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    • 3. 发明申请
    • CONTROL HALF-CABLE LINKING DEVICE
    • 控制电缆连接设备
    • WO9825035A2
    • 1998-06-11
    • PCT/EP9706464
    • 1997-11-19
    • FICO CABLES SAGABAS CEBOLLERO CARLOS
    • GABAS CEBOLLERO CARLOS
    • F16C1/22F16C1/00F16C1/12
    • F16C1/101
    • The present invention relates to a control half-cable linking device (1) for linking a first (2) and a second (3) control half-cable. The linking device (1) comprises a first linking body (23, 24, 67) having at least one trough opening (61, 61', 75, 47), a second linking body (25, 26, 68) which is complementary shaped to said first linking body (23, 24, 67), to be at least partially insertable into said first linking body (23, 24, 67), said second linking body (25, 26, 68) having at least one groove (48, 64, 64', 78). Further, a locking element (49, 65, 65', 79) is provided having at least two appendix elements (50, 66, 66', 85) being arranged in substantially the same plane, at least one of which extending through said at least one trough opening (47, 61, 61', 75) of said first linking body (23, 24, 67) and engaging in said at least one groove (48, 64, 64', 78) of said second linking body (25, 26, 68) to provide for a detachable connection between said first (23, 24, 67) and said second (25, 26, 68) linking bodies.
    • 本发明涉及用于连接第一(2)和第二(3)控制半电缆的控制半电缆连接装置(1)。 连接装置(1)包括具有至少一个槽开口(61,61',75,47)的第一连接体(23,24,67),具有互补形状的第二连接体(25,26,68) 至少部分地可插入所述第一连接体(23,24,67)中的所述第一连接体(23,24,67),所述第二连接体(25,26,68)具有至少一个凹槽 ,64,64',78)。 此外,设置有至少两个附接元件(50,66,66',85)布置在基本相同的平面中的锁定元件(49,65,65',79),其中至少一个延伸穿过所述的 所述第一连接体(23,24,67)的至少一个槽开口(47,61,61',75)并且接合在所述第二连接体的所述至少一个凹槽(48,64,64',78)中 25,26,68)以提供所述第一(23,24,67)和所述第二(25,26,68)连接体之间的可拆卸连接。
    • 5. 发明申请
    • DISPOSABLE COMPRESSED GAS CARTRIDGE WITH INTEGRAL SEALING MEMBER
    • 带一体密封件的一次性压缩气体储罐
    • WO2017091881A1
    • 2017-06-08
    • PCT/CA2015/051245
    • 2015-11-30
    • QUAIL, Jeffrey James
    • QUAIL, Jeffrey James
    • F16C1/00
    • F17C13/00
    • A disposable compressed gas cartridge has an envelope formed of a cylindrical wall portion, an end wall portion enclosing a first end of the cylindrical wall portion, a neck portion formed at a second end of the cylindrical wall portion, and a membrane spanning across the neck portion such that the envelope is arranged to contain gas under pressure therein. A resilient sealing member is integrally and externally supported on the second end of the envelope so as to abut the seat surface about a charging pin of a compressed gas consuming device. Sealing engagement between the cartridge and the device being charged with compressed gas by the cartridge is provided primarily by the sealing member on the cartridge which is replaced together with the cartridge to always ensure that the sealing between the cartridge and the device is accomplished with a new and effective sealing member.
