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Depth resolved near-surface residual stresses in γ-based TiAl before and after high-temperature exposure

机译:高温暴露前后γ基TiAl的深度分解近表面残余应力

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摘要

The aim of this study was to gain an insight into the development of near-surface stress, which has been proposed to play a role in environmental embrittlement, as a function of depth after exposure. Investigations were performed, using both energy and angle-dispersive X-ray diffraction, to determine the residual stress as a function of depth for flat specimens made from two γ-based TiAl alloys in as-polished and exposed (700 °C/1 h/air) conditions. It has been found that large compressive stresses are present at the surface of as-polished specimens due to sub-surface deformation that remains despite careful grinding/polishing. After exposure the compressive residual stresses at depths below 0.6 μm are significantly reduced, probably due to the annealing out of deformation induced defects, but remain compressive in nature. However, within 0.6 μm from the outer surface, tensile stresses were present and reached a maximum of around +350 MPa at 0.15 μm depth. The extent to which the development of superficial tensile residual stress and reduced deeper compressive stress contribute to embrittlement remains unclear.
机译:这项研究的目的是了解近表面应力的发展,该现象被认为在环境脆化中起着与暴露后深度有关的作用。使用能量和角度色散X射线衍射进行了研究,确定了抛光和裸露(700°C / 1 h)下由两种γ基TiAl合金制成的扁平试样的残余应力与深度的关系。 / air)条件。已经发现,由于抛光后的试样表面存在很大的压缩应力,这是由于尽管进行了仔细的研磨/抛光仍会产生亚表面变形。暴露后,深度低于0.6μm的压缩残余应力显着降低,这可能是由于退火引起的变形引起的缺陷,但本质上仍保持压缩状态。然而,在距外表面0.6μm的范围内,存在拉伸应力,并且在0.15μm的深度达到最大+350 MPa。表面张力残余应力的产生和更深的压缩应力的减小导致脆化的程度仍不清楚。

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