LONGITUDINAL ADJUSTER FOR A VEHICLE SEAT, AND VEHICLE SEAT
20170334319 ยท 2017-11-23
Inventors
Cpc classification
B60N2/0806
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A longitudinal adjuster (3) for a vehicle seat (1) includes at least one rail pair (7), including a lower rail (9) and an upper rail (11), which can be moved longitudinally in relation to the lower rail (9). At least one locking unit (13) locks the upper rail (11). At least one actuating element (5) releases the locking of the upper rail (11). The locking unit (13) includes at least one locking element (15) and at least one spring element (17), which are operatively engaged with each other. The spring element (17) is interlockingly and frictionally connected to the upper rail (11) by an insertion locking connection (S). The spring element (17) applies a preloading force to the actuating element (5) and to the locking element (15). A vehicle seat (1) is also provided with at least one such longitudinal adjuster (3).
Claims
1. A longitudinal adjuster for a vehicle seat, the longitudinal adjuster comprising: at least one rail pair, comprising a lower rail and an upper rail, which upper rail can be moved longitudinally relative to the lower rail; at least one locking unit for locking the upper rail; and at least one actuating element for releasing the locking of the upper rail, wherein: the locking unit comprises at least one locking element and at least one spring element, which at least one locking element and at least one spring element are in operative engagement with one another; the spring element is form- and force-fitting connected to the upper rail by a plug-in/latching connection; and the spring element applies a preloading force to the actuating element and to the locking element.
2. A longitudinal adjuster according to claim 1, wherein the spring element has at least one latching nose and at least one latching tab, which can be arranged in corresponding apertures in the upper rail to form the plug-in/latching connection.
3. A longitudinal adjuster according to claim 2, wherein the latching nose can be inserted into one of the corresponding apertures, and the latching tab can be latched in a different one of the corresponding apertures (11.2).
4. A longitudinal adjuster according to claim 3, wherein: the aperture corresponding to the latching nose has two regions with widths that differ in a direction of a transverse axis; and the latching nose has two sections with widths that differ in the direction of the transverse axis.
5. A longitudinal adjuster according to claim 4, wherein a respective width of one region of the aperture corresponds to a width of one section of the latching nose.
6. A longitudinal adjuster according to claim 1, wherein: the spring element has two spring arms; and one spring arm applies the preloading force to the actuating element and the other spring arm applies the preloading force to the locking element.
7. A longitudinal adjuster according to claim 6, wherein: the spring element has at least one latching nose and at least one latching tab, which can be arranged in corresponding apertures in the upper rail to form the plug-in/latching connection; the spring element is designed as a leaf spring; and the latching nose and the latching tab are arranged at one face side end of the spring element, and the spring arms are arranged at an opposite face side end of the spring element.
8. A longitudinal adjuster according to claim 7, wherein one of the spring arms is in operative engagement with a stop of the actuating element.
9. A longitudinal adjuster according to claim 1, wherein the actuating element is mounted pivotably in a through opening of the spring element.
10. A longitudinal adjuster according to claim 1, wherein an actuating end of the actuating element is arranged between the locking element and the upper rail.
11. A longitudinal adjuster according to claim 1, wherein the locking element is arranged between the upper rail and the lower rail and has a guide peg.
12. A vehicle seat comprising at least one longitudinal adjuster comprising: at least one rail pair, comprising a lower rail and an upper rail, which upper rail can be moved longitudinally relative to the lower rail; at least one locking unit for locking the upper rail; and at least one actuating element for releasing the locking of the upper rail, wherein: the locking unit comprises at least one locking element and at least one spring element, which at least one locking element and at least one spring element are in operative engagement with one another; the spring element is form- and force-fitting connected to the upper rail in a form- and force-fitting manner by a plug-in/latching connection; and the spring element applies a preloading force to the actuating element and to the locking element.
13. A vehicle seat according to claim 12, wherein the spring element has at least one latching nose and at least one latching tab, which can be arranged in corresponding apertures in the upper rail to form the plug-in/latching connection.
