Stowable vehicle seat with slotted guide linkage
10266075 ยท 2019-04-23
Assignee
Inventors
- Andrzej Dlugokecki (Mountain View, CA, US)
- Kyle CALVERT (Sterling Heights, MI, US)
- Mark Allyn Folkert (Farmington Hills, MI, US)
Cpc classification
B60N2/3072
PERFORMING OPERATIONS; TRANSPORTING
B60N2/3031
PERFORMING OPERATIONS; TRANSPORTING
B60N2/3065
PERFORMING OPERATIONS; TRANSPORTING
B60N2/206
PERFORMING OPERATIONS; TRANSPORTING
International classification
B60N2/20
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A foldable vehicle seat includes a seat base, a seatback connected to the seat base for pivotal movement relative to the seat base from a generally vertical use position to a generally horizontal stow position atop the seat base, wherein the seat base is pivotally connected to the floor such that, when the seatback is moved from its use position to the folded, stow position, the seat base may be moved forward and downward to thereby provide a lower load floor position.
Claims
1. A foldable vehicle seat including: a seat base; a seatback having a lower end pivotally connected to a location fixed with respect to the vehicle floor for movement from at least one generally vertical use position to a generally horizontal stow position atop the seat base; at least one front link having an upper end and a lower end, which front link is pivotally connected at its upper end to the seat base, and pivotally connected at its lower end to the vehicle floor; at least one rear drive link having a first end and a second end, which rear drive link is pivotally connected at its first end to the seatback, and pivotally connected at its second end to one of the at least one front links, the rear drive link including a guide slot, wherein the seat base is operatively connected within the guide slot; and wherein forward movement of the seatback causes the seatback to rotate relative to the first end of the rear drive link and move the rear drive link forward, and wherein movement of the rear drive link moves the front link and the seat base forward, causing the front link to pivot such that, when the seatback is moved from its use position to the stow position, the seat base is moved forward and downward to thereby provide a lower load floor position.
2. The foldable vehicle seat of claim 1 further including at least one seatback support bracket mounted on the vehicle floor, and wherein the seatback is pivotally connected to the seatback support bracket.
3. The foldable vehicle seat of claim 1 wherein the seat base includes a structural support which supports the rear portion of the seat base, and further including a support bracket mounted at a location fixed with respect to the vehicle floor, the support bracket including a guide slot suitably sized and positioned to receive and support the structural support within the guide slot when the seat base is in the use position.
4. The foldable vehicle seat of claim 1 wherein the at least one front link includes a pair of front links, each front link being connected at its upper end to opposite sides of the seat base.
5. The foldable vehicle seat of claim 1 wherein the at least one rear drive link includes a pair of rear drive links, each rear drive link being pivotally connected at its first end to opposite sides of the seatback.
6. The foldable vehicle seat of claim 1 wherein: the at least one front link includes a pair of front links, each front link being connected at its upper end to opposite sides of the seat base; and the at least one rear drive link includes a pair of rear drive links, each rear drive link being pivotally connected at its first end to opposite sides of the seatback.
7. A foldable vehicle seat including: a seat base; a seatback having a lower end pivotally connected to a location fixed with respect to the vehicle floor for movement from at least one generally vertical use position to a generally horizontal stow position atop the seat base; at least one front link having an upper end and a lower end, which front link is pivotally connected at its upper end to the seat base, and pivotally connected at its lower end to the vehicle floor; at least one rear drive link having a first end and a second end, which rear drive link is pivotally connected at its first end to the seatback, and pivotally connected at its second end to one of the at least one front links, the rear drive link including a guide slot, wherein the seat base is operatively connected within the guide slot; a structural support which supports the rear portion of the seat base; a support bracket mounted at a location fixed with respect to the vehicle floor, the support bracket including a guide slot suitably sized and positioned to receive and support the structural support within the guide slot when the seat base is in the use position; and wherein forward movement of the seatback causes the seatback to rotate relative to the first end of the rear drive link and move the rear drive link forward, and wherein movement of the rear drive link moves the front link and the seat base forward, causing the front link to pivot such that, when the seatback is moved from its use position to the stow position, the seat base is moved forward and downward to thereby provide a lower load floor position.
8. The foldable vehicle seat of claim 7 wherein the at least one front link includes a pair of front links, each front link being connected at its upper end to opposite sides of the seat base.
9. The foldable vehicle seat of claim 7 wherein the at least one rear drive link includes a pair of rear drive links, each rear drive link being pivotally connected at its first end to opposite sides of the seatback.
10. The foldable vehicle seat of claim 7 wherein: the at least one front link includes a pair of front links, each front link being connected at its upper end to opposite sides of the seat base; and the at least one rear drive link includes a pair of rear drive links, each rear drive link being pivotally connected at its first end to opposite sides of the seatback.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION
(11) As required, detailed embodiments of the present invention are disclosed herein; however, it is to be understood that the disclosed embodiments are merely exemplary of the invention that may be embodied in various and alternative forms. The Figures are not necessarily to scale; some features may be exaggerated or minimized to show details of particular components. Therefore, specific structural and functional details disclosed herein are not to be interpreted as limiting, but merely as a representative basis for teaching one skilled in the art to variously employ the present invention.
