首页> 外文OA文献 >Microstructural changes in White Etching Cracks (WECs) and their relationship with those in Dark Etching Region (DER) and White Etching Bands (WEBs) due to Rolling Contact Fatigue (RCF)
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Microstructural changes in White Etching Cracks (WECs) and their relationship with those in Dark Etching Region (DER) and White Etching Bands (WEBs) due to Rolling Contact Fatigue (RCF)

机译:白色蚀刻裂纹(WECs)的微观结构变化及其与滚动接触疲劳(RCF)引起的深蚀刻区域(DER)和白色蚀刻带(WEB)的关系

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摘要

Substantial microstructural changes, such as Dark Etching Region (DER), White Etching Bands (WEBs) and White Etching Cracks (WECs), can occur in typical bearing steels such as AISI 52100 and 4320 due to Rolling Contact Fatigue (RCF). Although it has been reported that DER and WEBs typically appear in bearings over extended rolling cycles (>100 × 106) as a result of material deterioration under high-stress RCF while WECs are found to occur in much earlier of bearing’s life (<20% the calculated L10 life), differences and relationship between DER/WEBs and WECs are not fully investigated or understood. This study investigated the microstructural alterations in WECs in an AISI 52100 through-hardened martensitic bearing using a combination of characterisation methods and the results are directly compared with those observed in DER and WEBs due to high-stress RCF (Šmeļova et al., 2017). The results show that, although the features maybe initiated by different causes, there are many similarities between the microstructural alterations in WECs and DER/WEBs, such as the carbide disintegration, and carbon and chromium movement that plays a role in the formation and development of microstructural alterations in all three features.
机译:在典型的轴承钢(如AISI 52100和4320)中,由于滚动接触疲劳(RCF),会发生大量的微观组织变化,例如深色蚀刻区域(DER),白色蚀刻带(WEB)和白色蚀刻裂纹(WEC)。尽管有报道说,由于高应力RCF下材料变质,DER和WEB通常出现在滚动周期延长(> 100×106)的轴承中,而WEC出现在轴承寿命的更早时间(<20%)计算得出的L10寿命),DER / WEB与WEC之间的差异和关系尚未得到充分研究或理解。这项研究使用表征方法研究了AISI 52100淬硬马氏体轴承中WEC的微观结构变化,并将结果与​​DER和WEB中由于高应力RCF观察到的结果进行了直接比较(Šmeļova等人,2017) 。结果表明,尽管这些特征可能是由不同的原因引起的,但在WEC和DER / WEB中的微观结构变化之间有许多相似之处,例如碳化物的崩解以及碳和铬的运动在形成和发展中起着重要的作用。所有三个特征的微观结构改变。

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