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Biodegradable PPC/(PVA-TPU) ternary blend blown films with enhanced mechanical properties

机译:机械性能增强的可生物降解PPC /(PVA-TPU)三元共混吹膜

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Biodegradable films of poly(propylene carbonate)/ poly(vinyl alcohol)-thermoplastic polyurethane [PPC/(PVATPU)] ternary blends were successfully prepared by melting blending method. The mechanical properties of poly(propylene carbonate) blown film were greatly improved by blending PPC with PVA-TPU. In order to afford the melt processing of PVA, the PVA-TPU binary blend was firstly prepared using thermoplastic polyurethane as a polymeric plasticizer. The rheological behavior, mechanical properties and morphology of these blends were studied. Considering its melt viscosity and thermally processing temperature, the PVA-50% TPU, as a modifier, was blended with PPC to prepare PPC/(PVA-TPU) ternary blend. SEM observation revealed a basic one-phase morphological structure with very good interfacial adhesion between the extremely blurred PPC and PVA-TPU two components. Meanwhile, the miscibility of the ternary components was verified by only one glass-transition temperature obtained from DMA tests. The tensile strength and tear strength of PPC/(PVA-TPU) blown films were determined at different temperatures. The results demonstrate that the mechanical properties of PPC/(PVA-TPU) films were enhanced dramatically at low temperature when compared with neat PPC. At room temperature, PPC/30 %(PVA-50% TPU) blown film exhibited a tensile strength of 26 MPa, and an elongation at break of 484.0 %. Its tear strength in the take-up direction is 124.1 kN/m, and the one in machine direction is 141.9 kN/m. At a low temperature of 0 degrees C, PPC/30 %(PVA-50% TPU) exhibited a tensile strength of 40.7 MPa and tear strength of 107 kN/m, which are 153 % and 142 % of those of neat PPC respectively. The blending of PPC with the PVA plasticized with TPU provides a practical way to extend the application of the new biodegradable polymer of PPC in the area of blown films.
机译:通过熔融共混法成功地制备了聚碳酸亚丙酯/聚乙烯醇-热塑性聚氨酯[PPC /(PVATPU)]三元共混物的可生物降解薄膜。通过将PPC与PVA-TPU掺混可以大大改善聚碳酸亚丙酯吹塑薄膜的机械性能。为了提供PVA的熔融加工,首先使用热塑性聚氨酯作为聚合物增塑剂制备PVA-TPU二元共混物。研究了这些共混物的流变行为,力学性能和形态。考虑到其熔体粘度和热处理温度,将作为改性剂的PVA-50%TPU与PPC共混以制备PPC /(PVA-TPU)三元共混物。 SEM观察显示出基本的一相形态结构​​,在非常模糊的PPC和PVA-TPU两个组分之间具有非常好的界面粘附性。同时,三元组分的混溶性仅通过一种从DMA测试获得的玻璃化转变温度来验证。在不同温度下测定PPC /(PVA-TPU)吹塑薄膜的拉伸强度和撕裂强度。结果表明,与纯PPC相比,PPC /(PVA-TPU)薄膜的机械性能在低温下得到了显着提高。在室温下,PPC / 30%(PVA-50%TPU)吹塑膜表现出26MPa的拉伸强度和484.0%的断裂伸长率。其在卷取方向上的撕裂强度为124.1 kN / m,在纵向上的撕裂强度为141.9 kN / m。在0摄氏度的低温下,PPC / 30%(PVA-50%TPU)的拉伸强度为40.7 MPa,撕裂强度为107 kN / m,分别是纯PPC的153%和142%。 PPC与用TPU增塑的PVA的共混提供了一种实用的方法,可将新的PPC可生物降解聚合物在吹膜领域中的应用扩展。

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