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Use of the hole-drilling method for measuring residual stresses in highly stressed shot-peened surfaces

机译:使用钻孔方法测量高应力喷丸表面的残余应力

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The same shot-peening treatment was applied to five steels with different mechanical properties. The induced residual stress profiles were analyzed using X-ray diffraction and incremental hole drilling (IHD). The results of both techniques showed that IHD can still be successfully used for measuring shot-peening residual stresses, even if these exceed the yield strength of the bulk material. Expected errors due to the plasticity effect are reduced by the strain hardening of the surface. For an assessment of the reliability of IHD data, strain-hardening variation was quantified by microhardness measurements to estimate the yield strength of the plastified layer. All the main calculation methods for IHD were applied. The results were compared and discussed with respect to the characteristics of each method. [References: 37]
机译:对五种具有不同机械性能的钢进行了相同的喷丸处理。使用X射线衍射和增量钻孔(IHD)分析了引起的残余应力分布。两种技术的结果都表明,即使IHD超过散装材料的屈服强度,IHD仍可以成功地用于测量喷丸​​残余应力。由于可塑性效应,预期的误差会因表面的应变硬化而降低。为了评估IHD数据的可靠性,通过显微硬度测量来量化应变硬化变化,以估计塑化层的屈服强度。应用了IHD的所有主要计算方法。针对每种方法的特性对结果进行了比较和讨论。 [参考:37]

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