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A New Elasticity and Finite Element Formulation for Different Young‘s Modulus When Tenison and Compression Loadings
引用本文:YEZhi-ming YuHuan-ran 等.A New Elasticity and Finite Element Formulation for Different Young‘s Modulus When Tenison and Compression Loadings[J].上海大学学报(英文版),2001,5(2):89-92.
作者姓名:YEZhi-ming  YuHuan-ran
作者单位:[1]ShanghaiInstituteofAppliedMathematicsandMechanics,andDepartmentofCivilEngineering,ShanghaiUniversity,Shanghai200072,China [2]DepartmentofMechanics,LanzhouUniversity,Lanzhou,Gansu730000,C
摘    要:This paper presents a new elasticity and finite element formulation for different Young‘s modulus when tension and compression loadings in anisotropy meida.The case studies,such as anisotropy and isotropy,were invertigated.A numerical example was shown to find out the changes of neutral axis at the pure bending beams.

关 键 词:弹性材料  杨氏模量  拉伸负荷  压缩负荷  有限元分析
收稿时间:13 February 2001

A new elasticity and finite element formulation for different Young’s modulus when tension and compression loadings
Zhi-ming Ye Ph. D.,Huan-ran Yu,Wen-juan Yao.A new elasticity and finite element formulation for different Young’s modulus when tension and compression loadings[J].Journal of Shanghai University(English Edition),2001,5(2):89-92.
Authors:Zhi-ming Ye Ph D  Huan-ran Yu  Wen-juan Yao
Institution:(1) Shanghai Institute of Applied Mathematics and Mechanics, and Department of Civil Engineering, Shanghai University, 200072 Shanghai, China;(2) Department of Mechanics, Lanzhou University, 730000 Lanzhou, Gansu, China
Abstract:This paper presents a new elasticity and finite element formulation for different Young’s modulus when tension and compression loadings in anisotropy media. The case studies, such as anisotropy and isotropy, were investigated. A numerical example was shown to find out the changes of neutral axis at the pure bending beams. Supported by the China-Australia Joint Research Project of Nation Science and Technology Commission (C-4) and the Science Foundation of Shanghai Municipal Commission of Science and Technology (965207006)
Keywords:elastic media  anisotropy media  different Young’  s modulus  tension  compression  finite element formulation
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