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Zhang L, Ni J, Jiao K, et al. A new simulation characterization method to reveal the causes of cracking for cast iron cooling staves[J]. ISIJ International, 2025, 65(13): 2148-2155..
Zhang L, Gao T, Zhou Z, et al. Examination of factors and mechanisms contributing to surface wear on copper cooling staves within large blast furnaces[J]. Engineering Failure Analysis, 2024, 157: 107922..
Zhang L, Xu Z, Zong Y, et al. Physical properties and permeability enhance the cohesive zone of low carbon blast furnace[J]. Metallurgical Research & Technology, 2025, 122(5): 506..
Zhou, Z., Zhang, J., Zhang, L., Jiao, K., Gao, T., & Zhu, W. Analysis of Erosion Mechanism of Wear‐Resistant Layer in Large Blast Furnace Tuyere. steel research international, 2300307..
Zhou Zhenxing , Zhang Lei , Gao Tianlu , Meng Xiaoyu , Wang Yifei , Zhang Jianliang , Numerical Investigation on the Heat Transfer Performance of a Copper-Bar-Embedded Cast Iron Cooling Stave for Blast Furnaces, steel research international2026, 0, https://doi.org/10.1002/srin.70576.
Zhou Z, Zhang L, Gao T, et al. Slag crust solidification in copper–steel composite cooling staves for blast furnaces[J]. Physics of Fluids, 2026, 38(9)..
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