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Mechanical Properties and Microstructural Behaviour of Microwave Sintered WC-Co

机译:微波烧结WC-CO的机械性能和微观结构行为

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摘要

Cemented carbides have been of great interest within industrially manufacturable hard materials for their mechanical properties. Microwave sintering is known for its application on a range of hard materials. Although it has been widely used, its effect on grain growth of materials still requires clear understanding. Three different types of particle size, ranging from 1-3 mu m to 100 nm were used for microwave sintering where temperature was used in this study within the range of 1000-1400 degrees C, while pressure during initial compaction of powder particles was kept constant. The maximum hardness was observed in the order of nearly 1800 Hv for submicron samples, sintered at 1250 degrees C. Fracture toughness on the samples reached a maximum of 16 MPa root m for micron samples sintered at 1400 degrees C. Grain growth in all samples was not more than 1-3 mu m, even without the presence of any commercial grain growth inhibitors as part of the composition. Line scanning between grains demonstrates the presence of homogenous Co, confirming good mechanical behaviour. The microstructural features associated to the sintering process have also been focused as part of the study, highlighting some challenges in the research. Graphic Line scanning of WC (1-3 mu m)-7.5 wt% Co (1-3 mu m) sample, microwave sintered at 1400 degrees C
机译:在工业上制造的硬质材料中,粘合碳化物具有很大的兴趣,用于其机械性能。微波炉烧结是在一系列硬质材料上的应用。虽然它已被广泛使用,但其对材料的粮食生长的影响仍然需要清楚的了解。三种不同类型的粒度,范围为1-3μm至100nm用于微波烧结,其中在该研究中使用温度在1000-1400℃的范围内,而粉末颗粒的初始压实期间的压力保持恒定。在亚微米样品的近1800小时的焦点上观察到最大硬度,在1250℃下烧结样品上的断裂韧性为烧结在1400摄氏度下烧结的微米样品的16MPa根部M.所有样品中的晶粒生长即使没有任何商业谷物生长抑制剂作为组合物的一部分,也不超过1-3μm。谷物之间的线路扫描证明了均质CO的存在,确认良好的机械行为。与烧结过程相关的微观结构特征也被关注作为研究的一部分,突出了研究中的一些挑战。 WC(1-3μm)-7.5wt%CO(1-3μm)样品的图形线扫描,微波烧结为1400℃

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