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Multiphase ceramic composites derived by reaction of Nb and SiCN precursor

机译:Nb与SiCN前驱物反应衍生的多相陶瓷复合材料

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摘要

In this work multiphase Nb(C,N)/Nb_5Si_3 ceramic composites containing niobium silicide, nitride and carbide phases were designed by using the polymer derived ceramic (PDC) route to avoid the complicated shaping of refractory metal compounds. Starting from polycarbosilazane (PCSZ) precursor powder and metallic niobium as reactive filler green compacts were manufactured by uniaxial warm pressing and stabilized by subsequent crosslinking. Due to the reactivity of both the Nb and the rearrangements within the forming amorphous SiCN phase a porous ceramic material is generated via solid-state reaction during thermal treatment. Depending on the amount of PCSZ as well as on the pyrolysis conditions the particles within this network reveal a core/rim structure containing submicron-sized Nb_2CN, NbC as well as coarse-grained Mb_2N phases in the core and Nb_5Si_3 or alternatively metastable Nb_5Si_4C phase at the particle surface.
机译:在这项工作中,通过使用聚合物衍生的陶瓷(PDC)路线设计了包含硅化铌,氮化物和碳化物相的Nb(C,N)/ Nb_5Si_3多相陶瓷复合材料,从而避免了难熔金属化合物的复杂成型。从聚碳硅氮烷(PCSZ)前体粉末和金属铌作为反应性填料开始,通过单轴热压制造生坯,并通过随后的交联使其稳定。由于Nb的反应性和形成的非晶态SiCN相中的重排,在热处理过程中通过固相反应生成了多孔陶瓷材料。取决于PCSZ的量以及热解条件,该网络中的颗粒会显示出核/边缘结构,其中包含亚微米级的Nb_2CN,NbC以及核中的粗晶粒Mb_2N相和Nb_5Si_3或亚稳态的Nb_5Si_4C相。粒子表面。

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