TILT CHAIR
20220378208 ยท 2022-12-01
Inventors
Cpc classification
A47C7/44
HUMAN NECESSITIES
A47C1/03294
HUMAN NECESSITIES
International classification
Abstract
A tiltable chair includes a flexible seat body including an integrally formed seat back and seat surface is supported on a seat frame disposed on upper parts of legs, and the seat back connected to a back frame allowing tilting rearwards, the position of the connection being in an area around the upper part of the pelvis of a person seated thereon. A guide rail having an arc-shaped groove is fixed to the seat frame, and guide members which engage and roll in the arc-shaped grooves are pivotably supported on a shaft bracket of the rear surface of the seat surface. The arc-shaped groove has a high center so that the seat surface undergoes curved motion forward and upward such that the ischium is positioned lower than the lower part of the knees when the seat back tilts rearwards.
Claims
1. A tiltable chair comprising: a flexible seat body in which a seat back and a seat are integrally formed; a back frame fixed to an upper part of legs, connected in a manner that allows a back portion of the seat back to tilt rearward in a region around an upper-pelvis; and, a seat frame fixed to the upper parts of legs, a seat surface which can be moved forward and upward according to the rearward tilt of the seat back, and seat-surface movement means causing the seat surface to move in the seat frame when the seat back is tilted rearwards, the connection of the seat back with the back frame being such that the seat back is able to move in the vertical direction by means of connectors, e.g. with a pin or the like provided to a vertical arc groove on the connectors, the seat-surface movement means comprising two arc-shaped guide rails with high centers provided to the right and left side of the underside of the seat surface, and having guide members which are engaging in the guide rails and that are supported axially on the seat frame, and which are moving smoothly according to the movement of a seated person leaning against the seat back and to the flexibility of the lower part of the seat back, while moving the seat surface forward and upward along a curved line such that the angle of the seat surface gradually increases and the ischium sinks below the lower part of the knees when the seat back tilts rearward, characterized by the guide rail being connected to a trochoid curve that is the trajectory drawn by a guide member between the position of the seat surface when the seat back is upright and the most forward position of the seat surface, with the seat body being positioned inside the circle of a virtual arc and the virtual arc rolling for a predetermined angle on the horizontal of the upper surface.
2. The tiltable chair of claim 1, wherein the back frame being formed integrally with armrests surrounding the seat surface to the left and right at a predetermined height.
3. The tiltable chair of claim 1, wherein the seat-surface movement means being amended with the guide rails, instead being fixed to the underside of the seat surface, being fixed to the seat frame and are having an arc-shaped groove with a low center, and the guide members being supported axially (by a pin) on the left and the right of the underside of the seat surface so as to fit into and roll in the respective arc-shaped grooves.
4. The tiltable chair of claim 1, the guide rails with an arc-shaped groove, instead of being fixed to the seat frame, being configured as a pipe, and formed such that, when the seat body is positioned inside the circle of a virtual arc and the virtual arc rolls for a predetermined angle over the horizontal of an upper surface, a trajectory drawn by guide members between the position of the seat back in an upright state and the most forward position of the seat surface is a trochoid curve.
5. The tiltable chair of claim 1, wherein the seat frame comprising a front frame connecting pipe-shaped front legs and a rear frame connecting the front frame with pipe-shaped rear legs, the front frame being provided with a sliding receiver made of synthetic resin, as well as with a sliding member for guiding the front end of the seat surface that is fixed to the underside of the front part of the seat surface, wherein the virtual arc is a trochoid curve of a trajectory drawn by the point of contact between the sliding member and the sliding receiver, when the seat body is positioned inside the circle of the virtual arc that rolls for a predetermined angle over the horizontal of the upper surface.
6. (canceled)
7. (canceled)
8. (canceled)
9. (canceled)
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0035]
[0036]
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[0038]
[0039]
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[0048]
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[0050]
EMBODIMENTS OF THE INVENTION
[0051] An embodiment of the tiltable chair of the present invention is described with the example of an office chair having armrests, according to the invention as claimed in claim 2.
