Child car seat with height-adjustable seat cushion
09604554 ยท 2017-03-28
Assignee
Inventors
- Francois Renaudin (Cholet, FR)
- Nicolas GARNIER (Saint Germain Sur Moine, FR)
- Nicolas Pasquier (Cholet, FR)
- David M. Amirault (Indianapolis, IN, US)
- Ward A. Fritz (Westwood, MA, US)
- Walter S. Bezaniuk (Berkley, MA, US)
- Dana E. Chicca (Swansea, MA, US)
- Andrew W. Marsden (Hingham, MA, US)
- Joseph D. Langley (Foxboro, MA, US)
Cpc classification
B60N2/2812
PERFORMING OPERATIONS; TRANSPORTING
B60N2/2818
PERFORMING OPERATIONS; TRANSPORTING
B60N2/2875
PERFORMING OPERATIONS; TRANSPORTING
B60N2/2887
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A juvenile vehicle seat includes a seat bottom and a seatback. The juvenile vehicle seat also includes a child-restraint harness coupled to the seat bottom and seatback to restrain a juvenile seated on the seat bottom.
Claims
1. Automobile s Automobile seat for a child, comprising a seat base, characterised in that said seat base can be adjusted in height between at least two positions, in such a way as to place the child in an appropriate position in relation to a harness placed in said automobile seat and intended to maintain the child in said seat, and in that said seat comprises a seatback bearing means for guiding top straps of said harness, said means for guiding being fixed in relation to said seatback so that the distance between the top straps and the seat base changes during adjustment of the height of the seat base, characterised in that the inclination of said seat base can be adjusted, and in that the adjustments of the height and of the inclination of said seat base are linked, and characterised in that the adjusting of the height of the seat base implements at least two connecting rods located respectively at the front and at the rear of said seat base, and in that an amplitude of the rear connecting rod is less than that of the front connecting rod in such a way that the raising of the seat base drives its inclination towards the rear.
2. Automobile seat according to claim 1, characterised in that said seat base bears means for guiding lateral straps of said harness.
3. Automobile seat according to claim 1, characterised in that said seatback bears means for guiding lateral straps of said harness, and in that said seat base bears means for accompanying the displacement of said lateral straps in order to prevent said lateral straps from being pinched between the seatback and the seat base during displacement in height of the seat base.
4. Automobile seat according to claim 1, characterised in that said seat is provided with fastening clamps to hook said seat to hooking loops provided for this purpose in the vehicle.
5. Automobile seat according to claim 4, characterised in that said seat base bears means for guiding lateral straps of said harness.
6. Automobile seat according to claim 4, characterised in that said seatback bears means for guiding lateral straps of said harness, and in that said seat base bears means for accompanying the displacement of said lateral straps in order to prevent said lateral straps from being pinched between the seatback and the seat base during displacement in height of the seat base.
7. Automobile seat according to claim 1, characterised in that a depth (P.sub.A, P.sub.B) of said seat base can be adjusted.
8. Automobile seat according to claim 7, characterised in that adjustments of a height (H.sub.A, H.sub.B) and of the depth (P.sub.A, P.sub.B) of said seat base are linked.
