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Microstructure and properties of spark plasma sintered WC-6Co cemented carbides

机译:火花等离子体烧结WC-6CO硬质合金的微观结构和性能

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Cemented carbides constitute the main group of tool materials due to their good cutting and strength properties. To produce cemented carbides powder metallurgy methods are used, among which spark plasma sintering is considered to be highly prospective. The paper presents the results of research on the effect of compaction pressure and heating rate on the microstructure and consequently on the density, hardness and fracture toughness of WC-6C0 cemented carbides produced by spark plasma sintering. Sintering using an HP D 25-3 furnace was performed in vacuum at 1200°C for 10 min at a compaction pressure of 50 or 60 MPa and at a heating rate of 200 or 400°C/min. Samples for measurements and testing were cut by electrical discharge machining from the sintered compacts. Density measurements were carried out using the Archimedes method according to ISO 3369:2006 standard, while Vickers hardness measurements were performed according to ISO 6507-1:2007 standard. The fracture toughness was determined. Microstructure observations in backscattered electrons contrast were conducted using a scanning electron microscope. It was shown that the relative density increases with increasing compaction pressure and heating rate, whereby the heating rate is less important. In addition, an increase in hardness affects a reduction in the fracture toughness. The compacts sintered at the compaction pressure of 50 MPa at the heating rate of 400°C/min exhibited the highest hardness of 1726 HV_(30). The fracture toughness of these materials is 8.66 MPa-m~(1/2).
机译:由于其良好的切削和强度性能,粘合碳化物构成主要的工具材料。为了生产粘合的碳化物碳化物粉末冶金方法,其中火花等离子体烧结被认为是高度前瞻性的。本文提出了对微观结构对压实压力和加热速率影响的研究结果,从而对由火花等离子体烧结产生的WC-6C0粘合碳化物的密度,硬度和断裂韧性。使用HP D 25-3炉烧结在50或60MPa的压实压力下在1200℃下真空进行10分钟,加热速率为200或400℃/ min。通过从烧结块的放电加工切割用于测量和测试的样品。根据ISO 3369:2006标准使用Archimedes方法进行密度测量,而Vickers硬度测量是根据ISO 6507-1:2007标准进行的。确定断裂韧性。使用扫描电子显微镜进行背散射电子对比的微观结构观察。结果表明,相对密度随着压力压力和加热速率的增加而增加,从而加热速率不太重要。此外,硬度的增加会影响断裂韧性的降低。在400℃/ min的加热速率下在50MPa的压实压力下烧结的压块表现出1726 HV_(30)的最高硬度。这些材料的断裂韧性为8.66MPa-m〜(1/2)。

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