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Microstructure and mechanical properties of AM50+xTi magnesium alloys extruded from as-cast and solution treated conditions

机译:从浇注和溶液处理条件挤出的AM50 + XTI镁合金的组织和力学性能

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Microstructure and mechanical properties of AM50+xTi (x=0,0.01,0.1wt%) magnesium alloys extruded from as-cast and solution treated conditions have been studied. Results show that Ti element obviously refines the microstructure of AM50 magnesium alloy and Mg_(17)Al_(12) phase. Only 0.01 wt% Ti addition can make the Mg_(17)Al_(12) phase turn into particles and small rod-like shape. Ti addition improves tensile strength at room temperature, and obviously improves elongation at elevated temperatures up to 200°C. The AM50+xTi alloys extruded from as-cast have better tensile strength at room temperature and better elongation at 100°C, 150°C and 200°C than that of AM50+xTi alloys extruded from solution treatment; The plasticity of AM50 magnesium alloys increases with Ti content increasing and temperature increasing for the tensile fractograph.
机译:研究了从浇铸和溶液处理条件下挤出的AM50 + XTI(x = 0.0.01.0.1wt%)镁合金的微观结构和力学性能。结果表明,Ti元素显然优化了AM50镁合金和Mg_(17)Al_(12)相的微观结构。只有0.01wt%的Ti加法可以使Mg_(17)Al_(12)相变为颗粒和小杆状形状。加入在室温下提高拉伸强度,显然在高达200°C的升高温度下显然将伸长率提高。从铸件挤出的AM50 + XTI合金在室温下具有更好的拉伸强度,并且在100℃,150℃和200℃下更好地伸长,而不是从溶液处理中挤出的AM50 + XTI合金的伸长率; AM50镁合金的可塑性随着Ti含量的增加而增加,抗拉性分数的温度增加。

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