Child Bike Seat
20180057088 ยท 2018-03-01
Inventors
- Joline Karelse (Utrecht, NL)
- Gert-Jan van Breugel (Tuil, NL)
- Albert Nieuwenhuis (Geldermalsen, NL)
- Jort Nijhuis (Amsterdam, NL)
Cpc classification
B62J1/18
PERFORMING OPERATIONS; TRANSPORTING
A47D1/10
HUMAN NECESSITIES
International classification
Abstract
A bicycle child seat includes a seat body for accommodating a child therein and a fixation adapted to couple the bicycle child seat to a bike. The seat body includes a multi-layer structure with at least a first layer and a second layer made from different materials. The first layer is adapted to at least partially cover the second layer and to at least partially support the second layer.
Claims
1. A bicycle child seat, comprising: a seat body configured to accommodate a child therein, the seat body comprising a multi-layer structure with at least a first layer and a second layer made from different materials; and a fixation member adapted to couple the bicycle child seat to a bike, wherein the first layer is adapted to at least partially cover the second layer and to at least partially support the second layer.
2. The bicycle child seat according to claim 1, wherein the first layer is adapted to at least partially support the second layer on the fixation member such that a movement of the first layer relative along the second layer is substantially prevented.
3. The bicycle child seat according to claim 1, wherein the first layer and the second layer are coupled to each other by a positive-fit connection.
4. The bicycle child seat according to claim 1, wherein the second layer comprises a uniform main surface facing the first layer and non-uniform surface areas, wherein the first layer is attached to the uniform main surface and the non-uniform surface areas.
5. The bicycle child seat according to claim 4, wherein at least one of the non-uniform surface areas of the second layer comprises a recess and the first layer comprises a protruding section, wherein the protruding section and the recess are configured to mate.
6. The bicycle child seat according to claim 1, wherein the first layer and the second layer are fixable to the fixation member by pressing the second layer towards the fixation member.
7. The bicycle child seat according to claim 6, further comprising a pressing member having a pressing surface arranged on the second layer such that the second layer and the first layer are positioned between the pressing member and the fixation member, wherein the pressing member is adapted to engage with at least the second layer and to exert a pressing force towards the fixation member onto the second layer, wherein the pressing member comprises protrusions protruding from a bottom side of a fixation plate towards the fixation member, and wherein the first layer comprises projections protruding from the first layer in a direction facing away from the fixation member, wherein the second layer comprises recesses into which one of the protrusions and one of the projections respectively extend from opposite sides such that their end portions face each other, and wherein the protrusions and projections comprise openings configured to accommodate a fixation device configured to fix the pressing member to the fixation member.
8. The bicycle child seat according to claim 7, further comprising a covering member configured to cover the pressing member, the covering member being configured as a seating element of the bicycle child seat and comprising a soft material.
9. The bicycle child seat according to claim 1, wherein the Young's modulus of the second layer is smaller than the Young's modulus of the first layer, wherein the second layer is formed from a foam material and wherein the second layer is solid.
10. The bicycle child seat according to claim 1, wherein the first layer is formed from a thermoplastic material, and wherein the second layer is formed by expanded polypropylene, wherein the second layer comprises an internal reinforcement structure or an expanded polypropylene mixture containing a strengthening component.
11. The bicycle child seat according to claim 10, wherein the expanded polypropylene comprises a density ranging from 40 to 120 gr./ltr.
12. The bicycle child seat according to claim 1, wherein the first layer comprises a thickness of 1.6 to 2.9 mm, and the second layer comprises a thickness of 8 to 31 mm.
13. The bicycle child seat according to claim 1, wherein the first layer is structured as an outer seat shell and the second layer is structured as an inner seat shell accommodated in and provided adjacent the outer seat shell.
14. The bicycle child seat according to claim 1, wherein each layer is integrally formed and comprises side walls, a bottom portion, and a back portion, jointly forming the seat body.
15. The bicycle child seat according to claim 14, wherein the first layer and the second layer are mechanically attached to each other at their back portions, wherein the first layer comprises protrusions in the back portion protruding into mating openings formed in the second layer and fixedly mounted to the second layer using receiving elements fixed on the protrusions by a snap-fit connection, wherein the receiving elements are shoulder hole caps configured to attach to shoulder straps.
16. The bicycle child seat according to claim 8, wherein the covering member comprises ethylene vinyl acetate.
17. The bicycle child seat according to claim 10, wherein the expanded polypropylene comprises a density ranging from 50 to 100 gr./ltr.
18. The bicycle child seat according to claim 10, wherein the expanded polypropylene comprises a density ranging from 60 to 80 gr./ltr.
19. The bicycle child seat according to claim 12, wherein the first layer comprises a thickness of 1.8 mm and the second layer comprises a thickness of 17 to 31 mm.
20. The bicycle child seat according to claim 14, wherein each layer is integrally formed by injection molding.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0028] The present invention will hereinafter be described in conjunction with the following drawing figures, wherein like numerals denote like elements, and:
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[0049] All figures are only schematic depictions of exemplary embodiments in which, in particular, distances and dimensional correlations are not presented to scale.
