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- 2015
采用数字图像相关方法的莫来石纤维增强气凝胶复合材料力学试验
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Abstract:
[1] | Pan B, Qian K, Xie H, et al. Two-dimensional digital image correlation for in-plane displacement and strain measurement: A review[J]. Measurement Science and Technology, 2009, 20(6): 1-17. |
[2] | Kistler S S. Coherent expanded aerogels and jellies[J]. Nature, 1931, 127: 741. |
[3] | Schmidt M, Schwertfeger F. Applications for silica aerogel products[J]. Journal of Non-Crystalline Solids, 1998, 225: 364-368. |
[4] | Wang Y F, Zhang C R, Feng J, et al. Fabrication and properties of SiO2-aerogel loading chopped mullite fiber porous skeleton composite[J]. Journal of National University of Defense Technology, 2008, 30(6): 24-28 (in Chinese). 王衍飞, 张长瑞, 冯坚, 等. SiO2气凝胶复合短切莫来石纤维多孔骨架复合材料的制备及性能[J]. 国防科技大学学报, 2008, 30(6): 24-28. |
[5] | Gao Q F, Feng J, Zhang C R, et al. Mechanical properties of ceramic fiber-reinforced silica aerogel insulation composites[J]. Journal of the Chinese Ceramic Society, 2009, 37(1): 1-5 (in Chinese). 高庆福, 冯坚, 张长瑞, 等. 陶瓷纤维增强氧化硅气凝胶隔热复合材料的力学性能[J]. 硅酸盐学报, 2009, 37(1): 1-5. |
[6] | Sun Y T, Shi D Q, Yang X G, et al. Compression and deformation mechanisms of SiO2 fiber-reinforced aerogel composite[J]. Acta Materiae Compositae Sinica, 2013, 30(4): 225-230 (in Chinese). 孙燕涛, 石多奇, 杨晓光, 等. 纤维增强SiO2气凝胶复合材料压缩性能和变形机制[J]. 复合材料学报, 2013, 30(4): 225-230. |
[7] | Yang H L, Kong X M, Zhang Y R, et al. Mechanical properties of silica aerogels prepared from a mixture of TEOS and organo-alkoxysilanes of type R1SiX3[J]. Journal of Wuhan University of Technology, 2014, 29(1): 201-207. |
[8] | Yang H L, Kong X M, Zhang Y R, et al. Mechanical properties of polymer-modified silica aerogels dried under ambient pressure[J]. Journal of Non-Crystalline Solids, 2011, 357(19): 3447-3453. |
[9] | American Society for Testing and Materials International. ASTM D 7078 Standard test method for shear properties of composite materials by V-notched rail shear method[S]. Pennsylvania: ASTM International, 2012. |
[10] | American Society for Testing and Materials International. ASTM C 1341 Standard test method for flexural properties of continuous fiber-reinforced advanced ceramic composites[S]. Pennsylvania: ASTM International, 2000. |
[11] | Liu X Y. Digital image correlation method and its application on mechanical properties measurement of materials[D]. Changchun: Jilin University, 2012 (in Chinese). 刘小勇. 数字图像相关方法及其在材料力学性能测试中的应用[D]. 长春: 吉林大学, 2012. |
[12] | Mi C H, Jiang Y G, Shi D Q, et al. Mechanical property test of ceramic fiber reinforced silica aerogel composites[J]. Acta Materiae Compositae Sinica, 2014, 31(3): 635-643 (in Chinese). 米春虎, 姜勇刚, 石多奇, 等. 陶瓷纤维增强氧化硅气凝胶复合材料力学性能试验[J]. 复合材料学报, 2014, 31(3): 635-643. |
[13] | He X T. Study on nonlinear mechanics behavior of elastic structure with different tension and compression moduli[D]. Chongqing: Chongqing University, 2007 (in Chinese). 何晓婷. 拉压不同模量弹性结构的非线性力学行为研究[D]. 重庆: 重庆大学, 2007. |
[14] | Gao Q F, Zhang C R, Feng J, et al. Progress of silica aerogel insulation composites[J]. Journal of Materials Science & Engineering, 2009, 27(2): 302-306 (in Chinese). 高庆福, 张长瑞, 冯坚, 等. 氧化硅气凝胶隔热复合材料研究进展[J]. 材料科学与工程学报, 2009, 27(2): 302-306. |
[15] | Shi D Q, Sun Y T, Feng J, et al. Experimental investigation on high temperature anisotropic compression properties of ceramic-fiber-reinforced SiO2 aerogel[J]. Materials Science & Engineering A, 2013, 585(15): 25-31. |
[16] | Roy S, Shimpi N, Katti A, et al. Mechanical characterization and modeling of isocyanate-crosslinked nanostructured silica aerogels[C]//47th AIAA/AMSE/ASCE/AHS/ASC Structures, Structural Dynamics and Materials Conference. Newport, Rhode Island: American Institute of Aeronautics and Astronautics, 2006: 1-4. |
[17] | Rosa-Fox N, Fernandez T, Morales-Florez V, et al. Creep and relaxation behavior of hybrid organic-inorganic aerogels[J]. Key Engineering Materials, 2010, 423: 167-172. |