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首页> 外文期刊>Journal of Applied Polymer Science >Mechanical, thermomechanical, and morphology of PVC/PBMA blends and full IPNs
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Mechanical, thermomechanical, and morphology of PVC/PBMA blends and full IPNs

机译:PVC / PBMA共混物和完整IPN的机械,热机械和形态

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摘要

Blends and full IPNs' of poly(vinyl chloride) and polybutylmethacrylate (PBMA) have been synthesized and characterized with respect to their mechanical, thermomechanical, and morphological properties. Both the systems displayed a rise in the modulus and ultimate tensile strength and a consequent decreasing tendency of elongation at break and toughness are exhibited. The influence of crosslinking of the two polymers as has been done in case of full IPNs ever the ordinary blends is quite well understood from these properties. The thermomechanical analysis revealed a substantial rise in stability with increasing methacrylate concentration in the system and this is quite apparent from the softening characteristics of the different samples under study. The biphasic cocontinuous systems as explicit from the morphological studies support phase mixing at the initial stages, with subsequent phasing out tendency with increasing percentage of PBMA incorporation. The thermomechanical parameters are in conformity to their mechanicals which have been further supported by their morphological studies.
机译:合成了聚氯乙烯和聚甲基丙烯酸丁酯(PBMA)的共混物和全IPN,并对其机械,热机械和形态特性进行了表征。两种体系均显示出模量和极限抗拉强度的增加,并因此显示出断裂伸长率和韧性的降低趋势。从这些特性可以很好地理解两种聚合物交联的影响,就像在普通IPN的情况下所做的那样。热力学分析表明,随着系统中甲基丙烯酸酯浓度的增加,稳定性显着提高,这从所研究的不同样品的软化特性中可以明显看出。从形态学研究中明确得出的双相共连续系统在初始阶段支持相混合,随后随着PBMA掺入百分比的增加而逐渐消失。热力学参数与其力学相符,其形态学研究进一步支持了这些力学参数。

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