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Effect of Micros hot Peening on Fatigue Strength of Austenite Stainless Steel

机译:微米热喷丸对奥氏体不锈钢疲劳强度的影响

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The effects of the peening conditions on the surface characteristics and fatigue strength of stainless steel were investigated by microshot peening (MSP). In recent years, MSP technology has attracted attention. The use of MSP technology with minute media has become more widespread in consideration of the reduction of the notch effect in the material surface. However, the effect of MSP technology on stainless steel has not been much studied. In the present study, an air-type machine was used. The media used was high-carbon cast steel (490 HV) and Fe-Cr-B alloy (1130 HV), with an average diameter of 0.1 mm. The peening time was in the range of 0 -100 s. Four types of stainless steels, SUS304, SUS304L, SUS316, and SUS316L, were tested. The workpieces were annealed at 1100 K for 1.2 ks in air. In the measurement of fatigue strength, the workpieces were machined in hour-glass shape. As the results, surface roughness of the workpieces treated by MSP was small. Work hardening was evident to the depth of approximately 0.2 mm from the surface. This depth was about twice the diameter of shot media. However, the effect of the peening time on the hardness distribution was not large. The compressive residual stress was added in the surface vicinity. It is assumed that the fatigue limit had increased because the work hardened layer was formed near the workpiece surface.
机译:微孔喷丸(MSP)研究了喷丸条件对不锈钢表面特性和疲劳强度的影响。近年来,MSP技术引起了关注。考虑到材料表面中的凹口效果的减少,使用微小介质的MSP技术的使用变得更加普遍。然而,研究MSP技术对不锈钢的影响并未研究。在本研究中,使用空气型机器。所用介质是高碳铸钢(490HV)和Fe-CR-B合金(1130HV),平均直径为0.1mm。喷丸时间在0 -100秒的范围内。测试了四种类型的不锈钢,SUS304,SUS304L,SUS316和SUS316L。工件在1100 k下退火1.2 ks。在测量疲劳强度的情况下,工件以小时玻璃形状加工。结果,MSP处理的工件的表面粗糙度小。工作硬化对于距离表面约0.2mm的深度是明显的。这种深度大约是拍摄介质直径的两倍。然而,Peening时间对硬度分布的影响并不大。在表面附近加入压缩残余应激。假设疲劳极限增加,因为在工件表面附近形成了工作硬化层。

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