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Optimization of Residual Stress Measurement Conditions for a 2D Method Using X-ray Diffraction and Its Application for Stainless Steel Treated by Laser Cavitation Peening

机译:使用X射线衍射对2D方法的残留应力测量条件的优化及激光耐剥削矿床施用

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摘要

As the fatigue strength of metallic components may be affected by residual stress variation at small length scales, an evaluation method for studying residual stress at sub-mm scale is needed. The sin2ψ method using X-ray diffraction (XRD) is a common method to measure residual stress. However, this method has a lower limit on length scale. In the present study, a method using at a 2D XRD detector with ω-oscillation is proposed, and the measured residual stress obtained by the 2D method is compared to results obtained from the sin2ψ method and the slitting method. The results show that the 2D method can evaluate residual stress in areas with a diameter of 0.2 mm or less in a stainless steel with average grain size of 7 μm. The 2D method was further applied to assess residual stress in the stainless steel after treatment by laser cavitation peening (LCP). The diameter of the laser spot used for LCP was about 0.5 mm, and the stainless steel was treated with evenly spaced laser spots at 4 pulses/mm2. The 2D method revealed fluctuations of LCP-induced residual stress at sub-mm scale that are consistent with fluctuations in the height of the peened surface.
机译:由于金属组分的疲劳强度可能受到小长度尺度的残余应力变化的影响,因此需要一种用于研究亚mm级别的残余应力的评估方法。使用X射线衍射(XRD)的SIN21方法是测量残余应力的常用方法。然而,该方法的长度尺度下限较低。在本研究中,提出了一种在2D XRD检测器处使用ω-振荡的方法,并将通过2D方法获得的测量的残余应力与从SIN2ψ方法和切割方法获得的结果进行比较。结果表明,2D方法可以在平均晶粒尺寸为7μm的不锈钢中的直径为0.2mm或更小的区域中评价残余应力。进一步应用2D方法以评估激光空化喷丸(LCP)处理后的不锈钢中的残余应力。用于LCP的激光斑点的直径为约0.5mm,在4个脉冲/ mm2处用均匀间隔的激光斑点处理不锈钢。 2D方法揭示了LCP诱导的亚mm标度的残余应力的波动,其与喷丸表面的高度的波动一致。

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