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Effect of molybdenum on grain growth of W-Mo-Ni-Fe heavy alloys

机译:钼对W-Mo-Ni-Fe重合金晶粒长大的影响

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The grain growth phenomena of tungsten heavy alloys with various concentrations of Mo were investigated. The early formation of a eutectic liquid phase with the alloying of Mo to W-Ni-Fe facilitated growth and spheroidization of tungsten grains in the initial stage of isothermal hold. However, when the concentration of molybdenum was so high as to leave behind non-dissolved Mo grains, coalescence of W grains around Mo grains resulted in the formation of larger W-Mo grains having Mo-rich cores. These larger grains later grew at the expense of the smaller grains and grain growth was statistically very fast. During grain growth in the later stage of isothermal hold, W had a higher potential than Mo to precipitate from the liquid phase onto the grains. This competitive behavior led to the gradual accumulation of Mo atoms in the liquid phase, which not only retarded the growth of grains, but also caused precipitation of intermetallic phases in the interfaces between the solid grains and liquid phase during cooling. (C) 2003 Kluwer Academic Publishers. [References: 17]
机译:研究了不同Mo含量的钨重合金的晶粒长大现象。 Mo和W-Ni-Fe合金化的共晶液相的早期形成促进了等温保持初始阶段钨晶粒的生长和球化。然而,当钼的浓度高到足以留下未溶解的Mo晶粒时,Mo晶粒周围的W晶粒的聚结导致形成具有富Mo核的较大的W-Mo晶粒。这些较大的晶粒后来以较小的晶粒为代价生长,并且统计上晶粒生长非常快。在等温保持的后期晶粒生长期间,W具有比Mo高的从液相沉淀到晶粒上的潜力。这种竞争行为导致Mo原子在液相中逐渐积累,这不仅阻碍了晶粒的生长,而且还导致了冷却过程中固态晶粒与液相之间的界面中金属间相的沉淀。 (C)2003 Kluwer学术出版社。 [参考:17]

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