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Isochronal Aging Hardening of the Mg-8Gd-3Y-0.5Zr Alloy after Cold Rolling

机译:Mg-8Gd-3Y-0.5Zr合金冷轧后的等时时效硬化

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By transmission electron microscopy (TEM) and optical microscopy (OM), the isochronal aging hardening law and microstructure have been studied for the Mg-8Gd-3Y-0.5Zr alloy after cold rolling. During isochronal aging process (heated from room temperature to 500°C with the heating rate of 1 °C/min), there are two peak hardness temperature points, which are corresponding to the large number of precipitation of ss' and ss phases, and the peak aging time of the alloy substantially decreased with the increase of deformation reduction. The ss" phases started to precipitate at temperatures of 145°C, 134°C, 127°C and 124°C in the alloy after cold rolling with the reduction of 0%, 8%, 15% and 22%. The heating rate greatly affected the starting precipitation of metastable phases, ss" phases started to precipitate at temperatures of 109°C and 124°C with the reduction of 22% and with the heating rates of 3°C /min and 30°C /min.
机译:通过透射电子显微镜(TEM)和光学显微镜(OM),研究了Mg-8Gd-3Y-0.5Zr合金冷轧后的时效时效硬化规律和组织。在等时老化过程中(以1°C / min的加热速率从室温加热到500°C),有两个峰值硬度温度点,分别对应于ss和ss相的大量析出,以及随着变形减少量的增加,合金的峰值时效时间大大减少。冷轧后,合金中的ss“相在145°C,134°C,127°C和124°C的温度下开始析出,降低了0%,8%,15%和22%。加热速率极大地影响了亚稳相的开始析出,“ ss”相在109°C和124°C的温度下开始析出,降低了22%,加热速率为3°C / min和30°C / min。

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