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首页> 外文期刊>Journal of Materials Science >High-strain-rate superplastic deformation behavior of a powder metallurgy-processed 2124 Al alloy
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High-strain-rate superplastic deformation behavior of a powder metallurgy-processed 2124 Al alloy

机译:粉末冶金处理2124铝合金的高应变率超塑性变形行为

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摘要

High-strain-rate superplastic behavior of a powder-metallurgy processed 2124 alloy prepared through extrusion at a high ratio of 70:1 was investigated. A maximum tensile elongation of 700% was obtained at 823 K and at a strain rate of 10~(-2) s~(-1). Deformation behavior of this alloy was similar to those reported for other many HSR superplastic materials. Incorporation of threshold stress into the constitutive equation reveals that the true stress exponent is 2 and true activation energy for plastic flow is comparable to that for lattice diffusion in pure aluminum. Comparison of the present alloy with the 2124 Al composite indicates that the composite is weaker than the unreinforced alloy in the temperature range where grain boundary sliding is rate-controlled.
机译:研究了以70:1的高比例通过挤压制备的粉末冶金加工2124合金的高应变速率超塑性行为。在823 K和10〜(-2)s〜(-1)的应变速率下获得700%的最大拉伸伸长率。该合金的变形行为与其他许多高铁超塑性材料的变形行为相似。将阈值应力纳入本构方程表明,真实应力指数为2,塑性流动的真实活化能与纯铝中晶格扩散的真实活化能相当。本合金与2124 Al复合材料的比较表明,在控制晶界滑动速率的温度范围内,该复合材料比未增强的合金弱。

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