非线性磁弹性理论及麦克斯韦应力的作用综述

IF 2.9 3区 综合性期刊 Q1 MULTIDISCIPLINARY SCIENCES Proceedings of the Royal Society A: Mathematical, Physical and Engineering Sciences Pub Date : 2023-10-01 DOI:10.1098/rspa.2023.0592
Luis Dorfmann, Ray W. Ogden
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摘要

本文回顾了磁弹性静力学理论的宏观方面,首先简要总结了导致当前最先进技术发展的实验和理论贡献。它提供了一些与以往不同的视角,主要关注不可压缩材料。强调了所谓的总能量(密度)函数的使用及其相关的总应力张量和本构方程的简洁形式。强调了包含材料内非对称麦克斯韦应力的总柯西应力张量的对称性,并指出,因此避免了经常出现在文献中的这种麦克斯韦应力的使用。该理论用于一些简单的原型边值问题,特别是在磁场存在下无限磁弹性材料板的均匀变形,以及在轴向或周向磁场存在下无限长圆柱管的非均匀伸展和膨胀。
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The nonlinear theory of magnetoelasticity and the role of the Maxwell stress: a review
This paper reviews macroscopic aspects of the theory of magnetoelastostatics, starting with a brief summary of the experimental and theoretical contributions leading to the development of the current state-of-the-art. It offers some different perspectives than hitherto, with incompressible materials being the main concern. The use of the so-called total energy (density) functions is highlighted along with their associated total stress tensors and succinct forms of the constitutive equations. The symmetry of the total Cauchy stress tensor, which incorporates the non-symmetric Maxwell stress within the material, is emphasized and it is noted that the use of such a Maxwell stress, often appearing in the literature, is thereby avoided. The theory is illustrated for some simple prototype boundary-value problems, specifically the homogeneous deformation of an infinite slab of magnetoelastic material in the presence of a magnetic field and the non-homogeneous extension and inflation of an infinitely long circular cylindrical tube in the presence of either an axial or a circumferential magnetic field.
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来源期刊
CiteScore
6.40
自引率
5.70%
发文量
227
审稿时长
3.0 months
期刊介绍: Proceedings A has an illustrious history of publishing pioneering and influential research articles across the entire range of the physical and mathematical sciences. These have included Maxwell"s electromagnetic theory, the Braggs" first account of X-ray crystallography, Dirac"s relativistic theory of the electron, and Watson and Crick"s detailed description of the structure of DNA.
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