14. A vehicle seat according to claim 13, wherein the latching nose can be inserted into one of the corresponding apertures, and the latching tab can be latched in a different one of the corresponding apertures.
15. A vehicle seat according to claim 14, wherein: the aperture corresponding to the latching nose has two regions with widths that differ in a direction of a transverse axis; and the latching nose has two sections with widths that differ in the direction of the transverse axis.
16. A vehicle seat according to claim 15, wherein a respective width of one region of the aperture corresponds to a width of one section of the latching nose.
17. A vehicle seat according to claim 12, wherein: the spring element has two spring arms; and one spring arm applies the preloading force to the actuating element and the other spring arm applies the preloading force to the locking element.
18. A vehicle seat according to claim 17, wherein: the spring element is designed as a leaf spring; the spring element has at least one latching nose and at least one latching tab, which can be arranged in corresponding apertures in the upper rail to form the plug-in/latching connection; and the latching nose and the latching tab are arranged at one face side end of the spring element, and the spring arms are arranged at an opposite face side end of the spring element.
19. A vehicle seat according to claim 18, wherein one of the spring arms is in operative engagement with a stop of the actuating element.
20. A vehicle seat according to claim 12, wherein: the actuating element is mounted pivotably in a through opening of the spring element; an actuating end of the actuating element is arranged between the locking element and the upper rail; and the locking element is arranged between the upper rail and the lower rail and has a guide peg.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0020] In the drawings:
[0021]
[0022]
[0023]
[0024]
[0025]
[0026]
[0027]
[0028]
DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0029] Referring to the drawings, parts that correspond to one another are provided with the same reference signs in all the figures.
[0030]
[0031] Here, the arrangement of the vehicle seat 1 in the vehicle is defined by means of the coordinate system used below, comprising a vertical axis z associated with a vertical direction of the vehicle, a longitudinal axis x associated with a longitudinal direction of the vehicle, and a transverse axis y associated with a transverse direction of the vehicle.
[0032] The vehicle seat 1 has a longitudinal adjuster 3 according to the invention and an actuating element 5. When the actuating element 5 is actuated, the vehicle seat 1 can be moved relative to the vehicle along the longitudinal axis x.
[0033] For this purpose, the vehicle seat 1 has a rail pair 7 in the direction of the longitudinal axis x on each side of the vehicle seat, each pair having a lower rail 9 and an upper rail 11, which can be moved in relation to the lower rail 9 in the direction of the longitudinal axis x. Here, the lower rail 9 is firmly connected to the vehicle, wherein the upper rail 11 is connected to the vehicle seat 1.
[0034] The longitudinal adjuster 3 according to the invention is described in greater detail below. For this purpose,
[0035] In particular,
[0036] The longitudinal adjuster 3 comprises the rail pair 7 and a locking unit 13.
[0037] The locking unit 13 is designed to lock the upper rail 11 and comprises at least one spring element 17, a locking element 15 and the actuating element 5.
[0038] The actuating element 5 is formed as a handle or hoop (not shown specifically) on an actuating end 5.1. At an opposite unlocking end 5.2, the actuating element 5 is designed as an actuating tongue, which is arranged in the upper rail 11, in particular between the latter and the locking element 15.
[0039] The actuating element 5 is arranged in such a way on the spring element 17, in particular in a through opening 17.1 shown in
[0040] The locking element 15 is in the form of a locking plate having lateral rib-shaped latching features 15.2 for locking the upper rail 11. Here, the locking element 15 is positioned between the upper rail 11 and the lower rail 9. The unlocking end 5.2 is arranged between the upper rail 11 and the locking element 15, as already described above. The locking element 15 furthermore comprises a guide peg 15.1, which projects upwards in the direction of the vertical axis z and which is passed through an opening in the upper rail 11 (not shown explicitly here).
