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Effect of Wall Thickness Transitions on Texture and Grain Structure in Additive Layer Manufacture (ALM) of Ti-6Al-4V

机译:Ti-6Al-4V添加剂层制造(ALM)中壁厚过渡对织构和晶粒结构的影响

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摘要

In titanium alloys it is known that in bulk sections the solidification conditions in ALM commonly lead to undesirable, coarse, columnar p grain structures. Here, we have investigated the effect of build geometry on the grain structure and associated texture in Ti-6Al-4V ALM components produced by Selective Electron Beam Melting (SEBM). Through reconstruction of the primary β-phase, it has been confirmed that in thick sections large columnar β grains grow with a strong <001>_β fibre texture, although there is a significant skin effect. In contrast, in thin walls nucleation off the surrounding powder and growth inwards dominates. Local heterogeneities are also observed within section transitions. It is shown that the weaker a transformation texture arises from a random distribution across the possible habit variants.
机译:在钛合金中,众所周知,在块状截面中,ALM中的凝固条件通常会导致不良的,粗糙的柱状p晶粒结构。在这里,我们研究了选择性电子束熔化(SEBM)生产的Ti-6Al-4V ALM零件中,构造几何形状对晶粒结构和相关织构的影响。通过重建初级β相,已经证实,尽管存在明显的集肤效应,但在较厚的部分中,大的柱状β晶粒会生长,具有很强的<001>_β纤维质地。相反,在薄壁中,周围粉末的形核和向内生长占主导。在截面过渡内也观察到局部异质性。结果表明,转换纹理越弱,可能来自于所有可能的习惯变异的随机分布。

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