[1] |
EATON H E, LINSEY G D, MORE K L, et al. EBC Protection of SiC/SiC Composites in the Gas Turbine Combustion Environment. ASME Turbo Expo 2000: Power for Land, Sea, and Air, Munich, Germany, 2000: 18-22.
|
[2] |
MISRA A K. Development of Advanced Engine Materials in NASA Ultra Efficient Engine Technology Program. 15th International Symposium on Air Breathing Engines Conference, 2001.
|
[3] |
UPADHYA K Y, YANG J M, HOFFMAN W P. Materials for ultrahigh temperature structural applications. American Ceramic Society Bulletin, 1997, 76(12): 51-56.
|
[4] |
CHENEY M, ISAACSON D, NEWELL J C. Electrical impedance tomography. Der Anaesthesist, 1999, 41(1): 85-101.
|
[5] |
SCHUELER R, JOSHI S P, SCHULTE K. Damage detection in CFRP by electrical conductivity mapping. Composites Science & Technology, 2001, 61(6): 921-930.
|
[6] |
GAO X G, WEI T T, DONG H N, et al. Damage detection in 2.5D C/SiC composites using electrical resistance to-mography. Journal of the European Ceramic Society, 2019, 39(13): 3583-3593.
DOI
URL
|
[7] |
MAYER J. Electronic Materials Science:for Integrated Circuits in Si and GaAs. New York, USA: Macmillan, 1990.
|
[8] |
FANKHÄNEL B, MÜLLER E, MOSLER U, et al. SiC-fibre reinforced glasses-electrical properties and their application. Journal of the European Ceramic Society, 2001, 21(5): 649-657.
DOI
URL
|
[9] |
MEI H, CHENG L. Damage analysis of 2D C/SiC composites subjected to thermal cycling in oxidizing environments by mechanical and electrical characterization. Materials Letters, 2005, 59(26): 3246-3251.
DOI
URL
|
[10] |
SMITH C, MORSCHER G N, XIA Z. Electrical Resistance as a NDE Technique to Monitor Processing and Damage Accumulation in SiC/SiC Composites. 32nd Annual Conference on Composites, Materials, and Structures, Daytona Beach, FL, 2008.
|
[11] |
杜双明, 乔生儒, 纪岗昌, 等. 3D-C/SiC复合材料拉-拉疲劳模量和电阻的变化. 宇航材料工艺, 2002, 32(5): 39-41.
|
[12] |
杜双明, 乔生儒. 基于电阻变化的3DC/SiC复合材料疲劳损伤演化. 复合材料学报, 2011, 28(2): 165-169.
|
[13] |
XIA Z, SUJIDKUL T, NIU J, et al. Modeling of electromechanical behavior of woven SiC/SiC composites. Composites Part A Applied Science & Manufacturing, 2012, 43(10): 1730-1737.
|
[14] |
BÖHRK H, LESCHINSKI P, REIMER T. Electrical resistivity measurement of carbon-fiber-reinforced ceramic matrix composite under thermo-mechanical load. Composites Science & Technology, 2013, 76(4): 1-7.
|
[15] |
SMITH C, XIA Z, GYEKENYESI A. Electrical Resistance of SiC/SiC Ceramic Matrix Composites for Damage Detection and Life-prediction. 33rd International Conference on Advanced Ceramics and Composites, Daytona Beach, FL, 2009.
|
[16] |
SMITH C E, MORSCHER G N, XIA Z. Electrical resistance as a nondestructive evaluation technique for SiC/SiC ceramic matrix composites under creep-rupture loading. International Journal of Applied Ceramic Technology, 2011, 8(2): 298-307.
DOI
URL
|
[17] |
SMITH C E, MORSCHER G N, XIA Z H. Monitoring damage accumulation in ceramic matrix composites using electrical resistivity. Scripta Materialia, 2008, 59(4): 463-466.
DOI
URL
|
[18] |
MORSCHER G N, BAKER C, SMITH C. Electrical resistance of SiC fiber reinforced SiC/Si matrix composites at room temperature during tensile testing. International Journal of Applied Ceramic Technology, 2014, 11(2): 263-272.
DOI
URL
|
[19] |
贺西民. 碳化硅非线性电阻导电机理. 电瓷避雷器, 1992(6): 47-49.
|
[20] |
郭磊, 宁叔帆, 于开坤, 等. 碳化硅非线性导电特性的研究进展. 绝缘材料, 2005, 38(3): 60-64.
|
[21] |
付海涛, 覃国茂, 俞启建. 磁场干扰对测量线圈直流电阻的影响实例与分析. 水电站机电技术, 2011, 34(1): 22-23.
|
[22] |
吕振林, 熊流锋, 黄清伟, 等. 工艺参数对反应烧结碳化硅导电性的影响. 西安交通大学学报, 1998(12): 70-72.
|
[23] |
王钧, 杨小利, 刘东, 等. 碳纤维增强复合材料电阻率-温度特性研究. 武汉理工大学学报, 2001(12): 5-8.
|
[24] |
李跃进, 杨银堂. 多晶碳化硅的氧化技术研究. 功能材料, 2000, 31(2): 142-143.
|
[25] |
张盛. 编织陶瓷基复合材料力学行为的多尺度分析. 南京: 南京航空航天大学博士学位论文, 2018.
|