IP Library Granted Patent US 12,082,698
Granted Patent B2
US 12,082,698 · App. 17/952,180 · Granted Sep 10, 2024

Mechanism for zero-gravity reclining chair

Inventors: Chih Hsiung Liu (Benoni, ZA); Zhi Liang Gao (Xiaji Town, CN)
Assignee: MOTOMOTION CHINA CORPORATION
A47C1/0242A47C1/0345A47C1/0355
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Quick Facts
Patent No.
US 12,082,698
App. No.
17/952,180
Granted
Sep 10, 2024
Kind
B2
Abstract

A mechanism for a zero-gravity reclining chair enables the zero-gravity reclining chair to achieve different positions, states, or modes, including a seated position, state, or mode, a standing position, state, or mode, a TV position, state, or mode, and a reclining position, state, or mode. The mechanism includes left and right-side linkage systems, as well as first and second linear actuators for moving the linkage system and chair components between the different positions, states, or modes. When the zero-gravity reclining chair is disposed at its reclining position, state, or mode, the backrest portion of the zero-gravity reclining chair is disposed at an elevational level which is the same as, or slightly below, that of the footrest portion of the chair so as to provide the occupant of the zero-gravity reclining chair with enhanced health effects.

Claims (38)

1. A mechanism for a zero-gravity reclining chair, comprising:

a pair of oppositely disposed seat base brackets for supporting a seat of said zero-gravity chair;

a pair of oppositely disposed backrest brackets for supporting a backrest of said zero-gravity chair;

a pair of oppositely disposed footrest mounting brackets for supporting a footrest of said zero-gravity chair;

a pair of oppositely disposed linkage systems for operatively connecting said pair of oppositely disposed seat base brackets, said pair of oppositely disposed backrest brackets, and said pair of oppositely disposed footrest mounting brackets together; and

at least one actuator for moving said pair of oppositely disposed linkage systems in predetermined modes between extended and retracted positions such that said pair of oppositely disposed seat base brackets, said pair of oppositely disposed backrest brackets, and said pair of oppositely disposed footrest mounting brackets can be moved to predetermined positions whereby said zero-gravity reclining chair can attain seated, standing, TV, and reclined-zero gravity positions.

2. The mechanism for a zero-gravity reclining chair as set forth in claim 1 , wherein:

said at least one actuator comprises a linear actuator.

3. The mechanism for a zero-gravity reclining chair as set forth in claim 2 , wherein:

said at least one linear actuator comprises a pair of linear actuators.

4. The mechanism for a zero-gravity reclining chair as set forth in claim 3 , wherein:

each one of said pair of linear actuators comprises an extensible and retractable telescopic rod.

5. The mechanism for a zero-gravity reclining chair as set forth in claim 3 , wherein:

said pair of linear actuators comprise first and second linear actuators having first and second extensible and retractable telescopic rods movable between said extended and retracted positions.

6. The mechanism for a zero-gravity reclining chair as set forth in claim 5 , wherein:

said zero-gravity reclining chair is disposed at said seated position when said first extensible and retractable telescopic rod of said first linear actuator is disposed at a position intermediate said extended and retracted positions, and when said second extensible and retractable telescopic rod of said second linear actuator is disposed at said retracted position.

7. The mechanism for a zero-gravity reclining chair as set forth in claim 6 , wherein:

when said zero-gravity reclining chair is disposed at said seated position, said pair of oppositely disposed seat base brackets are disposed substantially horizontally, said pair of oppositely disposed backrest brackets are disposed at substantially upright positions, and said pair of oppositely disposed footrest mounting brackets are disposed in substantially vertically oriented downward stowed positions.

8. The mechanism for a zero-gravity reclining chair as set forth in claim 5 , wherein:

said zero-gravity reclining chair is disposed at said standing position when said first extensible and retractable telescopic rod of said first linear actuator is disposed at said extended position.

