席晓丽, 郭艳群, 聂祚仁, 杨建参, 左铁镛. 在SPS过程中碳污染的研究[J]. 北京工业大学学报, 2004, 30(1): 59-62.
    引用本文: 席晓丽, 郭艳群, 聂祚仁, 杨建参, 左铁镛. 在SPS过程中碳污染的研究[J]. 北京工业大学学报, 2004, 30(1): 59-62.
    XI Xiao-li, GUO Yan-qun, NIE Zuo-ren, YANG Jian-can, ZUO Tie-yong. Study on the Carbon Pollution in SPS[J]. Journal of Beijing University of Technology, 2004, 30(1): 59-62.
    Citation: XI Xiao-li, GUO Yan-qun, NIE Zuo-ren, YANG Jian-can, ZUO Tie-yong. Study on the Carbon Pollution in SPS[J]. Journal of Beijing University of Technology, 2004, 30(1): 59-62.

    在SPS过程中碳污染的研究

    Study on the Carbon Pollution in SPS

    • 摘要: 为了研究放电等离子烧结(SPS)过程中采用石墨模具对烧结材料的污染情况,以金属W为原料,用石墨模具,压力为30 MPa,分别在1 500℃和1 900℃下进行放电等离子烧结.对烧结体的表层和表层下0.5 mm处进行了X衍射物相分析,用扫描电镜对1 900℃下烧结体的横截面进行了形貌观察和线扫描,并对化学反应进行了热力学计算.结果表明:石墨模具与物料金属W会直接发生化学反应;污染产物碳化物存在于W烧结体表层300nm以内区域,表层下0.5 mm处仅有单质W存在;1 500℃表层有W2C和WC生成,1 900℃仅有WC生成.

       

      Abstract: In order to study the pollution of graphite die on the sintered material in spark plasma sintering (SPS), The metal tungsten as the material and the graphite die were heated in SPS by a pulse direct current. The pollution of carbon was studied when the tungsten was sintered by SPS at 1 500℃ or 1 900℃ with applying pressure of 30 MPa. By means of X-ray analysis and SEM observation and thermodynamic calculation, it was found that graphite could directly react with tungsten. Carbide pollution layer was formed at about 300nm deep from the surface. There was only tungsten under 500nm from the surface. The pollution layer was composed of WC at 1 500℃, and of WC and W2C at 1 900 ℃.

       

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