Stress state of billet – mandrel system during production of hollow steel billet in a unit of continuous casting and deformation. Part 1

Q3 Materials Science
O. S. Lekhov, A. V. Mikhalev, S. O. Nepryakhin
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Abstract

The substantiation of the relevance of obtaining continuous cast steel pipe hollow billet is given from the position of improving the quality of pipes made of carbon and alloy steels is given. The article presents an assessment of the quality of the inner surface of pipes made of solid steel pipe billet. A new technology is proposed for the production of hollow steel pipe billets on a resource-saving unit of combined continuous casting and deformation. The photo of the continuous casting and deformation section of JSC Ural Pipe Plant is given, where a pilot unit of combined continuous casting and deformation is installed. The paper presents the results of a theoretical study of stress-strain state of the mandrel and sections of a pipe billet when it is compressed by the strikers of the unit of combined continuous casting and deformation. The authors discuss the general model of the mold – striker system. The initial data on calculation, dimensions of the hollow pipe billet and a description of the calibration of strikers for compression of a hollow steel billet are given. The temperature field of a hollow billet was determined. To simulate the stress-strain state of the metal in the roll pass and the mandrel, four contact pairs were considered. Calculations were made by the finite element method. The dimensions of the final element in the roll pass of hollow billet were determined. The authors established the values and patterns of changes in metal displacements and axial stresses in the roll pass during the production of hollow steel billets in the unit of combined continuous casting and deformation (strikers are made along a constant radius). The stress state of metal in the roll pass was assessed from the standpoint of improving the quality of hollow steel billets.
连铸中空钢坯生产过程中钢坯-心筒系统的应力状态及变形。第1部分
从提高碳素钢和合金钢管材质量的角度出发,论证了获得连铸钢管空心坯的重要性。本文对实心钢坯管材的内表面质量进行了评价。提出了一种资源节约型连铸变形联合装置生产空心钢管坯的新工艺。给出了苏钢乌拉尔管厂连铸变形工段的照片,该厂安装了连铸变形联合试验装置。本文介绍了一种管坯在连铸变形联合装置的冲击器的挤压下,芯棒和管坯截面的应力-应变状态的理论研究结果。讨论了击模系统的一般模型。给出了空心钢坯的初始计算数据、尺寸及空心钢坯压缩锤的标定说明。测定了空心钢坯的温度场。为了模拟金属在辊道和芯轴中的应力-应变状态,考虑了4对接触对。采用有限元法进行了计算。确定了空心方坯轧制孔型中终件的尺寸。本文建立了在连铸和变形组合装置中(沿定半径进行打击)生产空心钢坯时,辊道内金属位移和轴向应力的变化值和规律。从提高空心钢坯质量的角度出发,对轧制过程中金属的应力状态进行了评价。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Izvestiya Vysshikh Uchebnykh Zavedenij. Chernaya Metallurgiya
Izvestiya Vysshikh Uchebnykh Zavedenij. Chernaya Metallurgiya Materials Science-Materials Science (miscellaneous)
CiteScore
0.90
自引率
0.00%
发文量
81
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