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Metal matrix production: Casting of recycled aluminum cans and incorporation of rice husk ash and magnesium

机译:金属矩阵生产:再生铝罐铸造,并纳入稻壳灰和镁

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摘要

This research experimented with different aluminum can casting compositions from recycled materials. The objective was to analyze the casting yield and the resulting chemical compositions of the process. In the first process, 20 kg of aluminum cans was melted, resulting in a 10.2 kg ingot, which presented a 51% yield. In the second process, 10 kg of 6063 T6 aluminum was used and 10.2 kg of the first casting was added. This mixture produced an ingot of 50% recycled aluminum and 50% 6063 aluminum that weighed 18.23 kg. Similarly, a second ingot was produced, but with the addition of 4 wt% of rice husk ash and 2 wt% of magnesium. From each ingot, the samples were removed for chemical analyses, which consisted of tests of the samples that had the incorporation of rice husk ash in the molten aluminum. These analyses included scanning by electron microscopy, density analysis, Brinell hardness, and Charpy impact force tests. The results of the second ingot analysis showed superior characteristics in Si and Mg levels due to the addition of rice husk ash and magnesium. Also, the second ingot presented increased hardness as well as a reduction fragility and density.
机译:本研究采用不同的铝可以从再生材料中浇铸组合物。目的是分析铸造产量和该方法的所得化学组成。在第一个方法中,熔化20kg铝罐,导致10.2kg锭,其产率为51%。在第二种方法中,使用10kg 6063 T6铝,并加入10.2kg的第一铸件。该混合物制备了50%再循环铝的铸锭,50%6063铝,称重18.23千克。类似地,产生第二锭,但加入4wt%的稻壳灰和2wt%的镁。从每个铸锭中,除去样品以用于化学分析,它由具有在熔融铝中掺入稻壳灰的样品的试验组成。这些分析包括通过电子显微镜,密度分析,Brinell硬度和夏皮冲击力测试扫描。由于添加了稻壳灰和镁,第二锭分析的结果表明Si和Mg水平的优异特性。而且,第二锭呈现了增加的硬度以及减少脆性和密度。

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