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首页> 外文期刊>Journal of Materials Processing Technology >A new sensor for the evaluation of contact stress by inverse analysis during steel strip rolling
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A new sensor for the evaluation of contact stress by inverse analysis during steel strip rolling

机译:一种新型的带钢轧制过程中通过逆分析评估接触应力的传感器

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摘要

Knowledge of the contact stress between roll and strip becomes a critical factor in modern, high-speed rolling mills. In this paper, an inverse analytical method is developed to determine the contact stress in the roll gap by measuring the stress tensor with fibre optics at only one point inside the roll. Unlike many inverse methods, no matrix inversion is needed because the very small contact length would lead to ill-conditioned matrices. Iterative methods are also not studied because short computation times are desired. This approach uses the theory of elasticity on the assumption that the problem is isothermal and planar and relies on the expansion of holomorphic functions into a power series. On the other hand, the computation time is studied to rapidly optimise the industrial parameters during the rolling process. Hot, cold and temper-rolling simulations are given to demonstrate the accuracy of the method and the feasibility of this new kind of sensor, taking into account the restrictions (e.g., frequency of acquisition) of the local measurement system.
机译:了解轧辊和带钢之间的接触应力已成为现代高速轧机中的关键因素。在本文中,开发了一种逆分析方法,通过在卷筒内部仅一点测量光纤的应力张量来确定卷筒间隙中的接触应力。与许多逆方法不同,不需要矩阵求逆,因为非常小的接触长度会导致条件不佳的矩阵。由于需要较短的计算时间,因此也没有研究迭代方法。这种方法使用弹性理论,假设问题是等温的和平面的,并且依赖于全纯函数扩展为幂级数。另一方面,研究了计算时间以快速优化轧制过程中的工业参数。考虑到本地测量系统的局限性(例如采集频率),给出了热,冷和回火轧制仿真以证明该方法的准确性和这种新型传感器的可行性。

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