欢迎登录材料期刊网

材料期刊网

高级检索

用热压烧结法制备C-SiC-B4C复合材料,研究了热压温度对其显微组织和力学性能的影响.结果表明,材料的体积密度、抗折强度和断裂韧性均随着热压温度的升高而提高.在2000℃烧结的复合材料综合力学性能最佳,其体积密度、气孔率、抗折强度和断裂韧性分别达到2.81 g/cmM3、2.4%、236.7 MPa和5.4 MPa·m1/2.随着热压温度的提高,材料的组织经历了陶瓷相长大、C相变薄、C相和SiC逐渐致密化等过程.利用鳞片石墨Cfg易在压力下滑动在陶瓷基体上形成Cfg条状组织的特性,实现了材料的显微组织设计.碳陶复合材料的界面结合状态改善、Cfg条状结构和Cfg与陶瓷相的热膨胀不匹配是材料力学性能提高的主要原因.

参考文献

[1] C.J.Zhou,W.S.Kinman,P.J.McGinn,The effect of heattreatment temperature on structure and properties of TiB2/C composites,Carbon,45(6),1200(2007)
[2] T.Sogabe,T.Matsuda,K.Kuroda,Y.Hirohata,T.Hino,T.Yamashina,Preparation of B4C-mixed graphite by pressureless sintering and its air oxidation behavior,Carbon,33(12),1783(1995)
[3] Z.J.Liu,Q.G.Guo,J.R.Song,L.Liu,Effect of Ti dopant on shrinkage and performance of MCMB-derived carbon laminations Carbon,45(1),146(2007)
[4] C.Garcia-Rosales,N.Ordas,E.Oyarzabal,J.Echeberria,M.Balden,S.Lindig,R.Behrisch,Improvement of the thermo-mechanical properties of fine grain graphite by doping with different carbides,Journal of Nuclear Materials,307-311(2),1282(2002)
[5] H.P.Qiu,L.J.Han,L.Liu,Properties and microstructure of graphitised ZrC/C or SiC/C composites,Carbon,43(5),1021(2005)
[6] Y.F.Yang,H.Y.Wang,Y.H.Liang,R.Y.Zhao,Q.C.Jiang,RLbrication of steel matrix composites locally reinforced with different ratios of TiC/TiB2 particulates using SHS reactions of Ni-Ti-B4C and Ni-Ti-B4C-C systems during casting,Materials Science and Engineering,445-446(15),398(2007)
[7] W.G.Zhang,H.M.Cheng,H.Sano,Y.Uchiyama,K.Kobayashi,L.J.Zhou,Z.H.Shen,B.L.Zhou,The effects of nanoparticlate SiC upon the oxidation behavior of C-SiC-B4C composites,Carbon,36(11),1591(1998)
[8] J.Schulte-Fischedick,J.Schmidt,R.Tamme,U.Kroner,J.Arnold,B.Zeiffer,Oxidation behaviour of C/C-SiC coated with SiC-B4C-SiC-cordierite oxidation protection system,Materials Science and Engineering,386(1-2),428(2004)
[9] XIAO Harming,YANG Qiaoqin,HUANG Qizhong,CHEN Wei,In-situ synthesis and hot-press sintering of C-SiC-TiC-TiB2 composite,Journal of Hunan Univer sity,25(4),27(1998)(肖汉宁,杨巧勤,黄启忠,陈伟,C-SiC-TiC-TiB2复合材料原位合成及热压烧结,湖南大学学报,25(4),27(1998))
[10] S.W.Fan,L.T.Zhang,Y.D.Xu,L.F.Cheng,J.J.Lou,J.Z.Zhang,L.Yu,Microstructure and properties of 3D needle-punched carbon/silicon carbide brake materials,Composites Science and Technology,67(11),2390(2007)
[11] Q.L.Sheng,H.Yu,J.B.Zheng,Sol-gel derived terbium hexacyanoferrate modified carbon ceramic electrode:Electrochemical behavior and its electroeatalytical oxidation of ascorbic acid,Journal of Electroanalytical Chemistry,66(1),39(2007)
