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Improving Operational Anodising Process Performance Using Simulation Approach

机译:利用仿真方法改善操作阳性阳性处理性能

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The use of aluminium is very widespread, especially in transportation, electrical and electronics, architectural, automotive and engineering applications sectors. Therefore, the anodizing process is an important process for aluminium in order to make the aluminium durable, attractive and weather resistant. This research is focused on the anodizing process operations in manufacturing and supplying of aluminium extrusion. The data required for the development of the model is collected from the observations and interviews conducted in the study. To study the current system, the processes involved in the anodizing process are modeled by using Arena 14.5 simulation software. Those processes consist of five main processes, namely the degreasing process, the etching process, the desmut process, the anodizing process, the sealing process and 16 other processes. The results obtained were analyzed to identify the problems or bottlenecks that occurred and to propose improvement methods that can be implemented on the original model. Based on the comparisons that have been done between the improvement methods, the productivity could be increased by reallocating the workers and reducing loading time.
机译:铝的使用非常普遍,特别是在运输,电气和电子设备,建筑,汽车和工程应用领域。因此,阳极氧化方法是铝的重要过程,以使铝耐用,有吸引力和耐候性。该研究专注于制造和供应铝挤出的阳极氧化过程操作。从研究中进行的观察和面试中收集了该模型开发所需的数据。为研究当前系统,通过使用竞技场14.5仿真软件建模阳极化过程中涉及的过程。这些过程包括五个主要过程,即脱脂过程,蚀刻工艺,去除过程,阳极氧化过程,密封过程和16个其他过程。分析所得结果以确定发生的问题或瓶颈,并提出可以在原始模型上实施的改进方法。基于改进方法之间已经完成的比较,通过重新分配工人并减少加载时间可以提高生产率。

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