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Propagation of elastic wave in nanoporous material with distributed cylindrical nanoholes 被引量:3

Propagation of elastic wave in nanoporous material with distributed cylindrical nanoholes
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摘要 The effective propagation constants of plane longitudinal and shear waves in nanoporous material with random distributed parallel cylindrical nanoholes are studied. The surface elastic theory is used to consider the surface stress effects and to derive the nontraditional boundary condition on the surface of nanoholes. The plane wave expansion method is used to obtain the scattering waves from the single nanohole. The multiple scattering effects are taken into consideration by summing the scat- tered waves from all scatterers and performing the configuration averaging of random distributed scatterers. The effective propagation constants of coherent waves along with the associated dynamic effective elastic modulus are numerically evaluat- ed. The influences of surface stress are discussed based on the numerical results. The effective propagation constants of plane longitudinal and shear waves in nanoporous material with random distributed parallel cylindrical nanoholes are studied. The surface elastic theory is used to consider the surface stress effects and to derive the nontraditional boundary condition on the surface of nanoholes. The plane wave expansion method is used to obtain the scattering waves from the single nanohole. The multiple scattering effects are taken into consideration by summing the scattered waves from all scatterers and performing the configuration averaging of random distributed scatterers. The effective propagation constants of coherent waves along with the associated dynamic effective elastic modulus are numerically evaluated. The influences of surface stress are discussed based on the numerical results.
出处 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS 2013年第8期1542-1550,共9页 中国科学:物理学、力学、天文学(英文版)
基金 the National Natural Science Foundation of China (Grant Nos. 10972029 and 40906044) the Youth Scientific Research Foundation PLA University of Science and Technology (Grant No. 20110510)
关键词 分布式并行 纳米孔洞 纳米材料 弹性理论 圆柱形 波的传播 平面波展开方法 表面应力 multiple scattering, nanohole, coherent wave, effective velocity, effective modulus
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