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Micro-scale mechanics of the surface-nanocrystalline Al-alloy material

Micro-scale mechanics of the surface- nanocrystalline Al-alloy material
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摘要 Based on the microscopic observations and measurements, the mechanical behavior of the surface-nanocrystallized Al-alloy material at microscale is investigated experimentally and theoretically. In the experimental research, the compressive stress-strain curves and the hardness depth curves are measured. In the theoretical simulation, based on the material microstructure characteristics and the experimental features of the compression and indentation, the microstructure cell models are developed and the strain gradient plasticity theory is adopted. The material compressive stress-strain curves and the hardness depth curves are predicted and simulated. Through comparison of the experimental results with the simulation results, the material and model parameters are determined. Based on the microscopic observations and measurements, the mechanical behavior of the surface-nanocrystallized Al-alloy material at microscale is investigated experimentally and theoretically. In the experimental research, the compressive stress-strain curves and the hardness depth curves are measured. In the theoretical simulation, based on the material microstructure characteristics and the experimental features of the compression and indentation, the microstructure cell models are developed and the strain gradient plasticity theory is adopted. The material compressive stress-strain curves and the hardness depth curves are predicted and simulated. Through comparison of the experimental results with the simulation results, the material and model parameters are determined.
机构地区 LNM
出处 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS 2004年第1期86-100,共15页 中国科学:物理学、力学、天文学(英文版)
基金 supported by the National Natural Science Foundation of China(Grant No.19925211) jointly supported by"Bai Ren Plan"of Chinese Academy of Sciences.
关键词 surface-nanocrystallized material Al-alloy microstructure cell model SIZE effect. surface-nanocrystallized material Al-alloy microstructure cell model size effect
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