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首页> 外文期刊>International Journal of Refractory Metals & Hard Materials >Microstructural and mechanical characterization of high energy ball milled and sintered WC-10 wt percent Co-xTaC nano powders
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Microstructural and mechanical characterization of high energy ball milled and sintered WC-10 wt percent Co-xTaC nano powders

机译:高能球磨并烧结的WC-10 wt%Co-xTaC纳米粉末的微观结构和力学特性

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摘要

Ultra fine tungsten carbide and cobalt powders were milled by high energy planetary ball mill at different ball to powder weight ratios (BPR) to produce particles of WC-10 wt percent Co hard metal in nanometer scale size. Microstructural characterizations by TEM show that the particle size of tungsten carbide was achieved to 32 nm after milling at 15 BPR during 10 h. In order to reduce the WC grain growth during the sintering process, tantalum carbide was added to the hard metal as a WC grain growth inhibitor. The nano hard metal powders were compacted at 200 MPa pressure and sintered at 1370-1450 deg C temperatures in a high purity hydrogen atmosphere. The results show that the addition of 0.6 wt percent of TaC improves the hardness and fracture toughness from 1493 HV_(30) and 11.8 MPa併m (for TaC free sample) to 1614 HV_(30) and 13.7 MPa併m, respectively.
机译:将超细碳化钨和钴粉通过高能行星式球磨机以不同的球粉重量比(BPR)进行研磨,以生产纳米级尺寸的WC-10 wt%Co硬质合金颗粒。 TEM的微观结构表征表明,碳化钨的粒径在15 BPR下研磨10小时后达到了32 nm。为了减少烧结过程中的WC晶粒长大,将碳化钽作为WC晶粒长大抑制剂添加到硬质金属中。将纳米硬质金属粉末在200 MPa的压力下压实,并在1370-1450摄氏度的温度下于高纯度氢气氛中烧结。结果表明,添加0.6 wt%的TaC可以将硬度和断裂韧性分别从1493 HV_(30)和11.8 MPa并发(对于不含TaC的样品)分别提高到1614 HV_(30)和13.7 MPa并发。

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