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首页> 外文期刊>Известия высших учебных заведений: Цветная металлургия >Features of superplastic deformation of 5083 + 0,2 percent Zr aluminum alloy at pre- melting temperatures
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Features of superplastic deformation of 5083 + 0,2 percent Zr aluminum alloy at pre- melting temperatures

机译:预熔化温度下5083 + 0,2%ZR铝合金的超塑性变形特征

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摘要

The superplastic properties and microstructural evolution of a modified 5083+0,2 percent Zr aluminum alloy with an initial grain size of 6,2 #mu#m were examined in the temperature range of 500-580 deg C and strain rates ranging from 10~(-5) up to 10~(-1) s~(-1). On the basis of the results obtained the increase in deformation temperature up to 570 deg C (approx 0,99 T_m) is shown to lead to significant changes in superplastic behavior of the alloy. Such a type of the behavior is characterized by the lack of threshold stresses, extension of an optimal interval of superplasticity towards lower strain rates, and activation energy for superplastic flow being higher than for lattice diffusion in aluminum. Mechanisms of superplasticity at pre-melting temperatures of the alloy are discussed.
机译:改性5083 + 0,2%ZR铝合金的超塑性和微观结构演化,初始粒度为6,2#Mu#M的温度范围,拉伸从10〜500-580° (-5)高达10〜(-1)S〜(-1)。 基于结果获得的变形温度的增加高达570℃(约0.99 T_M),以导致合金的超塑性行为的显着变化。 这种类型的行为的特征在于缺乏阈值应力,延长较低应变速率的超塑性的最佳间隔,以及用于铝中晶格扩散的超塑性流动的激活能量。 讨论了合金预熔化温度的超塑性机制。

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