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Transparent PC/PMMA Blends Via Reactive Compatibilization in a Twin-Screw Extruder

机译:通过双螺杆挤出机中的反应性相容性混合透明的PC / PMMA

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摘要

The effect of different catalysts on reactive compatibilization of 50/50 polycarbonate (PC)/polymethylmethacrylate (PMMA) blends achieved via transesterification that occurs during compounding in a twin-screw extruder was investigated on a phenomenological (optical and mechanical properties), mesoscopic (phase morphology), and molecular level (PC-graft(g)-PMMA-copolymer formation and polymer molecular weight degradation). Formation of PC-(g)-PMMA-copolymer by transesterification resulting in transparent mono-phase PC/PMMA blends with obviously improved compatibility of the two polymer constituents requires use of a suitable catalyst. As a side-effect, PC-(g)-PMMA-copolymer formation by transesterification is always accompanied by a significant simultaneous decomposition of the molecular weight (M ) of the PC. For the first time, a colorless, transparent (mono-phase) PC/PMMA 50/50 blend was achieved by a twin-screw extrusion process that can be easily transferred into industrial scale. To achieve this milestone, 0.05 wt% of a weakly acidic phosphonium salt catalyst had to be applied. As a result of the decrease in M of the PC, the mechanical properties (e.g., tensile strain at break and impact strength) of the obtained blends were significantly deteriorated rather than improved as targeted by the polymer compatibilization; therefore, the produced transparent PC/PMMA blends are considered not yet technically suitable for any industrial applications. Different manufacturing process strategies that do not inherently result in PC degradation as a side effect of PC-graft(g)-PMMA-copolymer formation have to be developed to potentially achieve transparent PC/PMMA blends with a useful balance of properties. Based on the experimental observations of this study, a new mechanism of the transesterification reaction occurring during reactive compounding of PC and PMMA in the presence of the effective catalysts is proposed.
机译:研究了不同催化剂对双螺杆挤出机配混过程中发生的酯交换反应而实现的50/50聚碳酸酯(PC)/聚甲基丙烯酸甲酯(PMMA)共混物反应相容性的影响,从现象学(光学和机械性能),介观(相形态)和分子水平(PC-接枝(g)-PMMA-共聚物的形成和聚合物分子量的降低)。通过酯交换反应形成PC-(g)-PMMA共聚物,导致透明的单相PC / PMMA混合物具有明显改善的两种聚合物成分的相容性,需要使用合适的催化剂。作为副作用,通过酯交换反应形成PC-(g)-PMMA-共聚物总是伴随着PC分子量(M)的同时显着分解。首次通过双螺杆挤出工艺获得了无色透明(单相)PC / PMMA 50/50共混物,该工艺可以轻松转移到工业规模。为了达到这个里程碑,必须使用0.05重量%的弱酸性acid盐催化剂。 PC的M降低的结果是,所获得的共混物的机械性能(例如断裂时的拉伸应变和冲击强度)显着劣化,而不是如聚合物相容性所预期的那样改善。因此,生产的透明PC / PMMA混合物在技术上还不适合任何工业应用。必须开发不会固有地导致PC降解的不同制造工艺策略,因为PC接枝(g)-PMMA-共聚物形成会产生副作用,以潜在地获得具有有用性能平衡的透明PC / PMMA共混物。基于这项研究的实验观察结果,提出了一种在有效催化剂存在下PC和PMMA反应混合过程中发生酯交换反应的新机理。

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