IP Library › Granted Patent US 11,419,424
Granted Patent B2
US 11,419,424 · App. 16/880,386 · Granted Aug 23, 2022

Chair backrest adjustment mechanism

Inventor: Anatoli Chernin (Richmond Hill, CA)
A47C7/402A47C7/42A61G5/1067F16B2/065
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Quick Facts
Patent No.
US 11,419,424
App. No.
16/880,386
Granted
Aug 23, 2022
Kind
B2
Abstract

An adjustment mechanism configured for adjusting a backrest of a chair, including a clamp element configured to be fixedly attached to a static frame, which extends along a longitudinal axis; a guided frame selectively moveably coupled to the clamp element and configured to be fixedly attached to the backrest, and wherein displacement of the guided frame relative to the clamp element is configured to urge corresponding displacement of the backrest either axially along a first axis extending generally transversely with respect to the longitudinal axis or angularly with respect to the longitudinal axis.

Claims (35)

1. An adjustment mechanism configured for adjusting a backrest of a chair, comprising:

a clamp element configured to be fixedly attached to a static frame, which extends along a longitudinal axis;

a guided frame selectively moveably coupled to said clamp element and configured to be fixedly attached to said backrest, and

wherein displacement of said guided frame relative to said clamp element is configured to cause corresponding displacement of said backrest either axially along a first axis extending generally transversely with respect to said longitudinal axis or angularly with respect to said longitudinal axis;

at least two lead screws at least partially extend through said guided frame and extend along second and third axes, which are generally parallel to said first axis;

at least two guiding elements, each having an internally threaded bore;

and wherein said guided frame is moveably coupled to said clamp element by a threadable engagement between said at least two lead screws with said internally threaded bores of said guiding elements; and

wherein upon rotation of both of said at least two lead screws to the same rotational extent, the guided frame is urged to translate axially along said first axis.

2. The adjustment mechanism according to claim 1 , wherein said guided frame is moveable relative to said clamp element upon rotation of at least one of said at least two lead screws.

3. The adjustment mechanism according to claim 1 , wherein upon rotation of one of said at least two lead screws, the guided frame is angularly displaced relative to said longitudinal axis.

4. The adjustment mechanism according to claim 1 , wherein upon rotation of said at least two lead screws to a different rotational extent, the guided frame is angularly displaced relative to said longitudinal axis.

5. The adjustment mechanism according to claim 1 , wherein said guiding elements are moveable within sockets formed in said clamping element upon rotation of one of said at least two lead screws.

6. The adjustment mechanism according to claim 1 , wherein said displacement of said guided frame relative to said clamp element provides for axial adjustment of said backrest along said first axis in increments ranging between 0.5-3 mm.

7. The adjustment mechanism according to claim 1 , wherein said guided frame is automatically self-locked relative to said clamp element when not manipulated by a user, due to threadable engagement between said at least two lead screws and said at least two guiding elements.

8. The adjustment mechanism according to claim 1 , wherein said displacement of said guided frame relative to said clamp element provides for angular adjustment of said backrest with respect to said longitudinal axis in increments ranging between 0.5-3 degrees.

9. An adjustment mechanism configured for adjusting a backrest of a chair, comprising:

a clamp element configured to be fixedly attached to a static frame, which extends along a longitudinal axis;

a guided frame selectively moveably coupled to said clamp element and configured to be fixedly attached to said backrest, and

wherein displacement of said guided frame relative to said clamp element is configured to cause corresponding displacement of said backrest either axially along a first axis extending generally transversely with respect to said longitudinal axis or angularly with respect to said longitudinal axis;

at least two lead screws at least partially extend through said guided frame and extend along second and third axes, which are generally parallel to said first axis;

at least two guiding elements, each having an internally threaded bore;

and wherein said guided frame is moveably coupled to said clamp element by a threadable engagement between said at least two lead screws with said internally threaded bores of said guiding elements; and

wherein at least one of said at least two lead screws has a bore through which a safety pin is inserted to positively lock said backrest in place.

10. An adjustment mechanism, comprising:

a fixedly positionable clamp element arranged along a longitudinal axis;

a guided frame, which is selectively moveably coupled with respect to said fixedly positionable clamp element and being arranged along a first axis extending generally transversely with respect to said longitudinal axis;

at least two lead screws arranged along respective second and third axes, each one of said at least two lead screws at least partially extending through said guided frame and extend along said second and third axes, which are generally parallel to said first axis;

at least two guiding elements, each having an internally threaded bore; and wherein said guided frame is moveably coupled to said clamp element by a threadable engagement between said at least two lead screws with said internally threaded bores of said guiding elements; wherein upon rotation of both of said at least two lead screws to the same rotational extent, the guided frame is urged to translate axially along said first axis.

11. The adjustment mechanism according to claim 10 , wherein said guided frame is moveable relative to said clamp element upon rotation of at least one of said at least two lead screws.

12. The adjustment mechanism according to claim 10 , wherein upon rotation of one of said at least two lead screws, the guided frame is angularly displaced relative to said longitudinal axis.

13. The adjustment mechanism according to claim 10 , wherein upon rotation of said at least two lead screws to a different rotational extent, the guided frame is angularly displaced relative to said longitudinal axis.

14. The adjustment mechanism according to claim 10 , wherein said guiding elements are moveable within at least one socket foamed in said clamping element upon rotation of one of said at least two lead screws.

15. The adjustment mechanism according to claim 10 , wherein said guided frame is displaced axially along said first axis relative to said clamp element in increments ranging between 0.5-3 mm.

16. The adjustment mechanism according to claim 10 , wherein said guided frame is automatically self-locked relative to said clamp element when not manipulated by a user, due to threadable engagement between said at least two lead screws and said at least two guiding elements.

17. The adjustment mechanism according to claim 10 , wherein said guided frame is displaced angularly with respect to said longitudinal axis and relative to said clamp element in increments ranging between 0.5-3 degrees.

Continuity (2)
Provisional Application 62856820 · Jun 4, 2019
Related Publication 20200383484A1 · Dec 10, 2020