Chair (Ref. now to FIGS)

文档序号:1509341 发布日期:2020-02-07 浏览:34次 中文

阅读说明:本技术 座椅 (Chair (Ref. now to FIGS) ) 是由 多里安·劳格特 鲁多维奇·尼盖 于 2018-06-15 设计创作,主要内容包括:一种座椅,包括-由柔性材料制成的包括盲腔(100)的衬垫(42),-由柔性材料制成的容纳在腔内的仪器化单元(120),所述仪器化单元包括:-长形壳体(140),所述长形壳体包括主要从位于仪器化单元的侧面之一上的入口(142)朝向仪器化单元的内部延伸的侧壁,所述入口适合于允许将电气设备(34)插入壳体中,和-电气设备(34),其完全地容纳在所述壳体(140)内。(Seat comprising-a cushion (42) made of flexible material comprising a blind cavity (100), -an instrumented unit (120) made of flexible material housed inside the cavity, the instrumented unit comprising: -an elongated housing (140) comprising side walls extending mainly towards the interior of the instrumented unit from an inlet (142) located on one of the sides of the instrumented unit, the inlet being adapted to allow insertion of an electrical device (34) into the housing, and-an electrical device (34) completely housed within the housing (140).)

1. A seat, comprising:

-a cushion (42) made of flexible material comprising a blind cavity (100) comprising:

an opening (102) made on one side of the pad,

a base (104) located on the side opposite the opening, and

a transverse wall (106) extending from the periphery of the base to the periphery of the opening,

-an instrumented unit (120) made of flexible material housed inside the cavity, the instrumented unit comprising:

an inner face (122) facing the base of the chamber,

an outer face (130) located on the opposite side to the inner face and directly exposed to the outside of the pad,

transverse faces (124-127) extending from the periphery of the inner face to the periphery of the outer face, these transverse faces being shaped so as to retain the instrumented unit wedged in the cavity by interacting with the shape of the transverse walls of the cavity, and

an electrical device (34),

the method is characterized in that:

-the instrumented unit (120) comprises an elongated housing (140) comprising lateral sides (146 and 149) extending mainly towards the interior of the instrumented unit from an inlet (142) located on one of the lateral faces (124 and 127) of the instrumented unit, said inlet being able to allow the insertion of an electrical device (34) inside the housing, and

-said electrical apparatus (34) is completely housed inside the casing.

2. The seat of claim 1, wherein the elongated housing (140) is a blind housing.

3. A seat according to any one of the preceding claims, wherein:

-the electrical equipment (34) is permanently supported on two lateral sides (146) facing the housing,

-said electrical equipment (34) being able to detect the supporting force in response to the deformation of the lateral sides (146) of the casing on which it is supported or to generate the deformation of these lateral sides in response to a command, and

-the roughness Ra of the base (104) of the cavity is at least twice the roughness Ra of the lateral sides (146 and 149) of the housing on which the electrical equipment is supported.

4. Seat according to claim 3, wherein the lateral sides (146 and 149) on which the electrical equipment is supported have a roughness Ra of less than 0.5 mm.

5. The seat of any preceding claim, wherein the cushion (42) comprises:

-a top surface (14) on which the buttocks of the user rest when seated, said top surface extending mainly parallel to a plane called "seat cushion plane", and

-a bottom surface (16) located on the opposite side to the top surface.

6. The seat of claim 5, wherein the cavity (100) is provided in a bottom surface of the cushion.

7. A seat according to claim 5 or 6, wherein:

two of the lateral sides (146, 148) of the housing are an upper side and a lower side, respectively, extending parallel to the seat cushion plane,

-the electrical equipment (34) is supported on an upper side and a lower side, and

-said electrical device (34) being able to detect a bearing force exerted on the top surface (14) of the pad in a direction of the depression perpendicular to the seating plane.

8. Seat according to any one of the preceding claims, wherein said electrical apparatus (34) is wedged between at least two facing lateral sides (146-149) of the housing.

9. Seat according to any one of the preceding claims, wherein the lateral wall (107) of the cavity facing the inlet (142) of the elongated housing and/or the lateral face (125) of the instrumented unit in which the inlet (142) of the elongated housing is located comprises a notch (112) connecting said inlet with the side of the pad comprising the opening (102) of the blind cavity (100).

10. An instrumented unit made of flexible material for a seat, particularly suitable for being implemented in a seat according to any one of the preceding claims, comprising:

an inner face (122) facing the base of the cavity,

an outer face (130) located on the opposite side to the inner face and directly exposed to the outside of the pad,

-transverse faces (124-127) extending from the periphery of the inner face to the periphery of the outer face, these transverse faces being shaped so as to retain the instrumented unit wedged in the cavity by interacting with the shape of the transverse walls of the cavity, and

-an electrical device (34),

the method is characterized in that:

-the instrumented unit (120) comprises an elongated housing (140) comprising lateral sides (146 and 149) extending mainly towards the interior of the instrumented unit from an inlet (142) located on one of the lateral faces (124 and 127) of the instrumented unit, said inlet being able to allow the insertion of an electrical device (34) inside the housing, and

-said electrical apparatus (34) is completely housed inside said casing (140) and supported on lateral sides (146) thereof.

11. A method for manufacturing a seat according to any one of claims 1 to 9, the method comprising:

a) providing (168) a cushion made of a flexible material comprising a blind cavity, the blind cavity comprising:

an opening made on one side of the pad,

a base located on the side opposite the opening, and

a transverse wall extending from the periphery of the base to the periphery of the opening,

b) providing (168) an instrumented unit capable of being housed within a lumen, the instrumented unit comprising:

an internal face, facing the base of the chamber,

an outer face located on the opposite side to the inner face and directly exposed to the outside of the pad,

transverse faces extending from the periphery of the inner face to the periphery of the outer face, these transverse faces being shaped so as to retain the instrumented unit wedged inside the cavity by interacting with the shape of the transverse walls of the cavity, and

the electrical installation of the electrical device or devices,

c) inserting (170) the instrumented unit into the cavity,

the method is characterized in that:

-in step b), the instrumented unit provided (168) comprises an elongated housing comprising lateral sides extending mainly from an entrance located on one of the lateral faces of the instrumented unit towards the interior of the instrumented unit, said entrance being able to allow the insertion of an electrical device inside the housing, and

-prior to step b), the method comprises fully inserting (166) the electrical device into the housing through the inlet of the elongated housing.

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