Application of Сomputer Modeling for the Analysis of the Flow of Metal during the Settlement of Flat Billets

Q4 Materials Science Steel in Translation Pub Date : 2024-09-09 DOI:10.3103/s0967091224700335
K. N. Solomonov, L. I. Tischuk, S. M. Gorbatyuk, O. N. Chicheneva, A. A. Gerasimova
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Abstract

Computer simulation of the metal flow pattern during the settlement of flat billets is considered on the basis of the developed “equi-theory” based on the principle of the shortest normal, which makes it possible to build a drawing of a multi-contour billet according to the specified dimensions, to determine the metal flow separating lines, streamlines, to analyze the metal flow pattern, and to substantiate the use of technological methods and structural elements that prevent or reduce the risk of defects. The general characteristics of broadly oriented, special and highly specialized software complexes are presented, their advantages and weaknesses are noted. The results of computer modeling of the metal flow pattern for complex multi-contour workpieces using the developed EQUI software package are shown.

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应用计算机建模分析扁锭沉降过程中的金属流
摘要 在基于最短法线原理开发的 "等值理论 "的基础上,考虑了扁锭沉降过程中金属流动模式的计算机模拟,这使得按照指定尺寸绘制多轮廓扁锭图纸、确定金属流动分离线、流线、分析金属流动模式以及证实使用防止或减少缺陷风险的技术方法和结构元素成为可能。介绍了面向广泛的、特殊的和高度专业化的复合软件的一般特点,并指出了它们的优点和缺点。展示了使用开发的 EQUI 软件包对复杂多轮廓工件的金属流动模式进行计算机建模的结果。
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来源期刊
Steel in Translation
Steel in Translation Materials Science-Materials Science (all)
CiteScore
0.60
自引率
0.00%
发文量
81
期刊介绍: Steel in Translation  is a journal that represents a selection of translated articles from two Russian metallurgical journals: Stal’  and Izvestiya Vysshikh Uchebnykh Zavedenii. Chernaya Metallurgiya . Steel in Translation  covers new developments in blast furnaces, steelmaking, rolled products, tubes, and metal manufacturing as well as unconventional methods of metallurgy and conservation of resources. Papers in materials science and relevant commercial applications make up a considerable portion of the journal’s contents. There is an emphasis on metal quality and cost effectiveness of metal production and treatment.
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