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The coupling effects of the missile launcher and the ground in vehicle-mounted missile erecting:

机译:导弹发射器与地面在车载导弹架设中的耦合作用:

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In order to study the coupling effect of the equipment and the launching site during the erecting process of the vehicle missile system, the lumped parameter model of the multi-stage hydraulic cylinder is deduced, the flexible multi-body dynamic model is established in ADAMS, and the normal and tangential coupling forces in the coupling relationship are derived. The coupling calculation model of the weapon system and the launching site is established in the co-simulation of the ADAMS and MATLAB/Simulink. The results show that the vertical slip of the launching platform is much greater than longitudinal and lateral ones. The erection angles of the cylinders at all levels when they begin to extend are 0°, 22.16°, 43°, and 65.52°, respectively, of which the speeds are 50?mm/s or so, and there are little limit impacts between the cylinders. The thickness of the surface layer has greatest influence on the stability and security of the launching platform, followed by the thickness of the base layer as well as t...
机译:为了研究车载导弹系统架设过程中设备与发射场的耦合效应,推导了多级液压缸的集总参数模型,并在ADAMS中建立了柔性多体动力学模型,推导了耦合关系中的法向和切向耦合力。在ADAMS和MATLAB / Simulink的联合仿真中,建立了武器系统与发射场的耦合计算模型。结果表明,发射平台的垂直滑移远大于纵向和横向滑移。气缸开始伸展时,各个位置的竖立角度分别为0°,22.16°,43°和65.52°,其中速度为50?mm / s左右,并且之间的极限冲击很小气缸。表面层的厚度对发射平台的稳定性和安全性影响最大,其次是基础层的厚度和弹力。

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