Facultad de Diseño, Universidad del Desarrollo, Avenida Plaza 680, Las Condes, Santiago 7610658, Chile.
Int J Mol Sci. 2023 Apr 27;24(9):7933. doi: 10.3390/ijms24097933.
This review aims to expose mechanical milling as an alternative method for generating copper-based particles (copper particles (CuP) and copper composites (CuC)); more specifically, via a top-down or bottom-up approach, on a lab-scale. This work will also highlight the different parameters that can affect the size distribution, the type, and the morphology of the obtained CuP or CuC, such as the type of mechanical mill, ball-to-powder ratios (BPR), the milling speed, milling time, and the milling environment, among others. This review analyzes various papers based on the Cu-based particle generation route, which begins with a pretreatment step, then mechanical milling, its approach (top-down or bottom-up), and the post-treatment. Finally, the characterization methods of the resulting CuP and CuC through mechanical milling are also discussed.
本文旨在介绍机械研磨作为一种生成铜基颗粒(铜颗粒(CuP)和铜复合材料(CuC))的替代方法;更具体地说,通过自上而下或自下而上的方法,在实验室规模上进行。本工作还将重点介绍可能影响获得的 CuP 或 CuC 的尺寸分布、类型和形态的不同参数,例如机械研磨机的类型、球料比(BPR)、研磨速度、研磨时间和研磨环境等。本文综述了基于铜基颗粒生成途径的各种论文,该途径从预处理步骤开始,然后是机械研磨、其方法(自上而下或自下而上)和后处理。最后,还讨论了通过机械研磨得到的 CuP 和 CuC 的表征方法。