以聚氯乙烯(PVC)改性酚醛树脂为原料,采用熔融纺丝法制备出PVC阻燃酚醛纤维.通过SEM、DMA、TG、Fr-IR等分析手段,对PVC阻燃酚醛纤维的结构和性能进行了研究.与纯酚醛纤维相比,PVC阻燃纤维的韧性和阻燃性提高,但其热稳定性和残碳率稍有降低.当PVC含量为0.5wt%时,其拉伸强度从123 MPa提高至150 MPa,极限氧指数从32.1%提高至38.5%,在空气气氛下600℃的残碳率从87.4%降至70.9%,在氮气气氛下1 000℃的残碳率从62.8%降至59.7%.
参考文献
[1] | C.P. Reghunadhan Nair;R.L. Bindu;K.N. Ninan .Thermal characteristics of addition-cure phenolic resins[J].Polymer Degradation and Stability,2001(2):251-257. |
[2] | R. D. Patton;C. U. Pittman Jr.;L. Wang .Ablation, mechanical and thermal conductivity properties of vapor grown carbon fiber/phenolic matrix composites[J].Composites, Part A. Applied science and manufacturing,2002(2):243-251. |
[3] | Zhang Wenfa;Liu Chunling;Ying Yonggang et al.The preparation and characterization of boron-containing phenolic fibers[J].Materials Chemistry and Physics,2010,121:89-94. |
[4] | Liu Chunling;Ying Yonggang;Dong Wensheng et al.Microwave promoted rapid curing reaction of phenolic fiber[J].Polymer Degradation and Stability,2008,93:507-512. |
[5] | Ohtomo K;Nakamori T .Process for spinning composite fiber of phenolic resin[P].US,3996327,1976-12-07. |
[6] | Okuhashi Tomomi;Watanabe Yasuaki;Shimizu Junji et al.Novel flame-resistant fiber and method of producing the same[P].US,3808289,1974-04-30. |
[7] | 刘春玲,郭全贵,史景利,刘朗.用固化反应法制备酚醛纤维[J].材料研究学报,2005(01):28-34. |
[8] | 刘银全,刘忠芝.针入法沥青软化点和可纺性的简易测定[J].新型碳材料,1994(03):30-31. |
[9] | 张美珍,王桂花.用红外光谱法研究聚氯乙烯的增塑机理[J].北京化工大学学报,2000(02):29. |
[10] | Mwaikambo LY.;Ansell MP. .Cure characteristics of alkali catalysed cashew nut shell liquid-formaldehyde resin[J].Journal of Materials Science,2001(15):3693-3698. |
[11] | 朱明华.仪器分析[M].北京:高等教育出版社,2000:294-307. |
[12] | 曾幸荣.高分子近代分析测试技术[M].广州:华南理工大学出版社,2000:57-80. |
[13] | 沈宗伟 .锦纶及其制品阻燃性能的研究概述[J].合成纤维,1993,3(04):29-33. |
[14] | 胡小平,阳世群,魏昭荣.聚氯乙烯(PVC)的阻燃与消烟[J].消防科学与技术,2001(03):49-50,58. |
[15] | 许家友 .聚氯乙烯无毒稳定剂及其稳定机理的研究[D].四川大学,2005. |
[16] | 刘春玲,郭全贵,史景利,刘朗.酚醛纤维在热处理过程中微结构的变化[J].新型炭材料,2004(02):124-128. |
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