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高溫含水條件下BN粉體的反應動力學

Reaction kinetics of BN powder in high-temperature water vapor

  • 摘要: 針對高溫含水條件下非氧化物材料經常面臨的性能失效問題,以六方BN粉體(平均粒度為1.2μm)為研究對象,利用高溫熱重分析、X射線衍射以及掃描電鏡等手段,考察了BN粉體在不同溫度(1273-1373K)含水條件下f水和空氣的體積比為3:7)的反應行為,并與其在干燥空氣下的反應行為進行對比.BN粉體在含水條件下的反應有如下特點:在反應初期,試樣質量增加率快速增加;在反應后期,試樣質量增加率變緩.結合熱力學分析探討了BN材料在高溫含水條件下的反應機理:質量快速增加階段主要發生BN與O2之間的氧化反應,試樣質量增加率變緩階段主要是由于氧化產物B2O3與H2O反應生成了揮發性產物.隨著溫度的升高,兩反應階段試樣的質量增加率均有所提高.利用周模型對BN材料在高溫含水條件下的反應動力學進行了較為精確且定量的擬合,結果與實驗數據吻合良好.

     

    Abstract: Aiming at performance failure of non-oxide materials under high temperature water vapor conditions, the reaction behavior of hexagonal BN powder with the average particle size of 1.2 μm at a temperature range of 1273 K to 1373 K in water vapor (the volume ratio of H20/air was 3:7) was investigated by thermogravimetric analysis, X-ray diffraction and scanning electron microscopy, together with a comparison with the reaction behavior of BN powder in dry air. The reaction process of BN powder in aqueous conditions has the following characteristics:the weight gain rate increases quickly in the initial stage of reaction, but it becomes slow at the later stage of reaction. The reaction mechanism was discussed together with thermodynamic calculation. It is shown that the weight gaining is attributed to oxidation of BN powder to form B2O3. A reaction of B2O3 with H2O forming volatile products causes the weight gaining rate become slowly. In both stages, the weight gain rate all increases when the temperature rises. The reaction kinetics of BN powder in high-temperature water vapor is fitted precisely and quantitatively by Chou's model, and the results get a good agreement with experimental data.

     

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