首页> 外文会议>AD-vol.70; American Society of Mechanical Engineers(ASME) International Mechanical Engineering Congress and Exposition; 20051105-11; Orlando,FL(US) >A COMPARATIVE FINITE ELEMENT ANALYSIS OF RESIDUAL STRESSES IN ACTIVE FIBER COMPOSITES WITH EMBEDDED METAL-CORE PIEZOELECTRIC FIBERS AND MACRO FIBER COMPOSITES
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A COMPARATIVE FINITE ELEMENT ANALYSIS OF RESIDUAL STRESSES IN ACTIVE FIBER COMPOSITES WITH EMBEDDED METAL-CORE PIEZOELECTRIC FIBERS AND MACRO FIBER COMPOSITES

机译:包埋金属核压电纤维与宏纤维复合材料的活性纤维复合材料中残余应力的比较有限元分析

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摘要

Residual stresses are basically developed due to intrinsic and extrinsic strains that form during the processing of composite materials. The extrinsic strains can be determined using Coefficient of Thermal Expansion (CTE), material properties, geometry of the structure, and processing conditions. Finite Element Method (FEM) as an efficient alternative technique for stress and strain analysis of the micromechanical systems and structures, has been employed to numerically investigate the residual stresses developed in Metal-Core Piezoelectric Fibers (MPF) and Active Fiber Composites (AFC) (or Macro Fiber Composites (MFC)), during the processing. Here in this work, ANSYS Finite Element Analysis (FEA) software is used to develop three different 3-dimensional models for MPF and MFC structures and then each model is solved for strain and stress results. Next, the stress and strain components of these models are studied throughout the structures to identify the magnitude and type of the stresses and strains within the constituent materials and then compared.
机译:残余应力基本上是由于复合材料加工过程中形成的内在和外在应变而产生的。外部应变可以使用热膨胀系数(CTE),材料特性,结构的几何形状和加工条件来确定。有限元方法(FEM)作为微机械系统和结构的应力和应变分析的有效替代技术,已被用于对金属芯压电纤维(MPF)和活性纤维复合材料(AFC)中产生的残余应力进行数值研究(或宏纤维复合材料(MFC))。在本文中,ANSYS有限元分析(FEA)软件用于为MPF和MFC结构开发三个不同的3维模型,然后对每个模型求解应变和应力结果。接下来,在整个结构中研究这些模型的应力和应变分量,以识别组成材料中应力和应变的大小和类型,然后进行比较。

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