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首页> 外文期刊>Journal of Materials Processing Technology >Microstructure and mechanical properties of double-wire plus arc additively manufactured Al-Cu-Mg alloys
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Microstructure and mechanical properties of double-wire plus arc additively manufactured Al-Cu-Mg alloys

机译:双线加弧的微观结构和力学性能含有Al-Cu-Mg合金

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As the properties of wire + arc additively manufactured Al-6.3Cu alloy cannot meet the applying requirements, a double-wire + arc additive manufacturing system was built to add magnesium into Al-Cu deposits for higher mechanical properties. Two commercial binary wires aluminum-copper ER2319 and aluminum-magnesium ER5087 were chosen as the filler metal to build Al-Cu-Mg components with different compositions by adjusting the wire feed speed. The microstructure and morphology of thin wall samples were characterized by optical micrographs (OM), X-ray diffraction (XRD) and scanning electron microscopy (SEM). The Vickers hardness and tensile properties were investigated. The microstructure of Al-Cu-Mg deposits was mainly composed of coarse columnar grains and fine equiaxed grains with non-uniformly distributing characteristics. With higher Cu but lower Mg content, the strengthen phase turned to Al2Cu + Al2CuMg from Al2CuMg, and the micro hardness presented an increasing trend. The isotropic characteristics of ultimate tensile strength (UTS), yield strength (YS) and elongation were revealed in these samples. The UTS was about 280 +/- 5 MPa both in horizontal and vertical directions for all samples. The YS showed an increasing trend from 156 MPa to 187 MPa with the same content trend, while elongation decreased from 8.2% to 6%. The fractographs exhibited typical brittle fracture characteristics.
机译:随着线+弧的性质加剧制造的Al-6.3Cu合金不能满足施加要求,构建双线+弧添加制造系统,以将镁加入Al-Cu沉积物中,以获得更高的机械性能。选择两根商业二进制铝 - 铜ER2319和铝镁ER5087作为填充金属,通过调节送丝速度来构建具有不同组成的Al-Cu-Mg组分。薄壁样品的微观结构和形态通过光学显微照片(OM),X射线衍射(XRD)和扫描电子显微镜(SEM)。研究了维氏硬度和拉伸性质。 Al-Cu-Mg沉积物的微观结构主要由粗柱状晶粒和细平均晶粒组成,具有非均匀分布的特性。具有较高的Cu但较低的Mg含量,强化相转向Al2cumg的Al 2Cu + Al2cumg,微硬度呈现出较大的趋势。在这些样品中揭示了最终拉伸强度(UTS),屈服强度(ys)和伸长率的各向性特征。对于所有样品,UTS在水平和垂直方向上为280 +/- 5MPa。 ys从156 MPa到187个MPa的趋势呈增加,内容趋势相同,而伸长率从8.2%降至6%。特征表现出典型的脆性断裂特性。

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