Skotnicki Wojciech, Jędrzejczyk Dariusz
Department of Mechanical Engineering Fundamentals, University of Bielsko-Biala, Willowa 2, 43-309 Bielsko-Biala, Poland.
Materials (Basel). 2021 Oct 17;14(20):6155. doi: 10.3390/ma14206155.
The paper presents preliminary research focused on the determination of the influence of surface preparation on the quality of the paint coating obtained by the cataphoresis method (KTL). The tests were carried out on steel parts used in the construction of trailers and truck bodies. The first research group consisted of cold-rolled and chemically cleaned parts, the second group were mechanically cleaned with abrasive blasting. In order to determine the influence of surface treatment on the corrosion resistance of the tested coatings, besides a corrosion test, roughness measurements were also carried out. Tests were performed on the crude surface and after coating deposition. Moreover, tests were supplemented by measuring the thickness of the coating using the magnetic induction method and the hardness with the use micro and nano hardness testers. Measurements of the tribological parameters under dry friction conditions were performed using a T11 tester. The corrosion resistance of the applied coatings was determined in a salt spray test. The obtained results were compared to those that were determined for different zinc coatings. It has been shown that the method of base steel surface preparation affects every measured parameter and property of tested paint coatings. The quality of the coating deposited on the steel base after chemical cleaning is much better than the one applied to the sandblasted surface. The measured corrosion resistance of the tested paint coatings is only greater than the corrosion resistance of the lamellar zinc coating. The other zinc coatings (galvanic, hot-dip, sherardized) show corrosion resistance by an order of magnitude higher.
本文介绍了一项初步研究,重点是确定表面处理对通过电泳法(KTL)获得的油漆涂层质量的影响。测试是在用于拖车和卡车车身制造的钢部件上进行的。第一组研究对象是经过冷轧和化学清洗的部件,第二组是经过喷砂机械清洗的部件。为了确定表面处理对测试涂层耐腐蚀性的影响,除了进行腐蚀测试外,还进行了粗糙度测量。测试在原始表面和涂层沉积后进行。此外,还通过磁感应法测量涂层厚度,并使用显微和纳米硬度测试仪测量硬度来补充测试。在干摩擦条件下使用T11测试仪进行摩擦学参数测量。通过盐雾试验确定所施加涂层的耐腐蚀性。将获得的结果与针对不同锌涂层测定的结果进行比较。结果表明,基体钢表面处理方法会影响测试油漆涂层的每个测量参数和性能。化学清洗后沉积在钢基体上的涂层质量远优于应用于喷砂表面的涂层。测试油漆涂层的测量耐腐蚀性仅大于片状锌涂层的耐腐蚀性。其他锌涂层(电镀、热浸、渗锌)的耐腐蚀性高出一个数量级。