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The reactive blending of a thermoplastic polyurethane in situ with poly(vinyl chloride).

机译:热塑性聚氨酯与聚氯乙烯的原位反应共混。

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A novel reactive blending process was investigated to produce high performance poly(vinyl chloride)/thermoplastic polyurethane (PVC/TPU) blends of significant commercial utility. In this process, a high molecular weight TPU with poly(butylene adipate) (PBA) soft segments and 4,4-diphenylmethane diisocyanate/1,4-butanediol (MDI/BDO) hard segments was polymerized in situ with PVC. More specifically, the process was broken down into two fundamental stages: the compounding and plasticization of PVC with PBA and BDO, and, upon adding MDI, the subsequent polymerization of TPU in situ with PVC to produce a PVC/TPU blend. A powerful, versatile characterization tool, Raman spectroscopy was used to elucidate the presence of intermolecular interactions in both stages of the PVC/TPU reactive blending process and measure the kinetics of TPU polymerization in situ with PVC.; Initially, model studies of the PVC/TPU reactive blending process were conducted on a batch internal mixer. In the first stage of the process, the TPU reactants PBA and BDO effectively functioned as plasticizers as they were completely miscible with PVC. In the second stage of the process, TPU polymerization in situ with PVC was accompanied by reaction induced PVC/TPU blend phase separation. Partially miscible, PVC/TPU blends were characterized by multi-phase morphologies at room temperature, with a broad distribution of phase sizes and compositions. In measuring their effect on reaction kinetics, both PVC and its tin mercaptide thermal stabilizer catalyzed TPU polymerization. In measuring some of their mechanical properties, PVC/TPU blends produced via reactive blending had comparable and even superior tensile properties to analogous PVC/TPU blends produced via melt blending.; Using information gleaned from the former model studies, the PVC/TPU reactive blending process was also conducted on a continuous, counter-rotating, intermeshing, twin screw extruder. In these reactive extrusion studies (REX), resultant PVC/TPU blends morphologies and tensile properties were similar to that observed in the model studies. Relative to the model studies, however, maintaining balanced stoichiometry, and thus polymerizing high molecular weight TPU in situ with PVC, was far more difficult.
机译:研究了一种新颖的反应性共混工艺,可生产出具有重要商业用途的高性能聚氯乙烯/热塑性聚氨酯(PVC / TPU)共混物。在此过程中,聚合了具有聚己二酸丁二酯(PBA)软链段和4,4'''super'-二苯基甲烷二异氰酸酯/ 1,4-丁二醇(MDI / BDO)硬链段的高分子量TPU PVC原位。更具体地说,该过程分为两个基本阶段:PVC与PBA和BDO的混合和增塑,以及添加MDI后,TPU与PVC原位聚合以生产PVC / TPU共混物。拉曼光谱法是一种功能强大且用途广泛的表征工具,用于阐明PVC / TPU反应性共混过程的两个阶段中分子间相互作用的存在,并测量TPU与PVC原位聚合的动力学。最初,在间歇式内部混合器上进行了PVC / TPU反应性共混过程的模型研究。在该过程的第一阶段,TPU反应物PBA和BDO可以有效地用作增塑剂,因为它们可以与PVC完全混溶。在该方法的第二阶段,TPU与PVC原位聚合,同时伴随着反应引发的PVC / TPU共混物相分离。部分可混溶的PVC / TPU共混物在室温下具有多相形态的特征,具有广泛的相尺寸和组成分布。在测量它们对反应动力学的影响时,PVC及其硫醇锡热稳定剂均催化TPU聚合。在测量它们的一些机械性能时,通过反应共混生产的PVC / TPU共混物具有与通过熔融共混生产的类似PVC / TPU共混物相当甚至更高的拉伸性能。利用从以前的模型研究中获得的信息,PVC / TPU反应性共混过程也在连续,反向旋转,互相啮合的双螺杆挤出机上进行。在这些反应性挤出研究(REX)中,所得的PVC / TPU共混物形态和拉伸性能与模型研究中观察到的相似。然而,相对于模型研究,要保持平衡的化学计量,从而使高分子量的TPU与PVC原位聚合要困难得多。

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