首页> 外文期刊>Journal of Applied Polymer Science >Application of Factorial Experimental Design to Demonstrate the Influence of Processing Conditions on the Fusion of Poly(vinyl chloride)/Chlorinated Polyethylene/Oxidized Polyethylene Blends
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Application of Factorial Experimental Design to Demonstrate the Influence of Processing Conditions on the Fusion of Poly(vinyl chloride)/Chlorinated Polyethylene/Oxidized Polyethylene Blends

机译:应用析因实验设计证明加工条件对聚氯乙烯/氯化聚乙烯/氧化聚乙烯共混物熔融的影响

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摘要

Poly(vinyl chloride)(PVC)/chlorinated polyethylene (CPE)/oxidized polyethylene(OPE) blends were prepared in a Haake torque rheometer at various temperatures, rotor speeds, and totalized torques. A 2~3 factorial experimental design was applied to study the main two-factor interaction, and three-factor interaction effects of temperature, rotor speed, and totalized torque on the heat of fusion of PVC/CPE/OPE blends, which were examined using differential scanning calorimetry. The sequence of the main effects on the heat of fusion of PVC/CPE/OPE blends, in ascending order, is temperature
机译:在Haake扭矩流变仪中,在各种温度,转子速度和总扭矩下,制备了聚氯乙烯(PVC)/氯化聚乙烯(CPE)/氧化聚乙烯(OPE)混合物。采用2〜3阶乘实验设计研究了PVC / CPE / OPE共混物的主要两因素相互作用以及温度,转子转速和总扭矩对熔融热的三因素相互作用影响,并使用差示扫描量热法。对PVC / CPE / OPE共混物熔融热的主要影响顺序是,温度<转子速度<总扭矩。 PVC / CPE / OPE共混物的熔融热的两因素相互作用的顺序是,温度对转子速度<温度对总转矩<转子速度对总转矩。三因素相互作用效应与PVC / CPE / OPE共混物的熔融热没有显着关系。

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