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A method for research viscoplastic characteristics of materials using a vertical gas-gun stand

机译:一种使用垂直气枪架研究材料粘塑性特性的方法

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A methodology of constructing dynamic strain diagrams based on the method of direct impact on a vertical gas-gun stand has been developed and theoretically verified. The methodology has been verified by a reconstruction of a given static strain diagram when substituting the physical experiment by computer modeling of an axisymmetric problem, accounting for the wave processes in the striker-specimen-measuring rod system. The main inaccuracies in determining (reconstructing) viscoplastic characteristics of materials are shown to be determined by the degree of accuracy of experimental measurements. Based on the method of characteristics, an algorithm has been developed for calculating the displacements of the impacted end of the rod based on the results of the measurements of strains by two gauges in the vicinity of the impacted and supported ends of the rod for a multiply passing strain wave. This makes it possible to analyze the deformation process up to the moment the striker stops and to compare the computational and experimental results based on the residual size of the tested specimen.
机译:已经开发了一种基于直接冲击垂直气炮架的方法来构造动态应变图的方法,并在理论上进行了验证。当用轴对称问题的计算机模型代替物理实验时,通过重建给定的静态应变图,并考虑到前锋试样测量杆系统中的波动过程,该方法已得到验证。确定(重建)材料粘塑性特性的主要不准确性是由实验测量的准确性程度决定的。基于特征方法,已经开发了一种算法,该算法用于基于两个量规在杆的受冲击端和支撑端附近进行的应变测量结果来计算杆的受冲击端的位移,以进行多次乘积传递应变波。这样就可以分析直到撞针停止之前的变形过程,并可以根据被测样品的剩余尺寸比较计算结果和实验结果。

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