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Experiment on Hardness and Impact Strength of Recycled Aluminum Alloys by Metal Casting Process

机译:金属铸造工艺再生铝合金硬度和冲击强度试验

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In this present work, the effects of recycled aluminum scraps on the impact and hardness properties and microstructures with a melting process are studied. The method was conducted to determine an impact toughness by Charphy pendulums; hardness materials by Vickers's test; and chemical composition by spectroscopy. Four types of aluminum scraps have been recycled using a metal casting process. They are beverage cans, aluminum profile bar waste, gasoline engine piston, and scrap pans. The results show that the maximum hardness obtained is 54.13 VHN on the material of the gasoline engine piston. The lowest hardness is 26.88 VHN which is obtained for pan aluminum recycle. The highest impact test result is obtained on an aluminum pan material which is 40.3 J/mm~2 in average and the lowest value obtained is on the gasoline engine piston material which is 1.7 J/mm~2 in average. The microstructure of the gasoline piston shows finer compared to the pans after cast.
机译:在本工作中,研究了再生铝碎屑对熔融工艺的影响和硬度性能和微观结构的影响。 进行该方法以通过Charphy Pendulums确定冲击韧性; 维克斯考试的硬度材料; 通过光谱学和化学成分。 使用金属铸造工艺再循环四种类型的铝废料。 它们是饮料罐,铝型材栏废物,汽油发动机活塞和废锅。 结果表明,在汽油发动机活塞的材料上获得的最大硬度是54.13 VH。 最低硬度是26.88 VHN,用于锅铝再循环。 在铝盘材料上获得最高的冲击试验结果,平均为40.3J / mm〜2,并且获得的最低值平均为1.7J / mm〜2。 汽油活塞的微观结构与铸造后的平底锅相比显示出更细的。

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