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Precipitation behavior of aluminum alloy 2139 fabricated using additive manufacturing

机译:增材制造铝合金2139的析出行为

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Additive manufacturing (AM) is an emerging technology capable of producing near net shape structures in a variety of materials directly from a computer model. Standard metallic alloys that were developed for cast or wrought processing have largely been adopted for AM feedstock. In many applications, these legacy alloys are quite acceptable. In the aluminum alloy family, however, there is a significant performance gap between the casting alloys currently being used in AM processes and the high strength/ toughness capability available in certain wrought alloys. The precipitation hardenable alloys, most often used in high performance structures, present challenges for processing by AM. The near net shape nature of AM processes does not allow for mechanical work prior to the heat treatment that is often necessary to develop a uniform distribution of precipitates and give peak mechanical performance. This paper examines the aluminum (Al) alloy 2139, a composition that is strengthened by homogeneous precipitation of Ω (Al_2Cu) plates and thus ideally suited for near net shape processes like AM. Transmission electron microscopy, microhardness, and tensile testing determined that, with proper processing conditions, Al 2139 can be additively manufactured and subsequently heat treated to strength levels comparable to those of peak aged wrought Al 2139.
机译:增材制造(AM)是一项新兴技术,能够直接通过计算机模型以多种材料生产近乎净形的结构。用于铸造或锻造工艺的标准金属合金已广泛用于增材制造原料。在许多应用中,这些传统合金是完全可以接受的。然而,在铝合金家族中,目前在增材制造工艺中使用的铸造合金与某些可锻合金具有的高强度/韧性能力之间存在明显的性能差距。最常用于高性能结构中的可沉淀硬化合金对AM的加工提出了挑战。 AM工艺的接近最终形状性质不允许在热处理之前进行机械加工,而这通常是形成沉淀物均匀分布并提供最佳机械性能所必需的。本文研究了铝(Al)合金2139,它是通过均匀沉积Ω(Al_2Cu)板而得到增强的成分,因此非常适合于像AM这样的近净成形工艺。透射电子显微镜,显微硬度和拉伸试验确定,在适当的加工条件下,Al 2139可以加成制造,然后进行热处理,使其强度与峰值时效锻造Al 2139相当。

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