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Microstructure and mechanical properties of molybdenum alloy strengthened by lanthanum oxide and silicon

机译:氧化镧和硅加固钼合金的微观结构和力学性能

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The molybdenum alloy sheets composite strengthened by silicon and lanthanum oxide were prepared by powder metallurgy technology with Mo-La_2O_3(0.3wt%) and Si(0, 0.1, 0.3wt%) powders and thermo-mechanically processing. The influences of silicon content on the microstracture and mechanical properties of the final molybdenum alloy sheets were tested and analysized. The results show that the addition of lanthanum oxide and silicon can refine the alloys grain size. The introduction of lanthanum oxide particles can increase the yield strength. Although the molybdenum alloys with 0.3wt% silicon have solid solution strengthening effect, the alloys with 0.1 wt% silicon exhibits obvious solid solution softening effect at room temperature. The strengthening mechanisms are quantitatively assessed, which well explain the increase or decrease in yield strength with respect to grain size, lanthanum oxide particle and silicon solid solution.
机译:通过硅和镧通过粉末冶金技术加强的钼合金纸张复合材料通过粉末冶金技术,MO-LA_2O_3(0.3wt%)和Si(0,0.1,0.3wt%)粉末和热机械加工。测试并分析硅含量对最终钼合金板的微传感和力学性能的影响。结果表明,加入氧化镧和硅可以细化合金粒径。氧化镧颗粒的引入可以提高屈服强度。虽然具有0.3wt%硅的钼合金具有固溶强化效果,但是在室温下具有0.1wt%硅的合金在室温下表现出明显的固溶软化效果。定量评估强化机制,该机制很好地解释了相对于粒度,氧化镧颗粒和硅固体溶液的屈服强度的增加或降低。

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