纳米陶瓷密封剂在镀锌低碳钢上的微尺度抗磨损性能

Anael P. Krelling, J. L. Jeronimo, Ivandro Bonetti, Gabriela Rabethge, Heitor F. Pensky, Raíssa R.S. Bibow, B. Zappelino, Julio C.G. Milan, Cesar E. da Costa
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引用次数: 0

摘要

这项工作的想法源于市场需求,即在涉及暴露于腐蚀性环境的应用中,获得可延长金属材料使用寿命的涂层或密封剂。这项工作中研究的纳米陶瓷密封剂的主要目的是延长金属紧固件的使用寿命。为了从其他角度评估密封剂的性能,还进行了微观结构分析、附着力测试、微尺度磨料磨损测试和腐蚀测试。这些测试分别在仅涂有紧固件行业常用的白锌的样品和涂有纳米陶瓷密封剂的白锌样品上进行。使用纳米陶瓷密封剂有助于提高耐腐蚀性和降低腐蚀速率。与只涂了白锌的样品相比,涂了密封剂的样品腐蚀率降低了 62.2%。涂层与基体的附着力较低,存在严重的分层和微裂纹。这一特点导致涂层在本研究的条件下表现出较低的耐磨性。与涉及耐腐蚀性的研究相比,紧固件行业对耐磨性的关注较少。本文获得的结果表明,摩擦学行为研究是提高恶劣环境中紧固件效率的一个重要因素。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Micro-Scale Abrasive Wear Resistance of a Nanoceramic Sealant Applied on Galvanized Low Carbon Steel
The idea for this work came from a market need to obtain coatings or sealants that would extend the useful life of metallic materials in applications that involve exposure to corrosive environments. The main objective of the nanoceramic sealant studied in this work is to extend the life of metallic fasteners. To evaluate the performance of the sealant from other perspectives, microstructural analysis, adhesion test, micro-scale abrasive wear tests and corrosion test were carried out. These tests were performed on samples coated only with white zinc, which is commonly used in the fastener industry, and on samples coated with white zinc followed by application of the nanoceramic sealant. The application of the nanoceramic sealant contributed to the improvement of corrosion resistance and reduction of the corrosion rate. The corrosion rate of the sample coated with the sealant reduced by 62.2% when compared to the sample that only went through the white zinc coating process. The coating showed low adhesion to the substrate with the presence of severe delamination and microcracks. This feature contributed to the low wear resistance presented by the coating under the conditions studied in this work. Less attention, compared to studies involving corrosion resistance, has been given to wear resistance in the fastener industry. The results obtained in this paper show that the study of tribological behavior is an important factor in increasing the efficiency of fasteners applied in harsh environments.
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