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一种新型含硅氧烷间隔基元的半芳香族共聚酰胺 被引量:1
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作者 龙家伟 史小慧 +3 位作者 刘博文 卢鹏 陈力 王玉忠 《高分子学报》 SCIE CAS CSCD 北大核心 2020年第7期681-686,I0002,共7页
通过芳香族亲核取代反应合成了一系列含硅氧烷基元主链结构的半芳香族共聚酰胺.研究发现,共聚酰胺具有较高的分子量和较窄的分子量分布.硅氧烷结构的引入不仅赋予了共聚酰胺低的吸水率,而且使其能保持良好的力学性能,当硅氧烷结构含量为... 通过芳香族亲核取代反应合成了一系列含硅氧烷基元主链结构的半芳香族共聚酰胺.研究发现,共聚酰胺具有较高的分子量和较窄的分子量分布.硅氧烷结构的引入不仅赋予了共聚酰胺低的吸水率,而且使其能保持良好的力学性能,当硅氧烷结构含量为10 mol%时,拉伸强度达到80.0 MPa,缺口冲击强度为4.8 kJ/m^2,可与商品化HTN产品相媲美.阻燃性能测试结果可知,在不添加磷、卤等传统阻燃剂的情况下,随着硅氧烷结构含量的增加,共聚酰胺表现出良好的阻燃抗熔滴效果.当共聚酰胺中硅氧烷结构含量为10 mol%时,极限氧指数可达33.5%,可通过UL-94垂直燃烧V-0级. 展开更多
关键词 共聚酰胺 硅氧烷间隔基元 力学性能 阻燃
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Carbon Fibers Decorated by Polyelectrolyte Complexes toward Their Epoxy Resin Composites with High Fire Safety 被引量:9
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作者 Xiao-Hui Shi Li Chen +3 位作者 Bo-Wen Liu jia-wei long Ying-Jun Xu Yu-Zhong Wang 《Chinese Journal of Polymer Science》 SCIE CAS CSCD 2018年第12期1375-1384,共10页
The achievement of both robust fire-safety and mechanical properties is of vital requirement for carbon fiber (CF) composites. To this end, a facile interracial strategy for fabricating flame-retardant carbon fibers... The achievement of both robust fire-safety and mechanical properties is of vital requirement for carbon fiber (CF) composites. To this end, a facile interracial strategy for fabricating flame-retardant carbon fibers decorated by bio-based polyelectrolyte complexes (PEC) consisting of chitosan (CH) and ammonium polyphosphate (APP) was developed, and its corresponding fire-retarded epoxy resin composites (EP/(PEC@CF)) without any other additional flame retardants were prepared. The decorated CFs were characterized by SEM- EDX, XPS and XRD, indicating that the flame-retardant PEC coating was successfully constructed on the surface of CF. Thanks to the nitrogen- and phosphorous-containing PEC, the resulting composites exhibited excellent flame retardancy as the limiting oxygen index (LOI) increased from 31.0% of EP/CF to 40.5% and UL-94 V-0 rating was achieved with only 8.1 wt% PEC. EP/(PEC8.1@CF) also performed well in cone calorimetry with the decrease of peak-heat release rate (PHRR) and smoke production rate (SPR) by 50.0% and 30.4%, respectively, and the value of fire growth rate (FIGRA) was also reduced to 3.41 kW·m-2- s-1 from 4.84 kW· m-2· s-1, suggesting a considerably enhanced fire safety. Furthermore, SEM images of the burning residues revealed that the PEC coating exhibited the dominant flame-retardant activity in condensed phase via the formation of compact phosphorus-rich char. In addition, the impact strength of the composite was improved, together with no obvious deterioration of flexural properties and glass transition temperature. Taking advantage of the features, the PEC-decorated carbon fibers and the relevant composites fabricated by the cost-effective and facile strategy would bring more chances for widespread applications. 展开更多
关键词 Fire safety Carbon fiber composites Epoxy resin Polyelectrolyte complexes
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