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Spatial Distribution Evolution of Residual Stress and Microstructure in Laser-Peen-Formed Plates

机译:激光喷钢板残余应力和微观结构的空间分布演变

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摘要

Residual stress in structural components is crucial as it affects both service performance and safety. To investigate the evolution of residual stress in a laser-peen-formed panel, this study adopted two plate samples of thickness 3 and 9 mm instead of the conventional Almen strip. The two plates were peened with an identical energy density of 10.99 GW/cm . The residual stress across the entire section was determined using a slitting method, and near-surface stress was then verified by X-ray diffraction. Furthermore, cross-sectional variation in hardness and microstructure were characterized to understand the residual stress evolution. The experimental results showed that different thicknesses resulted in distinct spatial distributions of residual stress. The 3-mm plate demonstrated a shallow (0.5 mm) and lower compressive stress magnitude (−270 MPa) compared with a deeper (1 mm) and higher compressive stress (−490 MPa) in the 9-mm plate. Further analysis revealed that the deformation compatibility during the forming process inevitably leads to a stress compensation effect on the peened side. The decrease in the depth and magnitude of the compressive residual stress in the thin plate was mainly attributed to low stiffness and large deflection.
机译:结构部件中的残余应力是至关重要的,因为它影响服务性能和安全性。为了探讨激光 - 喷水面板中残余应力的演变,本研究采用了厚度3和9mm的两个板样品而不是传统的Almen条。两块板均以相同的能量密度为10.99 gw / cm。使用切片法测定整个部分的残余应力,然后通过X射线衍射验证近表面应力。此外,特征在于硬度和微观结构的横截面变化,以了解残余应力进化。实验结果表明,不同的厚度导致了残余应力的不同空间分布。 3毫米板在9mm板中显示了与更深(1mm)和更高的压缩应力(-490MPa)相比的浅(0.5mm)和更低的压缩应力幅度(-270MPa)。进一步的分析表明,在成形过程中的变形相容性不可避免地导致对喷丸侧的应力补偿效果。薄板中压缩残余应力的深度和大小的减小主要归因于低刚度和大的偏转。

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