Tilting chair
11166553 ยท 2021-11-09
Assignee
Inventors
Cpc classification
A47C1/024
HUMAN NECESSITIES
A47C7/44
HUMAN NECESSITIES
International classification
A47C1/032
HUMAN NECESSITIES
A47C7/44
HUMAN NECESSITIES
A47C1/024
HUMAN NECESSITIES
Abstract
A chair that can transition from an upright position to a reclined position includes a base to rest on a floor, a post upstanding from the base, a chassis affixed to a top of the post and having left and right extensions, armrests extending upward from the left and right extensions. A seat is made up of a seat pan and a seat upper support frame, which are positioned under and above the chassis respectively and has a hole through which the post extends. A backrest has a lower end pivotally joined to the seat and a pivotal connection to each of the armrests, so rearward pressure on an upper area of the backrest causes pivoting of the backrest at the armrests and at the seat, pushing the seat forward to a reclined position in a synchronous motion.
Claims
1. A chair that can transition from an upright position to a reclined position comprising a base to rest on a floor, a post upstanding from the base, a chassis affixed to a top of the post and having left and right extensions, armrests extending upward from the left and right extensions, a seat made up of a seat pan and a seat upper support frame under and above the chassis respectively, the seat pan having a hole through which the post extends, the hole in the seat pan being long enough in a front-to-rear direction to allow the seat pan to move frontwards or rearwards without being impeded by the post, and a backrest having a lower end pivotally joined to the seat and a pivotal connection to each of the armrests, whereby rearward pressure on an upper area of the backrest causes pivoting of the backrest at the armrests and at the seat, pushing the seat forward to a reclined position in a synchronous motion.
2. A chair as claimed in claim 1 including at least one biasing member extending between the chassis and the seat to restore the chair from the reclined position to the upright position when rearward pressure on an upper area of the backrest ends.
3. A chair that can transition from an upright position to a reclined position comprising a base to rest on a floor, a post upstanding from the base, a chassis affixed to a top of the post and having left and right extensions, armrests extending upward from the left and right extensions, a seat made up of a seat pan and a seat upper support frame under and above the chassis respectively, the seat pan having a hole through which the post extends, and a backrest having a lower end pivotally joined to the seat and a pivotal connection to each of the armrests, whereby rearward pressure on an upper area of the backrest causes pivoting of the backrest at the armrests and at the seat, pushing the seat forward to a reclined position in a synchronous motion, wherein the chassis has an upward extending tooth and the seat pan has a pawl to engage the tooth to prevent transitions from the upright position to the reclined position until the pawl is released.
4. A chair as claimed in claim 3 wherein the pawl has a linkage to an actuator on one side of the seat, so a person sitting in the seat can release the pawl using the actuator.
5. A chair that can transition from an upright position to a reclined position comprising a base to rest on a floor, a post upstanding from the base, a chassis affixed to a top of the post and having left and right extensions, armrests extending upward from the left and right extensions, a seat made up of a seat pan and a seat upper support frame under and above the chassis respectively, the seat pan having a hole through which the post extends, and a backrest having a lower end pivotally joined to the seat and a pivotal connection to each of the armrests, whereby rearward pressure on an upper area of the backrest causes pivoting of the backrest at the armrests and at the seat, pushing the seat forward to a reclined position in a synchronous motion, and wherein the post has a cylinder raising and lowering mechanism, and the seat has a Bowden cable extending from a cylinder actuator to the cylinder.
6. A chair that can transition from an upright position to a reclined position comprising a base to rest on a floor, a post upstanding from the base, a chassis affixed to a top of the post and having left and right extensions, armrests extending upward from the left and right extensions, a seat made up of a seat pan and a seat upper support frame under and above the chassis respectively, the seat pan having a hole through which the post extends, and a backrest having a lower end pivotally joined to the seat and a pivotal connection to each of the armrests, whereby rearward pressure on an upper area of the backrest causes pivoting of the backrest at the armrests and at the seat, pushing the seat forward to a reclined position in a synchronous motion, wherein the seat pan has a channel that extends fore and aft, and the chassis has a lower element that rides in the channel to guide the seat to fore and aft during transitions between the upright position and the reclined position.
7. A chair as claimed in claim 6 wherein the lower element of the chassis is configured and formed of a material to have low friction with the channel.
