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The influence of heat treatment process and alloy on microstructure and rolling contact fatigue life of high carbon chromium bearing steels

机译:热处理过程与合金对高碳铬轴承钢微观结构和滚动疲劳寿命的影响

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Microstructures and rolling contact fatigue properties of high carbon chromium bearing steels were investigated by means of electron microscopy, hardness and rolling contact fatigue tests. In order to examine the influence of heat treatment process and alloy composition on microstructure and rolling contact fatigue, two kinds of heat treatment processes, i.e., quenching/tempering (QT) and nitrocarburizing were performed on conventional AISI52100 and ASTM A485 Grade-1. Rolling contact fatigue life of the nitrocarburized alloys was longer than that of QT treated alloys by 3.7 times under a clean lubrication condition and was longer by 1.5 times under a contaminated lubrication condition. The amount of retained austenite in the nitrocarburized samples was found to be larger than that in the QT treated samples. As for alloy effects, rolling contact fatigue life of nitrocarburized ASTM A485 Grade-1 steel was superior to that of nitrocarburized AISI52100 steel. With increasing tempering temperature from 150°C to 300°C but tempering time held constant at 1 hr, the decreases in hardness for the nitrocarburized AISI52100 and ASTM A485 Grade-1 alloys were smaller compared to the QT treated AISI52100 alloy. This means that the nitrocarburized high carbon chromium steels are suitable for bearing materials for high temperature at 300°C. Very fine Fe4(Fe(CN)6)3carbonitride less than 100 nm in diameter were found in both alloys. An improvement in rolling contact fatigue life in nitrocarburized ASTM A485 Grade-1 steel was attributed to the combination of formation of very fine Fe{sub}4(Fe(CN){sub}6){sub}3 and retained austenite.
机译:通过电子显微镜,硬度和滚动接触疲劳试验研究了高碳铬轴承钢的微观结构和滚动接触疲劳性能。为了检查热处理过程和合金组合物对微观结构和轧制接触疲劳的影响,对常规AISI52100和ASTM A485级-1进行两种热处理方法,即淬火/回火(QT)和氮碳化。在清洁润滑条件下,碳氮化合金的轧制接触疲劳寿命比QT处理的合金的含量长3.7倍,在污染的润滑条件下较长1.5倍。发现氮碳碳样品中保留的奥氏体的量大于QT处理样品中的含量。至于合金效应,氮碳排斥的轧制接触疲劳寿命A485级钢的寿命优于氮碳排斥的AISI52100钢。随着150℃至300℃的升温温度,但在1小时的回火时间保持恒定,与QT处理的AISI52100合金相比,氮碳化AISI52100和ASTM A485级合金的硬度降低。这意味着氮碳化高碳铬钢适用于300℃的高温轴承材料。在两种合金中发现了非常精细的Fe4(Fe(CN)6)3碳氮化物小于100nm。在氮碳中的ASTM A485级-1钢中滚动疲劳寿命的改善归因于形成非常细Fe {Sub} 4(Fe(CN)} 6){Sub} 3和保留奥氏体的组合。

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