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Deformation-free geometric recrystallisation in a metastable β-Ti alloy produced by selective laser melting

机译:通过选择性激光熔化产生的亚稳态β-Ti合金中的无变形几何再结晶

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摘要

Super-transus heat treatments conducted on an additively manufactured body-centred-cubic β-Ti alloy led to the formation of equiaxed β grains from an initially columnar structure. The grain structure was transformed thanks to a combination of Plateau-Rayleigh instability and grain growth driven by reduction in grain boundary surface area. This is a new type of geometric recrystallisation with no deformation involved. Other mechanisms proposed based on either deformation-induced recrystallisation or martensitic decomposition are dismissed owing to low dislocation density and absence of martensitic transformation in the alloy studied.
机译:在增材制造的体心立方β-Ti合金上进行的超Transus热处理导致最初的柱状结构形成了等轴β晶粒。由于Plateau-Rayleigh不稳定性和由于晶界表面积减小而驱动的晶粒长大的结合,晶粒结构发生了转变。这是一种不涉及变形的新型几何再结晶。由于位错密度低且所研究合金中不存在马氏体相变,因此无法提出基于变形诱导的再结晶或马氏体分解提出的其他机理。

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