纳米颗粒对锌电镀层物理力学性能的影响

Pavel Aleksandrovich Gorbushin, Valentin Vladimirovich Safonov, Sergey Aleksandrovich Шишурин, Vadim Viktorovich Venskaitis
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引用次数: 0

摘要

本文介绍了纳米Al2O3掺杂锌基电镀镀层的显微硬度和耐磨性的研究结果。研究表明,在镀锌液中加入纳米级粉末后,其显微硬度和耐磨性发生了变化。因此,当电解质中添加1 ~ 9 g/l的Al2O3纳米材料时,所得涂层的显微硬度提高了10 ~ 65%。以浓度为5 g/l - 657 HV单位的纳米粒子修饰的涂层效果最好。耐磨性试验表明,与未添加纳米级氧化铝颗粒的电解质相比,涂覆纳米复合镀锌锌的试样总磨损量减少1.5 ~ 1.7倍。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Influence of nanosized particles on physical and mechanical properties of galvanic zinc coating
The article presents the results of a study of microhardness and wear resistance of electroplated coatings based on zinc, with the inclusion of Al2O3 nanosized particles in the composition. It has been established that when nano-sized powders are introduced into galvanizing electrolytes, there is a change in microhardness and wear resistance. Thus, when adding from 1 to 9 g/l of Al2O3 nanosized materials to the electrolyte, the microhardness of the resulting coating increased by 10–65%. The best results were obtained for the coating modified with nanosized particles with a concentration of 5 g/l - 657 HV units. Wear resistance tests showed that the total wear of specimens coated with nanocomposite galvanized zinc is 1.5–1.7 times less than that of specimens coated without adding nanosized aluminum oxide particles to the electrolyte.
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