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Additive manufacturing of an aluminum matrix composite reinforced with nanocrystalline high-entropy alloy particles

机译:纳米晶高熵合金颗粒增强铝基复合材料的增材制造

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摘要

In the present work, a metal-metal composite consisting of aluminum-magnesium alloy AA5083 matrix and nanocrystalline CoCrFeNi high-entropy alloy reinforcement particles in 12 vol% was successfully friction deposited in multiple layers. The layer interfaces or the reinforcement/matrix interfaces showed no brittle intermetallic formation - thanks to the inert nature as well as the high strength and hardness of the high-entropy alloy reinforcement particles. The composite showed significantly higher tensile and compressive strengths as compared to standard wrought-processed alloy AA5083-H112 and offered a much better combination of strength and ductility when compared to conventional aluminum matrix composites reinforced with ceramic particles. The current study establishes friction deposition as a viable technique for additive manufacturing of novel high-performance composite materials.
机译:在目前的工作中,成功地将铝镁合金AA5083基体与纳米晶CoCrFeNi高熵合金增强颗粒(含量为12%)组成的金属-金属复合材料摩擦沉积在多层结构中。由于惰性性质以及高熵合金增强颗粒的高强度和硬度,层界面或增强/基体界面没有显示出脆性的金属间化合物形成。与标准的锻造合金AA5083-H112相比,该复合材料显示出显着更高的拉伸和压缩强度,并且与用陶瓷颗粒增强的常规铝基复合材料相比,该复合材料具有更好的强度和延展性组合。当前的研究将摩擦沉积确定为增材制造新型高性能复合材料的可行技术。

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