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Research on Thermal Properties of Nomex Fiber and Nomex/Viscose Blended Fabric
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作者 耿伟 赵书林 《Journal of Donghua University(English Edition)》 EI CAS 2009年第6期651-655,共5页
Based on the analysis of the properties of Nomex 450 and Nomex 462,the thermal properties of Nomex 462/Lenzing Viscose Flame retardent(FR)blending materials were analyzed.It was discovered through burning test and The... Based on the analysis of the properties of Nomex 450 and Nomex 462,the thermal properties of Nomex 462/Lenzing Viscose Flame retardent(FR)blending materials were analyzed.It was discovered through burning test and Thermal Gravity(TG)analysis that the blended material was superior in thermal behaviors to the material made from either Nomex or Viscose FR filament,when the ratio of Nomex and Lenzing Viscose FR reached 80∶20,and excellent thermal properties were achieved with the value of Limiting Oxygen Index(LOI)up to 36.1%.Blending Nomex and Viscose FR filaments may be recommended for better fire retardant property of related fabric. 展开更多
关键词 Nomex fiber Lenzing Viscose flame retardent (FR) fiber Thermal Gravity (TG) analysis blending material flame-retardant
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The flame retardancy of alginate/flame retardant viscose fibers investigated by vertical burning test and cone calorimeter 被引量:6
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作者 Xian-Sheng Zhang Yan-Zhi Xia +1 位作者 Mei-Wu Shi Xiong Yan 《Chinese Chemical Letters》 SCIE CAS CSCD 2018年第3期489-492,共4页
In this research, the flame retardancy of neat alginate fiber, flame retardant viscose fiber (FRV) and alginate/FRV (50/50) blending fibers were investigated by vertical burning and cone calorimeter tests. The ver... In this research, the flame retardancy of neat alginate fiber, flame retardant viscose fiber (FRV) and alginate/FRV (50/50) blending fibers were investigated by vertical burning and cone calorimeter tests. The vertical burning test showed that the afterflame time of alginate fiber was 0 s, but alginate presented serious smoldering behavior with the afterglow time of 605 s and damaged length of 85 mm, while the afterglow time of FRV was 0 s. When the FRV was incorporated into alginate with the weight ratio of 50/ 50, the afterglow time and damaged length were significantly reduced to 85 s and 35 mm, indicating the smoldering of alginate can be effectively decreased. The morphology and chemical structure of the alginate residual demonstrated that it was seriously destroyed during smoldering process, which was ascribed to its relative low initial thermal degradation temperature. Based on the thermal properties analysis, alginate and FRV fibers shared the concurrence of rapid degradation in the same temperature region of 250-300 ℃, through which, the compact and stable char formed by FRV can prevent the heat transmission and suppress the smoldering of alginate. Further, the cone calorimeter results demonstrated that the time to ignition (TTI) significantly increased and peak heat release rate (PHRR) decreased for alginate/FRV (50/50) compared with FRV. With this research, a new method to overcome the smoldering of alginate was proposed by blending with FRV 展开更多
关键词 Alginate fibers flame retardant viscose fibers Blending flame retardancy Vertical burning test Cone calorimeter
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Flame-retardant Wrapped Ramie Fibers towards Suppressing “Candlewick Effect” of Polypropylene/Ramie Fiber Composites 被引量:5
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作者 Shuang-lan Du Xue-bao Lin +2 位作者 Rong-kun Jian 邓聪 王玉忠 《Chinese Journal of Polymer Science》 SCIE CAS CSCD 2015年第1期84-94,共11页
In this work, a flame-retardant polypropylene(PP)/ramie fiber(RF) composite was prepared. The ramie fibers were wrapped chemically by a phosphorus- and nitrogen-containing flame retardant(FR) produced via in sit... In this work, a flame-retardant polypropylene(PP)/ramie fiber(RF) composite was prepared. The ramie fibers were wrapped chemically by a phosphorus- and nitrogen-containing flame retardant(FR) produced via in situ condensation reaction so as to suppress their candlewick effect. Fourier transform infrared spectroscopy(FTIR), X-ray photoelectron spectroscopy(XPS) and scanning electron microscopy(SEM) demonstrated that the ramie fibers wrapped chemically by FR(FR-RF) were obtained successfully. Thermogravimatric test showed that the PP/FR-RF composite had more residue and better thermal stability at high temperatures than the PP/RF composite. Cone calorimeter(CC) results indicated that the peak of heat release rate(PHRR) and total heat release(THR) correspondingly decreased by 23.4% and 12.5% compared with the values of neat PP/RF. The PP/FR-RF composite created a continuous and compact char layer after the combustion. Combining FTIR analysis of char residue after CC test with heat conduction coefficient results, it could be concluded that the charring of FR on RF greatly weakened the candlewick effect of RF, and more char residue in the RF domain facilitated the formation of more continuous and compact char layer in the whole combustion zone, consequently protected PP composites during combustion, resulting in the better flame retardancy of PP/FR-RF composite than that of PP/RF composite. 展开更多
关键词 Ramie fiber Polypropylene Composite flame retardance Candlewick effect.
