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首页> 外文期刊>Proceedings of the Society for Experimental Mechanics >A Procedure to Measure Biaxial Near Yield Residual Stresses Using the Deep Hole Drilling Technique
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A Procedure to Measure Biaxial Near Yield Residual Stresses Using the Deep Hole Drilling Technique

机译:过程测量双轴附近产生残余强调使用深孔钻探技术

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摘要

Deep Hole Drilling (DHD) is a mechanical strain relief technique used to measure residual stresses within engineering components. Such techniques measure strains or displacements when part of the component is machined away and typically assume elastic unloading. However, in components containing high levels of residual stress, elastic-plastic unloading can occur which may introduce substantial error. For the case of the DHD technique, a modification to the technique referred to here as the incremental or iDHD technique has been developed to allow such high levels of residual stress to be measured. Previous work has demonstrated the accuracy of the iDHD technique, although only for axisymmetric residual stress distributions. In the present investigation, the application of the iDHD technique has been extended to the general case of biaxial residual stress fields. Finite element simulations are first carried out to demonstrate the ability of the iDHD technique to measure biaxial residual stress. Experimental measurements were then made on shrink fit components and ring welded components containing biaxial residual stress to investigate the performance of the technique in practice. Good agreements between iDHD measurements, neutron diffraction measurements and FE predictions of the residual stresses were obtained, demonstrating the generally improved accuracy of the iDHD technique compared to the standard DHD approach.
机译:深孔钻探(DHD)是一个机械应变救援技术用来测量残余强调工程组件内。技术测量菌株或位移组件加工,的一部分通常假设弹性卸载。组件包含高水平的残余压力,弹塑性卸载可以发生可能会引入大量的错误。DHD技术,修改将这里称为增量或技术iDHD技术开发允许这样高水平的残余应力测量。先前的工作已经证明的准确性iDHD技术,尽管只有轴对称残余应力分布。目前的调查,应用iDHD技术已经扩展到一般双轴残余应力场。元素模拟第一次进行演示iDHD技术的能力测量双轴残余应力。测量被冷缩配合包含组件和环焊接组件双轴残余应力研究在实践中性能的技术。iDHD测量之间的协议,中子衍射测量和有限元的预测得到了残余应力,展示了通常的准确性提高DHD iDHD技术与标准的方法。

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