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Carboxyl terminated polyamide 12 chain extension by reactive extrusion using a dioxazoline coupling agent. Part I: Extrusion parameters analysis

机译:通过使用二恶唑啉偶联剂的反应性挤出,羧基封端的聚酰胺12扩链。第一部分:挤出参数分析

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Condensation reaction between a carboxyl terminated polyamide 12 (CTPA) (Mn = 2000 g mol(-1)) and a dioxazoline [2,2'-( 1,3-phenylene) -bis(2-oxazoline)] (OO) was achieved by reactive extrusion. Extrusion parameters effects on the process were analyzed through residence time distribution (RTD) and conversion distribution (CD) evolutions. RTD was measured using ultraviolet and ultrasonic detectable tracers. RTD measured along the extruder screws showed a decrease of the dimensionless variance (sigma(theta)(2)) with the reaction progress. Comparing measured molar masses and dispersity with those calculated using CD, competition between condensation and chain scission was detected. Effects of barrel temperature, screw profile, rotation speed and viscous dissipation on the reactive system evolution were analyzed and used for the process optimization. It was shown that a polyester amide with a Dp, 12 can be obtained using this dioxazoline coupling agent by reactive extrusion. [References: 22]
机译:羧基封端的聚酰胺12(CTPA)(Mn = 2000 g mol(-1))与二恶唑啉[2,2'-(1,3-苯撑)-双(2-恶唑啉)](OO)的缩合反应为通过反应挤出实现。通过停留时间分布(RTD)和转化分布(CD)演变分析了挤出参数对工艺的影响。使用紫外线和超声波可检测示踪剂测量RTD。沿挤出机螺杆测量的RTD随着反应进程显示出无因次方差(σθ(2))的减小。将测得的摩尔质量和分散度与使用CD计算的摩尔质量和分散度进行比较,可以检测到缩合和断链之间的竞争。分析了料筒温度,螺杆轮廓,转速和粘性耗散对反应体系演变的影响,并将其用于工艺优化。已表明使用该二恶唑啉偶联剂通过反应挤出可以得到具有Dp,12的聚酯酰胺。 [参考:22]

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