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The effects of natural polyphenols and calcium-based thermal stabilizer on the rheological and thermal resistance behaviors of PVC

机译:天然多酚和基于钙的热稳定剂对PVC流变和耐热性的影响

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摘要

With the aim to understand the effect of bio-polyphenols and calcium-based thermal stabilizer on the rheological and thermal degradation properties of polyvinyl chloride(PVC),this paper practically investigates the rheological and thermal degradation behaviors of PVC using melt rheology method.Thermal degradation study was carried out by monitoring the complex viscosity of PVC using a parallel-plate rheometer run by time sweep mode at 215 °C.The presence of calcium into tannin structure after modification allows the later to have HC1 scavenger ability which is considered as an essential property of most PVC thermal stabilizers.The thermal stability monitoring by time sweep rheology measurements was further corroborated by dynamic rheological data,indicating that the increase in loading value of tannin-calcium into PVC from 1 to 3 part per hundred of PVC resin resulted in a notable enhancement of the PVC storage modulus and complex viscosity due to the increased thermal stability,stable chemical structure and a higher level of polymeric chain entanglements.The rheological parameters obtained by frequency sweep at 165 °C in terms of storage and loss moduli and damping factor proved simultaneously that the PVC formulations with tannin-calcium exhibit an obvious improvement in the rheological properties which were comparable to that of PVC stabilized with Reapak B-NT/7060,an industrial-type thermal stabilizer.The results obtained indicated a promising correlation between the thermal stabilization performance of tannin-calcium as a new and fully bio-based thermal stabilizer and the rheological properties of PVC.
机译:旨在了解生物 - 多酚和钙的热稳定剂对聚氯乙烯(PVC)流变和热降解性质的影响,本文实际上使用熔体流变方法研究了PVC的流变和热降解行为。热降解通过在215℃下通过时间扫描模式运行的平行板流变仪监测PVC的复杂粘度来进行研究。修改后钙进入单宁结构允许后来具有HC1清除能力,被认为是必不可少的大多数PVC热稳定剂的性能。通过动态流变数据进一步证实了随时间扫描流变学测量的热稳定性监测,表明单宁 - 钙的加载值从1至3部分PVC的PVC树脂的增加导致了一个显着提高PVC储存模量和由于热稳定性增加而稳定的复杂粘度化学结构和较高水平的聚合物链缠结。在储存和损失模量和阻尼因子方面通过频率扫描获得的流变参数同时证明了具有单宁 - 钙的PVC制剂在流变性质的显而易见与Reapak B-NT / 7060稳定的PVC稳定的,该结果得到了工业型热稳定剂的结果表明单宁 - 钙的热稳定性能与新的和完全生物的热稳定剂之间有希望的相关性。 PVC的流变性质。

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