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首页> 外文期刊>International Journal of Engineering Science >Time-dependent response of active composites with thermal, electrical, and mechanical coupling effect
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Time-dependent response of active composites with thermal, electrical, and mechanical coupling effect

机译:具有热,电和机械耦合效应的活性复合材料的时间依赖性响应

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The mechanical and physical properties of materials change with time. This change can be due to the dissipative characteristic of materials like in viscoelastic bodies and/or due to hostile environmental conditions and electromagnetic fields. We study time-dependent response of active fiber reinforced polymer composites, where the polymer constituent undergoes different viscoelastic deformations at different temperatures, and the electromechanical and piezoelectric properties of the active fiber vary with temperatures. A micromechanical model is formulated for predicting effective time-dependent response in active fiber composites with thermal, electrical, and mechanical coupling effects. In this micromechanical model limited information on the local field variables in the fiber and matrix constituents can be incorporated in predicting overall performance of active composites. We compare the time-dependent response of active composites determined from the micromechanical model with those obtained by analyzing the composites with micro-structural details. Finite element (FE) is used to analyze the composite with microstruc-tural details which allows quantifying variations of field variables in the constituents of the active composites.
机译:材料的机械和物理特性会随时间变化。这种变化可能是由于诸如粘弹性体中的材料的耗散特性和/或由于不利的环境条件和电磁场引起的。我们研究了活性纤维增强聚合物复合材料的时间依赖性响应,其中聚合物成分在不同温度下经历不同的粘弹性变形,并且活性纤维的机电和压电性能随温度变化。建立了微力学模型,以预测具有热,电和机械耦合效应的活性纤维复合材料的有效时变响应。在这种微机械模型中,可以将纤维和基质成分中局部场变量的有限信息用于预测活性复合材料的整体性能。我们将由微机械模型确定的活性复合材料的时变响应与通过分析具有微结构细节的复合材料所获得的响应进行了比较。有限元(FE)用于分析具有微观结构细节的复合材料,从而可以量化活性复合材料成分中场变量的变化。

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