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The Processing and Performance of PVC Blends

机译:PVC共混物的加工和性能

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摘要

Two grades of ethyl-vinyl acetate copolymers (EVA), containing 26% vinyl acetate (VAc) (modified with 1.2% methacrylic acid), and 27% VAc (unmodified) respectively, and an ethylene-vinyl acetate-carbon monoxide terpolymer (EVA-CO), were independently blended with two grades of polyvinyl chloride (PVC). The performance of these blends were also compared to several conventional plasticised PVCs (pPVCs), to determine the advantages of using these polymer-modified PVCs as potential alternatives to the traditional plasticized PVCs for medical device and healthcare applications. Mechanical analysis of the EVA and EVA-CO blends showed that the tensile and flexural modulus decreased significantly and impact strength greatly improved, with increasing copolymer and terpolymer content respectively. DMTA showed a shift in glass transition temperatures (Tg) of the PVC and EVA components for the PVC/EVA blends, suggesting partial miscibility over the range of concentrations studied. DMTA for the PVC/EVA-CO blends showed a single Tg between that of the PVC and EVA-CO components indicating complete miscibility. Rheological analysis gave only slight changes in shear viscosity with increasing copolymer and terpolymer content. The properties of most of the PVC/EVA-CO blends were similar to those of commercially available plasticised PVCs suggesting these blends may be suitable alternatives to pPVCs, where improved impact strength is required particularly in medical film applications.
机译:两种等级的乙烯-乙酸乙烯酯共聚物(EVA),分别包含26%的乙酸乙烯酯(VAc)(用1.2%的甲基丙烯酸改性)和27%的VAc(未改性),以及一种乙烯-乙酸乙烯酯-一氧化碳三元共聚物(EVA) -CO)与两种等级的聚氯乙烯(PVC)独立混合。还将这些混合物的性能与几种常规的增塑PVC(pPVC)进行了比较,以确定将这些聚合物改性的PVC用作医疗设备和医疗保健应用中传统增塑PVC的潜在替代品的优势。 EVA和EVA-CO共混物的力学分析表明,随着共聚物和三元共聚物含量的增加,拉伸模量和弯曲模量显着下降,冲击强度大大提高。 DMTA显示PVC / EVA共混物的PVC和EVA组分的玻璃化转变温度(Tg)发生变化,表明在所研究的浓度范围内部分混溶。 PVC / EVA-CO混合物的DMTA显示Tg在PVC和EVA-CO组分之间,表明完全混溶。流变分析表明,随着共聚物和三元共聚物含量的增加,剪切粘度仅发生微小变化。大多数PVC / EVA-CO共混物的性能与市售增塑PVC相似,这表明这些共混物可能是pPVC的合适替代品,在这种情况下,特别是在医用薄膜应用中,要求提高冲击强度。

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