DEVICE FOR ADJUSTING A SEAT POSITION
20210122266 · 2021-04-29
Assignee
Inventors
Cpc classification
B60N2/1695
PERFORMING OPERATIONS; TRANSPORTING
B60N2/164
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
The invention relates to a device for adjusting a seat position for a vehicle seat, which comprises at least one support element for a seat part and can be connected to a seat substructure, the device comprising at least one first leg and at least one second leg, the legs being rotatably arrangeable on the seat substructure and the at least one support element, the at least one first leg and the at least one second leg being mechanically coupled by a connecting element, the length of which can be modified, wherein a modification of the length of the connecting element causes a change in an angle of inclination θ of the support element.
Claims
1. A device for adjusting a seat position for a vehicle seat, which device comprises at least one support element for a seat part and which can be connected to a seat substructure, wherein the device comprises at least one first leg and at least one second leg, wherein the legs can be rotatably arranged on the seat substructure and the at least one support element, wherein the at least one first leg and the at least one second leg are mechanically coupled by a connecting element, the length of which is modifiable, wherein a modification of the length of the connecting element causes a change in an angle of inclination θ of the support element.
2. The device according to claim 1, wherein the angle of inclination θ extends between a central axis of the at least one support element and a reference axis, which is substantially parallel to a longitudinal axis X of the device, wherein the angle of inclination θ is proportional to the length of the connecting element.
3. The device according to claim 1, wherein the connecting element is suitable and intended to maintain the modified length, wherein the connecting element can be controlled by means of an operating and control device, wherein the operating and control device comprises a memory device, by means of which certain length values of the connecting element can be stored, wherein the length of the connecting element is continuously adjustable, wherein the connecting element is a lockable gas spring or an adjusting element, wherein the adjusting element comprises a screw jack.
4. The device according to claim 1, wherein the at least one first leg is arranged along the longitudinal axis X behind the at least one second leg, wherein the at least one first leg along the longitudinal axis X is connected to the at least one second leg by means of a first longitudinal connection, which is realised by the at least one support element or by the seat part, wherein the at least one first leg and the at least one second leg each have a first section and a second section, wherein the first section and the second section enclose an angle β, whereby the at least one first leg and the at least one second leg are substantially L-shaped, wherein a bend region being provided between the first section and the second section.
5. The device according to claim 1, wherein the at least one first leg and the at least one second leg are each rotatably mounted about an axis of rotation relative to the support element and about a further axis of rotation relative to the seat substructure, wherein, in an upper end region of the first section, the axis of rotation is arranged with respect to the rotation relative to the support element, wherein the axis of rotation with respect to the rotation relative to the seat substructure (5) is arranged in the bend region.
6. The device according to claim 4, wherein the connecting element is arranged between the second section of the first leg and the second section of the second leg, wherein the respective second section is rotatable about an axis of rotation relative to the connecting element, wherein the axis of rotation with respect to a rotation of the at least one first leg or the at least one second leg relative to the connecting element is arranged in a lower end region of the respective second section.
7. The device according to claim 1, wherein the at least one first leg and the support element enclose a first angle α, this angle α being adjustable by an angle adjustment device, wherein a change in the angle α causes a displacement of the at least one support element along a height axis Z and along a longitudinal axis X, wherein a change in the angle α, which causes a downward displacement of the at least one support element along the height axis Z, at the same time causes a forward displacement of the at least one support element along the longitudinal axis X, wherein a change in the angle α, which causes an upward displacement of the at least one support element along the height axis Z, at the same time causes a backward displacement of the at least one support element along the longitudinal axis X.
8. The device according to claim 5, wherein the modification of the length of the connecting element causes a rotation of the at least one second leg about at least the axis of rotation with respect to a rotation relative to the connecting element and about the axis of rotation with respect to a rotation relative to the seat substructure, with the modification of the length of the connecting element not causing any rotation of the at least one first leg.
9. The device according to claim 1, wherein at least one second leg is indirectly connected to the at least one support element, the at least one second leg being connected to the support element via a spacing element, wherein the spacing element is rotatable about an axis of rotation relative to the at least one second leg, wherein the spacing element is rotatable about a further axis of rotation relative to the support element.
10. The device according to claim 1, wherein the first section of the at least one first leg and the first section of the at least one second leg have the same length, wherein the axes of rotation with respect to the rotation relative to the support element of the at least one first leg and the at least one second leg lie on a first imaginary or real connecting line, wherein the axes of rotation with respect to the rotation relative to the seat substructure of the at least one first leg and the at least one second leg lie on a second imaginary or real connecting line, wherein the first connecting line, the second connecting line and the first sections of the at least one first leg and the at least one second leg form a trapezoid.
