塑料铲球技术分析

W. Sugandi
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摘要

新加坡,Tasikmalaya每天可以产生154.72立方米的塑料垃圾。这些塑料垃圾随后由Tasikmalaya废物银行管理。但管理层一直只局限于分拣,最后以低价卖给城市。为了增加销售价值,塑料废料需要提前切碎,这样经销商才会高价购买,当然这样会增加BST的收入。农业实验室设备和机械FTIP Unpad已经开发出一种塑料废物计数机,应用于BST Tasikmalaya,希望产生所需的塑料计数。但是,这台机器目前还没有规格资料,需要进一步的技术分析研究。本研究的目的是分析塑料计数机的技术,包括;驱动功率要求,轴直径,传动圈数,车架分析,焊接强度。研究方法采用描述分析法,即对机器的结构部件进行测量和计算。技术分析计算结果表明,驱动力为5.12 HP,轴径28.1 mm,所用皮带数为2条,机架挠度0.005 mm,焊接强度504.234 n,从技术上讲,垃圾计数机塑料能很好地切碎塑料垃圾。
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Analisis Teknik Mesin Pencacah Plastik
Singaparna, Tasikmalaya can produce 154.72 m 3 of plastic waste every day. The plastic waste was then managed by the Tasikmalaya Waste Bank. But the management has been only limited to sorting and finally sold at low prices to the city. To increase the sale value, the plastic waste needs to be chopped in advance so that the dealer will buy it at a high price, of course this will add income to BST. Agricultural Laboratory Equipment and Machinery FTIP Unpad had been developed a plastic waste counting machine to be applied to BST Tasikmalaya in hopes of producing the desired plastic count. However, this machine does not yet have specification data so further research is needed on technical analysis. The purpose of this research was to analyze the technique of plastic counting machines which include; driving power requirements, shaft diameter, number of transmission coir, frame analysis, and weld strength. The research method used was descriptive analysis method, which is measuring and calculating the structural components of the machine. The results of the calculation of the technical analysis showed that the driving force was 5.12 HP, shaft diameter of 28.1 mm, the number of belts used were 2 belts, frame deflection of 0.005 mm, welding strength to support the load of 504.234 N. Technically the garbage counting machine plastic can chop plastic waste well.
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