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首页> 外文期刊>Journal of Minerals and Materials Characterization and Engineering >Evaluation of Mechanical and Microstructural Properties of α-Brass Alloy Produced from Scrap Copper and Zinc Metal through Sand Casting Process
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Evaluation of Mechanical and Microstructural Properties of α-Brass Alloy Produced from Scrap Copper and Zinc Metal through Sand Casting Process

机译:砂铸铜和锌废金属生产的α-黄铜合金的力学和微观结构性能评估

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Cu-Zn alloy (Brass) is widely used as an industrial material because of its excellent characteristics such as high corrosion resistance, non-magnetism and good forging ability. This paper evaluates the mechanical and microstructure properties of α-brass alloy gotten from scrap copper and zinc metal, and compares the properties with normal α-brass billets. Five different compositions of the α-brass alloy (Cu-5%Zn, Cu-10%Zn, Cu-15%Zn, Cu-20%Zn, Cu-30%Zn) were produced from scraps of copper wire and zinc batteries casing respectively by method of sand casting. The parts of the cast rods were machined to a specification of 60 mm × 100 mm × 300 mm on a lathe to obtain tensile test specimens. After homogenization annealing, the samples were heated in an electric furnace at 500℃ for 3 hours. The samples were etched with ferric chloride solution for 20 seconds and sent for metallographic examination. The result of the hardness test shows variation in hardness of the cast Cu-Zn alloys with increasing zinc content. The ductility and elongation of the α-brass decrease with increasing zinc content. The colouration of the α-brass changed from red to yellow as the zinc content increases. In conclusion, hard brass can be obtained from recycled Cu and Zn as compared to normal brass billets.
机译:铜锌合金(黄铜)因其优异的特性(如高耐腐蚀性,无磁性和良好的锻造能力)而被广泛用作工业材料。本文评估了由废铜和锌金属制成的α-黄铜合金的力学性能和显微组织性能,并将其与普通α-黄铜坯料进行了比较。从铜线和锌电池的废料中生产出五种不同的α-黄铜合金成分(Cu-5%Zn,Cu-10%Zn,Cu-15%Zn,Cu-20%Zn,Cu-30%Zn)套管分别采用砂型铸造的方法。将铸棒的零件在车床上加工至规格为60 mm×100 mm×300 mm,以获得拉伸试样。均质退火后,将样品在电炉中于500℃加热3小时。样品用氯化铁溶液蚀刻20秒钟,然后送去进行金相检查。硬度测试的结果表明,铸造锌铜合金的硬度随锌含量的增加而变化。 α-黄铜的延展性和伸长率随锌含量的增加而降低。随着锌含量的增加,α-黄铜的颜色从红色变为黄色。总之,与普通黄铜坯料相比,可以从回收的铜和锌中获得硬黄铜。

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