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High pressure infiltration sintering behavior of WC-Co alloys

机译:WC-Co合金的高压熔渗烧结行为

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摘要

In this paper, two average tungsten carbide particle sizes of 2, 0.5m are placed respectively, in contact with a WC-16Co substrate, pressed at the pressure of 4.5-5.5GPa, and heated to temperatures ranging from 1350 degrees C to 1500 degrees C in a large-volume cubic press. During the process Co was forced out of the WC-16Co substrate into the compressed powder. The resulting infiltrated samples were characterized using X-ray diffraction (XRD), scanning electron microscope (SEM), Vickers hardness and cutting performance tests. The results of XRD confirmed that the sintered bulks have WC and Co phases. The scanning electron microscopy (SEM) analysis reveals that the WC grains in well-sintered alloys are round in shape and cobalt with lower content is uniformly dispersed in the WC grain boundaries. The sintered sub-micron WC-Co alloy with a cobalt content of 3.8wt% exhibits a prominent combination of high hardness value of 23.1GPa and a large fracture toughness value of 8.6MPam(1/2). The high-speed cutting tests indicating its cutting performance is significantly superior to the commercial YG6X (WC-6wt%Co with WC grain size of 0.5m).
机译:在本文中,分别放置两个平均碳化钨颗粒尺寸为2、0.5m,与WC-16Co基材接触,在4.5-5.5GPa的压力下加压,并加热到1350摄氏度至1500摄氏度的温度C在大容量立方压力机中。在此过程中,Co被迫从WC-16Co基材中挤出进入压缩粉末中。使用X射线衍射(XRD),扫描电子显微镜(SEM),维氏硬度和切削性能测试对所得渗透样品进行表征。 XRD的结果证实了烧结块具有WC和Co相。扫描电子显微镜(SEM)分析表明,烧结良好的合金中的WC晶粒呈圆形,并且含量较低的钴均匀地分散在WC的晶界中。钴含量为3.8wt%的亚微米WC-Co烧结合金具有显着的组合,即高硬度值23.1GPa和大断裂韧性值8.6MPam(1/2)。高速切削测试表明其切削性能明显优于商业YG6X(WC晶粒度为0.5m的WC-6wt%Co)。

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