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首页> 外文期刊>Journal of Materials Science >WCCo/cBN composites produced by pulse plasma sintering method
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WCCo/cBN composites produced by pulse plasma sintering method

机译:脉冲等离子体烧结法制备WCCo / cBN复合材料

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WCCo/cBN composites have been considered as a next-generation material for use in cutting-tool edges, being characterized by an optimal combination of hardness and toughness. They can be used instead of WCCo/diamond composites in machining of iron-based materials. The major challenge in sintering these composites is to produce a well-bonded interface between the WCCo matrix and cBN particles. In this study, WCCo/cBN composites were fabricated by the pulse plasma sintering technique. The aim of this work is to obtain sintered parts with density near the theoretical value and with very good contact between the cBN particles and WCCo matrix. cBN/cemented carbide containing 30 vol.% of cBN particles was produced using a mixture of 6 and 12 wt.% Co-added WC powder, with WC grain size of 0.4 μm and cBN powder with grain size ranging from 4 to 40 μm. Scanning electron microscopy (SEM) observations of the microstructure and diffraction phase examinations did not show the presence of hBN phase. The specific heating conditions used to consolidate the material using high-current pulses hamper the transformation of cBN into hBN and ensure a strong bond between the cBN particles and the cemented carbide matrix. Fractures through the WCCo/cBN composite showed that only few cBN particles were torn out from the cemented carbide matrix, with most of them having been cleaved along the fracture plane. This provides evidence that the bond at the WCCo/cBN interface is mechanically strong. Composites sintered at temperature of 1,200 °C under pressure of 100 MPa for 5 min had density near the theoretical value. Increase of the sintering temperature to 1,200 °C resulted in an increase of the hardness to 2,330 HK1 for the WC6Co/cBN(1/3) composite and to 2,160 HK1 for the WC6Co/cBN(37/44) composite.
机译:WCCo / cBN复合材料被认为是用于切削刃的下一代材料,其特征是硬度和韧性的最佳组合。在铁基材料的加工中,它们可以代替WCCo /金刚石复合材料。烧结这些复合材料的主要挑战是在WCCo基质和cBN颗粒之间产生良好结合的界面。在这项研究中,WCCo / cBN复合材料是通过脉冲等离子体烧结技术制造的。这项工作的目的是获得密度接近理论值且cBN颗粒与WCCo基体之间具有良好接触的烧结零件。使用6和12 wt%的WC粒度为0.4μm的共添加WC粉末的混合物以及粒度为4至40μm的cBN粉末的混合物,生产了包含30%(体积)cBN颗粒的cBN /硬质合金。扫描电子显微镜(SEM)的微观结构和衍射相检查未显示出hBN相的存在。用于使用大电流脉冲固结材料的特定加热条件会阻碍cBN向hBN的转变,并确保cBN颗粒与硬质合金基体之间形成牢固的结合。 WCCo / cBN复合材料的断裂表明,只有很少的cBN颗粒从硬质合金基体上被撕裂,其中大部分已沿断裂面断裂。这提供了证据,表明WCCo / cBN界面处的结合机械牢固。在1200℃,100 MPa的压力下烧结5分钟的复合材料的密度接近理论值。烧结温度升高到1200°C,导致WC6Co / cBN(1/3)复合材料的硬度增加到2,330 HK1,而WC6Co / cBN(37/44)复合材料的硬度增加到2,160 HK1。

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