首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Simultaneous achievement of equiaxed grain structure and weak texture in Pure Titanium via selective laser melting and subsequent heat treatment
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Simultaneous achievement of equiaxed grain structure and weak texture in Pure Titanium via selective laser melting and subsequent heat treatment

机译:通过选择性激光熔化和随后的热处理同时实现纯钛中纯钛的晶粒结构和弱纹理

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We used selective laser melting (SLM) to produce a three-dimensional specimen of pure Ti and found that an equiaxed grain structure and weak crystallographic texture could be achieved simultaneously via subsequent heat treatment. These traits have never been attained simultaneously in pure Ti prepared by traditional methods such as casting and rolling. This remarkable achievement was possible because recrystallization occurred during heat treatment without plastic deformation; such deformation introduces stored energy that drives recrystallization but inevitably causes a strong texture to develop. The occurrence of recrystallization was attributed to unique features of the SLM process including a very high cooling rate and repetitive layer stacking. These features generated considerable stored energy by affecting solidification and the beta -> alpha phase transformation. Steep in-grain orientation gradients and a fine lath structure also contributed to the activation of recrystallization by facilitating recrystallization nucleation. The heat-treated specimen showed tensile properties with significantly reduced anisotropy. This finding will provide new strategies for developing isotropic metallic materials and may introduce new applications of SLM. (C) 2019 Elsevier B.V. All rights reserved.
机译:我们使用选择性激光熔化(SLM)产生纯Ti的三维样本,发现可以通过随后的热处理同时实现等轴结构和弱晶形纹理。这些性状从未在通过传统方法制备的纯TI中同时达到过铸造和轧制。这种显着的成就是可能的,因为在没有塑性变形的热处理期间再结晶发生;这种变形引入了驱动重结晶的储存能量,但不可避免地导致强大的质地发展。重结晶的发生归因于SLM过程的独特特征,包括非常高的冷却速率和重复层堆叠。这些特征通过影响凝固和β->α相变化产生了相当大的存储能量。陡峭的晶粒取向梯度和细板结构也有助于通过促进重结晶成核来激活再结晶。热处理的样品显示拉伸性能,具有显着降低的各向异性。这一发现将为开发各向同性金属材料提供新的策略,并可能引入SLM的新应用。 (c)2019 Elsevier B.v.保留所有权利。

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