材料科学
微观结构
应变率
变形(气象学)
透射电子显微镜
拉伤
合金
压痕硬度
冶金
相(物质)
镁合金
镁
复合材料
化学
医学
内科学
有机化学
纳米技术
作者
Yang Yang,Shuangjun Yang,Zhen Wang
摘要
Abstract The microstructure evolution of peak-aged ZK60 magnesium alloy under high strain rate deformation was studied by the radial collapse of a thick-walled cylinder technique and transmission electron microscope. The results showed that the rod-like β1’ phase was the main precipitated phase in the peak-aged ZK60 magnesium alloy, and precipitate-free regions were present along the grain boundaries. A large number of twins and dislocations were produced in the sample within 4.0 μs after high strain rate loading, and a number of thin and long rod-like β1’ phases were observed within the dislocated tangle of the deformed sample. The length and diameter of the rod-like phases in the samples were gradually reduced, and some of the rod-like phases were converted into spherical phases with increasing strain rate, which indicated that the original precipitated phases were partly dissolved after high strain rate loading. The microhardness of the samples increased from HV80.12 to HV101.20 as the strain rate increased.
科研通智能强力驱动
Strongly Powered by AbleSci AI