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首页> 外文期刊>Journal of Materials Processing Technology >Experimental evaluation of contact stress during cold rolling process with optical fiber Bragg gratings sensors measurements and fast inverse method
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Experimental evaluation of contact stress during cold rolling process with optical fiber Bragg gratings sensors measurements and fast inverse method

机译:光纤布拉格光栅传感器测量和快速逆方法在冷轧过程中接触应力的实验评估

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摘要

There is a strategic importance for the steel rolling industry to get a better understanding of the strip roll interaction to improve roll-gap models, increase strip quality and decrease roll degradation. This requires roll-gap sensors able to measure this interaction under industrial rolling conditions and in real time in order to propose a feed-back control of process parameters. To reach these goals, this paper proposes a new roll-gap friction sensor based on an inverse method that interprets optical fiber Bragg gratings (FBG) strain measurements under the roll surface (fully embedded), which enables to evaluate contact stresses with very short computation times, compatible with real time interpretation. This elastic inverse method is analytical and relies on plane-strain and isothermal assumptions. The experimental apparatus is detailed, technical issues are clearly exposed as well as calibration procedures. Several pilot cold rolling tests have been performed at various rolling speeds and different strip thicknesses in order to demonstrate the industrial feasibility. Resulting evaluations of contact stresses are then compared with numerical simulations. Reasonable agreement is obtained for normal stress (i.e., pressure) but not for shear stress (only an order of magnitude is obtained). (C) 2015 Elsevier B.V. All rights reserved.
机译:对于轧钢行业来说,具有战略意义的重要性在于更好地了解带钢辊之间的相互作用,以改善轧辊间隙模型,提高带钢质量并减少轧辊劣化。这就要求滚动间隙传感器能够在工业轧制条件下实时测量这种相互作用,以便提出过程参数的反馈控制。为了实现这些目标,本文提出了一种基于反演方法的新型滚动间隙摩擦传感器,该传感器可解释滚动表面(完全嵌入)下的光纤布拉格光栅(FBG)应变测量结果,从而能够通过非常短的计算来评估接触应力与实时解释兼容。这种弹性逆方法是分析性的,并依赖于平面应变和等温假设。实验设备详细,技术问题以及校准程序均清晰可见。为了证明工业可行性,已经在不同的轧制速度和不同的板带厚度下进行了几次试验性冷轧试验。然后将所得的接触应力评估与数值模拟进行比较。对于法向应力(即压力)获得了合理的一致性,但对于剪切应力却没有获得合理的一致性(仅获得了一个数量级)。 (C)2015 Elsevier B.V.保留所有权利。

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