Wang Weili, Chen Jianqi, Sun Xiaoning, Sun Guoxun, Liang Yanjie, Bi Jianqiang
Key Laboratory for Liquid-Solid Structural Evolution and Processing of Materials, Ministry of Education, School of Materials Science & Engineering, Shandong University, Jinan 250061, China.
Suzhou Institute of Shandong University, Suzhou 215123, China.
Materials (Basel). 2022 May 20;15(10):3666. doi: 10.3390/ma15103666.
Silica is one of the most widely used ceramics due to its excellent chemical stability and dielectric property. However, its destructive brittle nature inhabits it from wider application as a functional ceramic. An improvement in toughness is a challenging topic for silica ceramic, as well as other ceramics. In the paper, silica ceramic with different types of boron nitride powders and alumina platelets was fabricated by hot-pressing. Introduction of the additives had great influence on the composites' mechanical properties and microstructure. The silica matrix composite containing micro-sized boron nitride powders possessed the best mechanical properties, including the bending strength (134.5 MPa) and the fracture toughness (1.85 Mpa·m). Meanwhile, the introduction of alumina platelets combined with boron nitride nanosheets achieved an effective enhancement of fracture toughness while maintaining the bending strength. Compared with the monolithic silica, the composite with simultaneous addition of alumina platelets and boron nitride nanosheets had a fracture toughness of 2.23 Mpa·m, increased by approximately 27% (1.75 Mpa·m). The crack deflection and platelet pullout were contributing to enhancement of the fracture toughness. The improved mechanical properties, combined with the intrinsic excellent dielectric and chemical properties, make the silica matrix composites promising wave transparent and thermal protection materials.
由于具有优异的化学稳定性和介电性能,二氧化硅是应用最广泛的陶瓷材料之一。然而,其易碎的脆性本质限制了它作为功能陶瓷的更广泛应用。提高韧性对于二氧化硅陶瓷以及其他陶瓷来说都是一个具有挑战性的课题。在本文中,通过热压制备了含有不同类型氮化硼粉末和氧化铝片晶的二氧化硅陶瓷。添加剂的引入对复合材料的力学性能和微观结构有很大影响。含有微米级氮化硼粉末的二氧化硅基复合材料具有最佳的力学性能,包括弯曲强度(134.5MPa)和断裂韧性(1.85MPa·m)。同时,氧化铝片晶与氮化硼纳米片的结合在保持弯曲强度的同时有效提高了断裂韧性。与整体二氧化硅相比,同时添加氧化铝片晶和氮化硼纳米片的复合材料的断裂韧性为2.23MPa·m,提高了约27%(从1.75MPa·m提高)。裂纹偏转和片晶拔出有助于提高断裂韧性。改进后的力学性能,再加上其固有的优异介电和化学性能,使得二氧化硅基复合材料有望成为波透明和热防护材料。