Ahn Seok-Hwan, Heo Jongman, Kim Jungsik, Hwang Hyeongseob, Cho In-Sik
Department of Aero Mechanical Engineering, Jungwon University, Chungbuk 28024, Korea.
Aerospace Department, EM KOREA Co., Ltd., Changwon 51538, Korea.
Materials (Basel). 2020 Dec 15;13(24):5711. doi: 10.3390/ma13245711.
In this study, the effect of baking heat treatment on fatigue strength and fatigue life was evaluated by performing baking heat treatment after shot peening treatment on 4340M steel for landing gear. An ultrasonic fatigue test was performed to obtain the S-N curve, and the fatigue strength and fatigue life were compared. The micro hardness of shot peening showed a maximum at a hardened depth of about 50 μm and was almost uniform when it arrived at the hardened depth of about 400 μm. The overall average tensile strength after the baking heat treatment was lowered by about 80-111 MPa, but the yield strength was improved by about 206-262 MPa. The five cases of specimens showed similar fatigue strength and fatigue life in high cycle fatigue (HCF) regime. However, the fatigue limit of the baking heat treated specimens showed an increasing tendency rather than that of shot peening specimens when the fatigue life was extended to the very high cycle fatigue (VHCF) regime. The effect of baking heat treatment was identified from improved fatigue limit when baking heat was used to treat the specimen treated by shot peening containing inclusions. The optimum temperature range for the better baking heat treatment effect could be constrained not to exceed maximum 246 °C.
在本研究中,通过对起落架用4340M钢进行喷丸处理后再进行烘烤热处理,评估了烘烤热处理对疲劳强度和疲劳寿命的影响。进行了超声疲劳试验以获得S-N曲线,并比较了疲劳强度和疲劳寿命。喷丸处理的显微硬度在约50μm的硬化深度处达到最大值,当达到约400μm的硬化深度时几乎均匀。烘烤热处理后的总体平均抗拉强度降低了约80 - 111MPa,但屈服强度提高了约206 - 262MPa。五组试样在高周疲劳(HCF)状态下表现出相似的疲劳强度和疲劳寿命。然而,当疲劳寿命扩展到超高周疲劳(VHCF)状态时,烘烤热处理试样的疲劳极限呈现出上升趋势,而非喷丸处理试样。当使用烘烤热处理含有夹杂物的喷丸处理试样时,从提高的疲劳极限中确定了烘烤热处理的效果。更好的烘烤热处理效果的最佳温度范围可限制在最高不超过246°C。