[0052]
[0053] In this chair a back frame 3 is attached to the upper parts of four legs 5 that do not vertically expand or contract, a seat frame is attached to the upper parts of the legs 5. A seat body 1 in which a seat back 1b and a seat surface 1a are of one piece is assembled thereupon by means of a tilting device 10. In addition, in
[0054] The back frame 3 is formed integrally with an armrest 3d, and is positioned on the back surface of the seat back 1b at about upper-pelvis height (here, it is set to about 19 cm from the seat surface), and at the right and left of the seat surface 1a at a prescribed height above the seat surface (here, about 22 cm).
[0055] The seat frame 4 comprises a front frame 4a connected to the upper parts of coupled, pipe-shaped front legs 5, and a rear frame 4b that connects the front frame 4a and each of the back legs.
[0056] The tilting device 10 is configured with a seat back connection means 10a and a seat-surface movement means 10b. Here, a seat body 1 made of one piece with a flexible synthetic resin is used. Further, the seat back 1b is formed, as shown in
[0057] As shown in
[0058] The connectors 1c of the seat back 1b provide a pin 6, and the connectors 22 of the back frame 3 comprise a vertical arc groove 22a. When the seat back 1b tilts, the pin 6 is able to move inside the vertical, arc-shaped groove 22 so that the seat back 1b tilts back smoothly. There is an opening in the lower part of this vertical arc groove 22a, and during assembly, the pin 6 of the connector 1c can simply be fitted to the lower part of the arc groove 22a while the seat back 1b of the seat body 1 is held.
[0059] The seat-surface movement means 10b, as shown in
[0060] The shape of the arc-shaped groove 11a determines and creates a trajectory for the seat surface 1a to smoothly move forward and upward about 40 mm in the process of the seat back 1b tilting rearward 30 degrees, using the pin 6 of the connection means 10a as a fulcrum. Here, the arc-shaped groove 11a determines a trajectory (trochoid curve) which is the center line of the arc-shaped groove and is drawn by the starting point of a guide member 12a that is fitted into the arc-shaped groove when the seat body is positioned close to the periphery of a circle with a radius of 3000 mm, and the arc rolls for a prescribed distance over the horizontal surface of the upper surface.
[0061] In addition, sliding receivers 13 are fixed to the front frame 4a of the seat frame 4, and a sliding member 14 is fixed near the front portion of the underside of the seat surface 1a. The sliding receivers 13 provide a synthetic resin wound in a semicircle around the frame 4a made of steel tubing. The shape of the lower end of the sliding member 14, like the above-described arc-shaped groove 11a, is determined by a trajectory (trochoid curve) traced by the point of contact between the sliding member 14 and the sliding receivers 13 when the seat body is placed close to the periphery of the circle of a virtual arc (e.g., 3000 R), and this arc rolls with a prescribed angle over the top surface.
[0062] Further, one end of a return member 15 (here, a return spring is used) is locked to the seat frame 4 such that the reclined seat back 1b returns smoothly, and the other end is locked to the underside of the seat surface 1a. An addition, in
[0063] Because it is configured in this manner, the seat body 1 is in the rearmost position due to the return member 15, and the seat back 1b is more or less perpendicular when a seated person is not leaning back on the seat back.
[0064] When a seated person leans back on the seat back, the pin 6 in the connector 1c of the seat back 1b engages with the arc groove 22a of the connector 22 of the back frame 3 and, using this as a fulcrum, the upper side tilts rearward from the back frame 3 of the seat back 1b. As this happens the curved portion of the seat back 1b, between the connection point (connector 1c) and the seat surface 1a, bends, and the seat surface 1a moves forward and upward, guided by the guide rail 11. Thus, the chair enters a reclining state.
