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Developing Gradient Metal Alloys through Radial Deposition Additive Manufacturing

机译:通过径向沉积增材制造开发梯度金属合金

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摘要

Interest in additive manufacturing (AM) has dramatically expanded in the last several years, owing to the paradigm shift that the process provides over conventional manufacturing. Although the vast majority of recent work in AM has focused on three-dimensional printing in polymers, AM techniques for fabricating metal alloys have been available for more than a decade. Here, laser deposition (LD) is used to fabricate multifunctional metal alloys that have a strategically graded composition to alter their mechanical and physical properties. Using the technique in combination with rotational deposition enables fabrication of compositional gradients radially from the center of a sample. A roadmap for developing gradient alloys is presented that uses multi-component phase diagrams as maps for composition selection so as to avoid unwanted phases. Practical applications for the new technology are demonstrated in low-coefficient of thermal expansion radially graded metal inserts for carbon-fiber spacecraft panels.
机译:在过去的几年中,由于增材制造工艺相对于传统制造业的范式转变,对增材制造(AM)的兴趣已大大增加。尽管AM中的最新工作大部分集中在聚合物的三维打印上,但是制造金属合金的AM技术已经使用了十多年。此处,激光沉积(LD)用于制造多功能金属合金,该合金具有策略性的渐变成分以改变其机械和物理性能。与旋转沉积结合使用该技术可以从样品中心径向制造成分梯度。提出了开发梯度合金的路线图,该路线图使用多组分相图作为成分选择图,以避免出现不需要的相。碳纤维航天器面板的热膨胀系数低的径向分级金属插件证明了这项新技术的实际应用。

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