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Effects of cold work on near-surface conductivity profiles in laser shock peened and shot peened nickel-base superalloy

机译:冷作对激光冲击喷丸和喷丸镍基高温合金近表面电导率分布的影响

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摘要

This paper reports on a study of the effects of cold work induced by surface enhancement treatment on conductivity profiles in nickel-base superalloys, as part of the on-going efforts aimed at evaluating the feasibility of characterizing near-surface residual stress profiles in peened engine components using a swept frequency eddy current (SFEC) technique. The approach is based on the empirical piezoresistivity effect that correlates conductivity changes with residual stress, but recent studies have shown that conductivity changes induced by peening processes are also influenced by metallurgical factors such as cold work. In this study, conductivity deviation profiles were obtained by model-based inversion of SFEC signals from a set of aged Inconel 718 samples, which were either shot peened or laser shock peened to produce different residual stress and cold work profiles. The laser shock peened samples exhibit a larger increase in surface conductivity and deeper conductivity profiles, which are attributed to a smaller amount of surface cold work and deeper residual stress profiles created by laser shock peening than by shot peening.
机译:本文报告了对表面强化处理引起的冷作对镍基高温合金电导率分布的影响的研究报告,这是正在进行的旨在评估在喷丸发动机中表征近表面残余应力分布的可行性的工作的一部分组件使用扫频涡流(SFEC)技术。该方法基于将电导率变化与残余应力相关的经验压阻效应,但是最近的研究表明,喷丸过程引起的电导率变化也受冶金因素(例如冷作)的影响。在这项研究中,电导率偏差曲线是通过基于模型的SFEC信号反演获得的,这些信号来自一组老化的Inconel 718样品,这些样品经过喷丸处理或激光冲击喷丸处理以产生不同的残余应力和冷加工曲线。激光冲击喷丸处理后的样品的表面电导率增加较大,电导率分布更深,这归因于与喷丸处理相比,激光冲击喷丸处理产生的表面冷加工量较小,残余应力分布更深。

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