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Rigid-Flexible Coupling Dynamics Analysis Method for Gun Based on Gauss Constraint

机译:基于高斯约束的火炮刚柔耦合动力学分析方法

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The rigid-flexible coupling multi-body dynamics model of the gun system was developed based on the Gauss minimum constraint principle. The expressions of the dynamic equations in closed form were deduced,and the means to simplify all kinds of external forces were provided. According to this dynamic equations and combining the correlative experimental parameters,the firing process of gun was numerically simulated and analyzed. The results of simulation indicate that: Although the modeling process considering barrel's flexibility is more complicated than the pure rigid modeling,the rigid-flexible coupling dynamics model that obtained by flexible multi-body dynamics theory is more close to the actual firing case compared with rigid model. Barrel's flexibility has an effect on the displacement and velocity of muzzle vibration,further more,affects muzzle initial disturbance of projectile,and finally,affects firing accuracy. So it's indispensable to consider barrel's flexibility when carries through the dynamic simulation of the whole gun system. The model,method,and results of simulation have reference value to correlative engineering research,and provide also a technical way for improving on the design of gun.
机译:基于高斯最小约束原理,建立了火炮系统的刚柔耦合多体动力学模型。推导了封闭形式动力学方程的表达式,并提供了简化各种外力的方法。根据该动力学方程,结合相关实验参数,对火炮射击过程进行了数值模拟和分析。仿真结果表明:尽管考虑了炮筒柔韧性的建模过程比单纯的刚性建模更为复杂,但与柔韧性相比,利用柔韧性多体动力学理论获得的刚柔耦合动力学模型更接近于实际射击情况。模型。炮管的柔韧性影响着炮口振动的位移和速度,进一步影响炮口的炮弹初始扰动,最终影响发射精度。因此,在进行整个喷枪系统的动态仿真时,必须考虑枪管的灵活性。该模型,方法和仿真结果对相关工程研究具有参考价值,也为改进枪支设计提供了技术途径。

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