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Laser Peening Process and Its Impact on Materials Properties in Comparison with Shot Peening and Ultrasonic Impact Peening

机译:与喷丸和超声波冲击喷丸相比激光冲击喷丸工艺及其对材料性能的影响

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摘要

The laser shock peening (LSP) process using a Q-switched pulsed laser beam for surface modification has been reviewed. The development of the LSP technique and its numerous advantages over the conventional shot peening (SP) such as better surface finish, higher depths of residual stress and uniform distribution of intensity were discussed. Similar comparison with ultrasonic impact peening (UIP)/ultrasonic shot peening (USP) was incorporated, when possible. The generation of shock waves, processing parameters, and characterization of LSP treated specimens were described. Special attention was given to the influence of LSP process parameters on residual stress profiles, material properties and structures. Based on the studies so far, more fundamental understanding is still needed when selecting optimized LSP processing parameters and substrate conditions. A summary of the parametric studies of LSP on different materials has been presented. Furthermore, enhancements in the surface micro and nanohardness, elastic modulus, tensile yield strength and refinement of microstructure which translates to increased fatigue life, fretting fatigue life, stress corrosion cracking (SCC) and corrosion resistance were addressed. However, research gaps related to the inconsistencies in the literature were identified. Current status, developments and challenges of the LSP technique were discussed.
机译:已经审查了使用Q开关脉冲激光束进行表面改性的激光冲击强化(LSP)工艺。讨论了LSP技术的发展及其相对于常规喷丸处理(SP)的众多优点,例如更好的表面光洁度,更高的残余应力深度和强度的均匀分布。在可能的情况下,采用了与超声波冲击喷丸(UIP)/超声波喷丸强化(USP)类似的比较方法。描述了冲击波的产生,处理参数以及经LSP处理的样品的特性。特别注意了LSP工艺参数对残余应力分布,材料特性和结构的影响。根据目前的研究,在选择优化的LSP处理参数和底物条件时仍需要更基本的了解。总结了不同材料上LSP的参数研究。此外,还解决了表面微观和纳米硬度,弹性模量,拉伸屈服强度的提高和微观结构的改进,这些改进可提高疲劳寿命,微动疲劳寿命,应力腐蚀开裂(SCC)和耐腐蚀性。但是,已经确定了与文献不一致有关的研究空白。讨论了LSP技术的现状,发展和挑战。

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