[0065]
[0066] Next, different embodiments of the connecting means 10a for the seat back are explained with reference to
[0067] Here, the connecting means is used for the backrest 1b and provide a connector 3a fixed to the left and right sides of the back frame 3 on the back of the seat back 1b and being coupled to the connector 1c by a pin 6. The connector 1c is fixed to the back surface of the seat back 1b. A vertical arc groove 1d is formed in the connector 1c and, because the pin 6 is able to move inside the vertical arc groove 1d when the seat back 1b tilts rearward, the seat back 1b tilts rearward smoothly. The function of the connection means 10a is the same as in the case of
[0068] A different embodiment of the seat back connection means 10a is explained with reference to
[0069] In
[0070] The seat back connection means 10a in
[0071] There can be a point of connection only at the center between left and right of the back frame 3 or, as with the above seat back 1b, points of connection can be provided to the left and right of the seat back 1b. If a seated person turns to look behind or does a spinal stretch, etc., the seat back follows the movement according to the flexibility of the spherical bearing 27 and the seat back 1b.
[0072] Next, a different embodiment of the seat-surface movement means 10b (according to claim 4) is explained with reference to
[0073] In the seat-surface movement means 10b shown in
[0074] Here, the guide rail 17 is formed in a curve such that the trajectory on which the pin 17c moves is the trochoid curve mentioned above. The pin 17c is connected in such a way that it can freely pivot. With this device, as with the movement means 10b of the seat surface of the above embodiment, when the seat back 1b tilts rearward, the seat surface 1a moves under the guidance of the guide rail 17.
[0075] Another embodiment of the seat-surface movement means 10b (according to claim 3) is explained based on
[0076] If a seat body becomes one piece by connecting separate members, it can be manufactured by a small-scale manufacturing facility. An embodiment of this case is explained with reference to
[0077]
[0078] Further, in
[0079] Next, an embodiment of a chair having various leg types, in which the seat body and back frame are one piece is explained with reference to
[0080] In the above explanations of embodiments, the configuration had four legs that could not raise or lower or rotate the seat surface, but it is possible to install various types of legs. Here, the back frame 3 is the same for various types of legs 5.
[0081]
[0082] In addition, in
[0083] In
[0084]
[0085] The tilt chair of the present invention can, of course, be used not only as an office chair but anywhere, such as in meeting rooms or conferences.
[0086] While the above embodiments of the present invention are described with specific measurements, this is for ease of understanding the invention, and the invention is not limited thereto.
LIST OF REFERENCE SIGNS
[0087] 1 Seat body [0088] 1a Seat surface [0089] 1b Seat back [0090] 1c Connector [0091] 1d Vertical arc groove [0092] 1e Connecting member [0093] 1g Joint [0094] 1h Projecting part [0095] 1j Rib [0096] 2a Cushion [0097] 2b Cushion [0098] 3 Back frame [0099] 3a Connector [0100] 3b Pin hole [0101] 3d Armrest [0102] 4 Seat frame [0103] 4a Forward frame [0104] 4b Rear frame [0105] 5, 5a-5g Legs [0106] 6 Pin [0107] 10 Tilt device [0108] 10a Connection means of seat back [0109] 10b Movement means of seat surface [0110] 11 Guide rail [0111] 11a Arc-shaped groove [0112] 12 Shaft bracket [0113] 12a Guide member [0114] 13 Sliding receiver [0115] 14 Sliding member [0116] 15 Tension spring [0117] 16 Cover [0118] 17 Guide rail [0119] 17a Shaft bracket [0120] 17b Guide member [0121] 17c Pin [0122] 18 Guide rail [0123] 18a Arc-shaped groove [0124] 19 Shaft [0125] 19a Guide member [0126] 22 Connector [0127] 22a Arc groove [0128] 23 Connector [0129] 23a Pin hole [0130] 24 Connector [0131] 24a Outer tube [0132] 24b Elastic body [0133] 25 Pin [0134] 26 Mounting member [0135] 27 Spherical bearing [0136] 28 Mounting part [0137] 28a Pin [0138] 29 Retaining pin [0139] 31 Leg [0140] 32 Base [0141] 33 Seat back [0142] 34 Back support body [0143] 35 Seat [0144] 36 Seat support body [0145] 37 First swing center axis [0146] 38 Second swing center axis [0147] 39 Third swing center axis [0148] 40 Slide mechanism