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Residual stress in geometric features subjected to laser shock peening

机译:经受激光冲击喷丸处理的几何特征中的残余应力

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摘要

This article reports selected findings from a collaborative research study into the fundamental understanding of laser shock peening (LSP), when applied to key airframe and aero-engine alloys. The analyses developed include explicit simulations of the peening process together with a simpler eigenstrain approach, which may be used to provide an approximation to the residual stress field in a number of geometries. These are chosen to represent parts of structural components under conditions relevant to service applications. The article shows that the eigenstrain approach can provide good approximations to the stress field in most circumstances and may provide a computationally efficient tool for exploring different peening strategies. Both explicit and eigenstrain results demonstrate that the interaction between the LSP process and geometric features is important for understanding the subsequent performance of components. Particularly relevant for engineering applications is that not all instances of LSP application may provide an improvement in structural integrity.
机译:本文报道了一项合作研究的部分研究成果,这些研究将其应用于关键机身和航空发动机合金时对激光冲击喷丸(LSP)的基本理解。开发的分析包括喷丸过程的显式模拟以及更简单的本征应变方法,该方法可用于提供许多几何形状中残余应力场的近似值。选择这些代表在与服务应用相关的条件下结构部件的各个部分。该文章表明,本征应变方法可以在大多数情况下为应力场提供良好的近似,并且可以为探索不同的喷丸策略提供有效的计算工具。显式和本征应变结果均表明LSP过程与几何特征之间的相互作用对于理解组件的后续性能非常重要。与工程应用特别相关的是,并非LSP应用的所有实例都可以改善结构完整性。

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