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Development and Application of the Contour Method to Determine the Residual Stresses in Thin Laser-Peened Aluminium Alloy Plates

机译:轮廓法确定薄铝合金激光喷丸板残余应力的开发与应用

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摘要

The contour method was applied to obtain residual stress fields in a laser-peened 2.0-mm-thick Al2024-T351 sample. In order to remove the effects of near-surface wire electro-discharge machining (EDM) cutting artefacts on the measured residual stresses, sacrificial blocks were attached to both surfaces of the thin sample with a polymer-based glue doped with silver particles. A data analysis routine based on bivariate spline smoothing was conducted to obtain a 2D residual stress map. The results were compared with incremental hole drilling, and X-ray diffraction and layer removal techniques. The results are in good agreement in terms of the magnitudes and the location of the peak stresses, with the exception of the contour method results. Owing to the low thickness of the samples, the data analysis is very sensitive to the parameters used in the spline fitting, leading to fluctuation in the results. It is concluded that the contour method can be applied to thin samples, however, extra attention is required. Since the uncertainty is higher compared to the conventional contour method results, it is good practice to compare the results with at least one other experimental method.
机译:应用轮廓法来获得厚度为2.0毫米的激光抛光Al2024-T351样品中的残余应力场。为了消除近表面电火花加工(EDM)切割伪影对测得的残余应力的影响,使用掺杂有银颗粒的聚合物基胶将牺牲块附着到薄样品的两个表面上。进行了基于二元样条平滑的数据分析例程,以获得二维残余应力图。将结果与增量钻孔,X射线衍射和层去除技术进行了比较。除轮廓法结果外,结果在峰值应力的大小和位置方面都非常吻合。由于样品的厚度薄,数据分析对样条拟合中使用的参数非常敏感,从而导致结果波动。结论是轮廓法可以应用于薄样品,但是,需要格外注意。由于与常规轮廓法结果相比不确定性更高,因此优良作法是将结果与至少一种其他实验方法进行比较。

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