Lu Ying, Yang Yuling, Zhao Jibin, Yang Yuqi, Qiao Hongchao, Hu Xianliang, Wu Jiajun, Sun Boyu
Shenyang Institute of Automation, Chinese Academy of Science, Shenyang 110016, China.
Institutes for Robotics and Intelligent Manufacturing, Chinese Academy of Sciences, Shenyang 110169, China.
Materials (Basel). 2020 Nov 16;13(22):5172. doi: 10.3390/ma13225172.
Laser shock peening (LSP), as an innovative surface treatment technology, can effectively improve fatigue life, surface hardness, corrosion resistance, and residual compressive stress. Compared with laser shock peening, warm laser shock peening (WLSP) is a newer surface treatment technology used to improve materials' surface performances, which takes advantage of thermal mechanical effects on stress strengthening and microstructure strengthening, resulting in a more stable distribution of residual compressive stress under the heating and cyclic loading process. In this paper, the microstructure of the GH4169 nickel superalloy processed by WLSP technology with different laser parameters was investigated. The proliferation and tangling of dislocations in GH4169 were observed, and the dislocation density increased after WLSP treatment. The influences of different treatments by LSP and WLSP on the microhardness distribution of the surface and along the cross-sectional depth were investigated. The microstructure evolution of the GH4169 alloy being shocked with WLSP was studied by TEM. The effect of temperature on the stability of the high-temperature microstructure and properties of the GH4169 alloy shocked by WLSP was investigated.
激光冲击强化(LSP)作为一种创新的表面处理技术,能够有效提高疲劳寿命、表面硬度、耐腐蚀性以及残余压应力。与激光冲击强化相比,温激光冲击强化(WLSP)是一种用于改善材料表面性能的更新的表面处理技术,它利用热机械效应实现应力强化和微观结构强化,从而在加热和循环加载过程中使残余压应力分布更加稳定。本文研究了采用不同激光参数的温激光冲击强化技术处理后的GH4169镍基高温合金的微观结构。观察到GH4169中存在位错的增殖和缠结,温激光冲击强化处理后位错密度增加。研究了激光冲击强化和温激光冲击强化不同处理方式对表面及沿横截面深度的显微硬度分布的影响。通过透射电子显微镜研究了经温激光冲击强化处理的GH4169合金的微观结构演变。研究了温度对经温激光冲击强化处理的GH4169合金高温微观结构稳定性和性能的影响。