PYROLYZER PRODUCTION SYSTEM FOR WASTE MANAGEMENT USING GROUP TECHNOLOGY APPROACH

Achmad Pratama Rifai, Ragil Aditya Wibisono, Dwi Kumala Sari, W. P. Sari
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引用次数: 0

Abstract

Waste management methods in Indonesia largely rely on unsustainable practices such as open dumping and landfills which urgently need transformation. Pyrolysis is one alternative solution for waste problems as it can process waste into other products. As the existing production system was not set up to manufacture this machine, we proposed a production system to produce a pyrolizer so that a more effective and efficient production process can be achieved. In this study, we employed Group Technology approach using Rank Order Clustering (ROC) method to create cell manufacturing groups. Based on our evaluation on the shortest material movement, we produced 2 different cells to manufacture the pyrolyzer. Cell, I contained plate cutting, drilling, pipe cutting, and bending machines (M2, M5, M3, M4), whilst Cell 2 contained rolling and lathe machines (M1, M6).  It also contained main reactor, pyrolyzer reactor burner, middle condenser, upper access door, bottom access door, upper condenser, bottom condenser components (A, F, H, B, C, G, I). Out of the sixteen components to be made, seven components were in Cell I whereas the other nine were in Cell II (N, P, J, E, D, K , L, M, O) comprising burner case, access ladders, separators, firewalls, reactor base frames, condenser frames, gas piping, water piping, and sprinklers components. By applying this group technology method to the pyrolyzer production system, the production process could be carried out in a more efficient and organized manner.
基于成组技术的垃圾管理热解炉生产系统
印度尼西亚的废物管理方法在很大程度上依赖于不可持续的做法,如露天倾倒和垃圾填埋,这些做法迫切需要改变。热解是解决废物问题的一种替代方案,因为它可以将废物加工成其他产品。由于现有的生产系统没有建立制造这台机器,我们提出了一个生产系统来生产一个热解器,以实现一个更有效和高效的生产过程。在本研究中,我们采用组技术方法,使用秩序聚类(ROC)方法来创建细胞制造组。根据我们对最短物料移动的评估,我们生产了2种不同的细胞来制造热解器。单元1包含板材切割、钻孔、管材切割和折弯机(M2、M5、M3、M4),而单元2包含轧辊和车床(M1、M6)。它还包括主反应器,热解反应器燃烧器,中间冷凝器,上部通道门,底部通道门,上部冷凝器,底部冷凝器组件(A, F, H, B, C, G, I)。在要制造的16个组件中,7个组件在单元I中,而其他9个组件在单元II中(N, P, J, E, D, K, L, M, O),包括燃烧器外壳,通道梯,分离器,防火墙,反应堆基础框架,冷凝器框架,燃气管道,水管和洒水器组件。将该成组技术方法应用于热解器生产系统,可以使生产过程更加高效和有组织地进行。
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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5
审稿时长
8 weeks
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