4.2 Article

The Formation Mechanism Investigations of Nano-Tungsten Carbide Powder

期刊

JOURNAL OF NANOSCIENCE AND NANOTECHNOLOGY
卷 20, 期 2, 页码 1269-1277

出版社

AMER SCIENTIFIC PUBLISHERS
DOI: 10.1166/jnn.2020.16967

关键词

Tungsten Carbide; Formation; Mechanism

资金

  1. Scientific and Technological Research Program of Chongqing Municipal Education Commission [KIQN201801141, CY180902]
  2. China Scholarship Council

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Formation mechanism of synthesizing nanoparticle tungsten carbide (WC) was studied. WC was synthesized by carbothermal hydrogen reduction (CHR) method under various reaction temperatures for holding different post-treatment time in 20% (v/v) CH4/H-2. The phase transformation mechanism of gaining WC was investigated, by combining CHR with X-ray diffraction (XRD) and temperature programmed reduction mass spectroscopy (TPR-MS). The results show that pure phase of WC has been obtained by CHR after isothermal heat treatment for 24 hours at 750 degrees C and 12 hours at 950 degrees C, respectively. These results indicated that two key parameters of higher temperature and longer isothermal heat treatment time are necessary for synthesizing pure phase of WC powder. In order to find out the phase transformation mechanism of tungsten trioxide (WO3) to WC, the reduction and carburization process among the temperature range from 600 degrees C to 1000 degrees C for holding 3 hours at the final temperature were studied. It was shown that at 600 degrees C, WO3 was reduced to WO2, and from 600 degrees C to 750 degrees C, WO2 was reduced to metallic tungsten (W). Moreover, at the temperature range from 750 degrees C to 900 degrees C, the mixture phases of tungsten carbide (WC), metallic tungsten (W), or/and tungsten sub Carbide (W2C) were formed without any oxides species, which indicated that tungsten carbides (WC and W2C) phases appeared because the oxides phase was thoroughly reduced. However, the occurrence of carburization process was still limited due to the presence of oxygen in the solid. Because of the formed CO and CO2 there was not enough activated methane reacting with metallic tungsten, so the phase of WC and W2C were both formed simultaneously, but the reaction of forming WC was the main reaction in the whole carburization process. Moreover, the TPR-MS and XRD results indicated that, WC was formed at lower temperature (750 degrees C) by the reduced metallic W, which was produced form W2C in the gas mixture for holding a long time, while at a higher temperature (950 degrees C), WC was formed form W2C with the mixture gas directly.

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