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INVESTIGATIONS OF COMBUSTION PROCESS OF PYROTECHNIC ELEMENTS APPLIED IN MILITARY MUNITIONS USING X-RAY REAL TIME RADIOSCOPY

机译:使用X射线实时放射检查在军用弹药中应用烟火元件燃烧过程的研究

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Investigations on combustion processes occurring in the end-burning, low-gas, multi–increment pyrotechnic delay element of the depth charge dropped from the helicopter and in the end-burning, high-gas pyrotechnic tracer with combustible body of the anti-tank guided missile using Real-Time X-ray Radioscopy (RTR), are presented. RTR detection, operating at 30 frames per second, registered the shape and movement of burning zone respectively in the delay element and in the tracer. The burning zone separated unburnt (unreacted) and burnt part (combustion products) of tested pyrotechnic item. The burning zone propagating along the delay element was much more difficult to be registered by RTR because of much lower differences between densities of its unburnt and burnt parts in comparison with analogical parts of the tracer.
机译:在终端燃烧,低气体,多增量烟火延迟元件中发生的燃烧过程的研究从直升机和最终燃烧的高气烟火示踪剂中掉下了抗坦克的可燃体提出了使用实时X射线放射镜检查(RTR)的导弹。 RTR检测,每秒运行30帧,分别在延迟元件和示踪剂中注册燃烧区域的形状和移动。燃烧区分离了测试的烟火项目的Unburnt(未反应)和烧焦的部分(燃烧产品)。沿延迟元件传播的燃烧区域更难以由RTR登记,因为与示踪剂的类比相比,其未燃烧的密度与烧伤部件的密度之间的差异较低。

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