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摘要:
Surface mechanical attrition treatment (SMAT) has been recently applied to bulk polycrystalline magnesium (Mg) alloys with gradient grain size distribution from the impact surface to inside matrix,hence effectively improving the alloys' mechanical performances.However,in-depth understanding of their mechanical property enhancement and grain size-dependent fracture mechanism remains unclear.Here,we demonstrated the use of in situ micro-tensile testing inside a high resolution scanning electron microscope (SEM) to characterize the microstructure evolution,in real time,of SMATed Mg alloy AZ31 samples with different grain sizes of~10 μm ('coarse-grain sample') and-5 μm ('fine-grain sample'),respectively,and compared the results with those of a raw Mg alloy AZ31.The quantitative tensile tests with in situ SEM imaging clearly showed that fracture of'fine-grain sample'was dominated by intergranular cracks,while both trans-granular and intergranular cracks led to the final failure of the'coarse-grain samples'.It is expected that this in situ SEM characterization technique,coupled with quantitative tensile testing method,could be applicable for studying other grain-refined metals/alloys,allowing to optimize their mechanical performances by controlling the grain sizes and their gradient distribution.
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篇名 Microstructure Evolution and Mechanical Properties of a SMATed Mg Alloy under In Situ SEM Tensile Testing
来源期刊 材料科学技术(英文版) 学科
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年,卷(期) 2017,(3) 所属期刊栏目
研究方向 页码范围 224-230
页数 7页 分类号
字数 语种 英文
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材料科学技术(英文版)
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1005-0302
21-1315/TG
大16开
沈阳市沈河区文化路72号
1985
eng
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