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Grain Boundary Phase Transitions in the Al-Mg System and Their Influence on High-Strain Rate Superplasticity

机译:Al-Mg系统中的晶界相转变及其对高菌株超塑性的影响

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Grain boundary (GB) wetting phase transitions were studied, for the first time, in Al-Mg polycrystals (Mg contents of 5, 10, 15 and 20 wt.%; temperature range 490-630 °C). It was observed that above 598 °C all GBs in the solid Al-rich phase were wetted by a liquid phase. Below 540 °C no GBs wetted by a liquid phase were observed. The maximal and minimal temperatures of the GB wetting phase transitions, T_(wmax) and T_(wmin), were determined. Between 540 and 598 °C the percentage of the wetted GBs gradually increases from 0 to 100 %. Grain boundary presetting or premelting is given as an explanation for the hitherto not understood high-strain rate superplasticity observed for ternary Al-Mg-X alloys in a narrow temperature range just below the bulk solidus line.
机译:首次在Al-Mg多晶(Mg含量为5,10,15和20重量%;温度范围490-630°C)中研究晶界(GB)润湿相转变。观察到,通过液相润湿固体型富含相中的598℃以上的所有GBS。低于540°C,未观察到液相润湿的GBS。确定GB润湿相转变,T_(WMAX)和T_(WMIN)的最大和最小温度。在540和598°C之间,湿润的GBS的百分比逐渐从0增加到100%。将晶界预设或前置的预置或前置作为迄今为止未理解的狭窄温度范围内的三元Al-Mg-X合金观察到的高菌株率超塑性的解释。

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