Zhang Jianning, Chen Ke, Sun Xun, Liu Ming, Hu Xiao, He Liu, Huang Zhengren, Chai Zhifang, Xiao Xueshan, Song Yujie, Huang Qing
Shanghai University, Shanghai 200444, China.
Engineering Laboratory of Advanced Energy Materials, Ningbo Institute of Materials Technology and Engineering, Chinese Academy of Sciences, Ningbo 315201, China.
ACS Appl Mater Interfaces. 2021 Feb 3;13(4):5645-5651. doi: 10.1021/acsami.0c22289. Epub 2021 Jan 25.
Ceramics including oxides, carbides, nitrides, borides, carbonitrides, silicates, and MAX phases have wide applications in electrode materials, high-temperature structural materials, and anticorrosive materials for harsh environments. However, the difficulty in processing ceramics with complex shapes from green powders has been restricting applications in emerging areas. Herein, polymer-derived ceramics (PDCs) were used to assist the pressureless processing of MAX phase particles. The processing temperature could be lowered by 400 to 600 °C, which is favorable for both industrialization and engineering applications. The good processability of MAX-preceramic polymer mixtures and high accuracy of replica from preceramic polymer make it possible to fabricate artificial objects with complex shapes and fine texture. This method provides a method to fabricate MAX phase ceramics/composites, as well as some other ceramics.
包括氧化物、碳化物、氮化物、硼化物、碳氮化物、硅酸盐和MAX相在内的陶瓷材料在电极材料、高温结构材料以及恶劣环境下的防腐材料等领域有着广泛应用。然而,从生坯粉末加工复杂形状陶瓷的困难一直限制着其在新兴领域的应用。在此,采用聚合物衍生陶瓷(PDC)辅助MAX相颗粒的无压加工。加工温度可降低400至600°C,这对工业化和工程应用都有利。MAX预陶瓷聚合物混合物良好的加工性能以及预陶瓷聚合物复制品的高精度使得制造具有复杂形状和精细纹理的人造物体成为可能。该方法为制造MAX相陶瓷/复合材料以及其他一些陶瓷提供了一种途径。