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Vibration-dependent morphology and crystal structure of isotactic polypropylene

机译:全同立构聚丙烯的振动相关形态和晶体结构

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摘要

A small homemade device was used to study the influence of mechanical vibration on the crystal structure and morphology of isotactic polypropylene (iPP) under different melting temperatures, vibration times, vibration frequencies, and cooling rates. The crystallite size, crystal structure, and crystallinity of iPP under or without vibration treatment were investigated by means of differential scanning calorimetry (DSC), wide angle X-ray diffraction (WAXD), and polarized microscopy observation (PLM). The crystallization of iPP varied with the length of vibration time, vibration frequency, cooling rate, and melt temperature. Compared with the data of conventional samples measured by DSC, vibration could increase the crystallinity of iPP, make melting peak of α-crystal move toward higher temperature and make that of β-crystal shift to lower temperature. Meanwhile, WAXD measurements showed that the vibration could reduce the content of β-crystal evidently, particularly at the lower vibration frequency, lower cooling rate, and higher melting temperature. Furthermore, PLM measurements showed that the vibration made the spherulite size smaller.
机译:使用小型自制设备研究在不同的熔融温度,振动时间,振动频率和冷却速率下,机械振动对全同立构聚丙烯(iPP)晶体结构和形态的影响。通过差示扫描量热法(DSC),广角X射线衍射(WAXD)和偏振显微镜观察(PLM)研究了在有或没有振动处理的情况下iPP的微晶尺寸,晶体结构和结晶度。 iPP的结晶随振动时间,振动频率,冷却速率和熔体温度的长度而变化。与通过DSC测量的常规样品的数据相比,振动可以提高iPP的结晶度,使α晶体的熔化峰向高温移动,使β晶体的熔化峰向低温移动。同时,WAXD测量表明,振动可以明显降低β晶体的含量,特别是在较低的振动频率,较低的冷却速率和较高的熔融温度下。此外,PLM测量表明,振动使球晶尺寸变小。

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