(12) Referring now to
(13) In a first disclosed embodiment, shown in
(14) Rear drive link 16 is also slidably connected to the vehicle floor 22 via one or more guide brackets 30. Guide bracket 30 includes a guideway, which may be in the form of slot 32, which slot 32 is shaped to facilitate the desired movement path of seat base 12 as seatback 14 is folded downward thereby moving seat base 12 forward and downward as the seatback 14 is rotated forward into a generally flattened stow position. In this disclosed embodiment, lower pivot pin 20 extends through slot 32 of the guideway bracket 30 to direct the motion of the seat base 12 as the seatback 14 is folded forward.
(15) The seatback 14 may be connected to the seat base 12 using a single rear drive link 16, as shown in the figures, or it may employ multiple rear drive links, such as, for example one each on either side of the seat 10. Where more than one rear drive link is employed, each of the drive links 16 may be mounted to the seat base frame at the same location, for example, via a common lower pivot pin 20, or at multiple locations on the seat base 12, using multiple pivot pins. Similarly, in embodiments that employ multiple rear drive links 16, each of the rear drive links 16 could be connected to a single guide bracket 30, or, alternatively, to multiple guide brackets, to facilitate the guided movement of the seat base 12 as the seat 10 is folded.
(16) Similarly, seat base 12 may be pivotally connected to the vehicle floor 22 via a single front link 24, as shown in the figures, or, alternatively, multiple front links may be employed, such as, for example, a pair of front links, one attached on each side of the seat base 12.
(17) Referring now to
(18) Referring now to
(19) It should be appreciated that, in the disclosed embodiment, when the seat 100 is folded from its use to its stow position, seat base 112 moves forward and exits the forward opening in the guide slot 168, such that when the seat 10, 100 is in its stow position the rear portion of the seat base 112 is supported by rear seat frame guide pin 148 within guide slot 150 on the rear drive link 116. However, since the seat is not carrying an occupant in the load position, the pin/guide slot support is adequate to support the load of the rear portion of the seat base frame 112 when the seat is in its stow position.
(20) Referring again to
(21) The kinematic sequence associated with folding the seats of each of the disclosed embodiments 10, 100 from its use position to its stow position will now be described with particular reference to
(22) When it is desired to fold the seat from its use position to its stow position, a first actuation (by operation of a lever, pushbutton, or other actuating device) of the seatback 14, 114 causes the seatback to unlock at the upper pivot 18, 118, thereby allowing the seatback to begin to fold forward (either by manual operation, spring-assist, and/or motor-powered assist) onto the seat base 12, 112, as shown in
(23) In the embodiment of
(24) In the embodiment of
(25) In each of the disclosed embodiments, the front portion 36, 136 of the seat base 12, 112 begins moving forward and downward as front link 24, 124 rotates clockwise (when viewed from the perspective shown in the figures) about lower pivot 28, 128.
(26) As each of the disclosed embodiments of the seat 10, 100 progresses through the folding sequence (as shown, respectively, in
(27) The sequence for restoring the seat to its use position is generally reversed from the above-described sequence, except that, whether implemented by manual or powered actuation, the lock(s) which secure(s) the seat in its use position should be automatically engaged when the seatback reaches its upright position.
(28) When the seat 10, 100 is in a first (e.g., the stow) position, the mass of the seat may be balanced with one or more spring elements (not shown) fixed to one moveable components, such as, for example, one of the forward links 24, 124 to minimize the lifting effort required to raise the seatback 14, 114 and seat base 12, 112.
(29) Each of the disclosed embodiments may also employ any of a variety of conventional lock mechanisms (e.g., cam/pawl/sector, hook and pin, or shear pin types) which may be engaged to lock, for example, one or more of the front links 24, 124 in place, such as, for example, to thereby lock the seat in its use position. The lock mechanism may then be disengaged, as and when desired, to facilitate movement of the seat to, for example, its stow position.
(30) Seat 10, 100 may also, or alternatively, be outfitted with known manual or powered actuators (not shown) which may be operated to unlock and move the seatback and seat base from their use to stowage positions. The release mechanisms themselves may be manual, such as, for example, conventional release cables activated by pull latches. Alternatively, the release/actuating mechanisms may themselves be powered, with manual (or spring-assisted) repositioning of the seat components required after powered release. Alternatively, or additionally, actuation and repositioning of the seat components may be partially or fully powered such that, for example, the seat folds from its use position to the stow position with the push of a button.
(31) One example of a powered stowable vehicle seat is disclosed in pending U.S. application Ser. No. 14/707,256, for POWERED STOWABLE VEHICLE SEAT AND ASSOCIATED SEAT FRAME ASSEMBLY, filed May 8, 2015, the disclosure of which is hereby incorporated by reference herein to the extent that such power/drive designs may be integrated to provide power-assist to position the embodiments of the seat 10, 100 disclosed herein.
(32) While exemplary embodiments are described above, it is not intended that these embodiments describe all possible forms of the invention. Rather, the words used in the specification are words of description rather than limitation, and it is understood that various changes may be made without departing from the spirit and scope of the invention. Additionally, the features of various implementing embodiments may be combined to form further embodiments of the invention.