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Refractory metal alloying: A new method for improving mechanical properties of tungsten heavy alloys

机译:耐火金属合金:一种改善钨重合金机械性能的新方法

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Influence of mechanically alloyed tungsten-rhenium powders on the microstructure and mechanical properties of liquid phase sintered 89W-7Ni-3Fe-lRe heavy alloy was studied. Heat treatment and swaging were conducted on alloys prepared using both conventionally blended and mechanically milled powders. The results indicated the formation of bcc solid solution by high energy milling of tungsten and rhenium powders. The corresponding particle and the crystallite size decreased after high energy milling. Grain size and contiguity of the milled alloy were significantly lower than those of conventional counterpart. The alloy prepared using high energy milled W-Re powder exhibited relatively superior balance of strength, ductility and impact toughness. These findings suggest that refractory powder mechanical alloying prior to sintering is beneficial for improving the mechanical properties of tungsten heavy alloys. (C) 2017 Elsevier B.V. All rights reserved.
机译:研究了机械合金化钨 - 铼粉对液相烧结89W-7NI-3FE-LRE厚合金的微观结构和力学性能的影响。 在使用常规混合和机械研磨粉末制备的合金上进行热处理和锻炼。 结果表明,通过钨和铼粉的高能量研磨形成BCC固溶体。 高能量铣削后相应的颗粒和微晶尺寸降低。 碾磨合金的晶粒尺寸和邻缘显着低于常规对应物。 使用高能量研磨的W-RE粉末制备的合金在强度,延展性和冲击韧性的相对优异的平衡。 这些发现表明,烧结前的耐火粉末机械合金化是有益于改善钨重合金的机械性能。 (c)2017年Elsevier B.V.保留所有权利。

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