11. The device according to claim 7, wherein the second section of the at least one first leg and the second section of the at least one second leg have the same length, wherein the axes of rotation with respect to the rotation of the at least one first leg and the at least one second leg relative to the connecting element lie on a third imaginary or real connecting line, wherein the second connecting line, the third connecting line and the second sections of the at least one first leg and the at least one second leg form a second trapezoid.
12. The device according to claim 1, wherein two first legs and two second legs are provided, the two first legs being spaced from one another along a width axis Y and being rotatable about the same axes of rotation, wherein the two second legs are spaced from one another along the width axis Y and are rotatable about the same axes of rotation, wherein the legs opposite one another along the width axis Y are connected by means of at least one transverse connection.
13. The device according to claim 1, wherein the device is a modular component.
14. A vehicle seat having a device according to claim 1.
15. The vehicle seat according to claim 14, wherein the vehicle seat comprises a scissor frame by means of which the vehicle seat is attached to a body floor, wherein the vehicle seat comprises a spring and/or damping device for the suspension/damping of vertical and/or horizontal vibrations.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0042] Other advantages, aims and properties of the present invention are explained with reference to the following description of the attached drawings. Similar components may have the same reference signs in the various embodiments.
[0043] In the drawings:
[0044]
[0045]
[0046]
[0047]
[0048]
[0049]
[0050]
[0051]
[0052]
[0053]
[0054]
[0055]
[0056]
[0057]
[0058]
DETAILED DESCRIPTION
[0059]
[0060] The vehicle seat, or the device for adjusting the seat position, extends along a height axis Z, a longitudinal axis X and a width axis Y.
[0061] The vehicle seat 1 can of course comprise a backrest, a head piece and armrests, as is shown for example in
[0062] As can be seen from
[0063] The at least one first leg 6 is arranged along the longitudinal axis X behind the at least one second leg 7. Furthermore, the at least one first leg 6 and the at least one second leg 7 are connected along the longitudinal axis X by means of a first longitudinal connection 9. The first longitudinal connection 9 realised by the at least one support element 3 or by the seat part 4. In
[0064] Furthermore, the at least one first leg 6 is connected to the at least one second leg 7 along the longitudinal axis X by means of a second longitudinal connection 10, which is realised by the seat substructure 5.
[0065] The at least one first leg 6 and the at least one second leg 7 each have a first section 6a, 7a and a second section 6b, 7b. The first section 6a, 7a and the second section 6b, 7b extend substantially in a straight line and thereby enclose an angle β, as a result of which the at least one first leg 6 and the at least one second leg 7 are substantially L-shaped. The angle β is accordingly in a range between 20° and 100°, preferably between 45° and 90°, more preferably between 95° and 85°, and even more preferably 90°. Accordingly, a bend region 6c, 7c is provided between the first section 6a, 7a and the second section 6b, 6b.
[0066] The at least one first leg 6 is rotatably mounted about a first axis of rotation 11 relative to the support element 3. The at least one first leg 6 and the support element 3 enclose a first angle α. Advantageously, the angle α extends between a central axis of the first leg 6 and a imaginary reference line of the support element, which is substantially perpendicular to the seat part.
[0067] The at least one second leg 7 is rotatably mounted about a second axis of rotation 12 relative to the support element 3. The respective first section 6a, 7a of the at least one first leg 6 and of the at least one second leg 7 have an upper end region in which the axis of rotation 11, 12 is arranged with respect to the rotation relative to the support element 3.
[0068] The at least one first leg 6 is rotatably mounted about a third axis of rotation 13 relative to the seat substructure 5. The at least one second leg 7 is rotatably mounted about a fourth axis of rotation 14 relative to the seat substructure 5. The third axis of rotation 13 and the fourth axis of rotation 14 are arranged in the respective bend region 6c, 7c. Accordingly, the first section 6a of the first leg 6 would substantially extend between the first axis of rotation 11 and the third axis of rotation 13. The first section 7a of the second leg 7 substantially extends between the second axis of rotation 12 and the fourth axis of rotation 14.
