1. Field of the Invention
The present invention concerns a chair, in particular an office chair or a school chair, with a tilt mechanism for inclining the seat surface of the seat with respect to the horizontal both in a forward/rearward direction of the seat surface and also in a right/left direction of the seat surface.
2. Technical Background
The seat surface 16 of the seat 14 is carried on a seat carrier 26 which is supported resiliently and adjustably in respect of height on the gas spring of the chair pillar 24 by way of a mounting means 28. Arranged between the seat carrier 26 and the mounting means 28 for the gas spring of the chair pillar 24 is a tilt mechanism 30, by means of which the chair 14 can be inclined in the forward/rearward direction of the seat surface 16.
The seat 14 of the chair 10 can be inclined in the forward/rearward direction of the seat surface 16 by means of that conventional tilt mechanism 30, by virtue of the fact that the first housing portion 32 which is fixedly connected to the seat 14 by way of the seat carrier 26 is tilted about the pivot axis 36a by way of the conicity of the pressure plate 36, in which case, depending on the respective direction of tilt movement of the seat 14, the forward or the rearward spring block 38 is compressed by the first housing portion 32 against the rigidly arranged second housing portion 34. In that case the seat 14 is mounted resiliently by the spring blocks 38 comprising the elastically deformable material. Depending on the respective nature and purpose of use of the chair 10, it is possible to use special materials with respectively adapted characteristic curves for the spring blocks 38.
In addition DE-A-101 06 791 discloses a chair on which the classifying portion of claim 1 is based. That known chair has a tilt mechanism which permits inclination of the seat surface with respect to the horizontal both in the usual forward/rearward direction of the seat surface and also additionally in the right/left direction of the seat surface. In that case the tilt mechanism comprises a triangular-shaped pivotal mounting for the seat surface by way of spring elements to a support frame. Overall in that way the seat surface can be tilted in directions which differ by about 45° from the seat direction.
Based on the above-described state of the art, the object of the present invention is to provide a chair having a tilt mechanism which, while being of a simple structure, enjoys improved ergonomic properties.
That object is attained by a chair comprising a base structure, a seat having a seat surface and a backrest, a seat carrier for carrying the seat on the base structure and a tilt mechanism which is arranged between the seat carrier and the base structure. The tilt mechanism is of such an arrangement and configuration that it permits inclination of the seat surface of the seat with respect to the horizontal both in a forward/rearward direction of the seat surface and also in a right/left direction of the seat surface. In accordance with the invention the tilt mechanism has a pressure plate with a first conicity in the forward/rearward direction of the seat surface, by way of which the seat can be inclined in the forward/rearward direction, and a second conicity in the right/left direction of the seat surface, by way of which the seat can be inclined in the right/left direction. In that case the two conicities of the pressure plate can be provided on mutually remote surface of the pressure plate in the up/down direction of the pressure plate. From ergonomic points of view, it is desirable for chairs, besides possible inclination of the seat surface in the forward/rearward direction, also to provide possible inclination of the seat surface in a right/left direction, and that is made possible in a simple manner in accordance with the invention by the particular tilt mechanism. The simple structure of the tilt mechanism according to the invention is also maintenance-friendly and enjoys a long service life.
For resiliently mounting the tilt mechanism preferably the pressure plate is mounted on elastically deformable first and second spring blocks, wherein at least one first spring block is associated with the pressure plate in the forward/rearward direction of the seat surface and at least one second spring block is associated with the pressure plate in the right/left direction of the seat surface.
In a further configuration of the invention the pressure plate is supported on the one hand against the seat carrier and on the other hand against a mounting member for the base structure or for the gas spring in a chair pillar of the base structure.
In still a further configuration of the invention the tilt mechanism has a first housing portion and a second housing portion, wherein the first housing portion is fixed to the seat carrier of the seat and the second housing portion is fixed to the first housing portion. Alternatively the first housing portion can also be fitted into the second housing portion and the second housing portion fixed to the seat carrier of the seat.
For ergonomic reasons the tilt mechanism should permit an inclination of the seat surface of the seat with respect to the horizontal in the forward/rearward direction of the seat surface by a maximum of between about 7.5° and about 8° and in the left/right direction of the seat surface by a maximum of about 3.5°.
The present invention can be used to particular advantage in relation to rotary chairs such as office chairs and school chairs.
The foregoing and further features and advantages of the invention will be better appreciated from the description hereinafter of preferred, non-limiting embodiments by way of example with reference to the accompanying drawings in which:
a shows a diagrammatic view in section of the tilt mechanism of
b shows a diagrammatic view in section of the tilt mechanism of
c is a diagrammatic view in section of the tilt mechanism of
a is a diagrammatic view in section of a tilt mechanism according to a second embodiment of the invention similarly to the view in
b is a diagrammatic view in section of a tilt mechanism according to the second embodiment of the invention similarly to the view in
c is a diagrammatic view in section of a tilt mechanism according to the second embodiment of the invention similarly to the view in
d is a diagrammatic view in section of a tilt mechanism according to the second embodiment of the invention similarly to the view in
The present invention can be used for example in relation to a rotary chair 10 in accordance with the above-described view in
A first embodiment of a tilt mechanism 30 will firstly be described in greater detail with reference to
The tilt mechanism 30 has a first housing portion 32 and a second housing portion 34 of a pressure-resistant material such as for example metal, between which the other components of the tilt mechanism 30 are accommodated. In the first embodiment in this case the first housing portion 32 is fitted into the second housing portion 34 and the second housing portion 34 can be fixedly connected to the seat carrier 26 of the seat 14 of a chair 10 for example by means of screw connections.