[0041] According to the present illustrative embodiment, the spring element 17 is designed as a leaf spring and has two spring arms 17.2, 17.3, wherein one spring arm 17.2 exerts a substantially perpendicular spring force on the actuating element 5. In the present case, the spring force is produced along the vertical axis z in the direction of the vehicle seat 1. Preloading of the actuating element 5 produced by means of the spring force of spring arm 17.2 holds said element in a predetermined position, in which the locking element 15 is in a locking position. In the locking position, the lateral latching features 15.2 are in operative engagement with latching recesses 9.1 arranged in the lower rail 9, these being shown in part in
[0042] Another spring arm 17.3 exerts a substantially perpendicular spring force on the locking element 15, wherein the spring force holds the locking element 15 in a predetermined position, in particular in the locking position of the locking element 15. In the present case, the spring force is produced along the vertical axis z in the direction of the vehicle seat 1.
[0043] During a process of unlocking the longitudinal adjuster 3, the actuating element 5, in particular the unlocking end 5.2, is actuated and moved upwards along the vertical axis z in the direction of the vehicle seat 1. Owing to this movement, in particular the movement of the unlocking end 5.2, and the design of the actuating element 5 as a rocker, the actuating element 5 counteracts the spring force produced by spring arm 17.2, wherein spring arm 17.2 is additionally stressed, allowing the actuating end 5.1 to be moved back into the original position when it is released.
[0044] The upward movement of the actuating end 5.1 along the vertical axis z in the direction of the vehicle seat 1 furthermore brings about a movement of the unlocking end 5.2 in the opposite direction, by means of which the spring force of spring arm 17.2 is counteracted and the locking element 15 is moved downwards in the direction of the vertical axis z.
[0045] As a result of this, the operative engagement between the latching features 15.2 and the latching recesses 9.1 is released, and a longitudinal movement of the upper rail 11 relative to the lower rail 9 is enabled.
[0046] In the unlocking position, spring arm 17.3 is additionally stressed, ensuring that the locking element 15 is moved back in the direction of the upper rail 11 when the actuating end 5.1 is released. Here, the locking position of the locking element 15 is reached when the latching features 15.2 latch with the latching recesses 9.1.
[0047] In the figure, the actuating end 5.1 of the actuating element 5, said end being designed as a handle for example, is positioned in such a way that the locking element 15 is in the locking position.
[0048] The spring element 17 has a latching nose 17.4, which is arranged in a corresponding aperture 11.1 in the upper rail 11 to form a plug-in connection. The spring element 17 furthermore has a latching tab 17.5, which is arranged in a corresponding further aperture 11.2 in the upper rail 11 to form a latching connection and to fix a position of the latching nose 17.4 in aperture 11.1. Together with the corresponding apertures 11.1, 11.2, the latching nose 17.4 and the latching tab 17.5 form a plug-in/latching connection S.
[0049] The actuating element 5 is passed through a through opening 17.1. Here, the actuating element 5 is supported in such a way in the through opening 17.1 (in a manner not shown specifically) that the actuating element 5 is designed as a rocker, as already mentioned above. In a region of the through opening 17.1, the actuating element 5 furthermore has lateral stops (not shown) in order to define and stabilize a position of the actuating element 5 in the spring element 17.
[0050] To fix the position of the actuating element 5, at least in the direction of the longitudinal axis x, said element has a further stop 5.3, on which spring arm 17.2 is arranged. By virtue of the spring force produced by means of spring arm 17.2, the arm is pressed against the actuating element 5 and a steady arrangement on the stop 5.3 is ensured.
[0051] The other spring arm 17.3 exerts the spring force on the locking element 15 along the vertical axis z in the direction of the vehicle seat 1, thereby holding said locking element in the position shown.
[0052] The unlocking end 5.2, which is designed as an actuating tongue, is arranged between an inner side of the upper rail 11, said inner side facing the lower rail 9, and the locking element 15. Locking element 15, on which the spring force produced by means of spring arm 17.3 is exerted, transmits this spring force to the unlocking end 5.2, thereby pressing said end against the upper rail 11. In order to minimize mechanical noises during an actuation of the actuating element 5, the unlocking end 5.2 comprises a damping element 5.4, e.g. a rubber plug or a plastic coating or a spring.
