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    • 1. 发明申请
    • CONNECTING ARRANGEMENT AND HELMET COMPRISING SUCH A CONNECTING ARRANGEMENT
    • 连接安排和包含这种连接安排的HELMET
    • WO2014171889A1
    • 2014-10-23
    • PCT/SE2014/050476
    • 2014-04-17
    • MIPS AB
    • HALLDIN, PeterLANNER, DanielLINDBLOM, KimTHIEL, Johan
    • A42B3/06
    • A42B3/06A42B3/064
    • The invention relates to a connection arrangement (6) adapted to connect a first (2) and a second part (3) slidably arranged in relation to each other. The connection arrangement (6) is characterized in that said connection arrangement (6) is adapted to allow the sliding movement between the first (2) and the second part (3) in all directions. The arrangement (6) comprises a connection member (7) directly or indirectly connected to at least one of the first part and the second part (2, 3) and a device creating a spring force and/or a damping force (8) during sliding movement between the first and second part (2, 3) adapted to be connected with or to cooperate with said connection member (7). The invention further relates to a helmet (1 ) comprising a first helmet part (2) to be arranged closer to a wearer's head, a second helmet part (3) arranged radially outside of the first helmet part (2) and at least one connection arrangement (6) according to the above connecting the first and the second helmet part (2, 3).
    • 本发明涉及一种适于连接相对于彼此可滑动地布置的第一部分(2)和第二部分(3)的连接装置(6)。 连接装置(6)的特征在于,所述连接装置(6)适于允许在所有方向上在第一部件(2)和第二部件(3)之间滑动。 所述装置(6)包括直接或间接连接到所述第一部分和所述第二部分(2,3)中的至少一个的连接部件(7)和在所述第一部分和所述第二部分(2,3)期间产生弹簧力和/或阻尼力(8)的装置 适于与所述连接件(7)连接或与所述连接件(7)配合的第一和第二部件(2,3)之间的滑动运动。 本发明还涉及一种头盔(1),其包括靠近佩戴者头部布置的第一头盔部分(2),布置在第一头盔部分(2)的径向外侧的第二头盔部分(3)和至少一个连接 根据上述连接第一和第二头盔部件(2,3)的布置(6)。
    • 3. 发明申请
    • MOTOR ASSEMBLY FOR AN ARCHITECTURAL COVERING
    • 用于建筑物覆盖物的电机组件
    • WO2017140894A3
    • 2017-08-24
    • PCT/EP2017/053701
    • 2017-02-17
    • HUNTER DOUGLAS INC.SMITH, Samuel Leonard
    • BUCCOLA, Nickolas, C., Jr.FALLER, Kenneth, M
    • E06B9/72
    • An architectural covering (100) including a motor assembly (102) is provided. The covering may include a head rail (110), an end cap (104) enclosing an end of the head rail, a roller tube (108) rotatably supported within the head rail at least partially by the end cap, and a motor assembly including a housing (107) in splined engagement with the end cap to non-rotatably secure the motor assembly to the end cap. The motor assembly may be received at least partially within the roller tube and may be in driving engagement with the roller tube. A covering material may be attached to the roller tube such that rotation of the roller tube extends or retracts the covering material.
    • 提供了包括马达组件(102)的建筑覆盖物(100)。 所述覆盖物可以包括顶部轨道(110),包围所述顶部轨道的端部的端盖(104),可旋转地支撑在所述顶部轨道内且至少部分地由所述端盖支撑的滚筒管(108),以及电动机组件,其包括 壳体(107)与端盖以花键接合,以不可转动地将马达组件固定到端盖上。 马达组件可以至少部分地容纳在卷管内并且可以与卷管驱动接合。 覆盖材料可以附接到滚筒管,使得滚筒管的旋转延伸或缩回覆盖材料。
    • 5. 发明申请
    • HELMET
    • WO2018211106A1
    • 2018-11-22
    • PCT/EP2018/063193
    • 2018-05-18
    • MIPS AB
    • HALLDIN, PeterLINDBLOM, Kim
    • A42B3/06
    • A helmet (1) comprising an energy absorbing layer (3), a relatively hard layer (2) that is harder than the energy absorbing layer (3) and is formed outward of the energy absorbing layer (3) and a plurality of outer plates (20) mounted on the outer surface of the relatively hard layer (2); wherein the outer plates (20) are mounted on the relatively hard layer (2) such that, under an impact to an outer plate (20), the outer plate (20) can slide across the relatively hard layer (2) and move relative to other outer plates (20); and a low friction interface is provided between the outer surface of the relatively hard layer (2) and at least a part of the surface of the outer plates (20) that is in contact with the outer surface of the relatively hard layer (2) under an impact to an outer plate (20). Figure 6 A helmet (1) comprising an energy absorbing layer (3), a relatively hard layer (2) that is harder than the energy absorbing layer (3) and is formed outward of the energy absorbing layer (3) and a plurality of outer plates (20) mounted on the outer surface of the relatively hard layer (2); wherein the outer plates (20) are mounted on the relatively hard layer (2) such that, under an impact to an outer plate (20), the outer plate (20) can slide across the relatively hard layer (2) and move relative to other outer plates (20); and a low friction interface is provided between the outer surface of the relatively hard layer (2) and at least a part of the surface of the outer plates (20) that is in contact with the outer surface of the relatively hard layer (2) under an impact to an outer plate (20).