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    • 2. 发明公开
    • Locking mechanisms
    • Schliesseinrichtung。
    • EP0260860A1
    • 1988-03-23
    • EP87307911.5
    • 1987-09-08
    • Chubb & Son's Lock and Safe Company Limited
    • White, Malcolm John
    • E05B33/00
    • E05B47/0688E05B47/0003
    • The mechanism for locking the main boltwork of a safe or vault door includes a lock having a bolt 1 with a pivoted drop-arm 3 engageable in the slot 10 of a rotatable drive disc 6. For enabling and disabling the coupling of the arm 3 to the disc 6 there is an electromechanical actuator 12. This comprises a magnetisable element 11 pivoted within a coil 13 and a passing between the poles of a permanent magnet 14. Reverse pulses of current through the coil 13 therefore cause the element 11 to flip between two stable positions. In the locking position of the actuator (Fig 1) the element 11 prevents the arm 3 from dropping into the slot 10. When a correct code is entered into an associated user-authentication device the coil 13 is pulsed to flip the element 11 clear of the arm 3. The disc 6 can therefore be turned to pick up the head of the arm 3 (Fig 2) and withdraw the bolt (Fig 3).
    • 用于锁定安全柜或拱顶门的主螺栓的机构包括具有螺栓1的锁,其具有可枢转的下降臂3,枢转的下降臂3可接合在可旋转的驱动盘6的槽10中。为了使得能够和禁止臂3与 盘6具有机电致动器12.这包括在线圈13内枢转的可磁化元件11和永磁体14的极之间的通过。因此,通过线圈13的电流的反向脉冲导致元件11在两个之间翻转 稳定的位置 在致动器的锁定位置(图1)中,元件11防止臂3掉入槽10中。当将正确的代码输入到相关联的用户认证设备中时,线圈13被脉冲以将元件11翻转 臂3因此可以转动以拾取臂3(图2)的头部并且撤回螺栓(图3)。
    • 5. 发明公开
    • Locks
    • 锁。
    • EP0096513A1
    • 1983-12-21
    • EP83303039.8
    • 1983-05-26
    • Chubb & Son's Lock and Safe Company Limited
    • Robinson, William KeithWhite, Malcolm John
    • E05B21/00E05B35/12
    • E05B21/00E05B35/12Y10T70/7452Y10T70/7548
    • In a security door lock a pivoted detent 12 deadlocks the bolt 3 by engagement of its stump 22 in pockets 23,24 or 25 (Figure 3). The detent 12 is normally held in its locking position by a cam surface 19 on the thrower 11 and by a pack of detainers 7. Rotation of the correct key aligns notches 16 in the detainers 7 with a probe 15 on the detent 12 and also positions a second cam surface 20 of the thrower 11 adjacent to the detent 12, so the detent can pivot to its unlocking position under the action of a spring 13, and thereby free the bolt 3. After the bott 3 is shifted the final rotation of the key re-engages the cam surface 19 against the detent 12 to drive the detent positively back to its locking position. If required, the bolt 3 can be double-thrown by a second ("master") key which lifts the detainers 7 to higher positions so that second notches 17 now align with the detent probe 15. This higher lifting of the detainers 7 also lifts a dogging slide 26 so that the stump 30 of the latter can pass over a projection 37 on the bolt tail (Figure 3). The first ("servant") key cannot lift the detainers 7 far enough to lift the slide 26 and hence cannot throw or withdraw the bolt 3 to or from its double-thrown position.