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  • 朱翔鷹, 翟玉春. 錳球制備條件對氮化反應的影響[J]. 工程科學學報, 2016, 38(12): 1711-1719. DOI: 10.13374/j.issn2095-9389.2016.12.008
    引用本文: 朱翔鷹, 翟玉春. 錳球制備條件對氮化反應的影響[J]. 工程科學學報, 2016, 38(12): 1711-1719. DOI: 10.13374/j.issn2095-9389.2016.12.008
    ZHU Xiang-ying, ZHAI Yu-chun. Influence of Mn pellet preparation conditions on nitriding reaction[J]. Chinese Journal of Engineering, 2016, 38(12): 1711-1719. DOI: 10.13374/j.issn2095-9389.2016.12.008
    Citation: ZHU Xiang-ying, ZHAI Yu-chun. Influence of Mn pellet preparation conditions on nitriding reaction[J]. Chinese Journal of Engineering, 2016, 38(12): 1711-1719. DOI: 10.13374/j.issn2095-9389.2016.12.008

    錳球制備條件對氮化反應的影響

    Influence of Mn pellet preparation conditions on nitriding reaction

    • 摘要: 利用自制的密閉氮化系統研究不同制備條件的錳球的氮化反應.考察錳粉粒度、成球壓力和黏結劑添加量對氮化反應的影響,并測量錳球氮化過程中實時增重和溫度曲線.實驗結果表明:錳粉粒度由16~40目變成60~80目時,球心溫度到達峰值的時間由164 s縮短為101 s,球心最大溫升由147℃增至233℃,氮化1 h的轉化率由90.81%增至93.64%;成球壓力由266 MPa增至443 MPa,球心峰值溫度將提前89 s到達,球心最大溫升將提高22℃,氮化1 h的轉化率由91.59%增至94.92%;黏結劑添加量由1 g增至3 g,氮化1 h的轉化率由92.90%降至89.80%;正態對數分布的概率密度函數可用來近似擬合轉化速率與時間的關系.

       

      Abstract: Nitriding reaction of Mn pellets prepared under different conditions was investigated with a self-made air-proofed nitriding system. The effects of Mn particle size, pelletizing pressure and binder content on the nitriding reaction were studied, and the real-time variation curves of temperature and Mn pellet mass were measured. The results show that with the decrease of particle size from 16-40 mesh to 60-80 mesh, the time for the pellet center temperature reaching peak (tp) shifts from 164s to 101 s, the maximum temperature increment at the pellet center (ΔTmax) increases from 147 ℃ to 233 ℃, and the conversion ratio at 1 h rises from 90, 81% to 93.64%. With increasing pelletizing pressure from 266 MPa to 443 MPa, tp decreases by 89 s, ΔTmax increases by 22 ℃, and the conversion ratio at 1 h rises from 91.59% to 94.92%. With the increase of binder addition from 1 g to 3 g, the conversion ratio at 1 h drops from 92.90% to 89.80%. The data points of the conversion rate and the nitriding time can be approximately fitted with the probability density function of the log-normal distribution.

       

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