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- W2329038604 abstract "In the laser shock peening (LSP) process, favorable residual stresses are induced on a surface to improve fatigue and fretting properties of that part of the metal surface. In the literature, experimental-based advances have been attempted to understand and derive the maximum benefits from the process and to demonstrate the benefits of the technology. However, time consuming and expensive experiments, and limited simulations on simple geometries are not sufficient for optimal LSP process design. A comprehensive simulation procedure is required that can be employed in process optimization for pressure pulse and laser spot properties, multiple treatments of LSP at the same location, sequential LSP at multiple locations, and different overlapping configurations. In this research, a simulation framework is developed and validated using available experimental results. For process optimization, the combination of continuous (pressure magnitude, duration and amount of overlap) and discrete (number of treatments and sequence of treatment) variables is creating a challenging mixed-variable task in which a representative simulation can take up to 4 days. The particle swarm optimization with a strategy to handle discrete variables are employed to solve the problem. With the target of applying LSP on an aircraft component, a representative plate structure is considered for case studies." @default.
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- W2329038604 date "2008-06-14" @default.
- W2329038604 modified "2023-10-05" @default.
- W2329038604 title "Modeling and Optimization of a Laser Shock Peening Process" @default.
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- W2329038604 doi "https://doi.org/10.2514/6.2008-5838" @default.
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