针对从理论上无法分析引信曲折槽机构曲折槽宽度、过渡圆角和深度对机构动态特性影响的问题,提出采用ADAMS动力学分析软件对曲折槽机构解除保险过程及结构参数进行仿真分析.结果表明:该引信曲折槽保险机构在80 g发射过载下能可靠解除被保险部件,在1.5m高度跌落钢板、水泥地和砂土目标能保证被保险部件安全性,与试验结果相符;在一定范围内增大惯性筒上曲折槽宽度、曲折槽拐角处圆角及曲折槽深度均有利于曲折槽保险机构解除保险,反之则有利于勤务处理安全性.
In order to study the problem that theory could not analyzed the influence of zigzag width, zigzag fillet and zigzag depth for zigzag device movement. Fuze zigzag device arming reliability and structure parameter were simulated and analyzed by using ADAMS. The simulation results indicated that fuze zigzag slot arming device could arming reliably under 80 g launch overload, the device could ensure safety of the safe feature dropping steel, cement and sand target at 1.5 m height. The results o{ simulation and test were consistent. Increase zigzag width, zigzag fillet and zigzag depth could improve arming reliability of the zigzag device, the opposite was propitious to the security service processing.