通过速率方程对电磁弹性材料进行建模
Claudio Giorgi1, Angelo Morro2
1Department of Civil, Environmental, Architectural Engineering and Mathematics, University of Brescia, Via Valotti 9, 25133 Brescia, Italy.
这项研究开发了大变形介电固体的一般热力学模型,包括粘性弹性,电和热导. 这些模型使用少数参数准确预测材料行为,有利于铁电应用.
科学领域:
- 连续力学 连续力学
- 材料的热力学材料的热力学.
- 介电固体 介电固体 介电固体
背景情况:
- 在大变形下建模介电固体需要考虑诸如粘性弹性和导电性等复杂性质.
- 现有的模型可能在捕捉合的机电和热行为时缺乏普遍性或准确性.
研究的目的:
- 为经历大变形的介电固体建立一般热力学模型.
- 将粘性弹性,电和热传导纳入一个统一的框架.
- 为软铁电等材料提供准确的构成模型.
主要方法:
- 使用热力学方法来导出构成方程.
- 根据物理原理 (角动量平衡,欧几里德不变) 选择适合的极化和电场.
- 使用一组全面的变量来研究热力学限制.
主要成果:
- 开发了对具有粘弹性质的介电固体,电导和热导的一般模型.
- 确定了适合极化和电场的合适场.
- 证明很少有构成参数可以准确地适应材料的行为,特别是在软铁电材料 (例如BTS陶) 中.
- 作为一个构成性属性,对电场梯度和产生的内置依赖.
结论:
- 拟议的热力学框架为大变形介电固体提供了准确和一般的模型.
- 这些模型通过从热力学不等式中获得的明确表示公式来提高准确性和通用性.
- 这种方法有利于材料特性和模拟,特别是对于先进的介电材料.
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