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Mathematical Modelling of Hot Rolling: A Practical Tool to Improve Rolling Schedules and Steel Properties

机译:热轧的数学建模:改善轧钟和钢特性的实用工具

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摘要

Most of the commercial metallic materials undergo at least one hot deformation stage during fabrication. Hot deformation processing leads to the production of plates, strips, rods, pipes and other shapes at lower overall cost when compared to the cold deformation/annealing route. Comprehensive study of the metallurgical phenomena during hot deformation has enormous potential application in the control of industrial rolling processes. Understanding of the microstructural and mean flow stress evolution lead to sound steel developments and innovative rolling schedules. The models predict parameters such as grain size, fractional softening (static and dynamic) and strain induced precipitation which are useful to improve rolling schedules. Effects such as incomplete softening and strain accumulation can be easily detected as well as their consequences on the final grain size and mechanical properties. In this regard, special attention must be given to steels, the most important metallic material in terms of history, present and future. In this paper, three hot rolling routes will be analyzed in order to produce high strength linepipe steels. Examples were selected on how the use of modelling during development stage can help to meet mechanical properties, mainly toughness and drop weight tear test. Firstly, it is presented a brief overview on mathematical models applied to hot rolling. Thin slab casting/direct rolling, hot strip mill and plate mill are exemplified in the present work. The development of new steel grades can greatly accelerated with the aid of modelling, which is an useful, low-cost technique.
机译:大多数商业化的金属材料的制造过程中经历至少一个热变形阶段。热变形相比冷变形/退火路由时处理导致产生的板,条,棒,管和以较低的整体成本的其它形状。热变形过程中的冶金现象综合研究在工业轧制过程的控制巨大的潜在应用。了解的微观结构和平均流变应力变化导致声音钢的发展和创新滚动计划。该模型预测的参数,如晶粒尺寸,分数软化(静态和动态)和应变诱导析出,其是提高轧制时间表是有用的。可以容易地检测的效果,例如不完全的软化和应变积累以及它们对最终的晶粒尺寸和机械性能的影响。在这方面,必须特别注意的历史,现在和未来的角度来给钢中,最重要的金属材料。在本文中,三个热轧路由在以生产高强度管线钢进行分析。例如选择在使用过程中的发展阶段建模如何帮助满足机械性能,主要是韧性和落锤撕裂试验。首先,它是提出了关于应用于热轧数学模型的简要概述。薄板坯连铸/直接轧制,热轧带钢轧机和板轧机例举在目前的工作。新钢种开发可与建模的帮助下,这是一个非常有用的,低成本的技术,大大加快。

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