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The Impact of Diffusion on Synthesis of High-Strength Titanium Alloys from Elemental Powder Blends

机译:扩散对元素粉末共混物合成的影响

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High strength near-beta titanium alloys are being increasingly used in industry due to their excellent combination of properties. Blended elemental powder metallurgy (BEPM) allows to produce the above alloys and parts from them in a cost-effective manner. However, the alloy synthesis is complicated by a big amount (up to 18 wt.%) of alloying elements which diffusional redistribution between alloying particles and titanium matrix has a strong impact on microstructure evolution. In this paper synthesis of the high-strength alloys from the powder blends based on hydrogenated titanium was studied. It was found that hydrogen strongly affects diffusion controlled processes upon synthesis, such as chemical homogenization, densification and grain growth through its influence on phase composition and defect structure of the blends. Optimization of the processing parameters allowed to produce uniform, nearly-dense alloys with reduced grain size, which mechanical properties met the requirements of corresponding specifications.
机译:由于其优异的性质组合,高强度接近β钛合金越来越多地用于工业中。混合元素粉末冶金(BEPM)允许以经济有效的方式生产上述合金和零件。然而,合金合成的合并元素的大量(高达18重量%)是合金化元素的重复,其在合金化颗粒和钛基质之间扩散重新分布对微观结构的进化产生强烈影响。在本文中,研究了基于氢化钛的粉末共混物的高强度合金的合成。结果发现,通过其对混合物的相位成分和缺陷结构的影响,氢气强烈影响扩散控制过程,例如化学均质化,致密化和晶粒生长。优化加工参数允许生产颗粒尺寸减小,机械性能符合相应规格的要求的均匀,近致密的合金。

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