Gizowska Magdalena, Piątek Milena, Perkowski Krzysztof, Antosik Agnieszka
Łukasiewicz Research Network, Institute of Ceramics and Building Materials, 8 Cementowa Street, 31-983 Krakow, Poland.
Materials (Basel). 2023 Mar 3;16(5):2079. doi: 10.3390/ma16052079.
In the work, silicon nitride ceramics (SiN) and silicon nitride reinforced by nano silicon carbide particles (SiN-nSiC) in amounts of 1-10 wt.% were investigated. The materials were obtained using two sintering regimes: under conditions of ambient and high isostatic pressure. The influence of the sintering conditions and the concentration of nanosilicon carbide particles on the thermal and mechanical properties was studied. The presence of highly conductive silicon carbide particles caused an increase in thermal conductivity only in the case of the composites containing 1 wt.% of the carbide phase (15.6 W·m·K) in comparison with silicon nitride ceramics (11.4 W·m·K) obtained under the same conditions. With the increase in the carbide phase, a decrease in the densification efficiency during sintering was observed, which caused a decrease in thermal and mechanical performance. The sintering performed using a hot isostatic press (HIP) proved to be beneficial in terms of mechanical properties. The one-step high-pressure assisted sintering process in the HIP minimizes the formation of defects at the sample surface.
在这项工作中,研究了氮化硅陶瓷(SiN)以及添加了1-10 wt.%纳米碳化硅颗粒增强的氮化硅(SiN-nSiC)。这些材料是采用两种烧结方式制备的:在常压和高静水压条件下。研究了烧结条件和纳米碳化硅颗粒浓度对热性能和力学性能的影响。仅在含有1 wt.%碳化物相的复合材料中,高导电性碳化硅颗粒的存在导致热导率增加(15.6 W·m·K),相比之下,在相同条件下获得的氮化硅陶瓷热导率为(11.4 W·m·K)。随着碳化物相含量的增加,烧结过程中的致密化效率降低,这导致热性能和力学性能下降。事实证明,使用热等静压(HIP)进行烧结在力学性能方面是有益的。HIP中的一步高压辅助烧结工艺可最大程度减少样品表面缺陷的形成。