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Effect of diamond content on microstructure and properties of diamond/SiC composites prepared by tape-casting and CVI process

机译:金刚石含量对流延和CVI工艺制备的金刚石/ SiC复合材料微观结构和性能的影响

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摘要

Diamond particles enhanced SiC composites (diamond/SiC) have been prepared by tape-casting and chemical vapor infiltration (CVI) process. The effect of diamond content (ranging from 50.0 to 63.4 vol.%) on microstructure, density, flexural strength, fracture toughness, hardness, thermal conductivity (TC) and coefficient of thermal expansion (CTE) of diamond/SiC composites is discussed. With the increasing diamond content in composites, the flexural strength, fracture toughness, surface hardness, and TC all increased, which of sample S4 (with diamond content 63.4 vol.%) could reach up to 431 MPa, 4.8 MPa m(1/2), HRA 98.6 (high than HV 50 GPa), and 116 W/(m K), respectively. The TEM images present a close interfacial combination between diamond and CVI-SiC matrix, and the diamond particle is confirmed to be under compress stress via Raman microspectroscopy technique. Besides, the TC of CVI diamond/SiC composites could be more accurately estimated by a modified model, which is Maxwell 2-EMT (effective medium theory). (C) 2015 Elsevier Ltd. All rights reserved.
机译:通过流延铸造和化学气相渗透(CVI)工艺制备了金刚石颗粒增强的SiC复合材料(金刚石/ SiC)。讨论了金刚石含量(从50.0到63.4 vol。%)对金刚石/ SiC复合材料的微观结构,密度,抗弯强度,断裂韧性,硬度,导热系数(TC)和热膨胀系数(CTE)的影响。随着复合材料中金刚石含量的增加,抗弯强度,断裂韧性,表面硬度和TC均增加,样品S4(金刚石含量为63.4 vol。%)可以达到431 MPa,4.8 MPa m(1/2)。 ),HRA 98.6(高于HV 50 GPa)和116 W /(m K)。 TEM图像显示金刚石与CVI-SiC基质之间存在紧密的界面结合,并且通过拉曼光谱技术证实了金刚石颗粒处于压缩应力下。此外,通过改进模型Maxwell 2-EMT(有效介质理论)可以更准确地估算CVI金刚石/ SiC复合材料的TC。 (C)2015 Elsevier Ltd.保留所有权利。

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