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Surface magnetoelasticity theory

机译:表面磁弹性理论

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The boundary surface of a body behaves differently from its bulk. The elastic response of a boundary surface can be studied by the surface elasticity theory. Furthermore, it has been observed experimentally that the strength and direction of magnetization are markedly different between the boundary surface and the bulk. While the surface elasticity theory is well established today to study the mechanical behavior of nanomaterials, a theory to model boundary surface magnetic behavior is missing. The objective of this presentation was to study, from a phenomenological point of view, the magnetomechanical response of materials accounting for boundary surfaces contributions. To do so, the boundary surface of a body is endowed with its own mechanical and magnetic constitutive behavior in the spirit of the surface elasticity theory. The magnetomechanical response of materials is formulated in a thermodynamically consistent manner using both a variational framework and the governing equations of magnetomechanics, namely the Maxwell laws, the balance of linear and angular momentum, the balance of energy and the (in-)balance of entropy. Conceptually speaking, this contribution can be understood as an extension of the surface elasticity theory to the more general case of magnetoelasticity that, however, involves certain additional complexities due to the presence of a surface curl operator, which is not standard.
机译:物体的边界表面的行为与其体积不同。可以通过表面弹性理论研究边界表面的弹性响应。此外,从实验上已经观察到,边界表面和块体之间的磁化强度和方向明显不同。尽管今天已经很成熟地建立了表面弹性理论来研究纳米材料的力学行为,但仍缺乏用于模拟边界表面磁行为的理论。本演讲的目的是从现象学的角度研究占界面边界的材料的磁机械响应。为此,根据表面弹性理论的精神,赋予物体的边界表面自己的机械和磁本构行为。材料的磁机械响应以热力学一致的方式,使用变体框架和磁机械控制方程(即麦克斯韦定律,线性动量和角动量的平衡,能量的平衡以及熵的(平衡)平衡)来制定。 。从概念上讲,这种贡献可以理解为表面弹性理论对磁弹性的更一般情况的扩展,但是由于存在表面卷曲算子,这是非标准的,因此涉及某些额外的复杂性。

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