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首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Rolling contact fatigue resistance of austempered ductile iron processed at various austempering holding times
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Rolling contact fatigue resistance of austempered ductile iron processed at various austempering holding times

机译:在各种奥斯特稳定的持续时间下滚动的延伸抗杆抗疲劳性抗性

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摘要

The rolling contact fatigue resistance of austempered ductile iron (ADI) produced at various holding times was evaluated by using a twin-disk rolling configuration rig. The resulting fatigue life of ADI samples was compared with that of conventional quenched and tempered (Q&T) ductile iron samples with the same chemical composition. It was found that the macro hardness of ADI samples decreased and the fatigue life became shorter for longer holding time. For similar macro hardness, ADI samples had higher fatigue resistance as compared with Q&T ductile iron samples. Optical microscopy and scanning electron microscopy indicated that the graphite nodules acted as crack nucleation sites for the ductile iron. The cracks propagated towards either the surface or adjacent graphite nodules until the formation of pits or spalls occurred. The excellent fatigue resistance of ADI samples could be attributed to the increase of surface hardness which was caused by the strain induced transformation of retained austenite into martensite. By using X-ray diffraction, the difference of retained austenite present in the wear track and off the wear track ranged from 4.42% to 26.15%.
机译:通过使用双盘式轧制配置钻机评估在各种保持时间产生的orstempered延性铁(ADI)的滚动接触疲劳电阻。将得到ADI样品的疲劳寿命与具有相同化学组成的常规猝灭和回火(Q&T)延性铁样品进行比较。发现ADI样品的宏观硬度降低,疲劳寿命变短,持续时间更长。对于类似的宏观硬度,与Q&T球墨铸铁样品相比,ADI样品具有更高的疲劳性。光学显微镜和扫描电子显微镜表明石墨结节作用为球墨铸铁的裂纹成核位点。朝向表面或相邻石墨结节的裂缝蔓延至形成凹坑或壁的形成。 ADI样品的优异疲劳抗性可归因于表面硬度的增加,该表面硬度是由菌株诱导的保留奥氏体转化为马氏体的转化。通过使用X射线衍射,耐磨轨道和磨损轨道中存在的保留奥氏体的差异为4.42%至26.15%。

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