[0069] The connecting element 19 is arranged between the second section 6b of the first leg 6 and the second section 7b of the second leg 7. The first leg 6 is rotatably mounted about a fifth axis of rotation 15 relative to the connecting element 19. The second leg 7 is rotatably mounted about a sixth axis of rotation 16 relative to the connecting element 19. The fifth axis of rotation 15 and the sixth axis of rotation 16 are each arranged in a lower end region of the second sections 6b, 7b. The respective second section 6b, 7b thus substantially extends between the third axis of rotation 13 and the fifth axis of rotation 15 or between the fourth axis of rotation 14 and the sixth axis of rotation 16. Accordingly, a third longitudinal connection 23, modifiable in length, can be defined along the longitudinal axis X, which extends between the second section 6b of the at least one first leg 6 and the second section 7b of the at least one second leg 7 and is realised by the connecting element 19.
[0070] The device 2 comprises two first legs 6 and two second legs 7. The two first legs 6 and the two second legs 7 are each spaced apart from one another along the width axis Y. The two opposing first legs 7 and the two opposing second legs 7 are each substantially identical. The further description of the legs 6, 7 in the form of at least one leg 6, 7 is accordingly to be applied to the respective pair of legs. The two first legs 6 and the two second legs 7 can still be rotatable about the same axes of rotation 11, 12, 13, 14, 15, 16. Furthermore, the legs 6, 7 lying opposite one another along the width axis Y are connected by means of at least one transverse connection 24. Such a transverse connection 24 is realised by the support element 3, which is designed as a plate-like element 30. Furthermore, struts, plates, etc., which likewise form the transverse connection 24, can also be present.
[0071] When the length of the connecting element 19 is modified, the distance between the fifth axis of rotation 15 and the sixth axis of rotation 16, or between the two second sections 6b, 7b of the legs 6, 7 is reduced or increased.
[0072] The modification of the length of the connecting element 19 causes the at least one second leg 7 to rotate about at least the sixth axis of rotation 16 and about the fourth axis of rotation 14. Furthermore, the modification of the length of the connecting element 19 can also cause the at least one second leg 7 to rotate about the second axis of rotation 12. The angle α is advantageously defined during the modification, making a rotation about the first axis of rotation 11 impossible. The at least one first leg 6 is therefore not rotated when the length of the connecting element 19 is modified.
[0073] The at least one second leg 7 is indirectly connected to the at least one support element 3. The at least one second leg 7 is connected to the support element 3 via a spacing element or a connecting rod 33. The spacing element or connecting rod 33 can be rotated about the second axis of rotation 12 relative to the at least one second leg 7. Furthermore, the spacing element or connecting rod 33 can be rotated about a seventh axis of rotation 34 relative to the support element 3. The spacing element 33 provides additional degrees of freedom, by means of which an adjustment of the inclination of the seat part 4 is facilitated.
[0074] The angle of inclination θ extends between a central axis 38 of the at least one support element 3 and a reference axis 39, which is substantially parallel to the longitudinal axis X of the device 2. The change in the angle of inclination θ is proportional to the change in the length of the connecting element 19.
[0075] The spacing element or the connecting rod 33 rotates accordingly when the inclination changes according to
[0076] The length of the connecting element 19 is continuously adjustable. In addition, the connecting element 19 is suitable and provided for maintaining its modifiable length, preferably until a new modification is carried out. Corresponding undesirable forces applied to the device 2 or the connecting element 19 thus do not cause any undesired change in the length of the connecting element 19. The connecting element 19 can be a lockable gas spring or an adjusting element. However, other similar elements by means of which the length can be modified and retained are likewise conceivable. An adjusting element comprises, for example, a screw jack which is driven by a drive, for example an electric motor. The screw jack converts the rotating movement of the drive into a linear movement. In the rest position, the screw jack blocks any further linear movement. Lockable gas springs can be locked steplessly in the pulling or pushing direction. As a rule, lockable gas springs comprise a piston-valve system which separates the two pressure spaces in the spring from one another. This allows for a stepless blocking without any effort. The gas spring blocks, if the valve tappet is released from the outside and the exchange between the two pressure chambers is interrupted.
[0077] The connecting element can be operated manually by means of an operating element, for example a lever. Alternatively or cumulatively, an operating and control device 38, by means of which the connecting element 19 can be controlled can be provided. The one operating and control device 38 can include an operating element 40, which can be a lever, a button, a joystick or the like. The operating and control device 38 can furthermore comprise a memory device 39, by means of which certain length values of the connecting element 19 can be stored. This is shown, for example, in
[0078] The angle α can be adjusted by means of an angle adjustment device 8. A change in the angle α causes a displacement of the at least one support element 3 along a height axis Z and along a longitudinal axis X. A change in the angle α, which causes a downward displacement of the at least one support element 3 along the height axis Z, also causes a forward displacement of the at least one support element 3 along the longitudinal axis X. A change in the angle α, which causes the at least one support element 3 to be displaced upward along the height axis Z, at the same time causes the at least one support element 3 to be displaced backward along the longitudinal axis X.
