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作 者:裴鹏英 邵泽辉 陈嘉勋 林子辉 陈春梅 曾莉 Pei Pengying;Shao Zehui;Chen Jiaxun;Lin Zihui;Chen Chunmei;Zeng Li(Guangdong Institute Of Analysis,Guangzhou 510070,China;Shantou Zhongguang Measurement and Analysis Center Co.,Ltd.,Shantou 515000,China;Guangzhou Analytical center Branch of the technologc development company in Shantou Branch,Shantou 515000,China)
机构地区:[1]广东省测试分析研究所,广东广州510070 [2]汕头市中广测分析中心有限公司,广东汕头515000 [3]广州分析测试中心科力技术开发公司汕头分公司,广东汕头515000
出 处:《产业用纺织品》2019年第10期15-18,共4页Technical Textiles
摘 要:不少研究表明当蜂窝材料的胞元壁长远大于其壁厚时,材料的能量吸收性能随壁厚的增加而增强。目前三维蜂窝结构复合材料的制备工艺已经较为成熟,但市面上的蜂窝结构的胞壁由单层织物构成,即使经过复合,其厚度依然很小。将胞壁由原先的单层结构改为多层正交结构或多层角联锁结构,可直接制备出胞壁厚度较大的蜂窝织物,可为蜂窝结构在更多领域的应用提供材料基础。Many studies have shown that when the cell’s wall length of honeycomb materials was bigger than the cell’s wall thickness, the energy absorption property of the materials enhanced with the increasing wall thickness. At present, the preparation technology of three-dimensional honeycomb structure composites was more mature, but the cell wall of honeycomb structure on the market was composed of single-layer fabric, and the thickness of the cell wall was still small even after compositing. The honeycomb fabric with large thickness of cell wall could be directly prepared by changing the cell wall from single layer structure into multi-layer orthogonal structure or multi-layer angle-interlock structure, which could provide material basis for the applications of honeycomb structure in more fields.
关 键 词:蜂窝结构 胞元 壁厚 能量吸收性能 正交组织 角联锁组织
分 类 号:TS105[轻工技术与工程—纺织工程]
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