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Measurement of shot velocity using particle image velocimetry and numerical analysis of residual stress at two shot peening conditions

机译:使用粒子图像测速测量射击速度的测量和两次喷丸条件的残余应力数值分析

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Shot peening is applied to many manufactured parts to improve the fatigue strength of metals by introducing compressive residual stress near the surface. The distribution of compressive residual stress is mainly determined by shot diameter, shot velocity, angle of incidence, and peening time which affects coverage. In this study, the shot velocity was measured using particle image velocimetry (PIV) for shots fired at two different air pressures. The finite element method was used to analyze the residual stress distribution in a high strength aluminum alloy (A7075-T6) plate during shot peening. The shot was accelerated up to a standoff distance of approximately 200 mm from the nozzle outlet. The measured maximum shot velocity increased proportionally to the air pressure to the 0.59th power. The analyzed residual stress distributions using measured shot velocity with PIV through the thickness of the specimen agreed well with the measurements under two types of peening conditions with differing air pressure and angle of incidence. The shot velocity measurement technology and the numerical model for analysis of the shot peening residual stres were both validated in this study.
机译:喷丸喷丸适用于许多制造的部件,通过在表面附近引入压缩残余应力来提高金属的疲劳强度。压缩残余应力的分布主要由弹射直径,射击速度,发射角度和影响覆盖的喷丸时间决定。在该研究中,使用粒子图像VENOCIMETRY(PIV)测量射击速度,用于在两个不同的空气压力下射击射击。使用有限元法分析喷丸期间高强度铝合金(A7075-T6)板中的残余应力分布。镜头加速到距离喷嘴出口约200毫米的支座距离。测量的最大拍摄速度与空气压力成比例增加到0.59的电力。通过通过PIV的厚度使用测量的射击速度通过PIV的测量速度分析良好,在两种类型的喷丸条件下的测量很好,具有不同的空气压力和入射角。镜头速度测量技术和分析分析的数值模型在本研究中验证。

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