Application of The Reverse Engineering In The Modelling of A Blade and Screen In A Hammer Mill

Annisa Haq, Agus Kusnayat Watnaya, S. Martini
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Abstract

PT XYZ plans to produce coconut shell briquettes. Currently, PT XYZ already has a hammer mill machine that will be used in the production process. A hammer mill machine is a machine that serves to smooth the material. Before carrying out mass production, a simulation is carried out first. The manufacture of briquettes found obstacles in the process of grinding and screening. Coconut shell charcoal that has been milled and entered is partially retained and cannot be released to proceed to the next process. The grinding result is larger than the screen size, which is 1 to 2 mm. In the manufacture of briquettes, it is expected that the grinding results are less or equal to 0.4 mm. Based on the identification of the problem, the alternative solution chosen by the researcher is to redesign the hammer mill machine, especially on the blade and screen sections. The design is done using the reverse engineering method. There are five steps in designing using this method. In the study, it was found that the second design was a suitable design to be developed because it was better than the existing state. The mill results were obtained with an average of 0.0343 mm and a grinding time of 186.807 seconds. The fineness values and the grinding process time were obtained through simulations using the EDEM 2022.1 software.
逆向工程在锤磨机叶片及筛网造型中的应用
PT XYZ计划生产椰壳型煤。目前,PT XYZ已经拥有一台锤式磨机,将用于生产过程。锤磨机是用来磨平物料的机器。在进行批量生产之前,首先进行仿真。在制煤过程中发现了磨矿和筛分的障碍。被磨碎和进入的椰子壳木炭部分被保留,不能被释放进入下一个过程。研磨结果大于筛网尺寸,为1 ~ 2mm。在制造型煤时,期望粉碎结果小于或等于0.4 mm。在发现问题的基础上,研究人员选择的替代方案是重新设计锤磨机,特别是在叶片和筛网部分。采用逆向工程的方法进行设计。使用这种方法进行设计有五个步骤。在研究中,发现第二种设计是一个合适的设计,因为它比现有的状态更好。磨矿结果平均为0.0343 mm,磨矿时间为186.807 s。利用EDEM 2022.1软件进行仿真,得到磨矿细度值和磨矿时间。
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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