Niessen Frank, Gazder Azdiar A
Electron Microscopy Centre, University of Wollongong, New South Wales 2500, Australia.
Electron Microscopy Centre, University of Wollongong, New South Wales 2500, Australia.
Ultramicroscopy. 2020 Apr;211:112943. doi: 10.1016/j.ultramic.2020.112943. Epub 2020 Jan 22.
Annealed metastable β titanium (Ti) alloys comprise body-centred-cubic β and hexagonal-close-packed α phases and possibly, orthorhombic α″ martensite that forms on quenching or deformation. Electron backscattering diffraction is amongst the most popular methods for characterising such multi-phase microstructures. However, the crystallographic similarity between α and α″ martensite renders unambiguous discrimination of these phases via electron backscattering patterns (EBSPs) virtually impossible; thereby limiting the use of EBSD in characterising β-Ti alloys. In this study, we demonstrate that α and α″ martensite are primarily misindexed due to an indiscernible difference between these phases along their [1¯10] and [Formula: see text] zone axes. Furthermore, the slight compositional difference between α and α″ is insufficient to discriminate these phases using on-the-fly energy-dispersive X-ray spectroscopy (EDS) spectrum matching. Consequently, a segmentation method was developed that relies on a combination of reindexed EBSPs and grain-median EDS elemental data to unambiguously discriminate β, α and α″ martensite in metastable β Ti alloys. All steps are implemented in an open-source and freely available computer program called phaseSegmenter that makes use of the MTEX toolbox in MATLAB. The program is readily applicable to Ti alloys containing α', α″ or massively transformed α as well as other phase transforming alloy systems with similar phase discrimination issues.
退火亚稳β钛(Ti)合金包含体心立方β相和六方密排α相,并且在淬火或变形时可能会形成正交α″马氏体。电子背散射衍射是表征这种多相微观结构最常用的方法之一。然而,α和α″马氏体之间的晶体学相似性使得通过电子背散射图案(EBSP)明确区分这些相几乎不可能;从而限制了电子背散射衍射在表征β-Ti合金中的应用。在本研究中,我们证明α和α″马氏体主要是由于这些相沿其[1¯10]和[公式:见正文]晶带轴之间难以分辨的差异而被误标定。此外,α和α″之间的微小成分差异不足以使用实时能量色散X射线光谱(EDS)谱匹配来区分这些相。因此,开发了一种分割方法,该方法依赖于重新标定的EBSP和晶粒中位数EDS元素数据的组合,以明确区分亚稳β Ti合金中的β、α和α″马氏体。所有步骤都在一个名为phaseSegmenter的开源且免费的计算机程序中实现,该程序利用了MATLAB中的MTEX工具箱。该程序很容易应用于含有α'、α″或大量转变α的Ti合金以及其他具有类似相区分问题的相变合金系统。