首页> 外文期刊>Journal of Manufacturing Processes >Microstructure and mechanical properties of wire + arc additively manufactured 2024 aluminum alloy components: As-deposited and post heat-treated
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Microstructure and mechanical properties of wire + arc additively manufactured 2024 aluminum alloy components: As-deposited and post heat-treated

机译:钢丝+电弧加法制造的2024铝合金部件的显微组织和力学性能:沉积和后热处理

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摘要

Restricted by the type of commercial aluminum wire, 2024 aluminum alloy cannot be built through conventional single wire + arc additive manufacturing technology. By simultaneously feeding two wires (ER2319 and ER5087) and adjusting the wire feed speed, 2024 aluminum alloy deposits can be achieved with double - wire + arc additive manufacturing process. Heat treatment procedures (solution + natural/artificial aging) were conducted for further improving the properties. The microstructure and mechanical properties of as-deposited and heat-treated 2024 aluminum alloy deposits were tested and analyzed. The microstructure differed in different conditions. Obvious dendrite morphology in as-deposited condition disappeared after heat treatment, and the phases turned to be alpha-Al + Al2Cu from alpha-Al + Al2Cu + Al2CuMg. After heat treatment, layer distributing characteristics of the phases became obvious. Post-deposition heat treatment can improve the micro hardness, strength and horizontal elongation of WAAM 2024 aluminum alloy deposits. The elongation along vertical direction decreased.
机译:受商业铝线类型的限制,无法通过传统的单线+电弧增材制造技术来制造2024铝合金。通过同时送入两根焊丝(ER2319和ER5087)并调节送丝速度,可通过双焊丝+电弧增材制造工艺获得2024铝合金沉积物。进行热处理程序(溶液+自然/人工老化)以进一步改善性能。测试并分析了沉积和热处理的2024铝合金镀层的显微组织和力学性能。微观结构在不同条件下有所不同。热处理后,消失状态下的明显的枝晶形态消失,由α-Al+ Al2Cu + Al2CuMg变为α-Al+ Al2Cu。热处理后,各相的层分布特性变得明显。沉积后热处理可以改善WAAM 2024铝合金沉积层的显微硬度,强度和水平延伸率。沿垂直方向的伸长率降低。

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