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首页> 外文期刊>Journal of the European Ceramic Society >Enhanced mechanical performance of Al2O3-C refractories with nano carbon black and in-situ formed multi-walled carbon nanotubes (MWCNTs)
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Enhanced mechanical performance of Al2O3-C refractories with nano carbon black and in-situ formed multi-walled carbon nanotubes (MWCNTs)

机译:纳米炭黑和原位形成的多壁碳纳米管(MWCNT)增强了Al2O3-C耐火材料的机械性能

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摘要

The mechanical performance of low-carbon Al2O3-C refractories can be further enhanced using the in-situ formation approach of MWCNTs. Evidently, the nickel nitrate catalyst in the matrix benefit the improved mechanical properties of Al2O3-C refractories after coking at elevated temperatures. The in-situ formation of MWCNTs and SiC whiskers contributes to their higher cold modulus of rupture. Moreover, dispersing catalyst into the binder solution promotes a fabric-like structure interlaced through MWCNTs and SiC whiskers in the binder system and thus a better bonding strength can be achieved. Compared to the Al2O3-C refractories with a close starting carbon content fabricated by adding as-received MWCNTs or the combined carbon sources of nano carbon black and flake graphite, superior thermal shock resistances were attained with the approaches presented in this paper. Additionally, MWCNTs are more influential to the toughening and SiC whiskers are more responsible for the strengthening behaviors. (C) 2015 Elsevier Ltd. All rights reserved.
机译:低碳Al2O3-C耐火材料的机械性能可以通过MWCNT的原位形成方法进一步提高。显然,在高温下焦化后,基体中的硝酸镍催化剂改善了Al2O3-C耐火材料的机械性能。 MWCNT和SiC晶须的原位形成有助于其更高的冷断裂模量。此外,将催化剂分散到粘合剂溶液中,促进了在粘合剂体系中通过MWCNT和SiC晶须交错的织物状结构,因此可以获得更好的粘合强度。与通过添加原样的MWCNT或纳米炭黑和片状石墨的混合碳源制备的起始碳含量接近的Al2O3-C耐火材料相比,本文提出的方法获得了优异的耐热冲击性。另外,MWCNT对增韧的影响更大,而SiC晶须对增强行为的影响更大。 (C)2015 Elsevier Ltd.保留所有权利。

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