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Deformation of Composite Plates Subjected to Mechanical and Electromagnetic Loads

机译:经受机械和电磁载荷的复合板的变形

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Complex mechanical response of fiber-reinforced composite materials presents rich possibilities for enhancing their structural properties by subjecting them to additional electromagnetic, thermal, chemical, etc. treatment. In particular, existing experimental evidence suggests that exposure of a composite material to the electromagnetic field leads to changes in the material's strength and resistance to delamination. These phenomena may be associated with changes in composite material properties caused by an electromagnetic field, and/or changes in the stress state of the composite structural component due to coupling of the mechanical and electromagnetic fields. In the present paper we focus our attention on the macroscopic coupling mechanism and derive a coupled nonlinear system of 2D equations of motion and Maxwell's equation that account for the mechanical and electrical anisotropies of composite orthotropic plates. Within the described framework we study the mechanical response of transversally isotropic graphite/epoxy composite plates in the presence of electromagnetic loading. Interacting effects of mechanical and electromagnetic fields are investigated.
机译:通过对其进行额外电磁,热,化学等处理,纤维增强复合材料的复杂机械响应具有丰富的可能性,以提高其结构性能。特别是,现有的实验证据表明,将复合材料暴露于电磁场,导致材料的强度和抗分层的变化。这些现象可以与由电磁场引起的复合材料特性的变化相关联,和/或由于机械和电磁场的耦合而导致的复合结构部件的应力状态的变化。在本文中,我们将注意力集中在宏观耦合机构上,并导出2D运动和麦克斯韦方程的耦合非线性系统,其考虑了复合原位板的机械和电向各向异性。在所描述的框架内,我们研究横向各向同性石墨/环氧复合板在电磁载量存在下的机械响应。研究了机械和电磁场的相互作用效应。

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