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Integrated model for thermo-mechanical controlled process in rod (or bar) rolling

机译:杆(或杆)轧制热机械控制过程的集成模型

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This study presents an integrated model for computing the thermo-mechanical parameters (cross-sectional shape of workpiece, the pass-bypass strain and strain rate and the temperature variation during rolling and cooling between inter-stands) and metallurgical parameters (recrystallisation behaviour and austenite grain size―AGS), to assess the potential for developing "Thermo-Mechanical Controlled Process" technology in rod (or bar) rolling, which has been a well-known technical terminology in strip (or plate) rolling since 1970s. The advantage of this model is that metallurgical and mechanical parameters are obtained simultaneously in a short computation time compared with other models. The model has been applied to a rod mill to predict the exit cross-sectional shape, area and AGS per pass by incorporating the equations for AGS evolution being used in strip rolling. At the finishing train of rod mills, the strain rates reach as high as 1000-3000 s~(-1) and the inter-pass times are around 10-60 ms. The results show that the proposed model is an efficient tool for evaluating the effects of process-related parameters on product quality and dimensional tolerance of the products in rod (or bar) rolling. The results of the simulation demonstrated that the equation for AGS evolution being used in strip rolling might have limitations when applied directly to rod rolling at a high strain rate.
机译:本研究提出了一种用于计算热机械参数的集成模型(工件的横截面形状,绕过和轧制间的横截面应变和应变速率以及支架间之间的冷却期间)和冶金参数(重新结晶行为和奥氏体)谷物尺寸-AGS),评估在杆(或酒吧)轧制中开发“热机械控制过程”技术的潜力,这是自20世纪70年代以来的公知技术术语,该技术术语是条带(或板)滚动中的众所周知的技术术语。该模型的优点是与其他模型相比,在短的计算时间中同时获得冶金和机械参数。该模型已经应用于杆轧机,通过结合用于条带轧制的AGS演化的方程来预测每次通过的出口横截面形状,区域和AG。在杆轧机的整理列车处,应变率高达1000-3000 S〜(-1),并且间间隔时间约为10-60毫秒。结果表明,该建议的模型是一种有效的工具,用于评估过程相关参数对杆(或杆)滚动中产品的产品质量和尺寸公差的影响。模拟结果表明,当以高应变率直接施加到杆轧制时,在带轧制中使用的AGS演化的等式可能具有限制。

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