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Microstructure, oxidation and thermal shock resistance of graphene reinforced SiBCN ceramics

机译:石墨烯增强SiBCN陶瓷的组织,抗氧化性和抗热震性

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摘要

SiBCN ceramics were prepared using various volumes of graphene platelets (GPLs) as nanofiller. The effects of the nanofiller on microstructure, and oxidation and thermal shock resistance of as-sintered ceramics were investigated. The phase composition and microstructures were very similar for all investigated ceramics consisting primarily of beta-SiC, BNC and small amounts of a-SiC with relatively homogeneously distributed 5-10 nm thick GPLs in the matrix. For SiBCN ceramics incorporating graphene as nanofiller, a porous oxide layer forms at 1500 degrees C and the oxidation behavior shows a linear kinetics by thickness measurement method. Gas evolution during heating lead to a passive oxidation behavior and weight loss. Graphene reinforced SiBCN ceramics exhibit thermal shock resistance superior to monoliths of the same material. The graphene distributed in SiBCN matrix can dissipate the energy of crack growth and acts as a stopper to cracks. The toughening mechanisms offered by graphene, including pull-out and bridging appear to aid in ameliorating thermal shock effects. Furthermore, the existence of a dense oxide surface layer retards oxygen diffusion into the inner matrix and heals surface pores and cracks, which also contributes to thermal shock resistance. (C) 2015 Elsevier Ltd and Techna Group S.r.l. All rights reserved.
机译:使用各种体积的石墨烯薄片(GPL)作为纳米填料来制备SiBCN陶瓷。研究了纳米填料对烧结陶瓷微观结构,抗氧化性和抗热震性的影响。对于所有主要由β-SiC,BNC和少量a-SiC组成且基质中GPL分布相对均匀的5-10 nm的陶瓷,其相组成和微观结构非常相似。对于掺入石墨烯作为纳米填料的SiBCN陶瓷,在1500摄氏度时形成了多孔氧化物层,其氧化行为通过厚度测量方法显示出线性动力学。加热过程中放出气体会导致被动氧化行为和重量减轻。石墨烯增强的SiBCN陶瓷表现出的耐热冲击性优于相同材料的整料。分布在SiBCN基体中的石墨烯可以消散裂纹扩展的能量,并充当裂纹的阻止者。石墨烯提供的增韧机制(包括拉出和桥接)似乎有助于改善热冲击效应。此外,致密的氧化物表面层的存在阻碍了氧气向内部基体的扩散,并治愈了表面的孔隙和裂纹,这也有助于提高抗热震性。 (C)2015 Elsevier Ltd和Techna Group S.r.l.版权所有。

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