欢迎登录材料期刊网

材料期刊网

高级检索

以丙烯为气源,在800℃~1200℃进行化学气相沉积热解碳.研究了温度、压力和滞留时间对沉积速率和气相产物的影响.采用磁悬浮天平原位实时称量反应过程中的固相产物进行动力学研究;采用气相色谱和质谱联用半定量分析了反应过程中的气体产物.动力学研究结果表明,800℃~1000℃内活化能为137kJ/mol±25kJ/mol,沉积过程为化学动力学控制;高于1000℃时,沉积行为由气相分子的传质和气相成核控制.压力和滞留时间对沉积速率的影响说明,热解碳是经过一系列气相反应和固体表面反应后获得.气相产物分析说明,不同控制机制时形成热解碳的主要物质不同.在此基础上提出了丙烯分解形成热解碳的机制.

参考文献

[1] Savage G.Carbon-carbon composites[M].London:Chapman and Hall,1993:85.
[2] 苏君明,高效高冲质比C/C喷管的应用与进展[J].新型碳材料,1996,11(3):18-23.Su Junming.Application and development of C/C nozzle with high specific trust[J].New Carbon Materials,1996,11(3):18-23.
[3] 李崇俊,马伯信,金志浩,碳复合材料的新发展[J].材料科学与工程,2000,18(3):135-140.Li Chongjun,Ma Boxin,Jin Zhihao.Recent developments of carbon-carbon composites[J].Materials Science and Engineering,2000,18(3):135-140.
[4] 沈祖洪,郑国斌,陈新国,等,CVD与碳素[J].新型碳材料,1992(2):1-6.Shen Zuhong,Zheng Guobin,Chen Xinguo,et al.CVD and carbon[J].New Carbon Materials,1992(2):1-6.
[5] Somiya S,Inomata Y.Silicon carbide ceramics[M].Amsterdam:Elsevier Applied Science,1991:15.
[6] Allister P M,Hendricks J F.Modeling of chemical vapour mfiltration of carbon in porous carbon substrates[J].Carbon,1991,29:387-396.
[7] Becker A,Hüttinger K J.Chemistry and kinetics of chemical vapor deposition of pyrocarbon Ⅱ:Pyrocarbon deposition from ethylene,acetylene and 1,3-butadiene in the low temperature regime[J].Carbon,1998,36(3):177-199.
[8] Becker A,H0ttinger K J.Chemistry and kinetics of chemical vapor deposition of pyrocarbon Ⅲ:Pyrocarbon deposition from propylene and benzene in the low temperature regime[J].Carbon,1998,36(3):201-211.
[9] Becker A,Hfittinger K J.Chemistry and kinetics of chemical vapor deposition of pyrocarbon Ⅳ:Pyroearbon deposition from methane in the low temperature regime[J].Carbon,1998,36(3):213-224.
[10] Feron O,Langlais F,Naslain R.In-situ analysis of gas phase decomposition and kinetic study during carbon deposition from mixtures of carbon tetrachloride and methane[J].Carbon,1999,37:1355-1361.
[11] Feron O,Langlais F,Naslain R.Analysis of the gas phase by in situ FTIR spectrometry and mass spectrometry during the CVD of pyrocarbon from propane[J].Chem Vap Deposition,1999,5(1):37-47.
[12] Yao Xaoping,Su Kehe,Deng Juanli,et al.Gas-phase reaction thermodynamics in preparation of pyrocarbon by propylene pyrolysis[J].Comp Mater Sci,2007,40(4):504-524.
[13] Ferona O,Langlaisa F,Naslaina R.On kinetic and microstructural transitions in the CVD of pyrocarbon from propane[J].Carbon,1999,37:1343-1353.
[14] 尹洪峰,徐永东,张立同,热解条件对热解碳沉积模式和形貌的影响[J].无机材料学报,1999,14(5):769-774.Yin Hongfeng,Xu Yongdong,Zhang Litong.Effect of deposition condition on deposition mode and morphology of pyrolytic carbon[J].Journal of Inorganic Materials,1999,14(5):769-774.
[15] Pierson H O.Hand book of chemical vapor deposition:Priciples,technology and application[M].NJ,USA:Noyes Publications,1992:26-28.
[16] Benzinger W,Becker A,Hiittinger K J.Chemistry and kinetics of chemical vapor peposition of PyC Ⅰ:Fundermetals of kinetics and chemical engineering[J].Carbon,1996,34(8):957-966.
[17] Benzinger W,Hüttinger K J.Chemical vapor infiltration of pyrocarbon Ⅰ:Some kinetic considerations[J].Carbon,1996,34(12):1465-1471.
上一张 下一张
上一张 下一张
计量
  • 下载量()
  • 访问量()
文章评分
  • 您的评分:
  • 1
    0%
  • 2
    0%
  • 3
    0%
  • 4
    0%
  • 5
    0%