Science and Technology on Plasma Dynamics Laboratory, Air Force Engineering University, Xi´an, 710038, China.
Xi´an Aerospace Mechatronics & Intelligent Manufacturing Co., Ltd, Xi´an, 710038, China.
Sci Rep. 2023 Jun 20;13(1):9971. doi: 10.1038/s41598-023-37060-w.
The effect of laser shock peening (LSP) on the microhardness and tensile properties of laser cladding (LC) 30CrMnSiNi2A high-strength steel was studied. After LSP, the microhardness of the cladding zone reached approximately 800 HV, which was 25% higher than that of the substrate, while the cladding zone without LSP had an approximately 18% increase in its microhardness. Two strengthening processes were designed: groove LSP + LC + surface LSP versus LC + surface LSP. The former's tensile strength and yield strength were less than 10% weaker than those of forged materials, which is the best mechanical property recovery found in LC samples. The microstructural characteristics of the LC samples were analysed by scanning electron microscopy (SEM) and electron backscatter diffraction. Under the action of the laser-induced shock wave, the grain size of the LC sample surface was refined, the low-angle grain boundaries on the surface layer increased significantly, and the austenite grain length was reduced from 30-40 μm in the deep layer to 4-8 μm in the surface layer. In addition, LSP modulated the residual stress field, hence preventing the weakening effect of the LC process's thermal stress on the components' mechanical properties.
研究了激光冲击喷丸(LSP)对激光熔覆(LC)30CrMnSiNi2A 高强度钢的显微硬度和拉伸性能的影响。经过 LSP 后,熔覆区的显微硬度达到了约 800HV,比基体高 25%,而未经 LSP 的熔覆区的显微硬度则提高了约 18%。设计了两种强化工艺:槽 LSP+LC+表面 LSP 与 LC+表面 LSP。前者的拉伸强度和屈服强度比锻造材料弱不到 10%,这是 LC 样品中发现的最佳机械性能恢复。通过扫描电子显微镜(SEM)和电子背散射衍射对 LC 样品的微观结构特征进行了分析。在激光诱导冲击波的作用下,LC 样品表面的晶粒尺寸细化,表面层的小角度晶界显著增加,奥氏体晶粒长度从深层的 30-40μm 减小到表面层的 4-8μm。此外,LSP 调制了残余应力场,从而防止了 LC 工艺热应力对零件机械性能的削弱作用。