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Research of the indirect friction sensor for prediction of contact stress by improved inverse method in strip rolling

机译:条带轧制中改进的逆法预测接触应力预测的间接摩擦传感器的研究

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摘要

In order to avoid strip marks or perturbation of local lubricant flow at the interface between strip and work roll in strip rolling, an indirect friction sensor has been designed. This sensor is based on the inverse method improved by envelope fitting method, which utilizes strain gage to measure strains at one point inside the work roll to evaluate the contact stress in roll gap. Then several cold rolling tests have been performed at different reductions to demonstrate the rational and the validity of this indirect friction sensor. Comparing the results evaluated by finite element method with the results reconstructed by different inverse methods, it is found that the improved inverse method leads to a better solution to evaluation of the contact stress, in particular for prediction of shear stress. In addition, reasonable prediction is obtained for large reduction but not for small reduction ( only the order of magnitude is obtained). It is believed that this research has a strategic importance for practical application.
机译:为了避免在条带轧制之间的条带和工作辊之间的界面处的局部润滑剂流的条带标记或局部润滑剂流动,设计了间接摩擦传感器。该传感器基于包络拟合方法改善的逆方法,其利用应变计来测量工作辊内的一个点的菌株,以评估辊间隙中的接触应力。然后在不同的减少时进行了几种冷轧测试以证明该间接摩擦传感器的理性和有效性。比较通过有限元方法评估的结果与不同逆方法重建的结果,发现改进的逆方法导致更好的解决方案,以评估接触应力,特别是用于预测剪切应力。另外,获得合理的预测,用于大减少但不足的减少(仅获得幅度的阶数)。据信,该研究对实际应用具有战略意义。

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