IP Library Granted Patent US 10,306,990
Granted Patent B2
US 10,306,990 · App. 15/119,500 · Granted Jun 4, 2019

Adjustable seat occupant support assembly

Inventor: Kevin Hill (Mequon, WI)
Assignee: Milsco Manufacturing Company, A Unit of Jason Incorporated
A47C7/462B60N2/667
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Quick Facts
Patent No.
US 10,306,990
App. No.
15/119,500
Granted
Jun 4, 2019
Kind
B2
Abstract

An adjustable seat occupant assembly for a vehicle seat including an elongate beam spring with an inline slider mechanism at its proximal end that displaces an beam spring flexor, e.g., elongate strap or link, operatively connected to a distal end of the spring to change the amount of flexure and prominence during adjustment to adjust support. In one embodiment, the mechanism is an inline slider crank mechanism carried by a drive carriage extending from the proximal end that rotates a crank when a knob is turned reciprocating the flexor between a fully retracted position where flexure is maximum and a fully extended position flexure is minimum. In another preferred embodiment, the mechanism is an inline slider cam-follower mechanism with a cam rotated by the knob to slidably displace a translating follower yoke that moves the flexor to change spring flexure.

Claims (43)

1. An adjustable seat support assembly comprising:

an elongate flexible beam spring having a flexure that changes when an effective length of the beam spring is changed, the beam spring having a proximal end and a distal end and being defined by an elongate body that extends along a longitudinal axis between the proximal end and the distal end and that is deflectable and non-compressible relative to the longitudinal axis of the elongate body; and

an actuator that changes the flexure of the beam spring by changing the effective length of the beam spring, the actuator comprising an inline slider mechanism disposed at the proximal end of the beam spring, an elongate substantially rigid beam spring flexor extending outwardly from the inline slider mechanism longitudinally alongside the beam spring from the proximal end of the beam spring to the distal end of the beam spring, the beam spring flexor connected to the distal end of the beam spring and displaced by the inline slider mechanism longitudinally relative to the beam spring to change the amount of flexure of the beam spring in adjusting an amount of support provided by the beam spring to a seat occupant.

2. The adjustable seat support assembly of claim 1 wherein the beam spring flexor comprises an elongate substantially rigid plastic strap that is slidably coupled to the distal end of the beam spring.

3. The adjustable seat support assembly of claim 1 wherein the beam spring has a beam spring flexor guide arrangement formed therein that slidably guides movement of the beam spring flexor relative to the beam spring in changing an effective length of the beam spring in changing beam flexure.

4. The adjustable seat support assembly of claim 3 wherein the guide arrangement comprises a pair of spaced apart beam flexor guides formed in the beam spring, with one of the beam flexor guides disposed at the proximal end of the beam spring and the other one of the beam flexor guides disposed at the distal end of the beam spring.

5. The adjustable seat support assembly of claim 4 wherein each one of the beam flexor guides comprises one of a guide slot and guide channel.

6. The adjustable seat support assembly of claim 1 wherein the inline slider mechanism is disposed in line with the longitudinal axis of the beam spring that displaces the beam spring flexor relative to the beam spring to change the effective length of the beam spring and the amount of flexure of the beam spring.

7. The adjustable seat support assembly of claim 1 wherein the inline slider mechanism comprises an inline slider crank mechanism having a rotary crank that displaces the beam spring flexor when the rotary crank is rotated.

8. The adjustable seat support assembly of claim 7 wherein the rotary crank comprises a ratchet gear.

9. The adjustable seat support assembly of claim 1 wherein the inline slider mechanism comprises an inline slider cam-follower mechanism having a rotary cam that displaces a follower yoke riding on the cam, the beam spring flexor extending outwardly from the follower yoke displacing the beam spring flexor substantially in unison with displacement of the follower yoke.

10. The adjustable seat support assembly of claim 9 wherein the follower yoke is slidably coupled to a seat extending outwardly from the proximal end of the beam spring.

11. The adjustable seat support assembly of claim 10 wherein the follower yoke has a sidewall bounding the cam with a follower radially inwardly extending from the yoke sidewall that rides along an outer profile of the cam.

12. The adjustable seat support assembly of claim 11 wherein the cam has a radially stepped profile with a plurality of circumferentially spaced apart stops which releasably receive and retain the follower therein in a discrete beam spring adjustment position.

13. The adjustable seat support assembly of claim 1 wherein the actuator further comprises a rotatable crank in operable cooperation with the beam spring that changes the amount of flexure of the beam spring in response to rotation of the crank.

14. The adjustable seat support assembly of claim 13 wherein the beam spring flexor is operatively connected to the crank at one end of the beam spring flexor and operatively connected to the beam spring at an opposite end of the beam spring flexor, and wherein rotation of the crank causes the beam spring flexor to change the flexure of the beam spring.