8. A chair that can transition from an upright position to a reclined position comprising a base to rest on a floor, a post upstanding from the base, a chassis affixed to a top of the post and having left and right extensions, armrests extending upward from the left and right extensions, a seat made up of a seat pan and a seat upper support frame under and above the chassis respectively, the seat pan having a hole through which the post extends, and a backrest having a lower end pivotally joined to the seat and a pivotal connection to each of the armrests, whereby rearward pressure on an upper area of the backrest causes pivoting of the backrest at the armrests and at the seat, pushing the seat forward to a reclined position in a synchronous motion, wherein the seat pan has at least one downward-facing ramp, and the chassis has at least one forward bearing under the downward facing ramp so a front part of the seat rises relative to a rear part of the seat during transitions between the upright position and the reclined position.
9. A chair as claimed in claim 8 wherein the ramp is shaped to permit transitions between the upright position and the reclined position regardless of a person's weight.
10. A chair that can transition from an upright position to a reclined position comprising a base to rest on a floor, a post upstanding from the base, a chassis affixed to a top of the post and having left and right extensions, armrests extending upward from the left and right extensions, a seat made up of a seat pan and a seat upper support frame under and above the chassis respectively, the seat pan having a hole through which the post extends, and a backrest having a lower end pivotally joined to the seat and a pivotal connection to each of the armrests, whereby rearward pressure on an upper area of the backrest causes pivoting of the backrest at the armrests and at the seat, pushing the seat forward to a reclined position in a synchronous motion, and wherein the lower end of the backrest has a forward extension, and the backrest is pivotally joined to the seat at the forward extension.
11. A chair as claimed in claim 1 wherein the seat upper support chassis has upper padding and a fabric or leather cover.
12. A chair that can transition from an upright position to a reclined position comprising a base to rest on a floor, a post upstanding from the base, a chassis affixed to a top of the post and having left and right extensions, armrests extending upward from the left and right extensions, a seat made up of a seat pan and a seat upper support frame under and above the chassis respectively, the seat pan having a hole through which the post extends, and a backrest having a lower end pivotally joined to the seat and a pivotal connection to each of the armrests, whereby rearward pressure on an upper area of the backrest causes pivoting of the backrest at the armrests and at the seat, pushing the seat forward to a reclined position in a synchronous motion, wherein forward and rear bumpers soften the impact of the chassis with the seat pan when transitions between the upright position and the reclined position finish.
13. A chair as claimed in claim 12 wherein the bumpers are mounted to the seat pan.
14. A chair that can transition from an upright position to a reclined position comprising a base to rest on a floor, a post upstanding from the base, a chassis affixed to a top of the post and having left and right extensions, armrests extending upward from the left and right extensions, a seat made up of a seat pan and a seat upper support chassis under and above the chassis respectively, the seat pan having a hole through which the post extends, the hole being long enough in a front-to-rear direction to allow the seat pan to move without being impeded by the post, a backrest having a lower end with a forward extension that pivotally joins the backrest to the seat, the backrest having a pivotal connection to each of the armrests, whereby rearward pressure on an upper area of the backrest causes pivoting of the backrest at the armrests and at the seat, pushing the seat forward to a reclined position in a synchronous motion, the seat pan having a channel that extends fore and aft and the chassis having a lower element formed of a material to have low friction with the channel that rides in the channel to guide the seat to fore and aft during transitions between the upright position and the reclined position, wherein forward and rear bumpers mounted to the seat pan soften the impact of the chassis with the pan when transitions between the upright position and the reclined position finish, at least one biasing member extending between the chassis and the seat to restore the chair from the reclined position to the upright position when rearward pressure on an upper area of the backrest ends, wherein the seat pan has an upward extending tooth, and the chassis has an operable latch to engage the tooth to prevent transitions from the upright position to the reclined position until the latch is operated, and wherein the seat pan has at least one downward-facing ramp, and the chassis has at least one forward bearing under the downward facing ramp so a front part of the seat rises relative to a rear part of the seat during transitions between the upright position and the reclined position.
15. A tilt mechanism comprising: a chassis, a pair of springs, and a pair of bearings; wherein the tilt mechanism can be placed within a chair; wherein the chassis is U-shaped and has left and right extensions and a forward opening so that and lock the chassis in place within the chair; wherein the pair of springs have one end that attaches to the chassis, so that as the chassis moves, the pair of springs expand and contract and the opposite end of the pair of springs is attached to the chair; wherein the bearings are attached to forward ends of the left and right extensions of the chassis and ride within the chair; and wherein a lower element of the chassis is configured and formed of a material to have low friction with the chair.
