便携式铝熔炼倾斜炉的设计与制造

M. Yusuf, S. Bahri, Agustinawati Agustinawati
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摘要

机械加工是利用机床对金属进行切削加工的过程。机加工过程将产生产品和切屑或废料。加工过程中产生的加工芯片的金属可以回收制成新材料。加工屑中的金属可通过熔炼工艺回收利用。本研究旨在设计和制造一个坩埚炉,该炉可以支持加工芯片的金属废料转化为新材料的回收过程-该炉设计用于使用气体燃料熔化有色金属。本研究创造了斜锅式坩埚炉。坩埚炉用于有色金属,如青铜、黄铜、锌和铝合金。坩埚炉的容量限制在10公斤以内。使用液化石油气(LPG)作为炉子的燃料。炉子的结构是圆柱形设计的。燃烧器直立安装在炉子的底部。燃烧过程是通过混合燃料液化石油气和鼓风机的空气来完成的。炉子在铝制加工芯片上进行了测试,使用的是亚齐省Lhokseumawe当地可用的材料。采用路创TM-906A温度计测量坩埚内部温度。从已经完成的炉的设计和试验结果可以得出,6kg的铝加工屑在640oC的温度下熔化52分钟,所需的LPG气体燃料为1.30kg。设计坩埚炉的最高温度为700°C。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design and Fabrication of Portable Tilting Furnace for Aluminium Melting
Machining is a metal cutting process using a machine tool. The machining process will produce the products and the chips or the scraps. The metal of machining chips made from machining processes can be recycled into new materials. The metal of machining chips can be recycled through the smelting process. This research aims to design and fabrication a crucible furnace that can support the recycling process of the metal scraps of machining chips into a new material—the stove is designed to melt non-ferrous metals using gas fuel. The tilting-pot crucible furnace type was created in this research. The crucible furnaces are used for nonferrous metals such as bronze, brass, zinc, and aluminum alloys. The crucible furnace capacities are limited to 10 kg. Liquefied Petroleum Gas (LPG) was used as the fuel for the furnace. The construction of the stove is cylindrically designed. The burner was installed upright at the bottom of the stove. The combustion process is done by mixing fuel LPG gas and air from the blower. The stove was tested on the aluminum machining chips using locally available materials in Lhokseumawe Aceh. The thermometer Lutron TM-906A was used to measure the temperature inside the crucible. From the results of the design and testing of the furnace that has been done, it can be concluded that the aluminum machining chips of 6kg are melting at a temperature of 640oC for 52 minutes, and the LPG gas fuel required is 1.30kg. The crucible furnace was designed to attain a maximum temperature of 700°C.
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