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Influence of the Initial Microstructure on the Spheroidization of SAE 52100 Bearing Steel

机译:初始显微组织对SAE 52100轴承钢球化的影响

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摘要

High carbon Cr-bearing SAE 52100 is widely used for bearing production. The in-service microstructure of bearing steel is tempered high C martensite, which has superior mechanical properties in severe rolling fatigue conditions. The bearings are produced from steel wire with a pearlitic microstructure. Spheroidization annealing is used to obtain a soft microstructure prior to cold deformation. Spheroidization results in a ferritic matrix with coarse globular cementite. The spheroidization annealing process is lengthy, involving considerable economic cost and an environmental impact related to CO2 emissions. Avoiding spheroidization annealing altogether or substantially reducing the annealing time is, therefore, of industrial relevance. Spheroidization annealing may be omitted if a very soft, i.e., coarse pearlitic microstructure, can be obtained after hot rolling. This is generally considered to be the case for a coarse pearlitic microstructure with a hardness of approximately 270 HV. In practice, the requirement for a guaranteed homogeneous low hardness results in the spheroidization annealing being often still necessary in many circumstances. The present work reports on a study of the potential for the reduction of the spheroidization annealing time by spheroidization of different initial microstructures. The two main findings are (i) that the martensitic and bainitic microstructures spheroidize more rapidly than pearlite and (ii) that an initial martensitic microstructure can achieve a hardness lower than 240 HV within 10 h of spheroidization at 710 degrees C.
机译:高碳铬轴承SAE 52100被广泛用于轴承生产。轴承钢的在役组织是回火的高碳马氏体,在剧烈的滚动疲劳条件下具有卓越的机械性能。轴承由具有珠光体微结构的钢丝制成。球化退火用于在冷变形之前获得柔软的微观结构。球化导致铁素体基体具有粗大的球状渗碳体。球化退火过程很长,涉及可观的经济成本和与二氧化碳排放有关的环境影响。因此,完全避免球化退火或基本上减少退火时间与工业有关。如果在热轧后可获得非常柔软的,即粗糙的珠光体组织,则可以省略球化退火。通常认为这种情况是具有约270 HV硬度的粗珠光体显微组织。实际上,对于保证均匀的低硬度的要求导致在许多情况下经常仍然需要球化退火。本工作报告了通过不同初始微观结构球化减少球化退火时间的潜力的研究。两个主要发现是(i)马氏体和贝氏体的显微组织比珠光体的球化速度更快,以及(ii)初始马氏体的显微组织在710摄氏度的球化作用10小时内可以达到低于240 HV的硬度。

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