Stabler Christina, Reitz Andreas, Stein Peter, Albert Barbara, Riedel Ralf, Ionescu Emanuel
Institut für Materialwissenschaft, Technische Universität Darmstadt, Otto-Berndt-Straße 3, D-64287 Darmstadt, Germany.
Eduard-Zintl-Institut für Anorganische und Physikalische Chemie, Technische Universität Darmstadt, Alarich-Weiss-Straße 12, D-64287 Darmstadt, Germany.
Materials (Basel). 2018 Feb 10;11(2):279. doi: 10.3390/ma11020279.
In the present study, the effect of the chemical and phase composition on the thermal properties of silicon oxide carbides (SiOC) has been investigated. Dense monolithic SiOC materials with various carbon contents were prepared and characterized with respect to their thermal expansion, as well as thermal conductivity. SiOC glass has been shown to exhibit low thermal expansion (e.g., ca. 3.2 × 10 K for a SiOC sample free of segregated carbon) and thermal conductivity (ca. 1.5 W/(m∙K)). Furthermore, it has been observed that the phase separation, which typically occurs in SiOC exposed to temperatures beyond 1000-1200 °C, leads to a decrease of the thermal expansion (i.e., to 1.83 × 10 K for the sample above); whereas the thermal conductivity increases upon phase separation (i.e., to ca. 1.7 W/(m∙K) for the sample mentioned above). Upon adjusting the amount of segregated carbon content in SiOC, its thermal expansion can be tuned; thus, SiOC glass ceramics with carbon contents larger than 10-15 vol % exhibit similar coefficients of thermal expansion to that of the SiOC glass. Increasing the carbon and SiC content in the studied SiOC glass ceramics leads to an increase in their thermal conductivity: SiOC with relatively large carbon and silicon carbides (SiC) volume fractions (i.e., 12-15 and 20-30 vol %, respectively) were shown to possess thermal conductivities in the range from 1.8 to 2.7 W/(m∙K).
在本研究中,已对化学和相组成对碳化硅氧化物(SiOC)热性能的影响进行了研究。制备了具有不同碳含量的致密块状SiOC材料,并对其热膨胀以及热导率进行了表征。已表明SiOC玻璃具有低热膨胀(例如,对于不含偏析碳的SiOC样品,约为3.2×10⁻⁶/K)和热导率(约为1.5W/(m∙K))。此外,已观察到,通常在暴露于超过1000 - 1200°C温度的SiOC中发生的相分离会导致热膨胀降低(即,上述样品降至1.83×10⁻⁶/K);而相分离时热导率会增加(即,上述样品增至约1.7W/(m∙K))。通过调整SiOC中偏析碳含量,可以调节其热膨胀;因此,碳含量大于10 - 15体积%的SiOC玻璃陶瓷表现出与SiOC玻璃相似的热膨胀系数。在所研究的SiOC玻璃陶瓷中增加碳和SiC含量会导致其热导率增加:具有相对较大碳和碳化硅(SiC)体积分数(即分别为12 - 15体积%和20 - 30体积%)的SiOC被证明具有1.8至2.7W/(m∙K)范围内的热导率。