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首页> 外文期刊>Journal of the European Ceramic Society >Microstructure, fracture, electrical properties and machinability of SiC-TiNbC composites
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Microstructure, fracture, electrical properties and machinability of SiC-TiNbC composites

机译:SiC-TinBC复合材料的微观结构,断裂,电性能和可加工性

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摘要

Three SiC based composites with 30, 40 and 50% of additives (Ti and NbC with ratio of 9:16) have been prepared by hot pressing without other sintering additives. The microstructure, porosity, and chemical composition were studied using SEM/EDS. Local mechanical properties such as hardness and elastic modulus of individual components of the composite were investigated by nanoindentation. Hardness and fracture toughness of the composites were evaluated by means of Vickers macroindentation. Indentation cracks were observed and their propagation was analyzed. It was shown that the present phases were distributed uniformly. The materials with 40 wt% and 50 wt% TiNbC were almost fully dense with porosity lower than 1%. The individual constituents shown similar elasticity modulus (550-590 GPa). Indentation fracture toughness was comparable in all materials, between 2.7-3.0 MPa.m(1/2). Cracks in SiC were mostly straight, transgranular. In other places they propagated both trans- and intergarnularly, often followed SiC/TiNbC and TiNbC/TiNbC grain boundaries. The four-point bending strength was 435 MPa for 30% TiNbC and is comparable in all materials within the error of measurement. These results suggest much lower cohesive strength of TiNbC grain boundaries. Electrical conductivity increased with increasing amount of TiNbC and in all materials was more than 1000 S/m. Consequently, all composites were EDM machinable, the surfaces of the cut were intensively oxidized. (C) 2017 Elsevier Ltd. All rights reserved.
机译:通过在没有其他烧结添加剂的情况下,通过热压制备具有30,40和50%的添加剂(Ti和Nbc)的三种基于30%和9:16的NBC)的复合材料。使用SEM / EDS研究微观结构,孔隙率和化学组成。通过纳米凸缘研究了局部机械性能,例如复合材料的各个组分的硬度和弹性模量。通过维氏癌,评估复合材料的硬度和断裂韧性。观察到压痕裂纹,分析它们的繁殖。结果表明本阶段均匀分布。具有40wt%和50wt%TinBC的材料几乎完全致密,孔隙率低于1%。个体成分显示出类似的弹性模量(550-590GPa)。压痕断裂韧性在所有材料中相当,在2.7-3.0mPa.m(1/2)之间。 SiC的裂缝大多是直的,转窄的。在其他地方,他们繁殖横向和否定,经常遵循SiC / TINBC和TINBC / TINBC晶界。对于30%TINBC,四点弯曲强度为435MPa,并且在测量误差内的所有材料中可相当。这些结果表明TinBC晶粒边界的粘性强度较低。电导率随着罐装量的增加而增加,并且在所有材料中大于1000 s / m。因此,所有复合材料都是EDM可加工的,切割表面强烈氧化。 (c)2017 Elsevier Ltd.保留所有权利。

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