Arranged between the two housing portions 32 and 34 of the tilt mechanism 30 are two first spring blocks 38 and two second spring blocks 42, a mounting member 40 and a pressure plate 36.
The first and second spring blocks 38, 42 are accommodated in pairs in the forward/rearward direction and the right/left direction respectively of the seat surface 16 in corresponding recesses 34a, 34b of the second housing portion 34. The first and second spring blocks 38, 42 comprise an elastically deformable material such as for example a (cellular) polyurethane elastomer and serve for sprung mounting of the tilt mechanism 30. Polyurethane elastomer can be obtained in various densities and with different spring characteristics which are generally greatly progressive. The spring blocks 38, 42 can therefore be selected in optimally adapted fashion depending on the respective nature and purpose of use of the chair 10 and the desired maximum inclination of the seat 14. In particular the first spring blocks 38 can also be provided with different properties from the second spring blocks 42. In that case, to simplify assembly of the tilt mechanism 30, the first and second spring blocks 38, 42 can be identified by being of different colors. It will be appreciated however that the present invention is not restricted just to spring blocks 38, 42 of a polyurethane elastomer.
The mounting member 40 comprising a pressure-resistant material such as for example metal or plastic material with incorporated metal components is fitted on to the spring blocks 38, 42. The mounting member 40 has a plate portion 40a and a central tubular portion 40b which are preferably integral. With the peripherally extending plate portion 40a, the mounting member 40 is supported on the spring blocks 38, 42 while the tubular portion 40b serves to receive the chair pillar 24 or the gas spring in the chair pillar 24, which projects through a corresponding opening 34c (not shown in
The pressure plate 36 comprising a pressure-resistant material such as for example metal or plastic material with incorporated metal components is fitted on to the mounting member 40. The pressure plate 36 centrally has an opening 36d through which the upper part of the tubular portion 40b of the mounting member 40 is passed. The pressure plate 36 is supported on the plate portion 40a of the mounting member 40.
As indicated in
The first housing portion 32 is fitted on to the pressure plate 36, the first housing portion 32 being fitted like the other components of the tilt mechanism 30 into the second housing portion 34. When the tilt mechanism 30 has been assembled and fixed to the seat carrier 26 of the seat 14 the first and second spring blocks 38, 42 are correspondingly biased.
As shown in
a, 4b and 4c show various sectional views of the assembled tilt mechanism 30 of
The view in
In a similar manner the seat 14 can be inclined forwardly or rearward by up to about between 7.5° and 8°, as shown in
The friction between the spring blocks 38, 42, the mounting member 40 and the housing portions 32, 34 is sufficiently great that the mounting member 40 can remain securely and permanently fixed in its position so that the individual components are not displaced relative to each other and as a result do not give rise to noise and/or suffer from wear.
A second embodiment of a tilt mechanism according to the invention will be described hereinafter with reference to
The tilt mechanism 30 of the second embodiment of
That structure of the first and second housing portions 32, 34 has the advantage that the first housing portion 32 can be used so-to-speak as an adaptor for adaptation to the pattern of holes of the respective seat carrier 26.
The other components (spring blocks 38 and 42, mounting member 40 and pressure plate 36) correspond to those of the foregoing embodiment and the same modes of operation and advantages can be achieved with the tilt mechanism 30 of
The tilt mechanism 30 according to the invention, besides the known inclination of a seat 14 in the forward/rearward direction of the seat surface, also permits inclination of the seat 14 in the right/left direction of the seat surface 16, which is advantageous for ergonomic reasons. Integration according to the invention of the two inclination options in the forward/rearward direction of the seat surface 16 and in the right/left direction of the seat surface 16 in a common tilt mechanism 30 also effectively avoids an unwanted increase in the height of the seat 14.
The maximum inclinations specified in the present description of about 3.5° for the right/left direction of the seat surface 16 and about between 7.5° and 8° for the forward/rearward direction of the seat surface 16 have been found to be particularly appropriate from ergonomic points of view. It will be appreciated however that the present invention is not limited to those maximum values but rather it is also possible to select smaller or larger maximum inclinations, if desired.
Number | Date | Country | Kind |
---|---|---|---|
20 2004 005 366 U | Apr 2004 | DE | national |
Number | Name | Date | Kind |
---|---|---|---|
4131260 | Ambasz | Dec 1978 | A |
5035466 | Mathews et al. | Jul 1991 | A |
5409295 | Edstrom | Apr 1995 | A |
5588704 | Harza | Dec 1996 | A |
5649740 | Hodgdon | Jul 1997 | A |
6059363 | Roslund et al. | May 2000 | A |
6357827 | Brightbill et al. | Mar 2002 | B1 |
20020043846 | Brauning | Apr 2002 | A1 |
Number | Date | Country |
---|---|---|
29905547 | Sep 2000 | DE |
10106791 | Aug 2002 | DE |
0 920 823 | Jun 1999 | EP |
Number | Date | Country | |
---|---|---|---|
20050218707 A1 | Oct 2005 | US |