Świetlicki Aleksander, Szala Mirosław, Walczak Mariusz
Department of Materials Engineering, Faculty of Mechanical Engineering, Lublin University of Technology, 20-618 Lublin, Poland.
Materials (Basel). 2022 Mar 27;15(7):2476. doi: 10.3390/ma15072476.
Shot peening is a dynamically developing surface treatment used to improve the surface properties modified by tool, impact, microblasting, or shot action. This paper reviews the basic information regarding shot peening methods. The peening processes and effects of the shot peening and cavitation peening treatments on the surface layer properties of metallic components are analysed. Moreover, the effects of peening on the operational performance of metallic materials are summarized. Shot peening is generally applied to reduce the surface roughness, increase the hardness, and densify the surface layer microstructure, which leads to work hardening effects. In addition, the residual compressive stresses introduced into the material have a beneficial effect on the performance of the surface layer. Therefore, peening can be beneficial for metallic structures prone to fatigue, corrosion, and wear. Recently, cavitation peening has been increasingly developed. This review paper suggests that most research on cavitation peening omits the treatment of additively manufactured metallic materials. Furthermore, no published studies combine shot peening and cavitation peening in one hybrid process, which could synthesize the benefits of both peening processes. Moreover, there is a need to investigate the effects of peening, especially cavitation peening and hybrid peening, on the anti-wear and corrosion performance of additively manufactured metallic materials. Therefore, the literature gap leading to the scope of future work is also included.
喷丸强化是一种动态发展的表面处理工艺,用于改善通过工具、冲击、微喷砂或喷丸作用而改性的表面性能。本文综述了有关喷丸强化方法的基本信息。分析了喷丸强化和空化喷丸处理对金属部件表面层性能的喷丸工艺及效果。此外,总结了喷丸强化对金属材料使用性能的影响。喷丸强化通常用于降低表面粗糙度、提高硬度以及使表面层微观结构致密化,从而产生加工硬化效果。此外,引入材料中的残余压应力对表面层性能具有有益影响。因此,喷丸强化对易发生疲劳、腐蚀和磨损的金属结构可能是有益的。近年来,空化喷丸得到了越来越多的发展。这篇综述文章表明,大多数关于空化喷丸的研究都忽略了对增材制造金属材料的处理。此外,尚无已发表的研究将喷丸强化和空化喷丸结合在一个混合工艺中,而这种混合工艺可以综合两种喷丸工艺的优点。而且,有必要研究喷丸强化,特别是空化喷丸和混合喷丸强化对增材制造金属材料的抗磨损和耐腐蚀性能的影响。因此,还包括了导致未来工作范围的文献空白。