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首页> 外文期刊>Journal of the European Ceramic Society >Nb(Si,C,N) composite materials densified by spark plasma sintering
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Nb(Si,C,N) composite materials densified by spark plasma sintering

机译:火花等离子体烧结致密的Nb(Si,C,N)复合材料

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Nb2N/Nb5Si3/Nb ceramic metal and Nb(C,N)/Nb5Si(3+x)Cx, ceramic like composites were densified by spark plasma sintering (SPS). The precursor multiphase powders were synthesized by solid-state reactions of a polysilazane precursor with niobium powder addition. By varying the amount of reactive species of both precursor and niobium the phase composition and structure of the synthesized multiphase powders can be tailored from metal dominated to mainly ceramic like. The results demonstrated that the SPS approach leads to highly dense samples at 1600 degrees C with an applied uniaxial pressure of 100 MPa. Furthermore, XRD measurements and EBSD analysis proofed that SPS is a feasible method to retain the original phase compositions and grain sizes within the multiphase powders during sintering. The evaluation of the Vickers indents revealed both a dependency of the measured values on phase composition and on residual porosity. (C) 2015 Elsevier Ltd. All rights reserved.
机译:Nb2N / Nb5Si3 / Nb陶瓷金属和Nb(C,N)/ Nb5Si(3 + x)Cx陶瓷状复合材料通过火花等离子烧结(SPS)进行了致密化处理。通过聚硅氮烷前体与铌粉的固相反应合成前体多相粉末。通过改变前体和铌两者的反应性物种的量,可以将合成的多相粉末的相组成和结构从占主导地位的金属变为主要为陶瓷样。结果表明,SPS方法可在1600摄氏度,施加100 MPa的单轴压力下产生高密度样品。此外,XRD测量和EBSD分析证明,SPS是在烧结过程中保留多相粉末中原始相组成和晶粒尺寸的可行方法。对维氏压痕的评估表明,测量值既依赖于相组成,又依赖于残余孔隙率。 (C)2015 Elsevier Ltd.保留所有权利。

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