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Titanium as an endogenous grain-refining nucleus

机译:钛作为内源性晶粒细化核

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摘要

Several studies have confirmed the applicability of the inverse growth restriction theory for predicting grain size in titanium alloy systems. However, until now, no work has identified nuclei particles that could be used to refine the β-grain size of titanium alloys during solidification. This work investigated whether titanium powder can be used to nucleate β-grains during solidification. A novel technique was used to introduce titanium powder to a series of titanium alloys, which results in significant grain refinement with an order of magnitude increase in grain density. Electron back-scattered diffraction (EBSD) was used to prove that titanium substrates can epitaxially nucleate titanium during solidification, and although a number of other potential mechanisms were investigated, it was concluded that the titanium particles heterogeneously nucleate β-grains.
机译:几项研究已经证实了逆生长限制理论在预测钛合金系统晶粒尺寸方面的适用性。但是,直到现在,还没有任何工作确定可用于在凝固过程中细化钛合金的β晶粒尺寸的核颗粒。这项工作调查钛粉末是否可用于凝固过程中成核的β粒。使用一种新技术将钛粉引入到一系列钛合金中,从而导致晶粒细化,并且晶粒密度增加了一个数量级。电子背散射衍射(EBSD)用于证明钛基底可以在凝固过程中外延成核钛,尽管研究了许多其他可能的机制,但得出的结论是钛颗粒异质地成核了β晶粒。

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