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The effect of material productivity on scrap reduction on aluminum reduction pot process

机译:材料生产率对铝减少锅工艺废料的影响

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Scrap in the production process is defined as part of production that can not be accepted as the final product due to production failure. The amount of scarp occurring in the reduction pot production process of one of the aluminum smelting furnaces exceeds the acceptance standard of 5 to 10%. This affects the amount of production produced. The purpose of this study is to reduce the amount of scrap produced to increase the productivity of the materials used. The solution is carried-out by making improvements using Lean Six Sigma method. In the initial calculation, material productivity ranged from 0.88. Based on the study, the factors that cause the high amount of scrap produced is the use of Na20 which is inserted into the alumina is different in size and the influence of noise that occurs in pots that are difficult to control. The analysis base on Lean Six Sigma obtained process cycle efficiency (PCE) equal to 86,92% for actual condition. Process improvement is carried-out through define, measure, analyze, improve and control procedure on Na2O feeding process and PCE value decrease 6,05%. This indicates that increased process capability will reduce scrap. A decrease in scrap amount of about 6% will be able to increase material productivity by 0.05%. This indicates that continuous process control is needed to decrease the number of scraps and increase productivity.
机译:生产过程中的废料被定义为由于生产失败而不能被视为最终产品的生产的一部分。在铝冶炼炉之一的还原罐生产过程中发生的围巾的量超过5%至10%的验收标准。这会影响产生的生产量。本研究的目的是减少生产的废料量,以提高所用材料的生产率。通过使用瘦六种Sigma方法改进来进行解决方案。在初始计算中,材料生产率范围为0.88。基于该研究,产生高量废料的因素是使用插入氧化铝的Na20的尺寸不同,难以控制的噪声的影响。瘦六西格玛的分析基础获得了实际情况的工艺循环效率(PCE)等于86,92%。通过定义,测量,分析,改进和控制程序对Na 2 O进料过程的限定,测量,分析,改进和控制程序进行过程改进,PCE值降低6,05%。这表示增加的过程能力将减少废料。废料量约为6%的降低将能够将材料生产率提高0.05%。这表明需要连续的过程控制来降低废料的数量并提高生产率。

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