Preparation and research of WC–Cr3C2–Ni coating with efficient resistance to molten steel erosion and high-temperature oxidation

IF 5.9 3区 工程技术 Q1 CHEMISTRY, MULTIDISCIPLINARY
Diyao Zhang , Sheng Qu , Zijun Peng , Zhenli Liu , Jingkun Yu , Lei Yuan
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Abstract

This study focused on the threat of molten steel erosion in the failure of the WC–Cr3C2–Ni coating on the surface of the crystallization roller. An innovative experimental method for dipping low-melting-point metal surface coatings against high-temperature liquid metal erosion was proposed, filling the gap in experimental technology in this field. The WC–Cr3C2–Ni coating demonstrated excellent resistance to scouring erosion and high-temperature oxidation when exposed to long-term molten steel erosion during service. After 500 tons of steel throughput equivalent, the roller body performance did not decrease, and the hardness of the WC–Cr3C2–Ni coating was only reduced from 1298.75 Hv0.5 to 1265.21 Hv0.5 (by only 0.8 %). During the service process, the molten steel could not permeate into the WC–Cr3C2–Ni coating, and only micron-sized spherical steel slag particles (particle size 1–3 μm) were left on the coating surface. This study made it clear that the erosion of molten steel played a weak influencing factor in the failure of the production line. The experimental results provide a theoretical basis for the life evaluation of crystallization rollers and the prediction of production line maintenance time.
高效耐钢水侵蚀和高温氧化WC-Cr3C2-Ni涂层的制备与研究
本研究重点研究了结晶辊表面WC-Cr3C2-Ni涂层失效时钢水侵蚀的威胁。提出了一种新颖的低熔点金属表面涂层抗高温液态金属侵蚀浸渍实验方法,填补了该领域实验技术的空白。在使用过程中,WC-Cr3C2-Ni涂层长期暴露于钢液侵蚀中,表现出优异的耐冲刷侵蚀和高温氧化性能。500吨钢当量后,轧辊体性能没有下降,WC-Cr3C2-Ni涂层的硬度仅从1298.75 Hv0.5降低到1265.21 Hv0.5(仅下降0.8%)。在使用过程中,钢水不能渗透到WC-Cr3C2-Ni涂层中,涂层表面只留下微米级的球形钢渣颗粒(粒度为1 ~ 3 μm)。本研究明确了钢水侵蚀对生产线故障的影响较弱。实验结果为结晶辊寿命评估和生产线维护时间预测提供了理论依据。
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来源期刊
CiteScore
10.40
自引率
6.60%
发文量
639
审稿时长
29 days
期刊介绍: Journal of Industrial and Engineering Chemistry is published monthly in English by the Korean Society of Industrial and Engineering Chemistry. JIEC brings together multidisciplinary interests in one journal and is to disseminate information on all aspects of research and development in industrial and engineering chemistry. Contributions in the form of research articles, short communications, notes and reviews are considered for publication. The editors welcome original contributions that have not been and are not to be published elsewhere. Instruction to authors and a manuscript submissions form are printed at the end of each issue. Bulk reprints of individual articles can be ordered. This publication is partially supported by Korea Research Foundation and the Korean Federation of Science and Technology Societies.
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