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Reactive Sintering of Bimodal WC-Co Hardmetals

机译:双峰WC-Co硬质合金的反应烧结

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Bimodal WC-Co hardmetals were produced using novel technology - reactive sintering. Milled and activated tungsten and graphite powders were mixed with commercial coarse grained WC-Co powder and then sintered. The microstructure of produced materials was free of defects and consisted of evenly distributed coarse and fine tungsten carbide grains in cobalt binder. The microstructure, hardness and fracture toughness of reactive sintered bimodal WC-Co hardmetals is exhibited. Developed bimodal hardmetal has perspective for demanding wear applications for its increased combined hardness and toughness. Compared to coarse material there is only slight decrease in fracture toughness (K1c is 14.7 for coarse grained and 14.4 for bimodal), hardness is increased from 1290 to 1350 HV units.
机译:使用新型技术-反应烧结生产双峰WC-Co硬质合金。将经研磨和活化的钨和石墨粉末与市售粗粒WC-Co粉末混合,然后烧结。所生产材料的微观结构没有缺陷,由钴粘合剂中均匀分布的粗细碳化钨晶粒组成。显示了反应性烧结双峰WC-Co硬质合金的显微组织,硬度和断裂韧性。发达的双峰硬质合金具有更高的综合硬度和韧性,可满足苛刻的磨损应用需求。与粗糙材料相比,断裂韧性仅略微降低(粗糙颗粒的K1c为14.7,双峰的K1c为14.4),硬度从1290 HV单位增加到1350 HV单位。

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