[0053] To actuate the actuating element 5 and thus unlock the longitudinal adjuster 3, the actuating end 5.1 is moved along the vertical axis z in the direction of the vehicle seat 1 in accordance with the arrow P shown in
[0054] Owing to the movement of the actuating end 5.1 and the design of the actuating element 5 as a rocker, the actuating element 5, in particular the unlocking end 5.2, counteracts the spring forces produced by the spring arms 17.2, 17.3. The movement of the actuating end 5.1 along the vertical axis z in the direction of the vehicle seat 1 furthermore has the effect that the unlocking end 5.2 is moved in the opposite direction.
[0055] During this process, the locking element 15 is moved downwards along the vertical axis z and hence into the unlocking position by means of the unlocking end 5.2.
[0056] The connection between the spring element 17 and the upper rail 11 is explained in greater detail below.
[0057] The upper rail 11 has the aperture 11.1 in a flank extending in the direction of the longitudinal axis x. The aperture 11.1 is of substantially T-shaped design to allow the spring element 17 (not shown here) to be accommodated in a form-fitting and force-fitting manner. In this case, the aperture 11.1 has two regions with different widths X1, X2 in the direction of the transverse axis y, wherein the width X1 of a region facing the locking element 15 in the direction of the longitudinal axis x is smaller than the width X2 of the other region.
[0058] A further aperture 11.2 is arranged spaced apart from aperture 11.1 in the direction of the longitudinal axis x and is likewise provided for accommodating the spring element 17 in a form-fitting and force-fitting manner.
[0059] The spring element 17 has a latching tab 17.5 to enable it to be fixed in position on the upper rail 11. The latching tab 17.5 is produced by means of stamping and subsequent forming, for example, or, as an alternative, is designed as a latching pin projecting from the spring element 17 or as a separate latching pin arranged on, e.g. welded on, the spring element 17. Here, the latching tab 17.5 has a width corresponding to the further aperture 11.2 in the direction of the transverse axis y.
[0060] In the present case, the spring element 17 is of integral design, wherein the latching nose 17.4 has been shaped by means of stamping and subsequent forming, for example. In an illustrative embodiment which is not shown, the latching nose 17.4 is arranged, e.g. screwed on, by means of a force-fitting and/or form-fitting connection.
[0061] The latching nose 17.4 extends vertically along the vertical axis z and is of substantially T-shaped design. Here, a wide section of the latching nose 17.4, which is towards the top along the vertical axis z, has a width X3, and a lower, narrow section has a width X4. In this arrangement, the width X2 of the aperture 11.1 corresponds to the width X3 of the latching nose 17.4, and the width X1 of the aperture 11.1 corresponds to the width X4 of the latching nose 17.4.
[0062] The spring arms 17.2, 17.3 extend along the longitudinal axis x and are formed so as to be spaced apart in such a way that they can apply separate spring forces.
[0063] Spring arm 17.2 is angled in such a way along the transverse axis y at an opposite end from latching nose 17.4 that it is possible to produce engagement of spring arm 17.2 with the stop 5.3 of the actuating element 5.
[0064] Spring arm 17.3 is of arched design at an end opposite the latching nose 17.4, in such a way that an additional spring force action on the locking element 15 is achieved.
[0065]
[0066]
[0067] The described arrangement of the spring element 17 on the upper rail 11 is a plug-in/latching connection S. The preloading forces of the spring element 17 on the locking element 15 and on the actuating element 5 hold the spring element 17 in the upper rail 11.
[0068] Forces acting externally on the actuating element 5 along the vertical axis z do not produce any moments on the spring element 17 by means of latching of the spring element 17 in the apertures 11.1, 11.2, which are situated in one plane. Tension and compression forces along the longitudinal axis x can be absorbed by the spring element 17.
[0069] While specific embodiments of the invention have been shown and described in detail to illustrate the application of the principles of the invention, it will be understood that the invention may be embodied otherwise without departing from such principles.