9. A juvenile vehicle seat comprising a foundation adapted to rest in a stationary position on a passenger seat of a vehicle, a child restraint associated with the foundation and configured to include a seatback arranged to extend upwardly from a rear portion of the foundation and formed to include laterally spaced apart first and second upper belt-receiving slots, a seat bottom arranged to lie above the foundation and cooperate with the seatback to support a juvenile in a seated position above the foundation, the seat bottom being formed to include laterally spaced-apart first and second lower belt-receiving slots, and a child-restraint harness coupled to the seat bottom and to the seatback and configured to restrain a juvenile in the seated position on the seat bottom and seatback, the child-restraint harness comprising a first belt arranged to pass through the first lower belt-receiving slot and the first upper belt-receiving slot to lie along a first side of the child restraint and a second belt arranged to pass through the second lower belt-receiving slot and the second upper belt-receiving slot to lie along a second side of the child restraint, and bottom-mover means for moving the seat bottom in one of an upward direction along the seatback away from the foundation to raise the seat bottom to a higher elevation above the foundation to lie closer to the first and second upper belt-receiving slots formed in the seatback while allowing movement of the first belt in the child-restraint harness in the first lower belt-receiving slot and movement of the second belt in the child-restraint harness in the second lower belt-receiving slot during movement of the seat bottom relative to the foundation and in a downward direction along the seatback toward the foundation to a lower elevation to lie closer to the foundation and further away from the first and second upper belt-receiving slots formed in the seatback while allowing movement of the first belt in the child-restraint harness in the first lower belt-receiving slot and movement of the second belt in the child-restraint harness in the second lower belt-receiving slot.
10. The juvenile vehicle seat of claim 9, wherein the bottom-mover means comprises a pneumatic mechanism positioned to lie between the foundation and the seat bottom and configured to be inflated to move the seat bottom upwardly along the seatback away from the foundation and deflated to lower the seat bottom downwardly along the seatback toward the foundation.
11. The juvenile vehicle seat of claim 9, wherein the bottom-mover means comprises a screw rotatable about a horizontal axis of rotation and a compass comprising a first branch coupled at an upper end thereof to the screw and a second branch coupled at an upper end thereof to the seat bottom and a lower end thereof to the screw, and wherein rotation of the screw in a first direction about the horizontal axis of rotation moves the lower branches of the compass toward one another along the screw to move the seat bottom upwardly away from the foundation and rotation of the screw in an opposite second direction about the horizontal axis of rotation moves the lower branches of the compass away from one another along the screw to move the seat bottom downwardly toward the foundation.
12. The juvenile vehicle seat of claim 9, wherein the bottom-mover means comprises a screw arranged to rotate about a vertical axis of rotation and to have a lower end mated to the base and an upper end mated to the seat bottom and a thumbwheel coupled to the foundation and to the lower end of the screw to provide means for rotating the screw in a first direction about the vertical axis of rotation to move the seat bottom upwardly away from the foundation and in an opposite second direction about the vertical axis of rotation to move the seat bottom downwardly toward the foundation.
13. The juvenile vehicle seat of claim 9, wherein the bottom-mover means comprises a drum positioned to lie above the foundation and under the seat bottom and formed to include four series of slots of varying heights and a hub positioned to lie on the foundation and under the drum to support four arms spaced angulary apart from one another by about 90 degrees, and the drum is supported for rotation about a vertical axis relative to the underlying hub to cause each series of slots to cooperate with each of the arms to adjust the height of the drum relative to the hub and thus establish the elevation of the seat bottom relative to the underlying foundation.
14. The juvenile vehicle seat of claim 9, wherein the child restraint further includes a first side wall coupled to the foundation and arranged to extend upwardly therefrom along a first side of the seat bottom and a second side wall coupled to the foundation and arranged to extend upwardly therefrom in laterally spaced-apart relation to the first side wall along an opposite second side wall of the seat bottom to locate the seat bottom between the first and second side walls and the bottom-mover means comprises means for using a strap anchored at one end to the second side wall and arranged to lie in a seat-bottom support position under the seat bottom and to extend through a strap-exit slot formed in the first side wall to provide a grippable portion of the strap located outside the seat-bottom-receiving space provided between the first and second side walls and configured to provide means for moving the strap through the strap-exit slot to raise and lower the seat bottom relative to the foundation.
15. The juvenile vehicle seat of claim 9, wherein the bottom-mover means comprises at least two connecting rods located respectively at the front and at the rear of the seat bottom, and in that the amplitude of the rear connecting rod is less than that of the front connecting rod, in such a way that the raising of the seat bottom drives its inclination towards the rear.
