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首页> 外文期刊>Journal of thermal analysis and calorimetry >The potential of tannins as thermal co-stabilizer additive for polyvinyl chloride
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The potential of tannins as thermal co-stabilizer additive for polyvinyl chloride

机译:单宁酸作为聚氯乙烯热辅助稳定剂的潜力

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The current study describes the efficiency of tannins, a flavonoid-type natural polyphenolic compound, and its synergistic effect with commercial-type thermal stabilizer into polyvinyl chloride (PVC). Thermal stabilization of PVC has been assessed in an oxidizing atmosphere by rheometric studies and thermogravimetric analysis (TG). In addition, the effect of this phenolic compound on the dynamic mechanical thermal properties has been quantified with the use of dynamic mechanical thermal analysis (DMTA). Also the polymer surface morphology has been estimated by scanning electron microscopy technique. The main degradation stage of PVC samples in TG curves is slightly increased with increasing the tannin compositions in the polymer system. DMTA measurements were done to investigate the tannin effects on the viscoelastic properties of PVC. Before the glass transition temperature, (g), of PVC, the DMTA curves show that the values of storage modulus and tan delta of PVC with and without tannins are very similar. In a sequence, after the glass temperature of PVC samples, the DMTA curves confirmed that the PVC samples with tannins have relatively longer flowing stage occurred at lower temperatures by (15-17) A degrees C, as well as lower (g) by about (4-7) A degrees C per that of PVC sample free from tannins. Global results of TG (DTG) and DMTA show that the thermal stability and thermal flexibility of PVC are slightly increased with the incorporation of tannins.
机译:当前的研究描述了单宁(一种类黄酮型天然多酚化合物)的功效,及其与商业型热稳定剂在聚氯乙烯(PVC)中的协同作用。已经通过流变学研究和热重分析(TG)在氧化气氛中评估了PVC的热稳定性。另外,已经通过使用动态机械热分析(DMTA)来量化该酚类化合物对动态机械热性能的影响。聚合物表面形态也已通过扫描电子显微镜技术估计。 TG曲线中PVC样品的主要降解阶段随聚合物体系中单宁含量的增加而略有增加。进行DMTA测量以研究单宁对PVC的粘弹性的影响。在PVC的玻璃化转变温度(g)之前,DMTA曲线显示,含和不含单宁的PVC的储能模量和tanδ值非常相似。依次地,在PVC样品的玻璃化温度之后,DMTA曲线证实了具有单宁的PVC样品在较低温度(15-17)摄氏度和较低(g)约30摄氏度时具有相对较长的流动阶段。 (4-7)每摄氏度无单宁的PVC样品的摄氏温度。 TG(DTG)和DMTA的整体结果表明,单宁的引入会稍微提高PVC的热稳定性和热柔韧性。

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