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Synthesis of tungsten carbide nanopowders by direct carbonization of tungsten oxide and carbon: Effects of tungsten oxide source on phase structure and morphology evolution

机译:氧化钨碳化和碳化碳化的合成碳化钨纳米粉:氧化钨源对相结构和形态学的影响

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摘要

In the paper, WC nanopowders are successfully prepared by carbothermal reduction method, and the effect of tungsten oxide source on the phase structure evolution and products properties of the as-synthesized WC nanopowders has been investigated. Four tungsten oxide powders are chosen as tungsten oxide sources, e.g., rods-like WO3, WO3 nanopartiles, WO3 micro-particles and WO2.9 micro-particles. Compared with other three tungsten oxide sources, the WO3 micro-particles possesses small particle size, less agglomerates and good dispersity and the uniform tungsten oxide-carbon mixture after ball milling can be easily obtained. The appropriate tungsten oxide source can result in lower processing temperature (<= 1200 degrees C) and shorter holding time (<= 3 h). Single-phase WC powders with average particle size of 100 nm and uniform particle distribution can be achieved by micro-particle-like WO3 at 1100 degrees C for 3 h. The as-prepared WC products by other three tungsten oxide sources exhibit problems of more aggregates, non-uniform particle size and large particle size (250 nm), respectively. In addition, the method can provide a facile, low-cost, efficient, and industrially feasible pathway for large scale preparation of WC nanopowders.
机译:在本文中,通过Carbothotmal降低方法成功地制备了WC纳米粉,并研究了氧化钨源对相合化WC纳米粉粉的相结构演化和产品性质的影响。选择四种氧化钨粉末作为氧化钨源,例如棒状WO3,WO3纳米颗粒,WO3微颗粒和WO2.9微粒。与其他三种氧化钨源相比,WO3微颗粒具有小的粒度,较少的附聚物和良好的分散性,并且可以容易地获得球磨后的均匀氧化钨 - 碳混合物。合适的氧化钨源可导致较低的加工温度(<= 1200℃)和更短的保持时间(<= 3小时)。具有100nm的平均粒径和均匀颗粒分布的单相WC粉末可以通过1100℃的微颗粒状WO3实现3小时。其他三种氧化钨源的AS制备的WC产物分别表现出更多的聚集体,不均匀的粒度和大粒径(250nm)的问题。此外,该方法可以提供用于大规模制备WC纳米粉粉的容易,低成本,有效和工业上可行的途径。

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