16. The juvenile vehicle seat of claim 15, wherein a first of the two connecting rods is located under the front of the seat bottom, a second of the two connecting rods is located under the rear of the seat bottom, and the first of the two connecting rods is relatively longer than the second of the two connecting rods.
17. The juvenile vehicle seat of claim 15, wherein a first of the two connecting rods is located under the front of the seat bottom, a second of the two connecting rods is located under the rear of the seat bottom, and the two connecting rods are arranged to lie in a first plane when the seat bottom arrives at the lower elevation and in spaced-apart parallel planes when the seat bottom is raised to the higher elevation.
Description
(1) Other characteristics and advantages of the invention shall appear more clearly when reading the following description of embodiments of the invention, provided for the purposes of information and in a non-restricted manner and accompanied by drawings, among which:
(2)
(3)
(4)
(5)
(6)
(7)
(8)
(9)
(10) The invention therefore proposes a new type of automobile seat for children, providing an effective and safe positioning of the harness, regardless of the size of the child.
(11) For this, as can be seen in
(12) These strap-guides 13 were designed and placed on the seatback 11 in an optimal position in order to provide a good positioning of the five-point fastening harness in relation to the shoulders of the child.
(13) As such, regardless of the size of the child, the head and the shoulders of the latter are always in the same position, in relation to the top of the seatback, and therefore in relation to the strap guides 13. For this, the seat base 15 can be adjusted in height, in such a way as to adapt the distance between this seat base and the headrest, to the size of the child.
(14) When the child is of small size, the seat base is placed in top position. Inversely, for a child of large size, the seat base 15 is brought downwards.
(15) In the example of
(16) In the embodiment shown, the shoulder straps are each fastened at two points 13, 16 of the automobile seat 1, which is four fastening points, and the crotch piece 17 is fastened at one point of the automobile seat, in such a way that the harness is of the five-point harness type. The shoulder straps each include one portion (top strap) intended to maintain the torso of the child and one portion (lateral strap) forming a ventral belt portion. The shoulder straps and the crotch piece 17 (also called low strap) are connected together during the retaining of a child in a buckle of a harness comprising a button for controlling the opening of the harness.
(17) Note that, in
(18) Shoulder straps generally include two shafts (not shown) forming sleeves around the shoulder straps and comprising a fabric having a high coefficient of friction making it possible to retain the child in the event of impact. An end portion 18 of the harness, able to be seen in
(19) The
(20) When the crank 23 is rotated 24, the branches of the compass tighten by moving along the screw 27, which drives the displacement 25 in height of the seat base 15. Inversely, when the crank is turned in the opposite direction, the branches of the compass separate again, which causes the seat base 15 to descend again.
(21) Again, the automobile seat has a seatback 11 provided with a headrest 12, wherein are arranged passages 13 for the top straps of the harness. The elements for guiding lateral straps have not been shown, but can be borne by the seat base 15 or by the seatback 11. Likewise, the low fastening point of the harness has not been shown, but it is borne by the seat base 15.
(22) In
(23)
(24) A drum 40 is positioned under the seat base 15, wherein are arranged four series 46 of slots 46.sub.1 to 46.sub.4, of different heights, spaced angularly by about 90. In the example of
(25) Although not shown in
(26) The base 19 of the automobile seat comprises a central hub around which are connected four arms 47 provided with at their ends stabilizing feet. These four arms are angularly spaced by about 90.
(27) By rotating the drum 40, which slot 46.sub.1 to 46.sub.4 of each series 46 of slots cooperates with each of the arms 47 of the base 19 is chosen: as such, the height of the seat base 15 is adjusted. Indeed, when the four small slots 46.sub.4 slide on the arms 47, the seat base is in the highest position. Inversely, when the four larger slots 46.sub.1 slide on the arms 47, the seat base is in the lowest position. The slots of intermediate sizes 46.sub.2 and 46.sub.3 make it possible to obtain two other heights of the seat base. Another number of slots in each series could also be provided, in order to obtain more or less adjusting positions of the seat base.
