Baiocco Gabriele, Genna Silvio, Salvi Daniel, Ucciardello Nadia
Department of Enterprise Engineering Mario Lucertini, University of Rome Tor Vergata, 00133 Rome, Italy.
Materials (Basel). 2023 Jul 30;16(15):5359. doi: 10.3390/ma16155359.
In the present paper, different surface preparations are investigated with the aim of increasing the wear behaviour of an electrophoretic graphene coating on a copper plate. The study was divided into two steps: In the first step (pre-tests), to detect the most promising pretreatment technology, five different surface preparations were investigated (electropolishing, sandblasting, degreasing and pickling, laser cleaning and laser dots).In the second step, on the basis of the results of the first step, a 3 full factorial plan was developed and tested; three treatment types (pickled and degreased, laser-cleaned, and laser dots) and three different voltages (30, 45 and 60 V) were adopted. Analysis of variance (ANOVA) was used to evaluate their influence on wear resistance; in particular, the maximum depth and width of the wear tracks and the coating break distance were investigated. The results of this study show that, in optimal conditions, laser treatment (particularly laser dots) canlead to as high as a four-fold increase in wear resistance.
在本论文中,研究了不同的表面处理方法,目的是提高铜板上电泳石墨烯涂层的耐磨性能。该研究分为两个步骤:第一步(预测试),为了检测最有前景的预处理技术,研究了五种不同的表面处理方法(电解抛光、喷砂、脱脂酸洗、激光清洗和激光打点)。第二步,根据第一步的结果,制定并测试了一个三因素全因子试验计划;采用了三种处理类型(酸洗脱脂、激光清洗和激光打点)和三种不同电压(30V、45V和60V)。使用方差分析(ANOVA)来评估它们对耐磨性的影响;特别研究了磨损轨迹的最大深度和宽度以及涂层断裂距离。本研究结果表明,在最佳条件下,激光处理(特别是激光打点)可使耐磨性提高高达四倍。