欢迎登录材料期刊网

材料期刊网

高级检索

以纤维素和凹凸棒石(PG)为原料,在220℃下水热24 h 制备凹凸棒石/炭(PG/C)复合材料。采用浸渍-炭化工艺在炭/炭(C/C)复合材料中引入PG/C作为添加剂,一步热压对材料最终成型,原位获得 C/C-陶瓷/C复合材料。研究了添加PG/C对C/C力学性能和抗氧化性能的影响。结果表明:PG/C 在热压过程中转变为顽辉石/C,顽辉石/C通过“填充”和“桥联”起增强作用,顽辉石陶瓷表面负载纳米炭层有效避免了陶瓷相与基体炭间弱结合的产生。随着PG/C中表面负载纳米炭含量的减少,C/C的强度逐渐增加。当炭含量为13%的PG/C作为添加剂时,C/C的抗弯强度为263 MPa,弹性模量为47 GPa,相对于没有添加剂的C/C抗弯强度提高了45%,弹性模量提高了42%;相对于以PG作为添加剂的C/C抗弯强度提高了16%,弹性模量提高了27%。添加PG/C使C/C抗氧化性得到了提高;1000℃下C/C的质量损失降低了12%~18%。

Palygorskite/carbon (PG/C)composites were synthesized via a hydrothermal route at 220 ℃ for 24 h using palygorskite and cellulose (PG)as raw materials.The obtained nano PG/C composites were introduced into the carbon/carbon (C/C)composites during the impregnation-carbonization process.Thus the C/C-ceramic/C com-posites were in-situ prepared by one-step hot pressing method.The mechanical and antioxidant properties were stud-ied for C/C composites using PG/C as additives.The results show that the PG/C converts to enstatite/C during hot pressing process.The resulted enstatite/C enhances the mechanical properties of C/C composites by filling and bridging,and the nano C layer loading on the surface of enstatite ceramic avoids weak-binding between ceramic phase and C matrix.Along with the decrease of nano C loading on surface of PG/C,the strength of C/C increases gradually.The PG/C with C content of 13% exhibits flexural strength of 263 MPa and elastic modulus of 47 GPa. Compared to that of C/C without additive,the values increases by 45% and 42% respectively.Compared to that of C/C introduced PG as additive,the value increases by 16% and 27% respectively.Also,the antioxidant properties of C/C improve due to the doped PG/C.The mass loss reduces by 12%-18% at 1 000 ℃.

