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Effect of Laser Shock Peening on Fatigue Life at Stress Raiser Regions of a High-Speed Micro Gas Turbine Shaft: A Simulation Based Study

机译:激光冲击喷丸对高速微型燃气轮机轴应力拉塞区疲劳寿命的影响:基于模拟的研究

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摘要

Fatigue failure due to stress raiser regions on critical rotating components in gas turbine engines, such as the shaft, is a crucial aspect. Methods to reduce these stresses and improve fatigue life are a source of ongoing research. Laser shock peening is a method where compressive residual stresses are imparted on the stress raisers of such components. However, numerical based studies on multiple laser shock peening applied to stress raisers is under-researched. Hence, this study will attempt to predict the fatigue life at fillet radii step induced stress raiser regions on a high-speed gas turbine engine shaft by utilization of laser shock peening. The objective of this study was achieved by developing a more computational efficient finite element model to mimic the laser shock peening process on the fillet radii step induced stress raiser regions of a shaft. A modified laser shock peening simulation method for effective prediction of the residual stress field was introduced. Furthermore, the fatigue life improvement due to laser shock peening was predicted by employing Fe-safe fatigue software. From the results, the modified laser shock peening simulation method provided accurate prediction of the residual stress field with a reduced computational time of over 68% compared to conventional methods. The fatigue life revealed an improvement of 553% due to laser shock peening, which is comparable to similar findings in the literature. Hence, from the findings and results achieved, the developed finite element model can be an appropriate tool to assist in the fatigue life estimation of laser shock peening applied to stress raisers.
机译:由于燃气涡轮发动机诸如轴的临界旋转部件的应力提升器区域引起的疲劳失效是一个关键方面。减少这些压力的方法,提高疲劳生活是持续研究的源泉。激光冲击喷丸是一种方法,其中压缩残余应力在这些组分的应力提升器上施加。然而,研究了对应用于应力提升器的多种激光震动的数值研究。因此,本研究将试图通过利用激光震动喷丸,预测圆角半部步骤诱导应力提升器区域的疲劳寿命。通过开发更多的计算有效的有限元模型来实现本研究的目的,以模拟轴的圆角半径趋势的激光冲击喷丸处理。引入了一种用于有效预测残余应力场的改进的激光冲击喷丸仿真方法。此外,通过采用Fe-Safe疲劳软件预测了激光冲击喷丸引起的疲劳寿命改善。从结果,与传统方法相比,改进的激光冲击喷丸仿真方法提供了对残余应力场的精确预测,其计算时间超过68%。由于激光震动喷丸,疲劳寿命揭示了553%的提高,这与文献中的类似结果相当。因此,从发现和结果中,开发的有限元模型可以是有助于帮助应用于应力提升器的激光冲击疲劳寿命估计的适当工具。

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