bolts positioned in the tubular bushings and through the pin box apertures and the wing plate apertures.

17. The shock absorbing pin box system of claim 16 , wherein the pluralities of tubes, tubular bushings, bushing tubes and bolts are arranged concentrically with the bolts innermost, the bushing tubes radially outward of the bolts, the tubular bushings radially outward of the bushing tubes, and the tubes radially outward of the tubular bushings.

Assignments (2)
SECURITY INTEREST Recorded Mar 25, 2025
From: LIPPERT COMPONENTS, INC.; CURT MANUFACTURING, LLC; FURRION, LLC; FURRION LTD; INNOVATIVE DESIGN SOLUTIONS, INC.; KASPAR RANCH HAND EQUIPMENT, LLC; LIPPERT COMPONENTS MANUFACTURING, INC.; TAYLOR MADE GROUP, LLC
To: JPMORGAN CHASE BANK, N.A.
Reel/Frame 070719/0650 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 5, 2022
From: SCHULTZ, TIMOTHY D.; BURDINE, BRANDON
To: LIPPERT COMPONENTS, INC.
Reel/Frame 060731/0374 →
Continuity (3)
Continuation 16916785 · Jun 30, 2020
Provisional Application 62869611 · Jul 2, 2019
Related Publication 20220371387A1 · Nov 24, 2022