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Cleanliness of Bearing Steels and Fatigue Life of Rolling Contacts

机译:轴承钢的清洁度和滚动触点的疲劳寿命

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摘要

Established metallographic methods of determining the cleanliness of bearing steels with respect to micro-inclusions, such as ASTM E 45, are capable of differentiating poor quality melts from good quality melts. However, as steelmaker capabilities improve, with increasing numbers being able to consistently produce good quality melts, the established methods of cleanliness assessment are unable to differentiate between melts. These established methods, which give single figure ratings based on both the size and number of inclusions, are extremely difficult to use in predicting the performance of a bearing component under conditions of rolling contact fatigue. In this work, the method of Extreme Value Analysis (EVA) is used to characterize the inclusion population of five different steel melts of known and varying quality. A link between the EVA distribution and the measured bearing life, performed on material with a low reduction ratio, is also presented.
机译:建立了确定轴承钢的清洁度相对于微夹杂物的清洁性的金相方法,例如ASTM E 45,能够区分良好的质量熔体熔体良好的熔体。 然而,随着钢铁制造能力的改善,随着越来越多的熔体能够持续产生良好的熔体,所建立的清洁方法无法区分熔体。 这些已建立的方法,其提供单一的夹杂物的尺寸和数量的额定值非常难以在滚动接触疲劳条件下预测轴承部件的性能。 在这项工作中,极值分析(EVA)的方法用于表征已知和不同质量的五种不同钢熔体的夹杂物群。 还介绍了EVA分布和测量的轴承寿命之间的链路,在具有低减速率的材料上进行。

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