15. The adjustable seat support assembly of claim 14 wherein rotation of the crank displaces the beam spring flexor relative to the beam spring changing the effective length and flexure of the beam spring.

16. The adjustable seat support assembly of claim 14 wherein the beam spring flexor is displaced by rotation of the crank and wherein displacement of the beam spring flexor changes the flexure of the beam spring.

17. The adjustable seat support assembly of claim 16 wherein the beam spring flexor comprises a substantially rigid flexible strap having one end slidably coupled to the distal end of the beam spring and an opposite end pivotally connected to the crank.

18. The adjustable seat support assembly of claim 1 wherein the beam spring has a drive carriage disposed at the proximal end thereof, the drive carriage carrying the actuator.

19. The adjustable seat support assembly of claim 18 wherein the drive carriage comprises a mount configured for snap fit attachment to part of a seat.

20. The adjustable seat support assembly of claim 18 wherein the drive carriage has (a) an in-line slider seat in line with the beam spring, and (b) an in-line cam-follower mechanism with a cam rotatively received in a translating follower yoke slidably coupled to the in-line slider seat whose slidable movement relative to the in-line slider seat in response to cam rotation displaces the beam spring flexor relative to the beam spring changing flexure of the beam spring.

21. The adjustable seat support assembly of claim 18 wherein the actuator further comprises a rotary crank drive carried by the drive carriage, the rotary crank operatively connected to the link, and rotation of the rotary crank displacing the link to change the flexure of the beam spring.

22. An adjustable seat support assembly comprising:

an elongate flexible beam spring having a flexure that changes when an effective length of the beam spring is changed, the beam spring have a proximal end and a distal end; and

an actuator that changes the flexure of the beam spring by changing the effective length of the beam spring, the actuator comprising an inline slider mechanism disposed at the proximal end of the beam spring, an elongate substantially rigid beam spring flexor extending outwardly from the inline slider mechanism longitudinally alongside the beam spring from the proximal end of the beam spring to the distal end of the beam spring, the beam spring flexor connected to the distal end of the beam spring and displaced by the inline slider mechanism longitudinally relative to the beam spring to change the amount of flexure of the beam spring in adjusting an amount of support provided by the beam spring to a seat occupant; and

wherein the inline slider mechanism comprises at least one of an inline slider crank mechanism having a rotary crank that displaces the beam spring flexor when the rotary crank is rotated and an inline slider cam-follower mechanism having a rotary cam that displaces a follower yoke riding on the cam, the beam spring flexor extending outwardly from the follower yoke displacing the beam spring flexor substantially in unison with displacement of the follower yoke.

23. The adjustable seat support assembly of claim 22 wherein the rotary crank further comprises at least one of a ratchet gear when the inline slider mechanism includes the inline slider crank mechanism and the follower yoke is slidably coupled to a seat extending outwardly from the proximal end of the beam spring when the inline slider mechanism includes the inline slider cam-follower mechanism.

24. The adjustable seat support assembly of claim 23 wherein the follower yoke has a sidewall bounding the cam with a follower radially inwardly extending from the yoke sidewall that rides along an outer profile of the cam when the inline slider mechanism includes the inline slider cam-follower mechanism.

25. An adjustable seat support assembly comprising:

an elongate flexible beam spring having a flexure that changes when an effective length of the beam spring is changed, the beam spring have a proximal end and a distal end; and

an actuator that changes the flexure of the beam spring by changing the effective length of the beam spring, the actuator comprising an inline slider mechanism disposed at the proximal end of the beam spring, an elongate substantially rigid beam spring flexor extending outwardly from the inline slider mechanism longitudinally alongside the beam spring from the proximal end of the beam spring to the distal end of the beam spring, the beam spring flexor connected to the distal end of the beam spring and displaced by the inline slider mechanism longitudinally relative to the beam spring to change the amount of flexure of the beam spring in adjusting an amount of support provided by the beam spring to a seat occupant; and

wherein the actuator further comprises a rotatable crank in operable cooperation with the beam spring that changes the amount of flexure of the beam spring in response to rotation of the crank.

26. The adjustable seat support assembly of claim 25 wherein the beam spring flexor is operatively connected to the crank at one end of the beam spring flexor and operatively connected to the beam spring at an opposite end of the beam spring flexor, and wherein rotation of the crank causes the beam spring flexor to change the flexure of the beam spring.

27. The adjustable seat support assembly of claim 26 wherein at least one of rotation of the crank displaces the beam spring flexor relative to the beam spring changing the effective length and flexure of the beam spring and wherein the beam spring flexor is displaced by rotation of the crank and wherein displacement of the beam spring flexor changes the flexure of the beam spring.