9. The mechanism for a zero-gravity reclining chair as set forth in claim 8 , wherein:

when said zero-gravity reclining chair is disposed at said standing position, said pair of oppositely disposed seat base brackets are disposed at elevated positions that are above those positions at which said seat base brackets are disposed when said zero-gravity chair is disposed at said seated position, said seat base brackets are also disposed at inclined positions such that a forward end portion of said seat of said zero-gravity reclining chair is disposed at an elevational level which is beneath an elevational level at which a rear end portion of said seat of said zero-gravity reclining chair is disposed, said pair of oppositely disposed backrest brackets are disposed in substantially upright positions, and said pair of oppositely disposed footrest mounting brackets are disposed in substantially vertically oriented downward stowed positions.

10. The mechanism for a zero-gravity reclining chair as set forth in claim 5 , wherein:

said zero-gravity reclining chair is disposed at said TV position when said first extensible and retractable telescopic rod of said first linear actuator is disposed at said retracted position.

11. The mechanism for a zero-gravity reclining chair as set forth in claim 10 , wherein:

when said zero-gravity reclining chair is disposed at said TV position, said pair of oppositely disposed backrest brackets are disposed in substantially upright positions, said pair of oppositely disposed seat base brackets are disposed at inclined positions at which a rear end portion of said seat of said zero-gravity reclining chair is disposed at a lower elevation than that of a forward end portion of said seat of said zero-gravity reclining chair, and said pair of oppositely disposed footrest mounting brackets are disposed at substantially horizontally oriented extended and elevated positions.

12. The mechanism for a zero-gravity reclining chair as set forth in claim 5 , wherein:

said zero-gravity reclining chair is disposed at said reclined position when said second extensible and retractable telescopic rod of said first linear actuator is disposed at said retracted position.

13. The mechanism for a zero-gravity reclining chair as set forth in claim 12 , wherein:

when said zero-gravity reclining chair is disposed at said reclined position, said pair of oppositely disposed backrest brackets are disposed in reclined positions, said pair of oppositely disposed seat base brackets are disposed at inclined positions at which a rear end portion of said seat of said zero-gravity reclining chair is disposed at a lower elevation than that of a forward end portion of said seat of said zero-gravity reclining chair, and said pair of oppositely disposed footrest mounting brackets are disposed at substantially horizontally oriented extended and elevated positions at which said pair of footrest mounting brackets are disposed at an elevation that is the same as or slightly higher than that of said seat base brackets and said backrest brackets such that said mechanism is disposed within a zero-gravity position or state at which the comfortability of the person is enhanced while the burden upon the person's heart, in order to pump blood throughout the person's body, is effectively reduced.

14. The mechanism for a zero-gravity reclining chair as set forth in claim 1 , wherein:

each one of said pair of oppositely disposed footrest mounting brackets comprises first and second footrest mounting brackets wherein said second footrest mounting bracket is movable with respect to said first footrest mounting bracket so as to effectively extend the length of each one of said pair of oppositely disposed footrest mounting brackets so as to comfortably accommodate tall people within said zero-gravity reclining chair.

15. The mechanism for a zero-gravity reclining chair as set forth in claim 1 , further comprising:

a remote-control device for operatively controlling said at least one linear actuator between said extended and retracted positions.

16. The mechanism for a zero-gravity reclining chair as set forth in claim 3 , further comprising:

a remote-control device for operatively controlling said pair of linear actuators between said extended and retracted positions.

17. The mechanism for a zero-gravity reclining chair as set forth in claim 16 , wherein:

said remote-control device for operatively controlling said pair of linear actuators between said extended and retracted positions comprises a remote-control device which is selected from the group comprising a hard-wired remote-control device and a wireless remote-control device.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 11, 2023
From: HHC CHANGZHOU CORPORATION
To: MOTOMOTION CHINA CORPORATION
Reel/Frame 064213/0874 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 23, 2022
From: LIU, CHIH HSIUNG; GAO, ZHI LIANG
To: HHC CHANGZHOU CORPORATION
Reel/Frame 061200/0408 →
Priority Claims (2)
CN 202210906567.X · Jul 29, 2022 · national
CN 202222002333.0 · Jul 29, 2022 · national
Continuity (1)
Related Publication 20240032693A1 · Feb 1, 2024
Cited By (3)
US 12,520,941 US 12,569,066 US 12,708,206