MODELLING THE EVOLUTION OF CASTING DEFECT CLOSURE BY RADIAL SHEAR ROLLING

F.E. Popov, N. Lutchenko, Alexandr Panichkin, S. Lezhnev, E. Panin, Leonid Vinogradov, A. Arbuz
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Abstract

This paper studies the behavior of a transverse through defect in an ingot during complex vortex flow of metal deformed by the radial shift rolling (RSR) method. The aim of the work was to investigate the applicability of the RSR method for the deformation treatment of oxide-dispersed strengthened steel (ODS-steel) ingots into a final semi-finished product. Vortex flow of metal promotes dispersion of alloying solid oxides and refinement of steel structure. However, the question of development or closure of possible casting defects of ODS-steel ingot remains open. For this purpose, an ODS-steel ingot with a through-hole modelling the defect was rolled according to the assumed process scheme. Also, to visualize the evolution of the defect in more detail during the rolling process, a simulation of thesame defect development in an aluminum bar has been performed in 2 mm steps. The results of both rolls showed good correlation. Based on many cross-sections of the experimental bars, detailed 3D models of the defect evolution were built. An average reduction of 50 % in defect volume was found. Welding of the outer areas occurs immediately, but the central areas remain unclosed, stretching proportionally with the drawing of the rod during rolling. For this reason, RSR cannot be used with large cavity defects in the axial zone, but this method is guaranteed to weld surface defects even at low reductions.
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通过径向剪切轧制模拟铸造缺陷闭合的演变过程
本文研究了通过径向偏移轧制(RSR)方法变形的金属在复杂涡流过程中钢锭中横向贯穿缺陷的行为。这项工作的目的是研究 RSR 方法是否适用于将氧化物分散强化钢(ODS-钢)钢锭变形处理成最终半成品。金属涡流可促进合金固体氧化物的分散和钢结构的细化。然而,ODS 钢锭可能存在的铸造缺陷的发展或消除问题仍未解决。为此,我们根据假定的工艺方案轧制了一块带有通孔的 ODS 钢锭。此外,为了更详细地观察缺陷在轧制过程中的演变,还以 2 毫米为单位模拟了铝棒中相同缺陷的发展。两种轧制结果显示出良好的相关性。根据实验棒材的许多横截面,建立了详细的缺陷演变三维模型。结果发现,缺陷体积平均减少了 50%。外部区域立即发生焊接,但中心区域仍未封闭,在轧制过程中随着棒材的拉伸成比例地伸长。因此,RSR 不能用于处理轴向区域的大空腔缺陷,但这种方法可以保证焊接表面缺陷,即使缺陷减少量较低。
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来源期刊
Journal of Chemical Technology and Metallurgy
Journal of Chemical Technology and Metallurgy Engineering-Industrial and Manufacturing Engineering
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1.40
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