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1 引言裂纹在速率无关载荷作用下以低于Rayleigh 波速扩展的问题是动态断裂的一项基本课题.其应力强度因子的短期响应(即自裂尖发出的散射波未折返回时裂尖之前的响应)可用含半无穷长裂纹的无穷大构形来模拟.对均匀各向同性材料,Freund(见文[1]的总结)建立了下述普适关系 相似文献
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细观力学和细观损伤力学 总被引:34,自引:3,他引:34
本文扼要地阐述细观力学的定义和范畴;探索其主要研究课题和应用领域,展示细观损伤力学的新进展;并对细观力学的未来发展趋势加以展望。 相似文献
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Driven by high frequency and multi-directional shot peens, dislocations of various orientations proliferate into the metal,
and accumulate in high density in the surface layer of a shallow depth. Migration, generation and annihilation of dislocations
dictate the evolution of mobile dislocation density. Simulation for the experiment of pure iron under repeated shot peen flux
of 800 times per square millimeter is carried out, and a dislocation density up to 2.17×1011 mm−2 is achieved. Dislocations of such density in the surface layer are shown to be capable of forming nano-grains whose size
is about 10 nm. Molecular dynamics simulation verifies the formation of nano-grained metals at such dislocation density level.
The dislocations are first regrouped to form subcrystallites, then combined to form stable nanocrystallized grains after sufficiently
long time of relaxation.
The project supported by the National Natural Science Foundation of China (10121202) 相似文献