材料科学
等轴晶
再结晶(地质)
电子背散射衍射
钛合金
融合
冶金
钛
晶界
各向异性
粒度
微观结构
合金
光学
古生物学
哲学
物理
生物
语言学
作者
Zhiyi Zou,Marco Simonelli,Juliano Katrib,Georgios Dimitrakis,Richard Hague
标识
DOI:10.1016/j.scriptamat.2020.01.027
摘要
The coarse prior-β grain structure in titanium alloys produced by additive manufacturing is associated to mechanical anisotropy and limited fatigue life. Here we report a novel methodology to refine such structure by rapid heat treatment of Ti–6Al–4V produced by laser powder-bed fusion. The refinement was analysed using high-temperature EBSD that showed, for the first time, how high angle boundary β grains nucleated and grew with quasi-equiaxed morphology by epitaxial recrystallization. These findings show the potential for such heating regime to be applied to control grain size, morphology and distribution in a wider category of structural alloys produced by additive manufacturing.
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