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双材料含椭圆热夹杂的平面应变问题解析解

A closed-form solution to an elliptic cylindrical thermal inclusion in a bi-material under plane strain
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摘要 以含椭圆热夹杂的结合双材料为研究对象,对其平面应变问题进行解析求解和算例讨论。根据Eshelby提出的夹杂分析方法,推导了椭圆夹杂受热本征应变作用引起的弹性场封闭解析解。受Dundurs参数启发,当前解析解引入了1个新的材料参数(范围-1~1)和5个类张量表达式来简洁表达,使之便于实际应用。针对典型的圆形夹杂问题,解析解在形式上可以得到极大简化,且根据得到的解析解给出了双材料界面上位移、应变和应力的跳跃条件。通过调整双材料的杨氏模量和泊松比,当前解可以退化为全平面或半平面含椭圆热夹杂的解析解。本文的数值解与已发表文献中的数值解的一致性证实了所推导解析解的正确性。 This article addresses the plane strain problem of a bi-material system containing an elliptical cylindrical thermal inclusion.Using Eshelby’s inclusion analysis method,we derive closed-form analytical solutions for the elastic field induced by the thermal inclusion.Inspired by Dundurs’parameters,we introduce a new material parameter(ranging from-1 to 1)and five tensorially structured expressions to succinctly represent the analytical solution,facilitating its practical applications.For circular inclusion scenarios,the analytical solution simplifies significantly,and we derive explicit jump conditions for displacement,strain,and stress at the bonded interface of the bi-material.By adjusting the Young’s moduli and Poisson’s ratios of the bi-material,the solution can reduce to cases of a full or half-plane containing a thermal elliptical inclusion.The accuracy of the proposed solution is validated through consistency with previously published analytical results and by matching numerical solutions from the literature,confirming the correctness and reliability of the derived analytical expressions.
作者 刘俊 Feodor M.Borodich 吕鼎 金晓清 LIU Jun;Feodor M.Borodich;LYU Ding;JIN Xiaoqing(College of Aerospace Engineering,Chongqing University,Chongqing 400044,P.R.China;State Key Laboratory of Mechanical Transmissions,Chongqing University,Chongqing 400044,P.R.China;Department of Biomedical Engineering,Wayne State University,Detroit 48201,America)
出处 《重庆大学学报》 北大核心 2025年第4期40-53,共14页 Journal of Chongqing University
基金 超常环境非线性力学全国重点实验室开放基金项目。
关键词 椭圆热夹杂 完美结合界面 双材料 解析解 elliptic thermal inclusion perfect bonded interface bi-material closed-form solution
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  • 1JOHNSON K L. Contact mechanics [ M]. Cam- bridge: Cambridge University Press, 1985.
  • 2MURAT. Mieromechanics of defects in solids[M]. 2nd ed. Dordrecht: Kluwer Academic Publishers, 1993.
  • 3JINX Q, HASEBE N, KEER L M, etal. A com- parative study of modeling the magnetostatic field in a current-carrying plate containing an elliptic hole[J]. IEEE Transactions on Magnetics, 2009, 45(4): 1990- 1998.
  • 4LIU S B,WANG Q, LIU G. A versatile method of discrete convolution and FFT (DC-FFT) for contact analyses[J]. Wear, 2000, 243(1/2): 101-111.
  • 5LIU S 13, WANG Q. Studying contact stress fields caused by surface tractions with a discrete convolution and fast fourier transform algorithm[J]. Journal of Tribology, 2002, 124(I): 36-45.
  • 6CHEN W W, WANG Q J. A numerical model for the point contact of dissimilar materials considering tangential tractions [J ]. Mechanics of Materials, 2008, 40(11): 936-948.
  • 7JIN X Q, KEER L M, WANG Q H. New Green's function for stress field and a note of its application inquantum-wire structures[J]. International Journal of Solids and Structures, 2009, 46(21): 3788-3798.
  • 8WANG Z J, JINX Q, ZHOU Q H, etal. An effi- cient numerical method with a parallel computational strategy for solving arbitrarily shaped inclusions in elastoplastic contact problems[J]. Journal of Tribolo- gy, 2013, 135(3): 031401.
  • 9LIU S B, JINX Q, WANG Z J, etal. Analytical so- lution for elastic fields caused by eigenstrains in a half-space and numerical implementation based on FFT[ J ]. International Journal of Plasticity, 2012, 35: 135-154.
  • 10ZHOUQH, JIN X Q, WANGZJ, etal. An effi- cient approximate numerical method for modeling contact of materials with distributed inhomogeneities [J]. International Journal of Solids and Structures, 2014, 51(19/20): 3410-3421.

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