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Effects of Microstructure on Eddy Current Residual Stress Characterization of Shot-Peened Inconel 718

机译:显微组织对喷丸Inconel 718涡流残余应力表征的影响

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Recent studies have shown the possibility of exploiting the eddy current (EC) method for nondestructive characterization of near-surface residual stresses in surface-treated nickel-base superalloy components. The method involves measuring swept frequency EC signals to obtain near-surface electrical conductivity depth profiles, which can be converted into residual stress profiles using the empirical piezoresistivity relationship. However, the relationship between EC responses and residual stress profiles appears to depend on the microstructure. This paper reports on a systematic study of microstructural effects on the EC responses and near-surface conductivity deviation profiles induced by shot peening, using a series of heat-treated Inconel 718 samples with different secondary phase contents and thus a variety of hardness levels. Calibrated EC signals from 100 kHz to 50 MHz were measured from aged and unaged samples, before and after shot peening at various Almen intensities. Strong dependence of the EC responses on the sample hardness and micro-structure has been observed. A procedure is introduced to convert the EC signals into shot-peening-induced conductivity deviation profiles where the microstructure dependency is suppressed. The resulting estimates of the conductivity changes are larger than expected, indicating that characterization of shot-peening-induced residual stresses by EC requires further understanding of the material responses beyond the empirical piezoresistivity relationship. Other mechanisms that could contribute to the observed conductivity changes are discussed.
机译:最近的研究表明,利用涡流(EC)方法对表面处理过的镍基高温合金部件中的近表面残余应力进行无损表征的可能性。该方法涉及测量扫频EC信号以获得近表面电导率深度分布图,可以使用经验压阻关系将其转换为残余应力分布图。但是,EC响应和残余应力曲线之间的关系似乎取决于微观结构。本文使用一系列经过热处理的Inconel 718样品,这些样品具有不同的第二相含量,因此具有各种硬度水平,因此系统地研究了微结构对喷丸处理引起的EC响应和近表面电导率偏差曲线的影响。在各种Almen强度的喷丸处理前后,从老化和未老化的样品中测量100 kHz至50 MHz的校准EC信号。已经观察到EC响应对样品硬度和微观结构的强烈依赖性。引入了将EC信号转换为喷丸硬化引起的电导率偏差曲线的程序,其中微结构依赖性得到了抑制。电导率变化的最终估计结果比预期的要大,这表明EC表征喷丸引起的残余应力需要进一步了解材料的响应,而不是经验的压阻关系。讨论了可能有助于观察到的电导率变化的其他机制。

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