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Development of Non-Halogen Flame Retardant Optical Fiber and Optical Fiber Cord
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作者 Kazunori Tanaka Kaoru Okuno +4 位作者 Tomoyuki Hattori Kiyoaki Moriuchi Hiroshi Hayami Wataru Katsurashima Yoshikyo Tamekuni 《光学学报》 EI CAS CSCD 北大核心 2003年第S1期5-6,共2页
A non-halogen highly flame-retardant 0.9mm optical fiber and 2.0mm simplex optical cord, which are harmonized with the ecosystem, have been developed. The characteristics of them are presented in this paper.
关键词 of test Development of Non-Halogen flame retardant Optical fiber and Optical fiber Cord been have
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聚丙烯纤维阻燃技术的开发与应用 被引量:3
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作者 陈铁楼 郭德凡 曾红霞 《合成纤维工业》 CAS CSCD 1997年第6期41-44,共4页
介绍了适应于聚丙烯树脂及纤维的阻燃剂、阻燃技术,概括了国内外阻燃聚丙烯树脂及纤维生产开发现状。提出了发展和推广阻燃聚丙烯纤维的有关建议。
关键词 聚丙烯纤维 阻燃 综述
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玻璃纤维增强HIPS制备阻燃建筑模板材料研究 被引量:4
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作者 陈尔凡 白宇 +2 位作者 马驰 吴波 裴群 《化工新型材料》 CAS CSCD 北大核心 2016年第4期196-198,共3页
制备了阻燃型短玻纤增强高抗冲聚苯乙烯(HIPS)复合材料,研究了经KH-570(γ-甲基丙烯酰氧丙基三甲氧基硅烷)偶联剂处理的玻纤用量对复合材料拉伸性能、冲击性能、弯曲性能、热性能及加工性能的影响,以及溴系阻燃剂十溴二苯乙烷(DBDPE)和... 制备了阻燃型短玻纤增强高抗冲聚苯乙烯(HIPS)复合材料,研究了经KH-570(γ-甲基丙烯酰氧丙基三甲氧基硅烷)偶联剂处理的玻纤用量对复合材料拉伸性能、冲击性能、弯曲性能、热性能及加工性能的影响,以及溴系阻燃剂十溴二苯乙烷(DBDPE)和三氧化二锑的协同阻燃作用。最后用扫描电镜观察复合材料的微观形态。结果表明,红外光谱表征证明了KH-570有效地与玻纤表面结合;玻纤可显著地提高HIPS力学性能,玻纤用量30%时,综合性能最优,并使HIPS维卡软化点提高到107℃以上;DBDPE并用三氧化二锑协同阻燃,可使HIPS的氧指数由17.8%提高到24.8%;KH-570偶联剂能有效地改善其界面,其破坏为混合破坏。 展开更多
关键词 高抗冲聚苯乙烯 玻璃纤维 复合材料 建筑模板 力学性能 阻燃
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