强激光与粒子束, 2010, 22 (12): 2875, 网络出版: 2011-01-05   

碳气凝胶薄片的制备及表面密度致密层去除工艺

Fabrication of carbon aerogel sheet and techniques of removing its dense layer
作者单位
同济大学 上海市特殊人工微结构材料与技术重点实验室, 上海 200092
摘要
研究了不同密度和厚度的碳气凝胶薄片的制备及其表面致密层去除工艺。在以间苯二酚、甲醛为原料制备有机及碳气凝胶块体材料的基础上, 结合自制活动式微模具成型工艺, 制备了厚度在80~350 μm, 密度在50~600 mg·cm-3范围内变化的碳气凝胶薄片。采用场发射扫描电镜、X射线相衬成像和表面轮廓仪-台阶仪等手段对其表面和内部微观结构进行了表征。测试结果表明, 碳气凝胶薄片与块体的内部结构相同, 但薄片表面存在一层和内部结构截然不同的致密层。采用不同粗糙程度的材料对薄片进行了表面微处理, 成功去除该致密“皮”层。
Abstract
This paper introduces the fabrication of carbon aerogel sheets with different thicknesses and densities and corresponding superficial micro-treatments. By resorcinol and formaldehyde’s polymerization reaction and via a self-made flexible mould, a series of carbon aerogel sheets were obtained. Their thicknesses range from 80 to 350 μm and densities range from 50 to 600 mg·cm-3. The sheets were characterized by field emission scanning electron microscope, X-ray phase contrast imaging method and form Talysurf profiler. The results indicate that the carbon aerogel sheet has the same inner microstructure with the bulk. However, its surface has a dense layer which is obviously different from its inner microstructure. Several materials with different roughness were used to treat the surface and remove the dense layer successfully.
参考文献

[1] 叶君健, 周斌, 徐翔, 等.侧照明实验用平面调制微靶的制备及参数测量[J].强激光与粒子束, 2006, 18(9):1511-1514.(Ye Junjian, Zhou Bin, Xu Xiang, et al. Fabrication and measurement of surface perturbation tiny targets in flank illumination experiment. High Power Laser and Particle Beams, 2006, 18(9):1511-1514)

[2] 蔡佩君, 冯长根, 张林, 等.掺杂聚苯乙烯制备研究[J].强激光与粒子束, 2003, 15(2):159-163.(Cai Peijun, Feng Changgen, Zhang Lin, et al. Research on the preparation of doped polystyrene. High Power Laser and Particle Beams, 2003, 15(2):159-163)

[3] Blue B E, Robey H F, Glendinning S C, et al. Three-dimensional hydrodynamic experiments on the National Ignition Facility[J]. Phys Plasmas, 2005, 12:056313.

[4] Robey H F, Zhou Y K, Buckingham A C, et al. Turbulent transition in a high Reynolds number, Rayleigh-Taylor unstable plasma flow[R]. USA: LLNL, 2001.

[5] Forster D. Inertial fusion targets 2005[R]. USA: General Atoms, 2005:1-42.

[6] George L, Matthew B, Steve S, et al. Fabrication and testing of NIF scalable graded density ICE drives[R]. USA: LLNL, 2008.

[7] Biesmans G, Mertens A, Duffours L, et al. Polyurethane based orangic aerogels and their transformation into carbon aerogel[J]. Journal of Non-crystalline Solids, 1998, 225:64-68.

[8] Science, 1989, (24):3221-3227.

    Pekala R W. Organic aerogels from the polycondensation of resorcinol with formaldehyde[J]. Journal of Materials

[9] 禹爱民, 李政, 章迪, 等.微焦点X射线源类同轴相衬成像[J].高能物理与核物理, 2006, 30(11):1119-1122.(Yu Aimin, Li Zheng, Zhang Di, et al. In-line phase contrast imaging using a micro-focus X-ray source. High Energy Physics and Nuclear Physics, 2006, 30(11):1119-1122)

钟艳红, 周斌, 归佳寅, 杜艾, 徐翔, 朱秀榕, 吴广明, 张志华, 沈军. 碳气凝胶薄片的制备及表面密度致密层去除工艺[J]. 强激光与粒子束, 2010, 22(12): 2875. Zhong Yanhong, Zhou Bin, Gui Jiayin, Du Ai, Xu Xiang, Zhu Xiurong, Wu Guangming, Zhang Zhihua, Shen Jun. Fabrication of carbon aerogel sheet and techniques of removing its dense layer[J]. High Power Laser and Particle Beams, 2010, 22(12): 2875.

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