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作 者:刘培 曲希明[2] 姜锋[2] 张志英[1] Liu Pei Qu Ximing Jiang Feng Zhang Zhiying(School of Materials Science and Engineering,Tianjin Polytechnic University,Tianjin 300387 State Key Laboratory of Bio-based Fiber Manufacturing Technology,China Textile Academy, Beijing 100025)
机构地区:[1]天津工业大学材料科学与工程学院,天津300387 [2]中国纺织科学研究院生物源纤维制造技术国家重点实验室,北京100025
出 处:《化工新型材料》2017年第10期136-138,共3页New Chemical Materials
摘 要:对萃取后的尼龙6切片进行了固相缩聚以提高其相对黏度(η_r),研究了不同反应时间和温度对增黏效果的影响。采用乌式黏度计、端基滴定法、热重分析法(TGA)、X射线衍射法(XRD)和毛细管流变仪对样品进行了测试。实验结果表明,尼龙6切片的热稳定性基本不变,切片所含晶型只有α单斜晶系,并未出现晶型的转变,出现了晶面的择优取向生长现象。在反应温度为190℃,反应时间为12h时,固相缩聚后的尼龙6切片相对黏度达到3.2,初始分解温度为412.3℃,最大分解温度为469.5℃,性能得到提高。To increase the relative viscosity of extractive nylon 6 pellets,the solid state polycondensation(SSP)was used.The influence of different time and temperature was studied by ubbelohde viscometer,end group analysis process,thermogravimetric analyses(TGA),X-ray diffraction(XRD)and capillary rheometer.The results showed that changes of relative viscosity and end-group concentration were evident at the first 6 hours.During the process,there was little change of the thermostability.In the nylon 6 pellets there was onlyαcrystalline phase and no new crystalline phase appeared,but a phenomenon called preferred orientation growth occurred.The relative viscosity could be 3.2 at 190℃ after 12 h.The primary thermal decomposition temperature was 412.3℃ and the maximum decomposition temperature was 469.5℃.The performance was enhanced.
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