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首页> 外文期刊>Journal of the European Ceramic Society >Sintered silicon nitrideano-silicon carbide materials based on preceramic polymers and ceramic powder
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Sintered silicon nitrideano-silicon carbide materials based on preceramic polymers and ceramic powder

机译:基于陶瓷前体和陶瓷粉末的氮化硅/纳米碳化硅烧结材料

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摘要

A flexible method is presented, which enables the fabrication of porous as well as dense Si_3N_4ano-SiC components by using Si_3N_4 powder and a preceramic polymer (polycarbosilazane) as alternative ceramic forming binder. The SiCN polymer benefits consolidation as well as shaping of the green body and partially fills the interstices between the Si_3N_4 particles. Cross-linking of the precursor at 300 °C increases the mechanical stability of the green bodies and facilitates near net shape machining. At first, pyrolysis leads to porous ceramic bodies. Finally, subsequent gas pressure sintering results in dense Si_3N_4ano-SiC ceramics. Due to the high ceramic yield of the polycarbosilazane binder, the shrinkage during sintering is significantly reduced from 20 to 15 lin.%. Investigations of the sintered ceramics reveal, that the microstructure of the Si_3N_4 ceramic contains approx. 6 vol.% nano-scaled SiC segregations, which are located both at the grain boundaries and as inclusions in the Si_3N_4 grains.
机译:提出了一种灵活的方法,该方法能够通过使用Si_3N_4粉末和预陶瓷聚合物(聚碳硅氮烷)作为陶瓷成形粘合剂来制造多孔以及致密的Si_3N_4 /纳米SiC组件。 SiCN聚合物有利于固结以及生坯成形,并部分填充Si_3N_4颗粒之间的空隙。前体在300°C下的交联可增加生坯的机械稳定性,并有助于近乎净形的加工。首先,热解导致多孔陶瓷体。最后,随后的气压烧结导致致密的Si_3N_4 /纳米SiC陶瓷。由于聚碳硅氮烷粘合剂的高陶瓷收率,烧结过程中的收缩率从20%降至15%。对烧结陶瓷的研究表明,Si_3N_4陶瓷的微观结构大约含有。 6 vol。%的纳米级SiC偏析,既位于晶界,又作为Si_3N_4晶粒中的夹杂物。

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