[12] YU Liang,RU Hongqiang,XUE Xiangxin,ZUO Liang,Numerical simulation of ablation of Cflake-SiC-B4C composites plat,Journal of Northeastern University,25(11),27(2006)(喻亮,茹红强,薛向欣,左良,C鳞片-SiC-B4C复合材料板烧蚀数值模拟,东北大学学报,25(11),27(2006))
[13] Z.J.Fan,Y.Z.Song,J.G.Li,L.Liu,J.R.Song,J.L.Chen,G.T.Zhai.J.Lli Shi,Oxidation behavior of fine-grained SiC-B4C/C composites up to 1400 ℃,Carbon,41(3),429(2003)
[14] FAN Zhuangjun,LIU Lang,LI Jiangang,Anti-oxidation behaviors of fine-grained B4C-SiC/C composites,Chinese Journal of Materials Research,17(3),288(2003)(范壮军,刘朗,李建刚,细颗粒B4C-SiC/C复合材料的抗氧化性能,材料研究学报,17(3),288(2003))
[15] HUANG Qizhong,YANG Qiaoqin,HUANG Baiyun,LU Haibo.Effect of raw materials on properties of C-B4C-SiC composite,J.Cent.South Univ.Technol.,26(2),224(1995)(黄启忠,杨巧勤,黄伯云,吕海波,原料种类对C-B4C-SiC复合材料性能的影响,中南工业大学学报,26(2),224(1995))
[16] L.J.Wu,Q.Z.Huang,Q.Q.Yang,L.H.Zhao,Z.Y.Xu,Effect of sintering temperature on structure of composites with silicon additive.Acta Metallurgica Inc.,35(1),123(1996)
[17] YAN Chong,XIAO Hanning,YANG Qiaoqin,LI Shaolu,PENG Wenqin,Effect of the content of carbon on the structure and properties of C-SiC-TiC-TiB2 composite,China Ceramics.,34(5),1(1998)(颜冲,肖汉宁,杨功勤,李绍禄,彭文琴,碳相含量对C-SiC-TiC-TiB2复合材料结构和性能的影响,中国陶瓷,34(5),1(1998))
[18] ZHOU Shengmai,LIU Qicheng,XIA Jintong,Preparation of binderless Carbon/ceramic composite materials and study on their oxidation resistance,Journal of Hunan Uhiversity (Natural Sciences Edition),28(5),29(2001)(周声劢,刘其城,夏金童,无粘结剂碳/陶复合材料的制备及抗氧化性能的研究,湖南大学学报(自然科学版),28(5),29(2001))
[19] HU Xiaokal,ZHOU Shengmai,XIA Jintong,Preparation of binderless C-SiC-B4C Carbon/ceramic composite materials and study on their oxidation resistance,Natural Science Journal of Xiangtan University,25(1),39(2003)(胡晓凯,周声劢,夏金童,无粘结剂C-SiC-B4C系碳/陶复合材料的制备及高温抗氧化性质的研究,湘潭大学自然科学学报,25(1),39(2003))
[20] P.G.Valentine,P.W.Trester,j.Winter,j.Linke,J.L.Kaae,A.Schuster,H.Bolt,R.Duwe,E.Wallura,V.Philipps,B4C-SiC reaction-sintered coatings on graphite for plasma facing components,Journal of Nuclear Materials,220-222,756(1995)
[21] Q.G.Guo,J.R.Song,L.Liu,B.J.Zhang,Relationship between oxidation resistance and structure of B4C-SiC/C composites with self-healing properties.Carbon.37(1999)33
[22] LIU Rong,RU Hongqiang,ZHAO Yuan,TANG Di,In situ synthesis of B4C ceramics toughened by ZrB2 particles,Chinese Journal of Materials Research,20(6),611(2004)(刘荣,茹红强,赵媛,唐荻,ZrB2颗粒增韧B4C陶瓷的原位合成,材料研究学报,20(6),611(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%