房金铭,冯志海,张中伟.热解碳微观结构调控与纳米压痕测试[J].装备环境工程,2016,13(3):82-87. FANG Jin-ming,FENG Zhi-hai,ZHANG Zhong-wei.Micro-structure Control of Pyrocarbon and Nano Indentation Test[J].Equipment Environmental Engineering,2016,13(3):82-87.
热解碳微观结构调控与纳米压痕测试
Micro-structure Control of Pyrocarbon and Nano Indentation Test
投稿时间:2016-01-12  修订日期:2016-06-15
DOI:10.7643/ issn.1672-9242.2016.03.013
中文关键词:  前驱体  热解碳  微观结构  纳米压痕
英文关键词:precursor  pyrocarbon  microstructure  nano indentation
基金项目:
作者单位
房金铭 航天材料及工艺研究所 先进功能复合材料技术重点实验室,北京 100076 
冯志海 航天材料及工艺研究所 先进功能复合材料技术重点实验室,北京 100076 
张中伟 航天材料及工艺研究所 先进功能复合材料技术重点实验室,北京 100076 
AuthorInstitution
FANG Jin-ming Aerospace Materials and Technology Research Institute, Science and Technology on Advanced Functional Composites Laboratory, Beijing 100076, China 
FENG Zhi-hai Aerospace Materials and Technology Research Institute, Science and Technology on Advanced Functional Composites Laboratory, Beijing 100076, China 
ZHANG Zhong-wei Aerospace Materials and Technology Research Institute, Science and Technology on Advanced Functional Composites Laboratory, Beijing 100076, China 
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中文摘要:
      目的 研究前驱体种类对热解碳结构的影响及热解碳的性能。 方法 以甲烷为主要前驱体,添加5%丙烯,在碳布缝合预制体上进行沉积实验,对所得具有不同结构热解碳的样品进行纳米压痕测试。结果 添加丙烯降低了实验温度,所得沉积效率仍高于纯甲烷,所得热解碳结构在不同时期有所差异。纤维束内部的热解碳结构对材料的整体性能影响较大,当纤维表面为 ISO 结构热解碳时,纤维束内硬度和模量偏高,分别为 3.96 GPa 和 32.0 GPa,断裂模式为脆性断裂;当纤维表面为 RL 结构热解碳时,纤维束内的强度和模量偏低,分别为 1.93 GPa 和 19.7 GPa,断裂模式为假塑性断裂。 结论 前驱体的种类对热解碳的结构影响较大,所得材料性能具有较大差异。
英文摘要:
      Objective To study the influence of precursor for the pyrocarbon texture and the property of pyrocarbon. Method Methane was used as the main precursor, and deposition experiment was conducted on carbon cloth stitched preform after adding 5% propylene. After that, nano indentation experiment was performed for the deposited pyrocarbon samples with different textures. Results It was found that higher deposition efficiency was got at lower experiment temperature when propylene was added as compared to pure methane, and different pyrocarbon texture was obtained at different stages. The hardness and modulus of different samples were measured by the nano indentation method. It was found that the texture of pyrocarbon in the bundle had obvious influence on the materials’ properties. When the pyrocarbon texture in fiber bundle was ISO, the strength and modulus in the bundle were relatively higher, with values of 3.96 GPa and 32.0 GPa, respectively, and the fraction mode was brittle fracture. When the pyrocarbon texture in fiber bundle was RL, the strength and modulus in the bundle were relatively lower, with values of 1.93 GPa and 19.7 GPa, respectively, and the fracture mode was pseudoplastic fracture. Conclusion The types of precursor had great influence on the structure of pyrolytic carbon, and the material properties had obvious difference.
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