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SAFETY-CONDUCTING MECHANISM

机译:安全传导机制

摘要

FIELD: blasting operations.;SUBSTANCE: invention relates to explosive engineering and can be used in fuses of projectiles. Device comprises a housing with current leads, inside which is located an electric detonator with electrical leads and two switches. These keys are made in the form of microelectromechanical systems – MEMS keys. They are open in the initial position and are provided with the possibility of operation under overload. There is an electronic time block that provides the possibility of counting the time of the overload action exceeding the threshold level and the formation of an electrical signal at the output in the event that the recorded time exceeds a certain value. One of the MEMS keys is located in such a way that the closing of the contacts is provided when the projectile contacts the obstacle under the influence of an overload exceeding the threshold level and acting along the longitudinal axis of the safety-cocking mechanism. Another MEMS key is located in such a way that the closing of the contacts is provided by centrifugal force when the safety-cocking mechanism rotates about the longitudinal axis. MEMS-key, provided with the possibility of triggering under the action of longitudinal overload, one of the contacts is connected to the lead of the safety-cocking mechanism. Another contact is connected to the input of the electronic time block. Output of the latter is connected to one of the terminals of the MEMS key provided with the possibility of triggering under the action of a centrifugal force, the other contact of which is connected to the electric output of the electric detonator.;EFFECT: increase the reliability of the device during combat use, safety in service circulation and reduction of overall weight and weight characteristics.;1 cl, 1 dwg
机译:技术领域本发明涉及爆炸工程,并且可以用于弹丸的保险丝中。该装置包括一个带有电流引线的外壳,在内部装有一个带有电引线和两个开关的电雷管。这些按键以微机电系统的形式制成-MEMS按键。它们在初始位置是打开的,并有可能在过载下运行。有一个电子时间块,它可以对过载动作的时间超过阈值水平进行计数,并在记录的时间超过一定值的情况下在输出端形成电信号。 MEMS键中的一个这样定位,使得当弹丸在超过阈值水平的过载的影响下沿着安全冲击机构的纵轴作用时,当弹丸接触障碍物时,提供触点的闭合。另一个MEMS键的放置方式是,当安全锁定机构绕纵向轴线旋转时,触点的闭合由离心力提供。 MEMS键具有在纵向过载的情况下触发的可能性,其中一个触点连接到安全锁定机构的导线。另一个触点连接到电子时间块的输入。后者的输出连接到MEMS键的一个端子上,该端子具有在离心力的作用下触发的可能性,另一端子连接到电雷管的电输出上。战斗使用期间设备的可靠性,服役安全性以及总体重量和重量特性的降低。; 1 cl,1 dwg

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