首页> 外文会议>The Brimacombe Memorial Symposium October 1-4, 2000, Vancouver, British Columbia, Canada >Discovery - The cornerstone of research in continuous casting of steel billets
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Discovery - The cornerstone of research in continuous casting of steel billets

机译:发现-钢坯连铸研究的基石

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It was in the early seventies that research on the continuous casting of steel began to flourish worldwide. Brimacombe and co-workers were among the first to undertake work in this new field, conducting some of the best research. Seizing the opportunities of the day, namely the availability of digital computational capability, Brimacombe laid the foundation for process engineering research in general, and continuous casting in particular, by demonstrating the power of applying mathematical models in conjunction with measurements to analyse and advance this relatively new technology - continuous casting of steel. Through this framework many critical discoveries were made that clarified the influence of mould and spray design and operation on quality in the continuous casting of steel. This paper traces the key discoveries, with the objective of establishing the importance of the framework, and also of the nature of the research programs, in fostering the process. Major improvements to the process and billet quality have resulted from serendipitous discoveries on the links between mould behaviour and quality. Given the diminishing efforts of steel companies in basic research, universities have an important role to play in redefining the framework for research in this field and for providing leadership in the development of research programs that will lead to new discoveries in continuous casting.
机译:到七十年代初,对钢的连续铸造的研究开始在世界范围内蓬勃发展。 Brimacombe及其同事是最早在这个新领域开展工作的人,他们进行了一些最佳的研究。 Brimacombe抓住了当今的机会,即数字计算能力的可用性,通过展示将数学模型与测量相结合来分析和改进这种方法的能力,为一般的过程工程研究(尤其是连续铸造)奠定了基础。新技术-钢的连续铸造。通过这个框架,做出了许多关键的发现,这些发现阐明了结晶器和喷雾设计和操作对钢的连铸质量的影响。本文追踪了关键发现,目的是确定框架的重要性以及研究计划的性质对促进这一过程的重要性。模具性能和质量之间的偶然发现是对工艺和方坯质量的重大改进。鉴于钢铁公司在基础研究方面的努力不断减少,大学在重新定义该领域的研究框架以及在研究计划的开发中发挥领导作用方面将发挥重要作用,这将导致连续铸造的新发现。

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