DESCRIPTION OF EMBODIMENTS
[0050] The following detailed description is merely exemplary in nature and is not intended to limit application and uses. Furthermore, there is no intention to be bound by any theory presented in the preceding background or summary or the following detailed description.
[0051] In
[0052] The seat body 4 comprises a multi-layer structure formed by a first layer 6 and a second layer 8 which are attached to each other. Furthermore, attached to the seat body 4 are harness belts 70. The upper ends of the harness belts 70 are passed through shoulder anchors 72 which are fixed to the seat body 4 by means of shoulder hole caps 74 as shown in
[0053] The first layer 6 is made from polypropylene (PP) and is provided as a supporting layer. Using PP adds stiffness to the overall seat structure. Instead of PP, polycarbonate, acrylonitrile butadiene styrene or polymethyl methacrylate could be used for the first layer 6.
[0054] The detailed construction of the first layer 6 will be described with reference to
[0055] The first layer 6 which is also referred to as outer seat shell comprises a bottom portion 44 and a back portion 48. In the bottom portion 44 of the first layer 6, protrusions 36 are provided facing in the upward direction. In other words, in a mounted condition, the protrusions 36 in the bottom portion 44 face away from the fixation means 10. On the opposite side of the protrusions 36, recesses 36a are provided. Furthermore, protrusions 37 are provided in the back portion 48. Both kinds of protrusions 36, 37 are arranged on a side of the first layer 6 facing the second layer 8 in a mounted condition of the seat body 4. Furthermore, the protrusions 37 are arranged in a protruded section 12 of the first layer 6. On the opposite side of the protruding section 12, a recessed section 11 is provided.
[0056] The second layer 8 is made from a foam material, i.e. a cell-like material, here expanded polypropylene (EPP), and is provided for at least partially accommodating the child. Like the first layer 6, the second layer 8 is integrally formed. During manufacturing the second layer 8, the cells melt together at the outer surface of EPP which creates a durable coating or skin which makes the second layer 8 wear resistant and protects the internal cell-like structure from disintegrating. The thickness and density of the second layer 8 are adjusted to provide sufficient rigidity and balance between hardness and weight. In the present embodiment, the density of the second layer 8 is about or exactly 80 gr./ltr. which can be considered an optimal balance between hardness and weight. Instead of the EPP material, a polyurethane foam could be used instead. Furthermore, an improved stronger EPP foam called chock could be used. Although not shown in the drawings, the second layer 8 can comprise an internal structure like a grid or space structure of polypropylene or acrylonitrile butadiene styrene.
[0057] The detailed construction of the second layer 8 will be described with reference to
[0058] The second layer 8 comprises a back portion 50 and a bottom portion 46 as well as two side walls 42. In the back portion 50 of the second layer 8, a recessed section 30 is provided and in the area of the recessed section, openings 43 are provided for passing the shoulder straps or shoulder anchors therethrough. Furthermore, the openings 43 are formed matingly with the protrusions 37 of the first layer 6 in such a manner that the protrusions 37 can be inserted into the openings 43 such that they protrude into but not beyond them. The recessed section 30 is formed matingly with the protruding section 12 of the first layer 6. In the bottom portion 46 of the second layer 8, openings 47 are provided. The openings 47 are configured to receive the protrusions 36 of the first layer 6 from below and to receive protrusions 34 of a seatpad plate 16 which will be described later. The second layer 8 further comprises an edge portion 9 which is configured to surround edges of the first layer 6.
[0059] The footrest portion 60 which is shown in
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[0061] As already mentioned before, the seat body 4 comprises a first layer 6 which may also be referred to as outer seat shell and a second layer 8 which may be referred to as inner seat shell. As is clearly shown, both seat shells 6, 8 are matingly formed such that the inner seat shell 8 may be accommodated in the outer seat shell 6. Each seat shell 6, 8 is integrally formed by injection molding and comprises the side walls 40, 42, the bottom portion 44, 46 and the back portion 48, 50 jointly forming side walls, a bottom portion and a back portion of the seat body 4.
[0062] As is further shown in
[0063] The seatpad plate 16 is shown in
[0064] The seatpad 38 is shown in detail in
[0065] The main parts of the child bike seat 2, i.e. the seat body 4, the footrest portion 60 and the fixation means 10 are also shown in
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[0067] As is shown in
[0068] As is shown in
[0069] In conclusion, it is pointed out that terms like comprising or the like are not intended to rule out the provision of additional elements or steps. Let it further be noted that a or an do not preclude a plurality. In addition, features described in conjunction with the different embodiments can be combined with each other however desired. It is also noted that the reference numbers in the claims are not to be construed as limiting the scope of the claims. Moreover, while at least one exemplary embodiment has been presented in the foregoing summary and detailed description, it should be appreciated that a vast number of variations exist.
[0070] It should also be appreciated that the exemplary embodiment or exemplary embodiments are only examples, and are not intended to limit the scope, applicability, or configuration in any way. Rather, the foregoing summary and detailed description will provide those skilled in the art with a convenient road map for implementing an exemplary embodiment, it being understood that various changes may be made in the function and arrangement of elements described in an exemplary embodiment without departing from the scope as set forth in the appended claims and their legal equivalents.