Analysis of internal cracks in high carbon casting bloom induced by soft reduction process and its improvement using numerical simulations and industrial experiments

N. Zong, Jian Huang, Jun Liu, Sida Ma, T. Jing
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引用次数: 6

Abstract

To comprehensively investigate and improve the internal cracks in high carbon casting bloom induced by the soft reduction process, a three-dimensional mechanical model was developed to calculate the cracking zone, centre solid fraction and the strain states in as-cast bloom. In the present work, the specific relationship between cracking zone area, centre solid fraction and maximum equivalent strain in cracking zone has been established under a number of withdrawal machines. A two-stage sequential soft reduction method was carried out for high carbon bearing steel, which aims to provide theoretical basis for improving the internal quality and effectively decrease the risk of internal cracks. According to the experimental results, the internal cracks were effectively alleviated and center shrinkage cavities were nearly eliminated by optimum designed experiments. Along the bloom central part, the proportion of length where the segregation rate is between 0.95 and 1 has been increased from 16.7% to 91%, and the fluctuation of carbon distribution in the center line of as-cast bloom was decreased to obtain the high homogeneity of the internal structure. In addition, grade of banded carbide in the hot-rolled wire decreased accordingly from 2.5 to 1.67.
采用数值模拟和工业试验相结合的方法分析了高碳铸件软还原工艺引起的内部裂纹及改进措施
为了全面研究和改善高碳铸件软还原过程引起的内部裂纹,建立了三维力学模型,计算了铸态坯的裂纹区域、中心固相分数和应变状态。本文建立了在多种提取机作用下,裂纹区面积、中心固含量与裂纹区最大等效应变之间的具体关系。为提高高碳轴承钢内部质量,有效降低内部裂纹风险提供理论依据,对高碳轴承钢进行了两阶段顺序软还原。试验结果表明,优化设计的试验有效地缓解了内部裂缝,基本消除了中心收缩空洞。沿铸坯中心部分,偏析率在0.95 ~ 1之间的长度比例由16.7%提高到91%,铸坯中心线碳分布波动减小,内部结构高度均匀。此外,热轧线材中带状碳化物的品位也从2.5降低到1.67。
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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