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Surface temperature calculation and its application for the surface fatigue strength evaluation of rollers

机译:表面温度计算及其应用于辊子表面疲劳强度评价

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Surface temperature is resulted by not only the load and dimension at the contact point but also the sliding velocity, rolling velocity, surface roughness, lubrication condition and etc. So, the surface fatigue strength of such as roller and gear may be evaluated more exactly and simply by use of the surface temperature or an index including the surface temperature than the Hertzian stress. In this research, the surface temperatures of rollers in different rolling and sliding conditions were measured with a thermocouple. The effects of the load P, mean velocity V{sub}s and sliding velocity VS on the surface temperature are clarified. An experimental formula, which expresses a linear relationship between the surface temperature and the p{sup}(0.86)V{subs{sup}(1.31) V{sub}m{sup}(-0.83) value, is presented to calculate the surface temperature. This formula is also confirmed available for the gear tooth surface temperature calculation by comparison of calculated temperature and the measured temperature on the gear tooth surface. The relationship between the surface temperature and the number of load cycles of rollers are investigated, the necessity and rationality of the surface fatigue strength evaluation considering the surface temperature are discussed.
机译:通过表面温度不仅是接触点处的负载和尺寸,而且导致滑动速度,滚动速度,表面粗糙度,润滑条件等。因此,可以更确切地评估诸如辊和齿轮的表面疲劳强度简单地通过使用表面温度或包括表面温度的指数而不是赫扎应力。在该研究中,用热电偶测量不同轧制和滑动条件中的辊子的表面温度。阐明了负载P,平均速度V {Sub} S和滑动速度Vs对表面温度的影响。表达表面温度和p {sup}(0.86)v {subs {sup}(1.31)v {sub} m {sup}( - 0.83)值之间的线性关系表示计算表面温度。通过对齿轮齿表面上的计算温度和测量的温度比较,该公式也可用于齿轮齿表面温度计算。研究了表面温度与辊的负载循环数之间的关系,讨论了考虑表面温度的表面疲劳强度评价的必要性和合理性。

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