IP Library Granted Patent US 12,082,707
Granted Patent B2
US 12,082,707 · App. 17/890,085 · Granted Sep 10, 2024

Devices and method to removably secure a seatback shell to a seatback frame

Inventor: Douglas V. Steury (New Paris, IN)
Assignee: LIPPERT COMPONENTS, INC.
A47C7/40B60N2/682B60N2/686
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Quick Facts
Patent No.
US 12,082,707
App. No.
17/890,085
Granted
Sep 10, 2024
Kind
B2
Abstract

A seatback shell mounting device removably secures a seatback shell to a seatback frame. The seatback shell includes a support member with a base secured to the seatback shell and an outwardly extending arm with an elbow. The elbow is shaped to mate with an upper seatback frame element. A fastening member has a base secured to the seatback shell and an outwardly extending resilient lever arm with a cam surface and a step formed on an underside. The lever arm is shaped to define an underside cradle. The mounting device facilitates assembly and removal of a seatback shell onto a seatback frame.

Claims (26)

1. A seatback shell mounting device for removably securing a seatback shell to a seatback frame including an upper seatback frame element and a lower seatback frame element, the seatback shell mounting device comprising:

at least one support member including a first base securable to the seatback shell and an outwardly extending arm with an elbow, wherein the elbow is shaped to engage the upper seatback frame element; and

at least one fastening member including a second base securable to the seatback shell and an outwardly extending resilient lever arm with a cam surface and a step formed at an end of the cam surface, wherein the lever arm defines an underside cradle engageable with the lower seatback frame element, wherein the step is positioned relative to the cam surface to engage an underside of the lower seatback frame element.

2. A seatback shell mounting device according to claim 1 , further comprising an upper riser structure and a lower riser structure each securable to the seatback shell, wherein the first base of the at least one support member is secured to the upper riser structure, and wherein the second base of the at least one fastening member is secured to the lower riser structure.

3. A seatback shell mounting device according to claim 1 , wherein the at least one support member has a pair of reinforcing ribs formed on a topside extending from the first base to a terminal end, and wherein the at least one fastening member has a central spine formed in a top surface opposite the underside cradle and extending substantially between the second base and the step.

4. A seatback shell mounting device according to claim 1 , comprising two support members engageable with the upper seatback frame element and two fastening members engageable with the lower seatback frame element.

5. A seatback shell mounting device according to claim 1 , wherein the at least one support member is secured directly to the seatback shell.

6. A seatback assembly, comprising

a seatback shell;

a support member secured to the seatback shell, the support member including an outwardly extending arm with an elbow;

a fastening member secured to the seatback shell, the fastening member including an outwardly extending resilient lever arm with a cam surface and a step formed on an underside the lever arm defining an underside cradle; and

a seatback frame including an upper frame element and a lower frame element, wherein when the seatback shell is secured to the seatback frame, the outwardly extending arm of the support member engages the upper frame element from above the upper frame element, and the fastening member engages the lower frame element.

7. A seatback assembly according to claim 6 , wherein the resilient lever arm is flexible, and wherein the cam surface is configured to deflect the resilient lever arm outward when the cam surface engages the lower frame element until the lower frame element reaches the step, after which the underside cradle engages the lower frame element in a snap-fit.

8. A seatback assembly according to claim 7 , wherein when the underside cradle engages the lower frame element, the support member is positioned to bear against the upper frame element.

9. A seatback assembly according to claim 8 , wherein the seatback shell is removable from the seatback frame.

10. A seatback assembly according to claim 9 , wherein the resilient lever arm is manually displaceable to clear the step from the lower frame element, after which the seatback shell is removable from the seatback frame.

11. A seatback assembly according to claim 6 , further comprising an upper riser and a lower riser each secured to the seatback shell, wherein the support member is secured to the upper riser, and the fastening member is secured to the lower riser.

12. A seatback assembly according to claim 6 , wherein the support member has a pair of reinforcing ribs formed on a top side extending from a first base to a terminal end, and the fastening member has a central spine formed in a top surface opposite the underside and extending substantially between a second base and the step.

13. A seatback assembly according to claim 6 , wherein the support member and the fastening member are formed of plastic via plastic injection molding.

14. A seatback assembly according to claim 6 , wherein the support member is secured directly to the seatback shell.

15. A method for removably securing a seatback shell to a seatback frame with a seatback shell mounting device including a support member secured to the seatback shell and having an outwardly extending arm with an elbow, a fastening member secured to the seatback shell and having an outwardly extending resilient lever arm with a cam surface and a step formed on an underside of the lever arm defining an underside cradle, the method comprising:

securing the support member and the fastening member to the seatback shell so that the arm of the support member and the lever arm of the fastening member extend in a direction outward from the seatback shell;

lowering the seatback shell onto the seatback frame from a top of the seatback frame toward a seat of the seatback frame so that the arm of the support member contacts a first seatback frame element of the seatback frame and so that the resilient lever arm of the fastening member contacts a second seatback frame element of the seatback frame; and

applying a downward force to the seatback shell in a direction toward the seat of the seatback frame to guide the cam surface over the second seatback frame element until the step catches an underside of the second seatback frame element to snap-fit the fastening member against the second seatback frame element, so that the first seatback frame element is made to bear against a bearing surface of the support member, and so that the second seatback frame element is positioned in the underside cradle.

16. A method according to claim 15 , wherein the step of applying the downward force to the seatback shell causes the cam surface to deflect the resilient lever arm away from the second seatback frame element.

17. A method according to claim 15 , further comprising removing the seatback shell from the seatback frame by manually displacing the resilient lever arm away from the seatback shell to clear the step from the second seatback frame element, and applying an upward force to the seatback shell in a direction away from the seat of the seatback frame.

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 17, 2022
From: STEURY, DOUGLAS V.
To: LIPPERT COMPONENTS, INC.
Reel/Frame 060836/0630 →