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On the Evolution of Temperature and Combined Stress in a Work Roll under Cyclic Thermo-Mechanical Loadings during Hot Strip Rolling and Idling

机译:在热带轧制和空转期间循环热机械载荷下工作辊温度和组合应力的演变

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摘要

An accurate prediction of temperature and stress evolution in work rolls is crucial to assess the service life of the work roll. In this paper, a finite element method (FEM) model with a deformable work roll and a meshed, rigid body considering complex thermal boundary conditions over the roll surface is proposed to assess the temperature and the thermal stress in work rolls during hot rolling and subsequent idling. After that, work rolls affected by the combined action of temperature gradient and rolling pressure are investigated by taking account of the hot strip. The accuracy of the proposed model is verified through comparison with the calculation results obtained from the mathematical model. The results show that thermal stress is dominant in the bite region of work rolls during hot rolling. Afterwards, the heat treatment residual stresses which are related to thermal fatigue are simulated and introduced into the work roll as the initial stress to evaluate the redistribution under the thermal cyclic loads during the hot rolling process. Results show that the residual stress significantly changed near the roll surface.
机译:准确预测工作辊中的温度和应力演化是至关重要的,以评估工作卷的使用寿命。在本文中,提出了一种具有可变形工作辊的有限元方法(FEM)模型,以及考虑辊表面上的复杂热边界条件的啮合,刚体型号,以评估热轧和随后的工作辊中的温度和热应力怠速。之后,通过考虑热带来研究受温度梯度和轧制压力的组合动作影响的工作辊。通过与从数学模型获得的计算结果进行比较来验证所提出的模型的准确性。结果表明,热轧期间工作辊的咬合区域中的热应力优势。然后,模拟与热疲劳有关的热处理残余应力并将其引入工作辊作为初始应力,以在热轧过程中评估热循环负载下的再分配。结果表明,卷面附近的残余应力显着变化。

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