28. The adjustable seat support assembly of claim 27 wherein the beam spring flexor comprises a substantially rigid flexible strap having one end slidably coupled to the distal end of the beam spring and an opposite end pivotally connected to the crank.

29. An adjustable seat support assembly comprising:

an elongate flexible beam spring having a flexure that changes when an effective length of the beam spring is changed, the beam spring have a proximal end and a distal end; and

an actuator that changes the flexure of the beam spring by changing the effective length of the beam spring, the actuator comprising an inline slider mechanism disposed at the proximal end of the beam spring, an elongate substantially rigid beam spring flexor extending outwardly from the inline slider mechanism longitudinally alongside the beam spring from the proximal end of the beam spring to the distal end of the beam spring, the beam spring flexor connected to the distal end of the beam spring and displaced by the inline slider mechanism longitudinally relative to the beam spring to change the amount of flexure of the beam spring in adjusting an amount of support provided by the beam spring to a seat occupant; and

a drive carriage carrying the actuator and disposed at the proximal end of the beam spring, and wherein at least one of:

the drive carriage having (a) an in-line slider seat in line with the beam spring, and (b) an in-line cam-follower mechanism with a cam rotatively received in a translating follower yoke slidably coupled to the in-line slider seat whose slidable movement relative to the in-line slider seat in response to cam rotation displaces the beam spring flexor relative to the beam spring changing flexure of the beam spring; and

the actuator further comprises a rotary crank drive carried by the drive carriage, the rotary crank operatively connected to the link, and rotation of the rotary crank displacing the link to change the flexure of the beam spring.

30. The adjustable seat support assembly of claim 29 wherein the drive carriage comprises a mount configured for snap fit attachment to part of a seat.

Assignments (11)
PATENT SECURITY AGREEMENT (1L) Recorded Sep 4, 2020
From: MILSCO, LLC; OSBORN, LLC
To: CANTOR FITZGERALD SECURITIES, AS ADMINISTRATIVE AGENT
Reel/Frame 053711/0896 →
PATENT SECURITY AGREEMENT (2L) Recorded Sep 4, 2020
From: MILSCO, LLC; OSBORN, LLC
To: CANTOR FITZGERALD SECURITIES, AS ADMINISTRATIVE AGENT
Reel/Frame 053711/0968 →
BANKRUPTCY COURT ORDER RELEASING ALL LIENS INCLUDING THE 1ST LIEN SECURITY INTEREST RECORDED AT REEL/FRAME 042630/0628 (ASSIGNED TO BANK OF NEW YORK MELLON AT 045888/0328) Recorded Sep 2, 2020
From: THE BANK OF NEW YORK MELLON
To: JASON INCORPORATED
Reel/Frame 053671/0678 →
BANKRUPTCY COURT ORDER RELEASING ALL LIENS INCLUDING THE 2ND LIEN SECURITY INTEREST RECORDED AT REEL/FRAME 042630/0654 (ASSIGNED TO BANK OF NEW YORK MELLON AT 045888/0253) Recorded Sep 2, 2020
From: THE BANK OF NEW YORK MELLON
To: JASON INCORPORATED
Reel/Frame 053786/0668 →
SECURITY AGREEMENT Recorded Aug 31, 2020
From: MILSCO, LLC; OSBORN, LLC
To: WELLS FARGO BANK, NATIONAL ASSOCIATION
Reel/Frame 053650/0752 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 14, 2019
From: MILSCO MANUFACTURING COMPANY, A UNIT OF JASON INCORPORATED
To: MILSCO, LLC
Reel/Frame 050707/0626 →
SECURITY INTEREST Recorded Apr 10, 2018
From: DEUTSCHE BANK AG; THE BANK OF NEW YORK MELLON
To: JASON INCORPORATED
Reel/Frame 045888/0253 →
SECURITY INTEREST Recorded Apr 10, 2018
From: DEUTSCHE BANK AG; THE BANK OF NEW YORK MELLON
To: JASON INCORPORATED; METALEX CORPORATION
Reel/Frame 045888/0328 →
SECURITY INTEREST Recorded Jun 7, 2017
From: JASON INCORPORATED
To: DEUTSCHE BANK AG NEW YORK BRANCH
Reel/Frame 042630/0628 →
SECURITY INTEREST Recorded Jun 7, 2017
From: JASON INCORPORATED
To: DEUTSCHE BANK AG NEW YORK BRANCH
Reel/Frame 042630/0654 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 3, 2017
From: HILL, KEVIN
To: MILSCO MANUFACTURING COMPANY, A UNIT OF JASON INCORPORATED
Reel/Frame 040824/0361 →
Continuity (3)
Provisional Application 61994993 · May 19, 2014
Provisional Application 62000525 · May 20, 2014
Related Publication 20170055712A1 · Mar 2, 2017