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    • 3. 发明授权
    • Differential pressure-controlled locking mechanism
    • 差压控制锁定机构
    • US08459701B2
    • 2013-06-11
    • US12663810
    • 2008-06-05
    • Maik Szarszewski
    • Maik Szarszewski
    • E05B65/10B64C1/14
    • B64C1/1407B64C1/18B64C2001/009E05B15/0086E05B51/023E05C1/02Y10T292/0822
    • A differential pressure-controlled locking mechanism (10) comprises a housing (12), as well as a first pressure chamber (14) which is arranged in the housing (12) and which is connectable to a first ambient zone. A second pressure chamber, arranged in the housing (12), is connectable to a second ambient zone and is separated from the first pressure chamber (14) by a mobile separating device (18). The separating device (18) is in an inactive position when the pressure in the first pressure chamber (14) is equal to the pressure in the second pressure chamber. Conversely, the separating device (18) is movable from its inactive position into a differential pressure position when a predetermined differential pressure acts on the separating device (18). An actuation element (22), which is held in a first position by the separating device (18) when the separating device (18) is in its inactive position, is movable into a second position when the mobile separating device (18) is in its differential pressure position. A latch (32) is held in a locking position when the actuation element (22) is in its first position, and is movable into an unlocking position when the actuation element (22) is in its second position.
    • 差压控制的锁定机构(10)包括壳体(12)以及布置在壳体(12)中并且可连接到第一环境区域的第一压力室(14)。 设置在壳体(12)中的第二压力室可连接到第二环境区域,并通过移动分离装置(18)与第一压力室(14)分离。 当第一压力室(14)中的压力等于第二压力室中的压力时,分离装置(18)处于非活动位置。 相反,当预定的压差作用在分离装置(18)上时,分离装置(18)可以从其非活动位置移动到差压位置。 当分离装置(18)处于其不工作位置时,由分离装置(18)保持在第一位置的致动元件(22)可移动到第二位置,当移动分离装置(18)处于 其压差位置。 当致动元件(22)处于其第一位置时,闩锁(32)被保持在锁定位置,并且当致动元件(22)处于其第二位置时,闩锁(32)可移动到解锁位置。
    • 4. 发明申请
    • DIFFERENTIAL PRESSURE-CONTROLLED LOCKING MECHANISM
    • 差压控制锁定机构
    • US20100193637A1
    • 2010-08-05
    • US12663810
    • 2008-06-05
    • Maik Szarszewski
    • Maik Szarszewski
    • B64C1/14
    • B64C1/1407B64C1/18B64C2001/009E05B15/0086E05B51/023E05C1/02Y10T292/0822
    • A differential pressure-controlled locking mechanism (10) comprises a housing (12), as well as a first pressure chamber (14) which is arranged in the housing (12) and which is connectable to a first ambient zone. A second pressure chamber, arranged in the housing (12), is connectable to a second ambient zone and is separated from the first pressure chamber (14) by a mobile separating device (18). The separating device (18) is in an inactive position when the pressure in the first pressure chamber (14) is equal to the pressure in the second pressure chamber. Conversely, the separating device (18) is movable from its inactive position into a differential pressure position when a predetermined differential pressure acts on the separating device (18). An actuation element (22), which is held in a first position by the separating device (18) when the separating device (18) is in its inactive position, is movable into a second position when the mobile separating device (18) is in its differential pressure position. A latch (32) is held in a locking position when the actuation element (22) is in its first position, and is movable into an unlocking position when the actuation element (22) is in its second position.
    • 差压控制的锁定机构(10)包括壳体(12)以及布置在壳体(12)中并且可连接到第一环境区域的第一压力室(14)。 设置在壳体(12)中的第二压力室可连接到第二环境区域,并通过移动分离装置(18)与第一压力室(14)分离。 当第一压力室(14)中的压力等于第二压力室中的压力时,分离装置(18)处于非活动位置。 相反,当预定的压差作用在分离装置(18)上时,分离装置(18)可以从其非活动位置移动到差压位置。 当分离装置(18)处于其不工作位置时,由分离装置(18)保持在第一位置的致动元件(22)可移动到第二位置,当移动分离装置(18)处于 其压差位置。 当致动元件(22)处于其第一位置时,闩锁(32)被保持在锁定位置,并且当致动元件(22)处于其第二位置时,闩锁(32)可移动到解锁位置。