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Mechanical Property and Crystal Structure of Poly(p-phenylene terephthalamide)(PPTA) Fibers during Heat Treatment under Tension
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作者 严冬东 陈蕾 +6 位作者 曹煜彤 鲁超风 于俊荣 刘兆峰 诸静 王彦 胡祖明 《Journal of Donghua University(English Edition)》 EI CAS 2015年第1期1-6,共6页
The relationship between property and structure of poly( p-phenylene terephthalamide)( PPTA) was investigated for the purpose of obtaining products with better performance. PPTA fiber subjected to heat treatment under... The relationship between property and structure of poly( p-phenylene terephthalamide)( PPTA) was investigated for the purpose of obtaining products with better performance. PPTA fiber subjected to heat treatment under different conditions was intensively studied. Simultaneous wide-angle X-ray diffraction( WAXD) technique was introduced to study the changes of crystal structure. It was found that the tensile modulus was strongly sensitive to the levels of temperature and tension. The structure parameters including crystal size and crystal orientation after heat treatment evolve similarly to the tensile modulus,indicating a direct structure-property relationship. The lattic c-dimension increases after heat treatment and is greatly affected by the tension. An optimal temperature can be found around 400 ℃,where big change can happen in the crystal structure due to α-relaxation in the crystal region as supported in dynamic mechanical analysis( DMA). 展开更多
关键词 poly(p-phenylene terephthalamide)(PPTA) fibers heat treatment crystal structure crystal orientation mechanical properties
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Laser-induced Janus graphene/poly(p-phenylene benzobisoxazole)fabrics with intrinsic flame retardancy as flexible sensors and breathable electrodes for fire-fighting field 被引量:4
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作者 Yu Luo Yaping Miao +7 位作者 Huimin Wang Kai Dong Lin Hou Yanyan Xu Weichun Chen Yao Zhang Yingying Zhang Wei Fan 《Nano Research》 SCIE EI CSCD 2023年第5期7600-7608,共9页
Conventional firefighting clothing and fire masks can protect firemen’s safety to a certain extent,whereas cannot perceive environmental hazards and monitor their physical status in real time.Herein,we fabricated two... Conventional firefighting clothing and fire masks can protect firemen’s safety to a certain extent,whereas cannot perceive environmental hazards and monitor their physical status in real time.Herein,we fabricated two kinds of Janus graphene/poly(pphenylene benzobisoxazole)(PBO)fabrics by laser direct writing approach and evaluated their performance as intelligent firefighting clothes and fire masks.The results showed that the Janus graphene/PBO fabrics were virtually non-combustible and achieved the highest thermal protection time of 18.91 s ever reported in flame,which is due to the intrinsic flame-retardant nature of PBO fibers.The graphene/PBO woven fabrics-based sensor showed good repeatability and stability in human motion monitoring and NO_(2)gas detection.Furthermore,the piezoelectric fire mask was assembled with graphene/PBO nonwoven fabric as electrode layer and polyvinylidene fluoride(PVDF)electrostatic direct writing film as piezoelectric layer.The filtration efficiency of the fire mask reaches 95%for PM_(2.5)and 100%for PM_(3.0),indicating its effective filtration capability for smoke particles in fires.The respiratory resistance of the piezoelectric fire mask(46.8 Pa)was lower than that of commercial masks(49 Pa),showing that it has good wearing comfort.Besides,the piezoelectric fire mask can be sensitive to the speed and intensity of human breathing,which is essential for indirectly reflecting the health of the human body.Consequently,this work provides a facile approach to fabricate next-generation intrinsic flame-retardant smart textiles for smart firefighting. 展开更多
关键词 poly(p-phenylene benzobisoxazole)(PBO)fibers laser-induced graphene flame retardancy textile electronics intelligent fire protection
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PBO纤维界面改性研究 被引量:4
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作者 胡洛燕 汪秀琛 《合成纤维工业》 CAS CSCD 北大核心 2008年第5期39-43,共5页
介绍了聚对苯撑苯并双噁唑(PBO)单体的盐酸盐合成及其优缺点;阐述了PBO的对苯二甲酸法、对苯二甲酞氯法、三甲基硅烷基化法、五氧化二磷调节法及预聚合法的合成方法及其优缺点;简述了PBO的纺丝方法。分析了PBO纤维的物理化学性能,对其... 介绍了聚对苯撑苯并双噁唑(PBO)单体的盐酸盐合成及其优缺点;阐述了PBO的对苯二甲酸法、对苯二甲酞氯法、三甲基硅烷基化法、五氧化二磷调节法及预聚合法的合成方法及其优缺点;简述了PBO的纺丝方法。分析了PBO纤维的物理化学性能,对其各项性能做了比较;论述了PBO纤维界面改性界面理论及改性处理方法。指出PBO纤维的综合性能优异,应加大PBO规模的生产方法和界面改性研究,实现PBO纤维的规模化生产。 展开更多
关键词 聚对苯撑苯并双噁唑纤维 界面 改性 合成
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