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    • 4. 发明授权
    • PIEZOELECTRIC VALVE
    • 压电阀
    • EP0961062B1
    • 2010-11-03
    • EP98959183.9
    • 1998-12-11
    • SMC Kabushiki Kaisha
    • MIYAZOE, Shinji SMC Kabushiki KaishaISHIKAWA, Makoto SMC Kabushiki Kaisha
    • F16K31/02F16K31/00
    • F16K31/005F16K15/185F16K31/004Y10T137/87716Y10T137/87877
    • A piezoelectric valve having a diaphragm (38) which is kept in contact with a valve seat (52) when a drive signal is not applied to a piezoelectric element (42) to separate diaphragm chambers (24a and 24b) from a passage (54), wherein, even if the pressure of fluid introduced into the diaphragm chambers (24a and 24b) is varied, the diaphragm (38) is firmly supported against the valve seat (52) without causing any deformation, and the passage (54) is closed securely by a cover, whereby eliminating the possibility of fluid leakage. On the other hand, the diaphragm (38) is bent when the drive signal is applied to the piezoelectric element (42) to allow communication of the diaphragm chambers (24a and 24b) with the passage (54) and guide fluid to the passage (54). If the piezoelectric element (42) is forced to bent excessively, it will be kept in contact with a cushion member (56) so as to prevent the piezoelectric element (42) from being deformed excessively, whereby eliminating the possibility of damage to the piezoelectric element (42).
    • 一种压电阀,其具有当驱动信号未施加到压电元件(42)以将隔膜室(24a和24b)与通道(54)分开时与阀座(52)保持接触的隔膜(38) 其特征在于,即使导入隔膜室(24a,24b)的流体的压力发生变化,隔膜(38)也不会产生变形而牢固地支承在阀座(52)上,通路(54)关闭 可靠地通过盖子,从而消除流体泄漏的可能性。 另一方面,当驱动信号施加到压电元件(42)以使隔膜室(24a和24b)与通道(54)连通并将流体引导到通道(54)时,隔膜(38) 54)。 如果压电元件(42)被迫过度弯曲,则其将与缓冲部件(56)保持接触,从而防止压电元件(42)过度变形,从而消除了压电元件 元素(42)。
    • 6. 发明公开
    • CLAMP DEVICE
    • 夹钳装置
    • EP2065124A1
    • 2009-06-03
    • EP07805876.5
    • 2007-07-25
    • SMC Kabushiki Kaisha
    • FUKUI, ChiakiTAKAHASHI, KazuyoshiTAMAI, Atsushi
    • B23Q3/06
    • B25B5/16B25B5/122
    • A clamp device (10) having a detection mechanism (24) provided such that the mechanism can detect whether the clamp device (10) is in a clamped state or an unclamped state. The detection mechanism (24) has a tilt plate (116) tiltably placed inside a switch holder (114) installed on a body (16) and also has a sliding rod (126) displaced together with a piston rod (54) and displaced in the direction normal to the tilt plate (116). When the sliding rod (126) presses and tilts the tilt plate (116) while a piston (52) is displaced, a second detection switch (120) detects that the clamp device (10) is in the unclamped state.
    • 一种具有检测机构(24)的夹紧装置(10),所述检测机构(24)设置成使得所述机构能够检测夹紧装置(10)是处于夹紧状态还是非夹紧状态。 检测机构(24)具有可倾斜地放置在安装在主体(16)上的开关保持器(114)内的倾斜板(116),并且还具有与活塞杆(54)一起移位并移动到其中的滑动杆 垂直于倾斜板(116)的方向。 当活塞(52)移位时,当滑杆(126)推压并倾斜倾斜板(116)时,第二检测开关(120)检测到夹紧装置(10)处于松开状态。