KARAKTERISASI LAPISAN OKSIDA HASIL ANODIZING PADA ALUMINIUM DENGAN VARIABEL WAKTU PENCELUPAN

Andika Wisnujati, Ferriawan Yudhanto
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Abstract

Anodizing is an electrolytic coating process that converts aluminum into aluminum oxide. The anodizing process is widely used in the manufacturing industry, especially in automotive components. Its utilization has benefits such as resistance to scratches, ease of maintenance, and added decorative value. The purpose of this study was to determine the effect of time variations on the hardness and thickness of the oxide layer in the 6xxx series of aluminum anodizing processes. The variation of time used in the immersion process is 20, 30, and 40 minutes, with an electric current of 2 amps and a voltage of 24 volts. After that, the dyeing and sealing process is carried out. The tests carried out included testing of hardness (Vickers) and the thickness of the oxide layer (coating thickness gauge). The results of the highest hardness test of 112.9 VHN were obtained at a time variation of 40 minutes, with an average layer thickness of 5.07 m. It can be said that the amount of time spent in the anodizing process has an effect on how hard the oxide layer gets and how thick it is on the 6xxx series of aluminum metal.  
用浸没时间变量稀释铝涂层的氧化特性
阳极氧化是一种将铝转化为氧化铝的电解镀膜过程。阳极氧化工艺广泛应用于制造业,尤其是汽车零部件。它的使用具有抗划伤,易于维护和增加装饰价值等优点。本研究的目的是确定时间变化对6xxx系列铝阳极氧化过程中氧化层硬度和厚度的影响。浸泡过程中使用的时间变化为20、30和40分钟,电流为2安培,电压为24伏。之后,进行染色和封口工序。所进行的测试包括硬度(维氏硬度)和氧化层厚度(涂层厚度计)的测试。112.9 VHN的最高硬度测试结果,时间变化为40分钟,平均层厚为5.07 m。可以说,在阳极氧化过程中花费的时间对6xxx系列铝金属上氧化层的硬度和厚度有影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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