参考文献

[1] 李贺军.炭/炭复合材料[J].新型炭材料,2001(02):79-80.
[2] Xiao, P.;Lu, X.-F.;Liu, Y.;He, L..Effect of in situ grown carbon nanotubes on the structure and mechanical properties of unidirectional carbon/carbon composites[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,20117/8(7/8):3056-3061.
[3] Jin Gyu Park;Nam Gyun Yun;Young Bin Park.Single-walled carbon nanotube buckypaper and mesophase pitch carbon/carbon composites[J].Carbon: An International Journal Sponsored by the American Carbon Society,201015(15):4276-4282.
[4] Jiangsong Zhang;Ruiying Luo;Caili Yang.A multi-wall carbon nanotube-reinforced high-temperature resistant adhesive for bonding carbon/carbon composites[J].Carbon: An International Journal Sponsored by the American Carbon Society,201213(13):4922-4925.
[5] Xiaoyu Cao;Xiaowei Yin;Xiaomeng Fan.High-temperature flexural properties of SiBC modified C/SiC composites[J].CERAMICS INTERNATIONAL,20144(4):6185-6190.
[6] Shujie Li;Xiaofei Chen;Zhijun Chen.The effect of high temperature heat-treatment on the strength of C/C to C/C-SiC joints[J].Carbon: An International Journal Sponsored by the American Carbon Society,201011(11):3042-3049.
[7] Ko TH;Kuo WS;Han WT;Day TC.Modification of a carbon/carbon composite with a thermosetting resin precursor as a matrix by the addition of carbon black[J].Journal of Applied Polymer Science,20061(1):333-337.
[8] Lu, Jinhua;Yang, Binke;Li, Hejun;Fu, Qiangang;Zhang, Weiben.The effects of addition of La2O3 on the microstructure and mechanical properties of carbon/carbon composites[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,2014:350-354.
[9] 杨琳;易茂中;冉丽萍.C/C/Cu及C/Cu复合材料摩擦磨损行为比较[J].复合材料学报,2009(6):97-102.
[10] Feng, Lei;Li, Ke-zhi;Si, Zi-shu;Song, Qiang;Li, He-jun;Lu, Jin-hua;Guo, Ling-jun.Compressive and interlaminar shear properties of carbon/carbon composite laminates reinforced with carbon nanotube-grafted carbon fibers produced by injection chemical vapor deposition[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,2015:449-457.
[11] Yanzhi Cai;Shangwu Fan;Xiaowei Yin.Microstructures and mechanical properties of three-dimensional ceramic filler modified carbon/carbon composites[J].CERAMICS INTERNATIONAL,20141 Pt.A(1 Pt.A):399-408.
[12] Huang Jian-Feng;Zeng Xie-Rong;Li He-Jun;Xiong Xin-Bo;Fu Ye-Wei.Influence of the preparation temperature on the phase,microstructure and anti-oxidation property of a SiC coating for C/C composites[J].Carbon: An International Journal Sponsored by the American Carbon Society,20048/9(8/9):1517-1521.
[13] 李龙;曾燮榕;李贺军;谢盛辉;熊信柏;邹继兆;唐汉玲.炭/炭复合材料用SiC-Glass涂层的高温氧化机理[J].复合材料学报,2007(5):113-118.
[14] 殷玲;郭顺;张武装;曾毅;熊翔.包埋法制备SiC涂层内残留Si的高温抗氧化作用机制[J].复合材料学报,2012(1):91-97.
[15] Shao-Long Wang;Ke-zhi Li;He-Jun Li;Yu-Lei Zhang.Microstructure and ablation resistance of ZrC nanostructured coating for carbon/carbon composites[J].Materials Letters,2013Sep.15(Sep.15):99-102.
[16] Xiang Xiong;Ya-lei Wang;Guo-dong Li;Zhao-ke Chen;Wei Sun;Ze-shen Wang.HfC/ZrC ablation protective coating for carbon/carbon composites[J].Corrosion Science: The Journal on Environmental Degradation of Materials and its Control,2013Dec.(Dec.):25-30.
[17] Andi Wang;Xiaoqing Gao;Rossman F. Giese Jr..A ceramic-carbon hybrid as a high-temperature structural monolith and reinforcing filler and binder for carbon/carbon composites[J].Carbon: An International Journal Sponsored by the American Carbon Society,2013:76-92.
[18] 孔垂周;高晓晴;郭全贵;宋进仁;杨禹.热压温度对纳米粘土增强炭/炭复合材料结构和性能的影响[J].新型炭材料,2015(5):451-458,382.
[19] Xueping Wu;Wangyong Zhu;Xianlong Zhang;Tianhu Chen;Ray L Frost.Catalytic deposition of nanocarbon onto palygorskite and its adsorption of phenol[J].Applied clay science,20114(4):400-406.
[20] 吴雪平;徐艳青;张先龙;吴玉程;高鹏.凹凸棒石/炭对低浓度亚甲基蓝的吸附性能[J].新型炭材料,2015(1):71-78.
[21] Xianlong Zhang;Liping Cheng;Xueping Wu;Yingzhao Tang;Yucheng Wu.Activated carbon coated palygorskite as adsorbent by activation and its adsorption for methylene blue[J].环境科学学报(英文版),2015(07):97-105.
[22] Yan, W.;Liu, D.;Tan, D.;Yuan, P.;Chen, M..FTIR spectroscopy study of the structure changes of palygorskite under heating[J].Spectrochimica acta, Part A. Molecular and biomolecular spectroscopy,2012:1052-1057.
[23] 陈天虎;王健;庆承松;彭书传;宋垠先;郭燕.热处理对凹凸棒石结构、形貌和表面性质的影响[J].硅酸盐学报,2006(11):1406-1410.
[24] Petr Ptacek;Karel Lang;Frantisek Soukal.Preparation and properties of enstatite ceramic foam from talc[J].Journal of the European Ceramic Society,20142(2):515-522.
[25] 孙乐民;李贺军;宋克兴;张守阳.沥清基碳/碳复合材料常压浸渍-碳化工艺及组织[J].机械科学与技术,2000(2):278-280.
[26] Lee KJ.;Chen ZY..Microstructure study of PAN-pitch-based carbon-carbon composite[J].Materials Chemistry and Physics,20032(2):428-434.
[27] M.M. Shokrieh;A. Daneshvar;S. Akbari.Reduction of thermal residual stresses of laminated polymer composites by addition of carbon nanotubes[J].Materials & design,2014Jan.(Jan.):209-216.
[28] 蒋建献 .C/C复合材料MoSi<,2>/SiC高温抗氧化涂层的研究[D].中南大学,2004.
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%