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Fe-Cr基陶瓷复合耐磨材料绝热温度的热力学计算

Thermodynamic Calculation of Thermo-insulated Temperature for Fe-Cr Matrix Wear Resistant Composites

  • 摘要: 根据热量平衡的关系,对不同Fe/Cr质量比和硬质相含量下,Fe-Cr基陶瓷复合耐磨材料Al-Fe3O4-CrO3-B4C-Ti系的绝热温度进行计算。结果表明:m(Fe):m(Cr)=4:1~9:1时,硬质相的质量分数由10%增加到40%,Al-Fe3O4-CrO3-B4C-Ti系的绝热温度均大于1 800 K,燃烧合成反应能自持;m(Fe):m(Cr)=7:1~9:1时,随两者质量比的降低,反应体系绝热温度的增加幅度不大;m(Fe):m(Cr)<6:1时,反应体系的绝热温度增加幅度较大。通过燃烧合成实验验证了体系绝热温度理论计算结果的正确性,基于热力学计算分析及燃烧合成实验结果综合考虑,最佳的m(Fe):m(Cr)=6:1,硬质相的质量分数为30%。

     

    Abstract: Based on the heat balance, the thermo-insulated temperatures of Fe-Cr matrix wear resistant composites Al-Fe3O4-CrO3-B4C-Ti system with different mass ratios of Fe/Cr and contents of hard phase were calculated. The results show that m(Fe):m(Cr)=4:1-9:1, the thermo-insulated temperature of Al-Fe3O4-CrO3-B4C-Ti system are higher than 1 800 K with the hard phase content increasing from 10% to 40%, the combustion synthesis reaction can be self-sustaining. m(Fe):m(Cr)=7:1-9:1, as the mass ratio of Fe/Cr decreases, the thermo-insulated temperature of the reaction system does not increase much; m(Fe):m(Cr)<6:1, the thermo-insulated temperature of reaction system increases greatly. The correctness of theoretical calculation for the thermo-insulated temperature of the system was verified by the combustion synthesis experiment. Combined with the thermodynamic analysis and the result of combustion synthesis experiment, the best mass ratio of Fe/Cr and mass fraction of hard phase are 6:1 and 30% separately.

     

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