首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Effects of heating rate and metal binder on the microstructure and mechanical properties of self-diffusion gradient cermet composite tool materials
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Effects of heating rate and metal binder on the microstructure and mechanical properties of self-diffusion gradient cermet composite tool materials

机译:加热速率和金属粘结剂对自扩散梯度金属陶瓷复合工具材料微观结构和力学性能的影响

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摘要

Self-diffusion gradient cermet composite tool materials with different metal binder contents and Ni/(Co + Ni) mass ratios were fabricated to improve the mechanical properties. The effects of heating rate and metal binder on the microstructure and mechanical properties of self-diffusion gradient composite were investigated. For the heating rates considered, it was revealed that the heating rate of 30 degrees C/min was in the vicinity of optimum to yield the desired mechanical properties and fine microstructure. It was found that the flexural strength increased and the hardness decreased with increasing Ni binder content, while the addition of Co binder led to an excessively thick rim phase which was detrimental to the flexural strength. Applying a proper amount of Ni binder appeared to be beneficial for fabricating gradient composites with desired self-diffusion process during sintering. For the experimental conditions considered in this study, the best mechanical properties can be obtained when 6 mass% Ni in the surface and 12 mass% Ni in the substrate were used, which gave flexural strength, substrate hardness and surface hardness at 1488 +/- 190 MPa, 20.96 +/- 0.30 GPa and 25.12 +/- 0.48 GPa, respectively. (C) 2016 Elsevier B.V. All rights reserved.
机译:制备了具有不同金属粘结剂含量和Ni /(Co + Ni)质量比的自扩散梯度金属陶瓷复合工具材料,以改善机械性能。研究了升温速率和金属结合剂对自扩散梯度复合材料微观结构和力学性能的影响。对于所考虑的加热速率,发现以30℃/ min的加热速率在最佳附近,以产生期望的机械性能和精细的微观结构。发现随着Ni粘合剂含量的增加,弯曲强度增加并且硬度降低,而Co粘合剂的添加导致边缘相的厚度过大,这不利于弯曲强度。施加适量的Ni粘结剂似乎有利于在烧结过程中以所需的自扩散过程制备梯度复合材料。对于本研究中考虑的实验条件,当使用表面质量为6质量%的镍和基底质量为12质量%的镍时,可以获得最佳的机械性能,其抗弯强度,基底硬度和表面硬度为1488 +/-分别为190 MPa,20.96 +/- 0.30 GPa和25.12 +/- 0.48 GPa。 (C)2016 Elsevier B.V.保留所有权利。

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