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Macroscopic damping model for structural dynamics with random polycrystalline configurations 被引量:1
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作者 Yantao Yang Junzhi Cui +1 位作者 Yifan Yu meizhen xiang 《Acta Mechanica Sinica》 SCIE EI CAS CSCD 2018年第3期493-506,共14页
In this paper the macroscopic damping model for dynamical behavior of the structures with random polycrystalline configurations at micro-nano scales is established. First, the global motion equation of a crystal is de... In this paper the macroscopic damping model for dynamical behavior of the structures with random polycrystalline configurations at micro-nano scales is established. First, the global motion equation of a crystal is decomposed into a set of motion equations with independent single degree of freedom (SDOF) along normal discrete modes, and then damping behavior is introduced into each SDOF motion. Through the interpolation of discrete modes, the continuous representation of damping effects for the crystal is obtained. Second, from energy conservation law the expression of the damping coefficient is derived, and the approximate formula of damping coefficient is given. Next, the continuous damping coefficient for polycrystalline cluster is expressed, the continuous dynamical equation with damping term is obtained, and then the concrete damping coefficients for a polycrystalline Cu sample are shown. Finally, by using statistical two-scale homogenization method, the macroscopic homogenized dynamical equation containing damping term for the structures with random polycrystalline configurations at micro-nano scales is set up. 展开更多
关键词 Polycrystalline cluster Dynamical equation Damping coefficient Two-scale homogenization method Atomic-Continuum Coupled Model
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Dynamic thermo-mechanical coupled simulation of statistically inhomogeneous materials by statistical second-order two-scale method
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作者 Zihao Yang Junzhi Cui +2 位作者 Yufeng Nie Zhiqiang Huang meizhen xiang 《Acta Mechanica Sinica》 SCIE EI CAS CSCD 2015年第5期762-776,共15页
In this paper,a statistical second-order twoscale(SSOTS) method is developed to simulate the dynamic thcrmo-mechanical performances of the statistically inhomogeneous materials.For this kind of composite material,th... In this paper,a statistical second-order twoscale(SSOTS) method is developed to simulate the dynamic thcrmo-mechanical performances of the statistically inhomogeneous materials.For this kind of composite material,the random distribution characteristics of particles,including the shape,size,orientation,spatial location,and volume fractions,are all considered.Firstly,the repre.sentation for the microscopic configuration of the statistically inhomogeneous materials is described.Secondly,the SSOTS formulation for the dynamic thermo-mechanical coupled problem is proposed in a constructive way,including the cell problems,effective thermal and mechanical parameters,homogenized problems,and the SSOTS formulas of the temperatures,displacements,heat flux densities and stresses.And then the algorithm procedure corresponding to the SSOTS method is brought forward.The numerical results obtained by using the SSOTS algorithm are compared with those by classical methods.In addition,the thermo-mechanical coupling effect is studied by comparing the results of coupled case with those of uncoupled case.It demonstrates that the coupling effect on the temperatures,heat flux densities,displacements,and stresses is very distinct.The results show that the SSOTS method is valid to predict the dynamic thermo-mechanical coupled performances of statistically inhomogeneous materials. 展开更多
关键词 Statistically inhomogeneous materials Dynamic thermo-mechanical coupled performances The SSOTS method The thermo-mechanical coupling effect
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非均质炸药的Eshelby夹杂理论相场方法
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作者 徐云 龙瑶 +1 位作者 向美珍 陈军 《计算物理》 CSCD 北大核心 2024年第5期559-568,共10页
考虑到夹杂-基体界面微结构复杂失效过程对非均质PBX(高聚物黏结炸药)材料损伤起始具有主导作用,本文提出基于Eshelby夹杂理论的相场损伤模型,对非均质PBX炸药损伤形核演化进行数值模拟。相场能量由弹性能和夹杂-基体相互作用能构成,结... 考虑到夹杂-基体界面微结构复杂失效过程对非均质PBX(高聚物黏结炸药)材料损伤起始具有主导作用,本文提出基于Eshelby夹杂理论的相场损伤模型,对非均质PBX炸药损伤形核演化进行数值模拟。相场能量由弹性能和夹杂-基体相互作用能构成,结合Mori-Tanaka方法推导不同级配下PBX炸药等效力学模量,相场内变量的变化直接反映了非线性脱黏效应下的损伤分布。采用Eshelby夹杂理论相场方法计算高模量比非均质PBX炸药圆形和多边形颗粒夹杂典型结构,分析加载条件、颗粒形状、体积占比、模型参数对夹杂-基体界面脱黏机制的影响。数值结果表明:夹杂-基体界面微结构演化加速了界面脱黏与宏观损伤的形成,与实验观测是一致的。 展开更多
关键词 非均质PBX 夹杂 损伤演化 相场模型 Eshelby理论
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