Theoretical and experimental studies of the stress–strain state of expansion bellows as elastic shells

IF 0.2 Q4 PHYSICS, MULTIDISCIPLINARY
Aleksander K. Belyaev, Tatiana V. Zinovieva, Kirill K. Smirnov
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引用次数: 19

Abstract

This paper studies the stress–strain state of an U-shaped expansion bellows under an internal-pressure induced load. The bellows is considered as a corrugated shell of revolution under axisymmetric load. The governing equations have been derived and the numerical calculations of the stress–strain state were carried out. A variant of the classical shell theory based upon Lagrangian mechanics was used. The finite-difference method was applied to solve the obtained system of ordinary differential equations. The ultimate internal pressure resulting in plastic deformations was determined. A simulation of the loss of equilibrium stability of the expansion bellows was performed. The ANSYS software was used for Finite-Element Method (FEM) in order to calculate the stress–strain state in the bellows.

膨胀波纹管弹性壳应力-应变状态的理论与实验研究
研究了内压诱导载荷作用下u形膨胀波纹管的应力-应变状态。波纹管是波纹壳轴对称载荷下的革命。推导了控制方程,并进行了应力-应变状态的数值计算。基于拉格朗日力学的经典壳理论的一个变体被使用。用有限差分法求解得到的常微分方程组。确定了引起塑性变形的极限内压。对膨胀波纹管失去平衡稳定性进行了仿真。利用ANSYS软件对波纹管进行有限元分析,计算波纹管的应力-应变状态。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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