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不同微孔结构二氧化硅粉体填充三元乙丙橡胶的力学性能及Mullins效应 被引量:1
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作者 郭文君 刘璐 +5 位作者 刘付永 余雯雯 贾兰 何宏伟 朱凤博 郑强 《高分子学报》 SCIE CAS CSCD 北大核心 2023年第8期1241-1252,共12页
研究了不同微孔结构,粒径相当的二氧化硅气凝胶(AS)、气相法白炭黑(FS)和球形二氧化硅(SS)填充补强三元乙丙橡胶(EPDM)硫化胶的力学性能和Mullins效应.研究发现,具有3倍多于FS比表面积和孔隙体积的AS补强EPDM效果更好,补强后硫化胶拉伸... 研究了不同微孔结构,粒径相当的二氧化硅气凝胶(AS)、气相法白炭黑(FS)和球形二氧化硅(SS)填充补强三元乙丙橡胶(EPDM)硫化胶的力学性能和Mullins效应.研究发现,具有3倍多于FS比表面积和孔隙体积的AS补强EPDM效果更好,补强后硫化胶拉伸强度比纯EPDM提高928%,比FS/EPDM高4.3%;AS补强后硫化胶的撕裂强度比纯EPDM提高411%,比FS/EPDM提高65.5%.SS对硫化胶力学性能基本没有提高.AS和FS在补强EPDM方面表现出了类似的机理,两者在EPDM中聚集形成了分形维数相近(1.75~1.80)、具有自相似结构的团簇,通过范德华吸附作用吸附在团簇孔隙和表面的结合橡胶将团簇与EPDM分子链段连接共同构筑起三维物理交联网络,起到高效补强效果;结合胶的含量强烈依赖于填料的比表面积和孔隙体积,并决定了三维物理交联网络的强弱,因此AS在补强EPDM方面表现出了更为出色的效果. 展开更多
关键词 二氧化硅粉体 粒子微孔结构 橡胶补强 力学性能 Mullins效应
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Tough Polyion Complex Hydrogel Films of Natural Polysaccharides 被引量:1
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作者 feng-bo zhu Hai-chao Yu +4 位作者 Wen-xi Lei Ke-feng Ren Jin Qian 吴子良 Qiang Zheng 《Chinese Journal of Polymer Science》 SCIE CAS CSCD 2017年第10期1276-1285,共10页
The developments of tough hydrogels in recent years have greatly expanded the applications of hydrogels as structural materials. However, most of the tough hydrogels are made of synthetic polymers. To develop biopolym... The developments of tough hydrogels in recent years have greatly expanded the applications of hydrogels as structural materials. However, most of the tough hydrogels are made of synthetic polymers. To develop biopolymer-based tough hydrogels has both fundamental and practical significances. Here we report a series of polysaccharides-based tough hydrogel films prepared by polyion complexation and solvent evaporation of chondroitin sulfate(CS) and protonated chitosan(CHT) solutions with different weight ratios. The obtained CS/CHT gel films with thickness of 40-80 μm and water content of 66 wt%-81 wt% possess excellent mechanical properties, with tensile breaking stress and breaking strain being 0.4-3 MPa and 160%-320%, respectively. We found that in the mixture solutions there are large amounts of excess CHT in terms of charges; after swelling the films in water, the acetic acid, which is used to protonate the amino groups of CHT, diffuses out of the gel matrix, enhancing the intermolecular interactions between CHT molecules and thus improving the mechanical properties of gel films, besides the ionic bonds between CS and CHT. Antimicrobial tests also showed that the gel films with low weight ratio of CS to CHT, corresponding to the case with excess CHT, have evident antimicrobial effect. These CS/CHT gel films with good mechanical properties and antimicrobial effect should extend the applications of hydrogels in biomedical fields. 展开更多
关键词 responsive polymerization methacrylate acrylamide hydrophilic reversible dissipation AMPS toughness swelling
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