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热-机载荷下不规则夹杂的奇异性应力场分析
引用本文:平学成,徐小翔,陈梦成.热-机载荷下不规则夹杂的奇异性应力场分析[J].计算力学学报,2014,31(6):749-754.
作者姓名:平学成  徐小翔  陈梦成
作者单位:1. 华东交通大学 机电工程学院,南昌,330013
2. 华东交通大学 土木建筑学院,南昌,330013
基金项目:国家自然科学基金(51065008,51365013);江西省自然科学基金(2010GZW0013);"井冈之星"江西省青年科学家培养计划(20112BCB23013)资助项目.
摘    要:基于有限元特征分析法得到的夹杂角部场数值特征解开发了一种超级奇异单元模型,并将其与普通四节点单元紧密结合,用于热-机载荷下夹杂角端部的应力场分析。在数值计算中,考察了热-机载荷下不同弹性比和不同夹杂尺寸的应力强度因子,并将所得结果与文献解和传统有限元方法解比对。结果表明,本文方法对热-机耦合条件下的不规则夹杂角端部的热弹性应力分析极为有效,可避免局部网格的高度加密,并提高计算效率。模型在复合材料夹杂的局部强度问题分析方面具有很好的实用性。

关 键 词:热-机载荷  杂交元  超级夹杂角单元  应力强度因子
收稿时间:2013/8/17 0:00:00
修稿时间:2013/12/25 0:00:00

Singular stress analysis of an irregular shaped inclusion under thermo-mechanical loads
PING Xue-cheng,XU Xiao-xiang and CHEN Meng-cheng.Singular stress analysis of an irregular shaped inclusion under thermo-mechanical loads[J].Chinese Journal of Computational Mechanics,2014,31(6):749-754.
Authors:PING Xue-cheng  XU Xiao-xiang and CHEN Meng-cheng
Institution:School of Mechanical and Electronical Engineering, East China Jiaotong University, Nanchang 330013, China;School of Mechanical and Electronical Engineering, East China Jiaotong University, Nanchang 330013, China;School of Civil Engineering, East China Jiaotong University, Nanchang 330013, China
Abstract:A kind of super element is developed based on the numerical eigensolutions computed from an ad hoc finite element eigenanalysis method,then is incorporated with common standard four-node element for singular stress analyse of an irregular shaped inclusion under thermo-mechanical loads.In the numerical analysis,generalized stress intensity factors at the inclusion corner embedded in an infinite plate subjected to thermo-mechanical loads are systematically calculated for various material stiffness ratios and inclusion dimensions,and the validity and applicability of this element are established through the present detailed finite element analyse.The present model can avoid highly refined meshes,improve the computational efficiency,and has great significance for analyse of the local strength of inclusions in composites.
Keywords:thermo-mechanical load  hybrid finite element  super inclusion corner element  stress intensity factor
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