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首页> 外文期刊>Journal of Materials Research and Technology >Superplasticity of a fine-grained Mg–9Gd–4Y–0.4Zr alloy evaluated using shear punch testing
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Superplasticity of a fine-grained Mg–9Gd–4Y–0.4Zr alloy evaluated using shear punch testing

机译:使用剪切冲头测试评估的Mg–9Gd–4Y–0.4Zr细晶粒合金的超塑性

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The superplasticity of an extruded fine-grained Mg–9Gd–4Y–0.4Zr alloy was investigated by measuring the strain rate sensitivity using shear punch testing (SPT). Shear punch tests were conducted at shear strain rates in the range of 3×10?3–2×10?1s?1and at temperatures in the range of 573–773K. The results indicate the strain rate sensitivity,m, increases from about 0.11 at 573K to about 0.40 at 723K and then decreases to 0.32 with a further increase in test temperature. A strain rate sensitivity of 0.40 and an activation energy of 140kJ/mol are indicative of a superplastic deformation behavior dominated by grain boundary sliding accommodated by lattice diffusion at temperatures above 673K.
机译:通过使用剪切冲头试验(SPT)测量应变速率敏感性,研究了挤压成型的Mg-9Gd-4Y-0.4Zr细晶粒合金的超塑性。剪切冲头试验的剪切应变率为3×10?3–2×10?1s?1,温度为573–773K。结果表明,应变率灵敏度m从573K时的约0.11升高到723K时的约0.40,然后随着测试温度的进一步降低而降低至0.32。 0.40的应变速率灵敏度和140kJ / mol的活化能表明,在673K以上的温度下,超晶格变形行为主要由晶格滑动所占据的晶界滑动所主导。

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