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New trends in laser shock waves physics and applications

机译:激光冲击波物理及其应用的新趋势

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摘要

Recent applications for laser-induced shock waves have been demonstrated in the aeronautical and nuclear industries, due to the development of new generations of lasers that enable high cadency rates with rather small designs. In this paper, we first aim at making an overview on basic physical processes involved in Laser Shock Processing, and a presentation of pressure loadings generated by different laser conditions. In a second part, a specific focus is given to new ranges of applications like wear resistance, uniform and localized corrosion or modeling of fatigue behaviour after LSP. For instance it is demonstrated that the pitting corrosion behaviour of 316L steel in saline medium can be improved by laser-induced pure mechanical effects surrounding inclusions. It is also shown that wear rates of a 100Cr6 tool steel can be reduced after LSP provided applied pressures are kept below a material-dependent threshold. Last but not least, the fatigue cracking behaviour of 2024-T351 aluminium alloy after LSP was improved and calculated through a computed program taking into account work hardening together with residual stress effects.
机译:由于新一代激光器的发展,它们以相当小的设计实现了高节奏,因此在航空和核工业中已经证明了激光诱导的冲击波的最新应用。在本文中,我们首先旨在概述与激光冲击处理有关的基本物理过程,并介绍由不同激光条件产生的压力载荷。在第二部分中,将重点放在新的应用范围,例如耐磨性,均匀和局部腐蚀或LSP后的疲劳行为建模。例如,证明了通过激光诱导夹杂物周围的纯机械作用可以改善316L钢在盐介质中的点蚀行为。还显示出,只要施加的压力保持在与材料相关的阈值以下,LSP后可以降低100Cr6工具钢的磨损率。最后但并非最不重要的一点是,通过考虑工作硬化和残余应力效应的计算程序,改进了LSP后2024-T351铝合金的疲劳裂纹行为。

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