Liu Yuanfan, Li Yang, Wang Mingliang, Chen Zhe
SJTU-Paris Tech Elite Institute of Technology (SPEIT), Shanghai 200240, China.
State Key Laboratory of Metal Matrix Composites, Shanghai Jiao Tong University, Shanghai 200240, China.
Materials (Basel). 2024 Oct 18;17(20):5085. doi: 10.3390/ma17205085.
As a new alloy manufacturing method that can break through the limitations of molds to manufacture fine parts, laser powder bed fusion has recently become a common process for producing aluminum alloys. In the fields of aerospace or automotive, aluminum alloys with both good printability and good mechanical performance in high-temperature conditions are greatly demanded, and the Al-Ce alloy is one of the alloys with significant potential. Therefore, systematic research on the additive manufacturing of Al-Ce alloys is still being explored. Herein, we review the recent progress and current status of laser powder bed fusion-produced Al-Ce alloys, giving our opinions on the development of this alloy system. Element composition, alloy powders, laser powder bed fusion parameters, microstructures, and mechanical properties at room temperature and high temperatures are summarized. The choice of alloying strategies is crucial for a specific mechanical improvement of the Al-Ce alloys. Finally, the details of the Al-Ce alloys manufactured via laser powder bed fusion are presented.
作为一种能够突破模具限制来制造精密零件的新型合金制造方法,激光粉末床熔融技术近来已成为生产铝合金的常用工艺。在航空航天或汽车领域,对兼具良好可打印性和高温条件下良好机械性能的铝合金有极大需求,而Al-Ce合金是具有巨大潜力的合金之一。因此,对Al-Ce合金增材制造的系统研究仍在探索之中。在此,我们综述了激光粉末床熔融制备Al-Ce合金的最新进展和现状,并对该合金体系的发展提出我们的看法。总结了元素组成、合金粉末、激光粉末床熔融参数、微观结构以及室温与高温下的机械性能。合金化策略的选择对于Al-Ce合金特定机械性能的改善至关重要。最后,介绍了通过激光粉末床熔融制造Al-Ce合金的详细情况。