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Induction of engineered residual stresses fields and enhancement of fatigue life of high reliability metallic components by laser shock processing

机译:通过激光冲击加工感应工程残余应力场并提高高可靠性金属部件的疲劳寿命

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摘要

Laser shock processing (LSP) is being increasingly applied as an effective technology for the improvement of metallic materials mechanical and surface properties in different types of components as a means of enhancement of their corrosion and fatigue life behavior. As reported in previous contributions by the authors, a main effect resulting from the application of the LSP technique consists on the generation of relatively deep compression residual stresses field into metallic alloy pieces allowing an improved mechanical behaviour, explicitly the life improvement of the treated specimens against wear, crack growth and stress corrosion cracking. Additional results accomplished by the authors in the line of practical development of the LSP technique at an experimental level (aiming its integral assessment from an interrelated theoretical and experimental point of view) are presented in this paper. Concretely, follow-on experimental results on the residual stress profiles and associated surface properties modification successfully reached in typical materials (especially Al and Ti alloys characteristic of high reliability components in the aerospace, nuclear and biomedical sectors) under different LSP irradiation conditions are presented along with a practical correlated analysis on the protective character of the residual stress profiles obtained under different irradiation strategies. Additional remarks on the improved character of the LSP technique over the traditional “shot peening” technique in what concerns depth of induced compressive residual stresses fields are also made through the paper
机译:激光冲击处理(LSP)作为提高金属材料机械性能和表面性能的有效技术,正在日益广泛地应用于不同类型的组件中,以此作为增强其腐蚀和疲劳寿命行为的手段。正如作者先前的论文所报道的那样,应用LSP技术所产生的主要效果是在金属合金件中产生了相对较深的压缩残余应力场,从而改善了机械性能,从而明显提高了经处理的试样的使用寿命磨损,裂纹扩展和应力腐蚀开裂。本文介绍了作者在LSP技术的实际开发方面在实验水平上取得的其他成果(从相关的理论和实验观点出发,对LSP进行了整体评估)。具体而言,沿着不同的LSP辐照条件,给出了在典型材料(尤其是航空航天,核医学和生物医学领域中具有高可靠性组件特征的Al和Ti合金)中成功获得的残余应力曲线和相关表面特性修正的后续实验结果,并分别介绍了对不同辐照策略下获得的残余应力轮廓的保护特性进行实用的相关分析。通过本文,还对LSP技术相对于传统的“喷丸”技术的改进特性作了补充说明,该问题涉及引起的压缩残余应力场的深度

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