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首页> 外文期刊>Journal of Materials Processing Technology >Effect of micro-shot peening, conventional shot peening and their combination on fatigue property of EA4T axle steel
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Effect of micro-shot peening, conventional shot peening and their combination on fatigue property of EA4T axle steel

机译:微粉喷丸,常规射击喷丸及其组合对EA4T轴钢疲劳性能的影响

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摘要

In this study, EA4T axle steel specimens were subjected to three shot peening treatments: conventional shot peening (CSP), micro-shot peening (MSP) and their combination, i.e. dual shot peening (DSP). The residual stress, surface roughness, morphology, microhardness, were used to characterize the affected surface layer. The results indicated that MSP achieved maximum surface compressive residual stress (SCRS), minimum surface roughness, high surface microhardness. Moreover, compared to CSP, DSP improved the SCRS and microhardness while reducing surface roughness. However, scanning electron microscopy (SEM) observations indicated the presence of intensive defects of the DSP-treated specimens, which hindered the fatigue strength of the specimens. Fatigue tests were conducted to evaluate the effect of different treatments on fatigue life, the median S-N curve demonstrated that the fatigue limit at 10(7) cycles was improved by 24, 32, and 27% for the CSP, MSP, and DSP specimens, respectively. Furthermore, SEM observation was conducted to analyze the fracture mechanisms, the results indicated that the failure of all specimens originated at the surface and the fracture mechanisms were not changed by the shot peening treatments. The SCRS during the cyclic loading have also been analyzed. Moreover, the factors influencing fatigue limit improvement were discussed.
机译:在这项研究中,EA4T轴钢标本进行了三次喷丸治疗:常规喷丸(CSP),微射击喷丸(MSP)及其组合,即双射击喷丸(DSP)。使用残余应力,表面粗糙度,形态,微硬度来表征受影响的表面层。结果表明,MSP实现了最大表面压缩残余应力(SCR),最小表面粗糙度,高表面粗糙度。此外,与CSP相比,DSP改善了SCR和微硬度,同时降低了表面粗糙度。然而,扫描电子显微镜(SEM)观察结果表明存在DSP处理的标本的密集缺陷,这阻碍了样本的疲劳强度。进行疲劳试验以评估不同治疗对疲劳寿命的影响,中位数Sn曲线表明,CSP,MSP和DSP标本的24,32和27%提高了10(7)个循环的疲劳极限,分别。此外,进行SEM观察以分析骨折机制,结果表明,所有试样的故障起源于表面和断裂机制的爆发处理不会改变。还分析了循环加载期间的SCR。此外,讨论了影响疲劳极限改善的因素。

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