    • 一次性压缩气体筒具有由圆柱形壁部分形成的外壳,包围圆柱形壁部分的第一端的端壁部分,形成在圆柱形壁部分的第二端部处的颈部 以及覆盖在颈部上的膜,使得该外壳被布置成容纳在压力下的气体。 弹性密封构件一体地且外部地支撑在外壳的第二端上,以围绕压缩气体消耗装置的充电销邻接座表面。 药筒与由药筒充入压缩气体的装置之间的密封接合主要由药筒上的与药筒一起更换的密封构件提供,以始终确保药筒与装置之间的密封用新的 和有效的密封件。
    • 8. 发明申请
    • MECHANICAL FUSE AND METHOD OF USE
    • 机械保险丝及其使用方法
    • WO2004094846A2
    • 2004-11-04
    • PCT/US2004/011686
    • 2004-04-15
    • L & P PROPERTY MANAGEMENT COMPANYBLENDEA, Horia
    • BLENDEA, Horia
    • F16C1/00
    • F16C1/226B60N2/6671F16C1/26Y10T74/20462Y10T403/11
    • A mechanical fuse is used with ergonomic devices for seats such as automobile seats to allow the ergonomic devices to tolerate abusive loads without breaking a linkage, such as a traction cable, used to move the ergonomic supports. The traction cable is comprised of a sleeve with a wire disposed to slide axially through the sleeve. The mechanical fuse is installed with the sleeve divided into two sections, with an end of each section seated into a male component or a female component of the mechanical fuse. The male and female components of the mechanical fuse slide axially relative to one another but are restrained from sliding by insertion of a boss on one component into a detent on the other component. The boss and detent hold the male and female components together in a friction fit that resists axial movement. When an abusive force is applied to the fuse, the friction fit of the boss and detent is overcome so that the boss slides out of the detent in a radial direction. Once released, the male and female components slide axially into one another, shortening the overall distance of the traction cable sleeve until the abusive load is released so that the traction cable sleeves can resume their originally selected relative spacing. The friction fit is maintained by the compressive biasing of an external spring. The compressive force is resisted, and the fuse is reset, by the expansive force of an internal spring.
    • 机械保险丝与符合人体工程学的设备一起用于座椅,如汽车座椅,以允许符合人体工程学的设备容忍虐待负载,而不会破坏用于移动人体工程学支架的连接装置,例如牵引电缆。 牵引电缆由具有设置成轴向滑过套筒的电线的套筒组成。 机械保险丝安装有套筒分为两部分,每个部分的末端位于机械保险丝的阳部件或母部件中。 机械保险丝的公件和母头部件相对于彼此轴向滑动,但是通过将一个部件上的凸台插入到另一个部件上的止动件中来限制其滑动。 凸台和制动器将摩擦配合保持在一起,以抵抗轴向运动。 当对保险丝施加虐待力时,克服了凸台和制动器的摩擦配合,使得凸台沿径向方向滑出制动器。 一旦释放,阳部件和母部件彼此轴向滑动,缩短了牵引电缆套筒的总距离,直到释放负载,使得牵引电缆套筒可以恢复其最初选择的相对间隔。 通过外部弹簧的压缩偏置来维持摩擦配合。 通过内部弹簧的膨胀力抵抗压缩力,保险丝复位。
    • 10. 发明申请
    • 作業装置
    • 工作装置
    • WO2014203578A1
    • 2014-12-24
    • PCT/JP2014/058199
    • 2014-03-25
    • ナシモト工業株式会社
    • 梨本 俊晴
    • B25B5/02B25B7/12F16B2/08F16C1/00F16C1/14
    • B25B5/06B25B5/02B25B5/08B25B5/16B25B7/14B25B7/18F16C1/14F16H37/12
    •  作業対象物の大きさが変わっても対象物に作用する力の最大値が変わらず、所定値以上の力を発揮することがない作業装置を提供することを目的とする。少なくとも一方を移動自在に設け第一部材(1)と第二部材(2)とを備えると共に、この第一部材(1)又は第二部材(2)が移動により作動する作業部(3)を備え、第一部材(1)と第二部材(2)の一方に可動因部(4)と可動当接部(5)を設け、他方に当接受部(6)を設け、作業部(3)の作動抵抗が所定値に達すると、可動因部(4)の変形により当接前の前記移動方向と異なる方向に可動した可動当接部(5)が当接受部(6)に当接し、この可動当接部(5)が当接受部(6)に当接した状態において、第一部材(1)又は第二部材(2)に更に加えた力を作業部(3)に伝達しないように構成した作業装置。
    • 本发明的目的是提供一种工作装置,即使当物体的尺寸发生变化时,作用在被加工物体上的力的最大值也不变化,并且不产生超过规定的力的力 值。 工作装置至少设置有第一构件(1)和第二构件(2),其中至少一个是可移动的,并且通过第一构件(1)的移动操作的工作部件(3)或 第二个成员(2)。 第一构件(1)或第二构件(2)都配备有移动性诱导部件(4)和移动接触部件(5),而另一个配备有接触部件(6)。 当工作部件(3)的操作阻力达到预定值时,由于移动性诱导部件(4)的变形引起的移动接触部件(5)已经在与运动方向不同的方向上可移动 接触,接触接触部分(6),并且当移动接触部分(5)和触点接收部分(6)处于接触状态时,额外的力施加到第一部件(1)或 第二构件(2)不被传递到工作部件(3)。