Effects of AlN Content and Sintering Atmospheres on the Thermal Conductivity of Hot-Pressed SiC Ceramics

IF 1.5 4区 材料科学 Q3 MATERIALS SCIENCE, CERAMICS Transactions of the Indian Ceramic Society Pub Date : 2021-07-03 DOI:10.1080/0371750X.2021.1952110
Jingren Li, Wen‐Zhong Lu, Hai Jiang
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Abstract

In pursuit of high thermal conductivity of SiC ceramics, this article reports the effects of AlN and sintering atmospheres on the thermal properties and microstructure evolution of SiC ceramics. Dense SiC ceramics with different contents of AlN additive were fabricated through hot-press sintering at 1950°C in Ar/N2 atmosphere under a pressure of 40 MPa for 3 h. The results showed that the thermal conductivity of samples without AlN addition was 53.5 W.m−1.K−1 when sintered in Ar and 50.3 W.m−1.K−1 when sintered in N2. The SiC ceramics with 4 wt% AlN sintered in Ar showed abnormally large grains and exhibited the highest thermal conductivity of 121.7 W.m−1.K−1 among all the samples. The sample with 2 wt% AlN sintered in N2 exhibited a thermal conductivity of 108.6 W.m−1.K−1; the thermal conductivity deceased with the increasing AlN content afterwards. Such a decreasing trend of thermal conductivity was attributed to the ascending 2Hss content and smaller grains of ceramics. There existed an optimal content of AlN and a proper sintering atmosphere for perfecting the microstructure and the thermal conductivity of SiC ceramics. GRAPHICAL ABSTRACT
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AlN含量和烧结气氛对热压SiC陶瓷导热性能的影响
为了追求SiC陶瓷的高导热性,本文报道了AlN和烧结气氛对SiC陶瓷热性能和微观结构演变的影响。通过在1950°C的Ar/N2气氛中,在40MPa的压力下热压烧结3h,制备了不同AlN添加剂含量的致密SiC陶瓷。结果表明,未添加AlN的样品在Ar中烧结时的热导率为53.5 W.m−1.K−1,在N2中烧结时为50.3 W.m−1.K−1。在所有样品中,在Ar中烧结4wt%AlN的SiC陶瓷显示出异常大的晶粒,并表现出121.7W.m−1.K−1的最高热导率。在N2中烧结2 wt%AlN的样品表现出108.6 W.m−1.K−1的热导率;热导率随AlN含量的增加而下降。热导率的这种下降趋势归因于2Hss含量的增加和陶瓷晶粒的减小。为了改善SiC陶瓷的微观结构和导热性能,存在一个最佳的AlN含量和合适的烧结气氛。图形摘要
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来源期刊
Transactions of the Indian Ceramic Society
Transactions of the Indian Ceramic Society 工程技术-材料科学:硅酸盐
CiteScore
2.40
自引率
8.30%
发文量
12
审稿时长
2.3 months
期刊介绍: Transactions of the Indian Ceramic Society is a quarterly Journal devoted to current scientific research, technology and industry-related news on glass and ceramics. The Journal covers subjects such as the chemical, mechanical, optical, electronic and spectroscopic properties of glass and ceramics, and characterization of materials belonging to this family. The Editor invites original research papers, topical reviews, opinions and achievements, as well as industry profiles for publication. The contributions should be accompanied by abstracts, keywords and other details, as outlined in the Instructions for Authors section. News, views and other comments on activities of specific industries and organizations, and also analyses of industrial scenarios are also welcome.
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