温湿相关磁电弹性空心球的湿热蠕变及应力重分布分析

M. Saadatfar
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引用次数: 1

摘要

本文对磁电弹性(MEE)厚壁球在机械、电、磁、均匀温度梯度和水分浓度梯度作用下的应力重分布进行了时变分析。将MEE的本构方程与应力-应变关系和应变-位移关系结合起来,得到了包含蠕变应变的微分方程。首先,对上述方程中的蠕变应变进行折现,得到了初始状态下的湿-热-磁-电弹性行为的解析解。之后,在稳态条件下,微分方程中只保留蠕变应变即可得到蠕变应力率。分析采用了Prandtl-Reuss方程和诺顿定律在蠕变行为建模中。最后,利用迭代法得到任意时刻的应力、位移、磁场和势场的变化历史。结果表明,在设计过程中应考虑蠕变过程引起的环向拉应力的增大。在蠕变演化后,湿热载荷的影响更为广泛。
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Hygrothermal Creep and Stress Redistribution Analysis of Temperature and Moisture Dependent Magneto-Electro-Elastic Hollow Sphere
In this article, the time-dependent stress redistribution analysis of magneto-electro-elastic (MEE) thick-walled sphere subjected to mechanical, electrical, magnetic and uniform temperature gradient as well as moisture concentration gradient is presented. Combining constitutive equations of MEE with stress-strain relations as well as strain-displacement relations results in obtaining a differential equation in which there are the creep strains. At the first step, discounting creep strains in the mentioned equation, an analytical solution for the hygro-thermo-magneto-electro-elastic behavior is achieved at the initial state. After that, the creep stress rates can be achieved by keeping only the creep strains in the differential equation for the steady-state condition. The analysis is done by applying the Prandtl-Reuss equations as well as Norton’s law in creep behavior modeling. Finally, the history of stresses, displacement as well as magnetic and potential field, at any time, is achieved using an iterative method. Results show that the increase in tensile hoop stress resulted from creep progress must be considered in design progress. Also, the effect of hygrothermal loading is more extensive after creep evolution.
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