首页> 外文期刊>Composites >Micromechanical modeling of thin composite and reinforced magnetoelectric plates - Effective electrical, magnetic, thermal and product properties
【24h】

Micromechanical modeling of thin composite and reinforced magnetoelectric plates - Effective electrical, magnetic, thermal and product properties

机译:复合材料薄板和增强磁电板的微机械建模-有效的电,磁,热和产品性能

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

Maxwell's equations and the equations of dynamic force and thermal balance are used to develop an asymptotic homogenization model for the analysis and design of magnetoelectric composite and reinforced plates. The developed model generates a set of unit cell problems the solution of which enables the determination of the effective coefficients of the homogenized structure. Of particular importance among the effective coefficients are the product properties which are manifested in the macroscopic structure but are not usually exhibited by the individual constituents. Examples of effective properties are the magnetoelectric, pyroelectric and pyromagnetic coefficients. The model is illustrated by means of several examples such as diagonally restrained magnetoelectric plates, plates reinforced with a triangular arrangement of ribs, wafer reinforced magnetoelectric plates and three-layered sandwich plates. From the nature of the structures considered, it is shown that it is more practical if a basic unit cell consisting of only a single arbitrarily oriented rib and a base plate is analyzed first. Then, the effective properties of magnetoelectric structures with more families of ribs can be obtained by superposition. It is shown in this paper that the effective coefficients as well as the field variables are functions of time and are not constants as predicted by other models. In fact, it is shown that other models are special cases of the model derived here when electrical conductivity is ignored and the aforementioned temporal functions are time-averaged by integrating them over the entire time spectrum. Thus, overall, this paper represents an important addition to the existing literature in terms of the complex geometries that can be designed and analyzed and at the same time constitutes an important refinement over previously established work. In fact, the present work permits the design and analysis of a fully-coupled magnetoelectric plate or sandwich plate with any desired arrangement of the actuators/reinforcements. (C) 2017 Elsevier Ltd. All rights reserved.
机译:利用麦克斯韦方程和动力与热平衡方程建立了渐近均匀化模型,用于磁电复合材料和增强板的分析和设计。所开发的模型生成一组单位晶胞问题,通过解决该问题,可以确定均质结构的有效系数。在有效系数中特别重要的是在宏观结构中表现出来但通常不由单个成分表现出的乘积性质。有效性质的例子是磁电,热电和热磁系数。通过几个示例来说明该模型,例如对角约束磁电板,以肋的三角形排列增强的板,晶片增强的磁电板和三层夹心板。从所考虑的结构的性质表明,如果首先分析仅由单个任意定向的肋和基板组成的基本单元,则更为实用。然后,可以通过叠加获得具有更多的肋家族的磁电结构的有效特性。本文表明,有效系数以及场变量是时间的函数,而不是其他模型所预测的常数。实际上,示出了其他模型是此处忽略电导率并且通过在整个时间谱上对它们进行积分而对上述时间函数进行时间平均时在此导出的模型的特殊情况。因此,总的来说,就可以设计和分析的复杂几何形状而言,本文是对现有文献的重要补充,同时也是对先前建立的工作的重要改进。实际上,本发明允许设计和分析具有致动器/加强件的任何期望布置的完全耦合的磁电板或夹心板。 (C)2017 Elsevier Ltd.保留所有权利。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号