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ANALYSIS AND OPTIMIZATION OF THE DEEP-HOLE DRILLING TECHNIQUE IN MEASURING COMPLEX RESIDUAL STRESS

机译:测量复杂残余应力的深孔钻进技术的分析与优化

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The aim of the present study was to utilize a complex residual stress generated within a welded circular disc to further investigate the standard deep-hole drilling (DHD) technique and the newly developed over-coring deep-hole drilling (oDHD) technique in accurately measuring residual stresses well over yield stress. Finite Element Analysis (FEA) was used to optimize and extend the deep-hole drilling technique and improve its accuracy. The standard DHD procedure involves 4 steps. (1) A reference hole is gun-drilled through the component. (2) The internal diameter of the reference hole is measured at different angular positions through the depth of the component. (3) A cylindrical section with the reference hole as its longitudinal axis is trepanned free from the component. (4) Finally, the relaxed internal diameter is re-measured at the same angular positions and the same depths. The drilling, trepanning procedures and the parameters of the deep-hole drilling technique were all studied in detail to optimize the technique. Comparison is made between the FEA predicted residual stress in the weld, the measurements and the reconstructed residual stresses of the measurements. The close correlations confirmed the suitability of new modifications made in the deep-hole drilling technique to account for plasticity when measuring near yield residual stresses present in a component.
机译:本研究的目的是利用在焊接圆盘内产生的复杂残余应力来进一步研究标准深孔钻探(DHD)技术和新开发的超芯深孔钻探(oDHD)技术,以精确地测量残余应力远远超过屈服应力。有限元分析(FEA)用于优化和扩展深孔钻探技术并提高其精度。标准DHD程序涉及4个步骤。 (1)在零件上钻一个参考孔。 (2)参考孔的内径是在整个组件深度的不同角度位置上测量的。 (3)以参考孔为纵轴的圆柱状部分从部件上挖开。 (4)最后,在相同的角度位置和相同的深度处重新测量松弛的内径。深入研究了深孔钻进工艺中的钻进,截断步骤和参数,以优化该工艺。在FEA预测的焊缝残余应力,测量值和重构的测量残余应力之间进行比较。紧密的相关性证实了在测量组件中存在的接近屈服残余应力时,在深孔钻探技术中进行新修改以解决塑性问题的适用性。

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