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Laminated HfC-SiC ceramics produced by aqueous tape casting and hot pressing

机译:通过水流延流延法和热压法生产的HfC-SiC层压陶瓷

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Laminated HfC-SiC ceramics with graphite interlayer were successfully produced by aqueous tape casting, laminating and hot pressing, and the properties of slurries, microstructure and mechanical properties were studied in detail. The tape casting slurries exhibit a typical shear-thinning behavior. The flexural strength of the laminated HfC-SiC/graphite ceramics in perpendicular to the lamination direction slightly decreases compared with that of the monolithic HfC-SiC ceramics because of the presence of the weak graphite interlayer. However, the fracture toughness and work of fracture of the laminated HfC-SiC/graphite ceramics in perpendicular to the lamination direction can reach 9.09 +/- 0.51 MPa m(1/2) and 1037 +/- 86 J/m(2), which are approximately 2.2 times and 20.3 times higher than those of the monolithic HfC-SiC ceramics, respectively. The synergy of multiple toughening mechanisms, crack deflection, crack bifurcation, delamination crack and the pull out of the matrix layer leads to fairly high toughness and work of fracture of the laminated HfC-SiC/graphite ceramics. (C) 2015 Elsevier Ltd and Techna Group S.r.l. All rights reserved.
机译:通过水相流延流延,层压和热压成功制备了具有石墨夹层的层状HfC-SiC陶瓷,并详细研究了浆料的性能,微观结构和力学性能。带式铸造浆料表现出典型的剪切稀化行为。由于存在弱石墨夹层,与整体式HfC-SiC陶瓷相比,HfC-SiC /石墨层压陶瓷在垂直于层压方向的抗弯强度略有下降。但是,垂直于层压方向的HfC-SiC /石墨层压陶瓷的断裂韧性和断裂功可以达到9.09 +/- 0.51 MPa m(1/2)和1037 +/- 86 J / m(2)分别约为单片HfC-SiC陶瓷的2.2倍和20.3倍。多种增韧机制,裂纹偏转,裂纹分叉,分层裂纹以及从基体层中拉出的协同作用会导致HfC-SiC /石墨层合陶瓷的相当高的韧性和断裂功。 (C)2015 Elsevier Ltd和Techna Group S.r.l.版权所有。

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