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由于电爆系统尺寸、重量小,释放的能量大,所以在导弹、飞机与宇宙飞行器上得到了广泛的应用,电爆系统可以分为两种主要型式:1)爆炸产生高速激波 2)引燃推进剂生成工作气体。前者可用于爆炸螺栓、爆炸螺母与其它爆炸装置上,后者可用于燃气发生器、火箭发动机、导弹分离机构、发射装置及头部返回装置中。意外点火近10年来发展的导弹、电探测与导行系统要求无线电与雷达发射机的功率远比二次大战时高。这样增大了的射频功率,在采用电爆系统时将在一些电起爆装置中行起意外点火。虽然由感应的干扰射频源、多地线与静电放电行起的意外点火的实际数量很小,但事故的增加与对问题的了解已促使许多部门与公司研究这个问题。称为“无线电危险性”的服务计划已经组织,它用来研究无线电频率对燃料、军械与生命的危害性。美国海军军械局管理着它
Due to the size, weight and energy release of the electric blast system, it has been widely used in missiles, aircraft and space vehicles. The electric blast system can be divided into two main types: 1) a high-speed shock wave generated by the explosion 2) Burning propellant to generate working gas. The former can be used for explosive bolts, explosive nuts and other explosive devices, which can be used for gas generators, rocket motors, missile separation mechanisms, launchers and head return devices. Accidental ignition of the development of missiles in recent 10 years, electrical detection and guidance system requires radio and radar transmitters power than World War II high. This increased RF power, in the use of electric blast system will be in some electrical ignition device accidental ignition line. Although the actual number of accidental ignitions caused by induced interference with radio frequency sources, multi-ground lines and electrostatic discharge lines is small, the increase in accidents and their understanding of the problems have prompted many departments and companies to study the issue. A service plan called “Radio Risk” has been organized to study the dangers of radio frequencies on fuels, ordnance and life. The U.S. Navy’s Ordnance Agency manages it