Yang Zihao1; Chen Yun2; Yang Zhiqiang1; Ma Qiang3
Source Publicationchinesephysicsb
AbstractThis paper focuses on the dynamic thermo-mechanical coupled response of random particulate composite materials. Both the inertia term and coupling term are considered in the dynamic coupled problem. The formulation of the problem by a statistical second-order two-scale (SSOTS) analysis method and the algorithm procedure based on the finite-element difference method are presented. Numerical results of coupled cases are compared with those of uncoupled cases. It shows that the coupling effects on temperature, thermal flux, displacement, and stresses are very distinct, and the micro-characteristics of particles affect the coupling effect of the random composites. Furthermore, the coupling effect causes a lag in the variations of temperature, thermal flux, displacement, and stresses.
Funding Project[Special Funds for the National Basic Research Program of China] ; [National Natural Science Foundation of China]
Document Type期刊论文
Recommended Citation
GB/T 7714
Yang Zihao,Chen Yun,Yang Zhiqiang,et al. dynamicthermomechanicalcoupledresponseofrandomparticulatecompositesastatisticaltwoscalemethod[J]. chinesephysicsb,2014,23(7).
APA Yang Zihao,Chen Yun,Yang Zhiqiang,&Ma Qiang.(2014).dynamicthermomechanicalcoupledresponseofrandomparticulatecompositesastatisticaltwoscalemethod.chinesephysicsb,23(7).
MLA Yang Zihao,et al."dynamicthermomechanicalcoupledresponseofrandomparticulatecompositesastatisticaltwoscalemethod".chinesephysicsb 23.7(2014).
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