[0079] The first section 6a of the at least one first leg 6 and the first section 7a of the at least one second leg 7 have the same length. The first axis of rotation 11 and the second axis of rotation 12 lie on a first imaginary or real connecting line 17. The third axis of rotation 13 and the fourth axis of rotation 14 also lie on a second imaginary or real connecting line 18. The first connecting line 17, the second connecting line 18 and the first sections 6a, 7a of the at least one first leg 6 and the at least one second leg 7 thus form a first trapezoid 21. This can be seen clearly in
[0080]
[0081] The fifth axis of rotation 15 and the sixth axis of rotation 16 lie on a third imaginary or real connecting line 20.
[0082] In the embodiments according to
[0083] In the embodiments according to
[0084] The first connecting line 18 can accordingly correspond to the first longitudinal connection 9.
[0085] The at least one first leg 6, or the corresponding pair of legs, is arranged directly on the support element 3 via a pivot bearing, or is rotatably mounted. The first axis of rotation 11 accordingly runs centrally through this pivot bearing. The at least one second leg 7, or the corresponding pair of legs, is indirectly arranged or supported on the support element 3 via the spacing element 33 and a corresponding pivot bearing. Furthermore, the spacing element 33 is arranged on the support element 3 by means of a further pivot bearing. The second axis of rotation 12 accordingly runs centrally through this pivot bearing. The at least one second leg 7 or the corresponding pair of legs can also be arranged or supported directly on the support element 3 via a pivot bearing.
[0086] In the embodiment shown in
[0087] In the embodiment shown in
[0088] In the embodiment based on
[0089] In the embodiment based on
[0090]
[0091] An adjustment curve 32 of the vehicle seat 1 can be seen in
[0092] The angle adjustment device 8 can be clearly seen in
[0093]
[0094] Such a device 2 can be configured separately from the vertical suspension. Consequently, the height adjustment and spring travel cannot be influenced. The device offers an ergonomic adjustment of the seat and creates a height-dependent distance to the steering wheel and the pedals.
[0095] All features disclosed in the application documents are claimed as being essential to the invention, provided that they are, individually or in combination, novel over the prior art.
LIST OF REFERENCE SIGNS
[0096] 1 Vehicle seat [0097] 2 Device for adjusting a seat position [0098] 3 Support element [0099] 3a Reference line of the support element [0100] 4 Seat part [0101] 5 Seat substructure [0102] 6 First leg [0103] 6a First section of the first leg [0104] 6b Second section of the first leg [0105] 6c Bend region of the first leg [0106] 6d Central axis of the first leg [0107] 7 Second leg [0108] 7a First section of the second leg [0109] 7b Second section of the second leg [0110] 7c Bend region of the second leg [0111] 8 Angle adjustment device [0112] 9 First longitudinal connection [0113] 10 Second longitudinal connection [0114] 11 First axis of rotation [0115] 12 Second axis of rotation [0116] 13 Third axis of rotation [0117] 14 Fourth axis of rotation [0118] 15 Fifth axis of rotation [0119] 16 Sixth axis of rotation [0120] 17 First connecting line [0121] 18 Second connecting line [0122] 19 Connecting element [0123] 20 Third connecting line [0124] 21 First trapezoid [0125] 22 Second trapezoid [0126] 23 Third longitudinal connection [0127] 24 Transverse connection [0128] 25 Locking device [0129] 26 Drive [0130] 27 Scissor frame [0131] 28 Spring and/or damping device [0132] 29 Body floor [0133] 30 Plate-like element [0134] 31 Square [0135] 32 Adjustment curve [0136] 33 Spacing element/connecting rod [0137] 34 Seventh axis of rotation [0138] 35 Primary shaft [0139] 36 Spur gear [0140] 37 Spur gear [0141] 38 Operating and control device [0142] 39 Memory device [0143] 40 Operating element [0144] Z Height axis [0145] X Longitudinal axis [0146] Y Width axis [0147] α Angle [0148] β Angle [0149] θ Angle of inclination