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首页> 外文期刊>Materials Letters >Characterizations of ball-milled nanocrystalline WC-Co composite powders and subsequently rapid hot pressing sintered cermets
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Characterizations of ball-milled nanocrystalline WC-Co composite powders and subsequently rapid hot pressing sintered cermets

机译:球磨纳米晶WC-Co复合粉末以及随后快速热压烧结金属陶瓷的表征

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摘要

Nanostructured WC-Co cemented carbides, combining high hardness and high toughness, are expected to be widely applicable. In this study, nanocrystalline WC-10Co-0.8VC-0.2Cr_0.3C_2 (wt.%) composite powders, whose average grain size is bout 25 nm, were fabricated by a unique ball milling technique with variable rotation rate and repetitious circulation in 32 min. The high energy ball milling process was optimized and the as-prepared nanocrystalline powders were characterized and analyzed by X-ray diffraction (XRD), transmission electron microscopy (TEM) and differential thermal analysis (DTA). Furthermore, a low temperature, high heating rate, short soaking time and pressure sintering technique, that is, rapid hot pressing sintering, was used in the sintering process, by which nanostructured WC-Co cemented carbides with mean grain size of 250 nm were produced. The material exhibits high hardness of 93.6 HRA and transverse rapture strength of 2746 MPa. In the sintered composites, the distribution of elements W, Co, V and Cr is homogeneous, and it is small quantity of miropores and extraordinary coarse tungsten carbide phase that negatively influence the transverse rapture strength of nanostructured WC-Co cemented carbides.
机译:结合高硬度和高韧性的纳米结构WC-Co硬质合金有望被广泛应用。在这项研究中,采用独特的球磨技术,以可变的转速和重复循环的方式,制造了纳米晶WC-10Co-0.8VC-0.2Cr_0.3C_2(wt。%)复合粉末,其平均粒径约为25 nm。分钟优化了高能球磨工艺,并通过X射线衍射(XRD),透射电子显微镜(TEM)和差热分析(​​DTA)对制备的纳米晶粉末进行了表征和分析。此外,在烧结过程中使用了低温,高加热速率,短的均热时间和压力烧结技术,即快速热压烧结,从而生产出平均粒径为250 nm的纳米结构WC-Co硬质合金。 。该材料具有93.6 HRA的高硬度和2746 MPa的横向破裂强度。在烧结的复合材料中,元素W,Co,V和Cr的分布是均匀的,并且少量的微孔和特殊的粗碳化钨相不利地影响了纳米结构WC-Co硬质合金的横向断裂强度。

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