16. A tilt mechanism as claimed in claim 15, wherein the chassis is made of aluminum.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The invention will be better understood by a reading of the Detailed Description of the Examples of the Invention along with a review of the drawings, in which:
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DETAILED DESCRIPTION OF EXAMPLES OF THE INVENTION
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(11) As seen in
(12) The weight of the person is transmitted from the cushion to the seat upper support frame, and to the seat pan 8 by contact between mating perimeter edges 50, bosses 52 and bulges 54 where the seat upper support frame 7 contacts the seat pan 8. The seat upper support frame 7 is supported above the seat pan spaced enough above the chassis 12 and extensions 15 and 16 to avoid contact during a transition from an upright to a reclined position.
(13) The seat pan 8 and seat upper support frame 7 are joined by screws that pass upward from the seat pan into the seat upper support frame at the bosses 52. Thus, as assembled, the seat pan 8, seat upper support frame 7, and cushion 36 act as a unit.
(14) As seen in
(15) In preferred embodiments, the post 3 is provided with a conventional gas cylinder 80 to which gas can be admitted or released through a valve operated by a Bowden cable 23 mounted in the seat pan. The Bowden cable connects the cylinder's valve to an actuating switch 32 mounted to the bottom outside of the seat pan. Thus, a person sitting in the seat can actuate the gas cylinder while sitting in the seat by pressing on the switch 32 to permit seat height adjustments.
(16) Horizontal holes 56, 58 at the rear of the armrests 5 and 6 mate with bearings 33 and 34 within the back rest 2. A right armrest pivot pin 39 and a left armrest pivot pin 40 in the holes 56, 58 and bearings 33, 34 allow for a pivoting motion of the back rest about the holes 56, 58 in the armrest. The bottom of the back rest is also provided with a forward extension 82 having a back rest hinge 9 that connects to a pivot bearing 60 at the rear of the seat pan (seen in
(17) When a person sitting in the seat applies force to an area at the top of the back rest (above the pivot bearings 33 and 34), the back rest acts as a first class lever and pushes forward on the seat pan at the back rest hinge 9. This forward motion of the seat 1 is accommodated by the chassis 12 since there is minimal contact directly between the seat pan, seat upper support frame and the chassis. The contact between the chassis 12 and seat pan 8 is limited to the bearings 13 and 14 that underlie the ramps 30 and 31 of the seat pan and the guiding of the seat pan's channel 42 around the lower element 43. Since the ramps 30 and 31 slope from a higher front elevation to a lower rear elevation, forward motion of the seat pan causes the front of the seat pan to elevate, providing a continuing comfortable position for a person in the seat. The slope of the ramp is selected so that persons of a wide range of sizes and weights such as from 120 to 350 pounds can easily make the transition from an upright position to a reclined position. The transition is a synchronous motion.
(18) The forward motion of the seat 1 is resisted by the springs 24 and 25. The springs 24 and 25 have forward end mountings, respectively, at right seat pin 29 and left seat pin 28 to affix to the seat pan 8 and a rearward end mountings to the chassis 12 at right chassis pin 27 and left chassis pin 26. Thus, the reclining transition extends the springs 24 and 25. When the force on the upper part of the back rest is released, the springs act to restore the seat to the upright position, causing (in the view of
(19) The preferred embodiments include a locking mechanism so that a user can maintain the chair in the upright position and only transition to the reclined position when such transitions are intended. The locking mechanism includes a tooth 17 on the chassis 12. The tooth 17 is engaged by a pawl 20 that is pivotably mounted to the seat pan 8. An actuating rod 22 extends to the left side of pawl 20 supported in a rod mount 18. The rod mount 18 in turn rests on a handle 19 which is exposed to the left under side of the seat pan 8. The pawl 20 includes a spring 66 to bias it so that the pawl engages the tooth 17. By pressing the handle 19, the rod support 18 is lifted, rotating the elongated portion of the shaft of the rod 22 against the action of the spring 66 on the pawl 20 and lowering the pawl out of engagement with the tooth 17. Releasing the pawl permits the movement of the seat pan with respect to the chassis 12.
(20) Thus when the pawl is released and the user applies pressure to the upper portion of the back rest, the chair can be transitioned from the upright position to the reclined position. When the seat transitions to the upright position under the force of the spring, the pawl re-engages the tooth.