Meng Fuxiang, Du Yulei
School of Mechanical Engineering, Nanjing University of Science and Technology, Nanjing 210094, China.
Materials (Basel). 2024 Aug 30;17(17):4309. doi: 10.3390/ma17174309.
Zinc, along with magnesium and iron, is considered one of the most promising biodegradable metals. Compared with magnesium and iron, pure Zn exhibits poor mechanical properties, despite its mild biological corrosion behavior and beneficial biocompatibility. Laser powder bed fusion (LPBF), unlike traditional manufacturing techniques, has the capability to rapidly manufacture near-net-shape components. At present, although the combination of LPBF and Zn has made great progress, it is still in its infancy. Element loss and porosity are common processing problems for LPBF Zn, mainly due to evaporation during melting under a high-energy beam. The formation quality and properties of the final material are closely related to the alloy composition, design and processing. This work reviews the state of research and future perspective on LPBF zinc from comprehensive assessments such as powder characteristics, alloy composition, processing, formation quality, microstructure, and properties. The effects of powder characteristics, process parameters and evaporation on formation quality are introduced. The mechanical, corrosion, and biocompatibility properties of LPBF Zn and their test methodologies are introduced. The effects of microstructure on mechanical properties and corrosion properties are analyzed in detail. The practical medical application of Zn is introduced. Finally, current research status is summarized together with suggested directions for advancing knowledge about LPBF Zn.
锌与镁和铁一起,被认为是最有前途的可生物降解金属之一。与镁和铁相比,纯锌尽管具有温和的生物腐蚀行为和良好的生物相容性,但其机械性能较差。与传统制造技术不同,激光粉末床熔融(LPBF)能够快速制造近净形部件。目前,虽然LPBF与锌的结合已经取得了很大进展,但仍处于起步阶段。元素损失和孔隙率是LPBF锌常见的加工问题,主要是由于在高能束下熔化过程中的蒸发。最终材料的形成质量和性能与合金成分、设计和加工密切相关。本文从粉末特性、合金成分、加工、形成质量、微观结构和性能等综合评估方面综述了LPBF锌的研究现状和未来展望。介绍了粉末特性、工艺参数和蒸发对形成质量的影响。介绍了LPBF锌的力学、腐蚀和生物相容性性能及其测试方法。详细分析了微观结构对力学性能和腐蚀性能的影响。介绍了锌在医学上的实际应用。最后,总结了当前的研究现状,并提出了推进LPBF锌知识的建议方向。