Laser Shock Peening for Fatigue Resistance

A. Clauer
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引用次数: 163

Abstract

Laser shock peening is developing into a commercial surface enhancement process for increasing the fatigue life of metal components. The process produces deep residual compressive stresses into treated surfaces which inhibit the initiation and propagation of fatigue cracks. The process has been particularly effective in increasing the resistance to foreign object damage in fan and compressor blades of aircraft gas turbine engines. However, the potential application of this process is much broader, encompassing automotive, tooling and dies, and others. Significant effort is being made to lower the cost and increase the throughput of the process, to make it an affordable process for many more applications. This describes the process and reviews the progress being made in the technology, both in material property enhancement and use of the process, and towards reducing cost and increasing throughput.
抗疲劳激光冲击强化
激光冲击强化是提高金属构件疲劳寿命的一种商业化表面强化工艺。该工艺在处理表面产生深度残余压应力,抑制疲劳裂纹的萌生和扩展。该工艺在增加飞机燃气涡轮发动机风扇和压气机叶片抗外来物损伤方面特别有效。然而,该工艺的潜在应用范围要广泛得多,包括汽车、模具和模具等。人们正在努力降低成本,提高流程的吞吐量,使其成为更多应用程序可负担得起的流程。本文描述了该工艺,并回顾了该技术的进展,包括材料性能增强和工艺使用,以及降低成本和提高产量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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