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Study of polystyrene and acrylomtrile - Styrene copolymer as special beta-nucleating agents to induce the crystallization of isotactic polypropylene

机译:聚苯乙烯和丙烯腈-苯乙烯共聚物作为特殊β-成核剂诱导等规聚丙烯结晶的研究

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摘要

The influence of two kinds of polymers (polystyrene (PS), acrylonitrile-styrene copolymer (SAN)) on the crystallization behavior of isotactic polypropylene (iPP) has been investigated by means of wide-angle X-ray diffraction (WAXD), differential scanning calorimetry (DSC), and polarized optical microscopy (POM). The current experimental results indicated that these two kinds of polymers with low concentration, as special [beta-nucleating agents, can induce the beta-iPP polymorph during quiescent melt crystallization. The nucleating activity of SAN or PS significantly depends on its concentration, molecular structure, and thermal history of processing. The content of beta-crystal form increases with the increasing crystallization temperature or nucleating agent (SAN or PS) percentage, reaches a maximum value, and then decreases as the temperature or nucleating agent percentage further increases. Under the same crystallization condition, SAN is more effective than PS on inducing a higher level of beta-crystal form in iPP. Besides, variable temperature WAXD and POM experiments have been used to investigate the polymorphism and the crystalline phase transformation of iPP. It was proved that the beta-crystal form of iPP is a thermodynamically metastable structure and will gradually transform to a new kind of W-crystal form with the rise in crystallization temperature. Because of different structural characteristics, the polymeric nucleating agents exhibit nucleation and crystallization mechanism which differ from the traditional low molecular weight beta-nucleating agents of iPP.
机译:通过广角X射线衍射(WAXD),差示扫描技术研究了两种聚合物(聚苯乙烯(PS),丙烯腈-苯乙烯共聚物(SAN))对等规聚丙烯(iPP)结晶行为的影响。量热法(DSC)和偏振光学显微镜(POM)。当前的实验结果表明,这两种低浓度的聚合物,作为特殊的β-成核剂,可以在静态熔体结晶过程中诱导出β-iPP多晶型物。 SAN或PS的成核活性很大程度上取决于其浓度,分子结构和加工的热历史。 β晶型的含量随结晶温度或成核剂(SAN或PS)百分比的增加而增加,达到最大值,然后随温度或成核剂百分比的进一步增加而降低。在相同的结晶条件下,SAN在诱导iPP中更高水平的β晶型方面比PS更有效。此外,通过可变温度WAXD和POM实验研究了iPP的多态性和结晶相转变。事实证明,iPP的β晶型是一种热力学亚稳态结构,随着晶化温度的升高,它将逐渐转变为新型的W晶型。由于不同的结构特征,聚合物成核剂表现出与传统的iPP低分子量β-成核剂不同的成核和结晶机理。

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