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Rapid fabrication of Si3N4 ceramics by reaction-bonding and pressureless sintering

机译:通过反应粘合和无压烧结快速制造Si3N4陶瓷

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摘要

Phase compositions, densification, microstructures, thermal conductivities, and mechanical properties of sintered reaction-bonded Si3N4 (SRBSN) and sintered Si3N4 (SSN) using the same additives and procedure were compared. The present results showed that the density of SRBSN with MgO-Y2O3 additives was much lower than that of SSN with the same additives. The Eu2O3-MgO-Y2O3 additives inhibited the densification, while the ZrO2-MgO-Y2O3 additives promoted the densification. The SRBSN with relative density of 99.5% and thermal conductivity of 66.5 Wm(-1) K-1 was rapidly prepared using ZrO2-MgO-Y2O3 as aids. The SSN with relative density of 99.0% and thermal conductivity of 56.8 Wm(-1) K-1 was fabricated using ZrO2-MgO-Y2O3 additives. The comparable density and higher thermal conductivity made the SRBSN prepared rapidly from low cost Si starting powder superior over the SSN. This study suggested that the SRBSN route with a combination of nitridation catalyst and densification aids provided a promising route to fabricate cost-effective Si3N4 ceramics. (C) 2016 Elsevier Ltd. All rights reserved.
机译:比较了使用相同添加剂和程序的烧结反应键合Si3N4(SRBSN)和烧结的Si3N4(SSN)的相组合物,致密化,微观结构,热导体和机械性能。目前的结果表明,具有MgO-Y 2 O 3添加剂的SRBSN密度远低于SSN,具有相同添加剂的SSN。 Eu2O3-MgO-Y2O3添加剂抑制致密化,而ZrO2-MgO-Y2O3添加剂促进了致密化。具有99.5%的相对密度和66.5Wm(-1)K-1的热导率的SRBSN迅速使用ZrO2-MgO-Y2O3作为助剂。采用ZrO2-MgO-Y2O3添加剂制造具有99.0%的相对密度和56.8Wm(-1)K-1的热导率的SSN。相当的密度和较高的导热性使得SRBSN从SSN上的低成本Si开始迅速制备。该研究表明,具有氮化催化剂和致密化助剂的组合的SRBSN途径提供了有望的途径来制造成本效益的Si3N4陶瓷。 (c)2016 Elsevier Ltd.保留所有权利。

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