(28)
(29) The adjusting of the height of the seat base 15 is carried out by playing with the length of the support straps 50 and 51. Openings are made on the lateral flank of the automobile seat, to allow the user access to the support straps 50 and 51, of which the user can adjust the length, in order to adapt the height of the seat base 15.
(30) Furthermore, in all of the alternative embodiments shown in
(31) Likewise on most of the figures described hereinabove, only the top fastening points of the straps of the harness have been shown. As mentioned hereinabove, the fastening points of the lateral straps can be arranged on the seatback or on the seat base. The low fastening point of the harness is arranged on the seat base.
(32) In relation with
(33) As can be seen in
(34) In this
(35) The seat base can then have at least two separate positions in height H.sub.A, H.sub.B. Several intermediate positions can of course be provided. The adjusting between the two extreme positions can also be continuous.
(36) The seat base therefore has a hollow 22, at the level of the buttocks of the child. Its inclination .sub.A, .sub.B, can also be adjusted.
(37) Moreover, according to a particular embodiment, the depth P.sub.A, P.sub.B of the seat base can also be adjusted, to adapt even better to the size of the child.
(38) Although the various adjustments can be independent, an interesting approach is to link them together. As such, the passage from the height H.sub.A to the height H.sub.B automatically drives the passage from the depth P.sub.A to the depth P.sub.B and/or the passage from the inclination .sub.A to the inclination .sub.B.
(39) These various displacements can be controlled by a manual action, for example using a crank or a button. In other embodiments, these displacements can be motorised.
(40) They can for example implement connecting rods, cams, worm screws, racks, gears, etc.
(41) In relation with
(42) The seat base 15, having an anti-submarining system 21 (optional), is mounted on two cams, one front cam 31 and one rear cam 32. These two cams 31, 32 are fastened to the same axis 33, able to be driven in rotation (arrow 34), for example by means of a manual manipulation of a crank or of a button, not shown in the figure. The rotation 34 of the axis 33 drives the rotation 35 of the cams 31 and 32, which causes the raising of the seat base 15.
(43) Furthermore, it can be advantageously provided that the front cam 31 be of a greater amplitude than the rear cam 32, in such a way that, in addition to the raising of the seat base 15, the rotation 35 of the cams 31, 32 also drives its inclination , due to the difference in amplitude between the two cams. As an alternative, the two front 31 and rear 32 cams are of the same amplitude, in such a way that their rotation drives the adjusting of the height of the seat base, but not its inclination, which remains unchanged.
(44) Note that the displacement of the cams 31, 32 is continuous during the rotation of the axis 33, in such a way that the inclination changes progressively, as the seat base 15 is raised.
(45)
(46)
(47) The
(48) It is provided that the front connecting rod 41 be longer than the rear connecting rod 42. The simultaneous rotation of the connecting rods, symbolised by the arrows 45, causes the raising of the seat base 15. Jointly, the difference in length between the connecting rods 41 and 42 causes the inclination of the seat base 15.
(49) As such, the anti-submarining system 21 (optional) is placed in an adapted manner, according to the morphology of the child transported.
(50)
(51)
(52) As in the example of
(53) As an alternative, the connecting rods 41 and 42 can be provided of identical size, in such a way that the inclination of the seat base is not modified when its height is adjusted. A mechanism for adjusting the inclination of the seat base can be provided, that makes it possible in particular to lay the child down when he or she is sleeping, independently of the adjustment of the height of the seat base.
(54) As shown by all of the embodiments described hereinabove, the adjusting in height of the seat base makes it possible to suppress the adjusting of the harness in height (the harness is fixed at its upper portion). The rear seatback is as such more rigid since it is no longer necessary for it to include a housing for the mechanism for adjusting the harness in height). Furthermore, the adjusting in height of the headrest can be avoided, with the relative position of the head and of the shoulders of the child remaining unchanged during the adjusting of the height of the seat base.