复合厚壁圆柱体中导体电爆炸引发的应力计算

IF 0.4 Q4 MATHEMATICS
V. M. Kats, V. A. Morozov, Ya. A. Sevastyanov
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引用次数: 0

摘要

摘要 本文采用导体电爆炸法(EEC)对材料的动态加载进行了分析。实验样品是一个带轴向孔的聚甲基丙烯酸甲酯厚壁圆柱体,它被压入一个铝壳中。通过对放置在样品轴向孔内的铜线导体施加电压,对样品进行加载。得出了导体电爆炸的状态方程,并绘制了实验和计算得出的空气通道压力与 EEC 产物膨胀系数的关系曲线。在考虑到边界条件和初始条件的情况下,建立了一个理论模型来描述加载过程中产生的径向应力变化。通过将获得的结果与实验数据进行比较,证实了该模型的准确性。估计了铝壳直接破裂时的圆周应力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Calculation of Stresses Initiated by an Electrical Explosion of Conductors in a Composite Thick-Walled Cylinder

Calculation of Stresses Initiated by an Electrical Explosion of Conductors in a Composite Thick-Walled Cylinder

Abstract

In this paper, we present an analysis of the dynamic loading of a material carried out by the method of electrical explosion of conductors (EEC). A composite cylinder, which is a thick-walled polymethyl methacrylate cylinder with an axial hole that is pressed into an aluminum shell, is selected as the experimental sample. The sample is loaded by applying an electrical voltage to a conductor in the form of a copper wire placed inside the axial hole of the sample. A state equation for an electrical explosion of the conductor is obtained; the experimental and calculated dependences of pressure in the air channel on the expansion coefficient of the EEC products are plotted. A theoretical model that describes the change in radial stresses arising during loading with allowance for the boundary and initial conditions is developed. The accuracy of the model is substantiated by comparing the obtained results with experimental data. The circumferential stress at which the aluminum shell ruptures directly is estimated.

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来源期刊
CiteScore
0.70
自引率
50.00%
发文量
44
期刊介绍: Vestnik St. Petersburg University, Mathematics  is a journal that publishes original contributions in all areas of fundamental and applied mathematics. It is the prime outlet for the findings of scientists from the Faculty of Mathematics and Mechanics of St. Petersburg State University. Articles of the journal cover the major areas of fundamental and applied mathematics. The following are the main subject headings: Mathematical Analysis; Higher Algebra and Numbers Theory; Higher Geometry; Differential Equations; Mathematical Physics; Computational Mathematics and Numerical Analysis; Statistical Simulation; Theoretical Cybernetics; Game Theory; Operations Research; Theory of Probability and Mathematical Statistics, and Mathematical Problems of Mechanics and Astronomy.
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