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The Development of a Heat Assisted Section Rolling Process for Strip

机译:带钢热辅助段轧制工艺的发展

摘要

This research aims to examine the feasibility of a new concept in section rolling of thick strip, which either could not be rolled at present due to cracking at bent corners. Whereas, the second moment of area of sections could be increased through sharpened corners and increased gauge thickness. A heat assisted section rolling process is proposed. This process is based on application of high intensity heat on the inner surface of the strip, immediately prior to rolling. To investigate the new section rolling concept, the following work has been carried out. ududFirstly, the material property of the S450 steel has been determined using the Gleeble simulator, followed by thermal conductivity tests. Since a freon was used to increase temperature gradient, the heat transfer coefficient for the freon-hot surface interaction was determined. Finally, the four point hot bending tests were conducted to validate the simulation model. For this purpose, a hot bending test rig was designed and fabricated, utilizing an halogen heater as the heat source. The results between experiment and simulation were compared and a good correlation was found.ududThen, finite element analyses of a single pass hot rolling process has been adopted to investigate the neutral axis shift and section thickening effects. It is revealed that localised heating creates bulging on the compressed surface. The bulged surface affects the both neutral axis and thickening of the formed parts. ududThis research has demonstrated that localised heating has a potential to be employed in section rolling operations. It shows that the neutral axis of the bent region shifted closer to the tensile surface would reduce the tendency for surface cracking. In addition, the increase in thickness that arises at a bend would enhance the stiffness of rolled sections. Ultimately a process window for heat assisted section rolling has been established.
机译:这项研究的目的是检验一种新概念在厚带材的截面轧制中的可行性,厚壁带钢由于弯角处的裂纹目前无法轧制。然而,可以通过锐化拐角和增加厚度来增加截面面积的第二矩。提出了一种热辅助型材的轧制工艺。该过程基于紧接在轧制之前在带材的内表面上施加高强度热量。为了研究新的部分滚动概念,已进行了以下工作。 ud ud首先,已使用Gleeble仿真器确定了S450钢的材料性能,然后进行了热导率测试。由于使用氟利昂来增加温度梯度,因此确定了氟利昂与热表面相互作用的传热系数。最后,进行了四点热弯曲试验以验证仿真模型。为此,设计并制造了一个热弯曲试验台,利用卤素加热器作为热源。比较了实验和模拟的结果,发现了良好的相关性。 ud ud然后,通过单道次热轧过程的有限元分析来研究中性轴偏移和截面加厚的影响。揭示了局部加热在压缩表面上产生凸起。凸起的表面会影响中性轴和成形零件的厚度。 ud ud这项研究表明,局部加热有潜力用于型材轧制操作中。结果表明,弯曲区域的中性轴更靠近拉伸表面,将减少表面裂纹的趋势。另外,在弯曲处产生的厚度增加将增强轧制部分的刚度。最终,建立了用于热辅助型材轧制的工艺窗口。

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    Sidek Mohd Zaidi;

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  • 年度 2013
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