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An efficient thermal analysis for the prediction of minimum film thickness in inlet zone at high speed lubricated cold strip rolling

机译:一种有效的热分析,用于预测高速润滑冷轧带钢进口区的最小膜厚

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摘要

The main objective of this work is to develop a formula for the prediction of thermal minimum film thickness at the roll/strip contact in terms of operating parameters particularly at the elevated roll speeds. The film thickness at the exit of inlet zone and at the entry of contact zone is common. Therefore, in order to compute minimum film thickness accurately at the contact, an efficient thermohydrodynamic analysis of fully flooded inlet zone has been carried out. The effects of rolling speed, reduction ratio, material parameter and slip on minimum film thicknesses (isothermal and thermal) and maximum film temperature rise (in the inlet zone only) are rigorously investigated. The performance parameters in the lubricated domain have been evaluated for rolling speeds (up to 20.0 m/s), reduction ratios (0.05-0.20), and slip values varying up to 20%. Significant reduction in minimum film thickness (thermal) has been observed with the increase in the rolling speed and slip. Based on this study, empirical relations are developed for the prediction of minimum film thicknesses (isothermal and thermal) at the contact. A relation for evaluation of maximum film temperature rise in the inlet zone has been also developed. Authors believe that the empirical relations presented herein may be useful for designers and practicing engineers.
机译:这项工作的主要目的是根据工作参数,特别是在提高的轧辊速度下,开发一种用于预测轧辊/带钢接触处最小热薄膜厚度的公式。入口区出口和接触区入口处的膜厚很常见。因此,为了精确地计算接触处的最小薄膜厚度,已经对充满的进口区域进行了有效的热流体动力学分析。严格研究了轧制速度,压下率,材料参数和打滑对最小薄膜厚度(等温和热)和最大薄膜温度升高(仅在入口区域)的影响。已对润滑域中的性能参数进行了评估,包括轧制速度(最高20.0 m / s),减速比(0.05-0.20)和滑移值(最高变化20%)。随着轧制速度和打滑率的提高,最小薄膜厚度(热)显着降低。基于这项研究,建立了经验关系式,用于预测接触点的最小膜厚(等温和热敏)。还开发了用于评估入口区域中最大膜温升高的关系。作者认为,本文介绍的经验关系可能对设计师和实践工程师有用。

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