钢轨钢连铸坯废渣磨球特征缺陷的发生

A. Umanskii, I. S. Morozov, E. Protopopov, A. Simachev, L. Dumova
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引用次数: 0

摘要

在金相研究的基础上,确定了由K76F钢轨钢连铸坯废渣轧制出的磨球缺陷的特征。建立了钢球内部缺陷的存在与钢球抗冲击性能的关系。以内部裂纹形式存在的缺陷在其局部区域和团块中有非金属夹杂物的堆积,对球的抗冲击性降低影响最大。这些缺陷是导致钢球在抗冲击试验中损坏的原因,分别占62%和17%。无显著非金属夹杂物堆积的内部裂纹和沿相界面边界的淬火微裂纹的影响分别为12%和9%。建立了K76F钢坯抗冲击试验中废渣化学成分对钢球破坏概率的影响规律和机理。所研究的钢坯中硫含量的增加降低了钢球的抗冲击性,因为它有助于形成集中在内部裂纹区域的非塑性硫化物。钢轨钢中氢含量的增加自然会增加球团形成的可能性,这大大降低了钢球在冲击载荷下的稳定性。初始钢坯中含碳量的增加会影响在干燥试验中K76F钢球破坏概率的增加。当碳含量达到与共析钢相对应的水平时,形成了渗碳体型碳化物。一般情况下,K76F钢轨钢化学成分对磨球抗冲击性的相对影响程度为48%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Occurrence of characteristic defects of grinding balls from rejects of continuously cast billets of rail steel
On the basis of metallographic studies, the authors determined the characteristic defects of grinding balls rolled from the rejects of continuously cast billets of K76F rail steel. Relationship of the presence of internal defects of the balls with their impact resistance was established. Defects in the form of internal cracks with accumulations of non-metallic inclusions in the area of their localization and flocks have the greatest impact on the reduction of balls impact resistance. Such defects are the cause of balls destruction during impact resistance tests in 62 and 17 % of cases, respectively. The effect of internal cracks without significant accumulations of non-metallic inclusions and quenching microcracks located along the boundaries of the phase interface was estimated at 12 and 9 %. The regularities and mechanism of influence of the rejects chemical composition of K76F rail steel billets on the probability of destruction of the balls produced from them during impact resistance tests were established. An increase in sulfur content in the billets of the studied rail steel reduces impact resistance of the balls produced from them, as it contributes to formation of non-plastic sulfides that concentrate in the area of internal cracks. An increase in hydrogen content in rail steel naturally contributes to an increase in probability of formation of the flocks, which significantly reduce the balls stability to shock loads. An increase in carbon content in the initial billets affects the increase in probability of destruction of K76F steel balls during copra tests. It is explained by formation of cementite-type carbides when carbon content corresponding to the eutectoid steel is reached. In general, the relative degree of influence of the K76F rail steel chemical composition on impact resistance of grinding balls is 48 %.
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