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Numerical modelling and experimental approach for shot velocity evaluation during ultrasonic shot peening

机译:超声喷丸过程中弹丸速度评估的数值模型和实验方法

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摘要

Ultrasonic shot peening is a process of surface treatment which enhances mechanical properties of materials by inducing compressive residual stresses in the surface layer. As one of the most important process parameters during ultrasonic shot peening, shot velocity significantly affects the extent of plastic deformation and the microstructure formed on the surface of treated material. Due to the high frequency of change in the magnitude and direction, shot velocity is complicated to calculate exactly. For that reason, it is usually simplified as a constant. In this study, the velocity of a single shot during ultrasonic shot peening is measured experimentally using a high speed camera, and computed with theoretical model. The proposed mathematical model simulates the impact behaviour of a single shot during ultrasonic shot peening by introducing the restitution coefficient. Research results indicate that the shot velocity calculated by the proposed model agrees well with the experimental results. In addition, the effect of the ultrasonic shot peening parameters on the shot velocity was investigated. Research results will provide reliable technique instructions for the parametrical design of the ultrasonic shot peening technique.
机译:超声波喷丸硬化是一种表面处理过程,通过在表面层中引起压缩残余应力来增强材料的机械性能。作为超声波喷丸处理过程中最重要的工艺参数之一,喷丸速度会显着影响塑性变形的程度以及在处理材料表面形成的微观结构。由于幅度和方向变化的频率很高,因此精确计算射速很复杂。因此,通常将其简化为常数。在这项研究中,使用高速相机通过实验测量超声波喷丸过程中的单发速度,并使用理论模型进行计算。所提出的数学模型通过引入恢复系数来模拟单次注射在超声波喷丸处理过程中的冲击行为。研究结果表明,该模型计算出的弹丸速度与实验结果吻合良好。另外,研究了超声波喷丸处理参数对喷丸速度的影响。研究结果将为超声喷丸技术的参数化设计提供可靠的技术指导。

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