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氮化硅/氮化硼纤维状整体陶瓷的先进制造方法及力学性能

Advanced Fabrication Method and Mechanical Properties of Silicon Nitride/Boron Nitride Fibrous Monolithic Ceramics.

作者信息

Chen Qingqing, Zhang Yuan, Chao Liuxin, Dong Ningning, Zhou Yu, Ying Guobing

机构信息

Department of Materials Science and Engineering, College of Mechanics and Materials, Hohai University, Nanjing 211100, China.

Institute for Advanced Ceramics, School of Materials Science and Engineering, Harbin Institute of Technology, Harbin 150001, China.

出版信息

Materials (Basel). 2023 Sep 8;16(18):6130. doi: 10.3390/ma16186130.

Abstract

Silicon nitride ceramics are regarded as a promising material for high-temperature structural applications due to their remarkable characteristics, including high strength, hardness, thermal conductivity, low dielectric properties, and resistance to creep at elevated temperatures. However, their susceptibility to catastrophic fracture at high temperatures remains a concern. Herein, SiN/BN fibrous monolithic ceramics have been successfully prepared by employing wet-spinning and hot-pressing techniques. We delved into the design and optimization of the spinning slurry and examined how the SiN/BN fiber diameter affects the ceramics' microstructure and mechanical properties. The spinning slurry exhibited exceptional stability and spinnability. Decreasing the fiber diameter contributed to material densification and improved mechanical properties. Notably, when the fiber diameter is 0.9 mm, the fabricated SiN/BN fibrous monolithic ceramics demonstrate a carbon content of 0.82%, a three-point bending strength of 357 ± 24 MPa, and a fracture toughness of 8.8 ± 0.36 MPa·m. This investigation offers valuable insights into producing high-performance SiN/BN composite ceramics utilizing hot-pressing technology.

摘要

氮化硅陶瓷因其卓越的特性,包括高强度、硬度、热导率、低介电性能以及在高温下的抗蠕变性,被视为高温结构应用的一种有前景的材料。然而,它们在高温下易发生灾难性断裂的问题仍然令人担忧。在此,通过采用湿纺和热压技术成功制备了SiN/BN纤维整体陶瓷。我们深入研究了纺丝浆料的设计与优化,并考察了SiN/BN纤维直径如何影响陶瓷的微观结构和力学性能。纺丝浆料表现出优异的稳定性和可纺性。减小纤维直径有助于材料致密化并改善力学性能。值得注意的是,当纤维直径为0.9毫米时,制备的SiN/BN纤维整体陶瓷的碳含量为0.82%,三点弯曲强度为357±24兆帕,断裂韧性为8.8±0.36兆帕·米。这项研究为利用热压技术生产高性能SiN/BN复合陶瓷提供了有价值的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eaaf/10533069/4a1306f84e76/materials-16-06130-g001.jpg

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