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Polarised infrared and differential scanning calorimetry studies on oriented vinyl pipe materials

机译:定向乙烯管材料的偏振红外和差示扫描量热法研究

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摘要

The molecular orientation in a conventionally extruded PVC pipe, a uniaxially oriented PVC pipe and a biaxially oriented PVC pipe has been studied via Infrared dichroism. The degree of order or crystallinity has also been studied by Differential Scanning Calorimetry and also via Infrared Spectroscopy. The fundamental structural difference between the conventional and oriented pipes was that polymer chains were preferentially aligning in the hoop direction for oriented pipes whereas they were fairly isotropic in the conventional pipe with a slight preferential alignment in the axial direction. Analysis of the C–Cl stretching mode indicated that the uniaxially oriented pipe had much higher alignment of the C–Cl bond in the axial direction than the biaxial pipe, which correlates with higher fracture toughness for circumferential cracking in the biaxial pipe. Both DSC and Infrared spectroscopy detected little change in the crystallinity or order in the oriented pipes compared to the conventionally extruded pipes.
机译:通过红外二色性研究了常规挤出的PVC管,单轴取向的PVC管和双轴取向的PVC管中的分子取向。还已经通过差示扫描量热法以及通过红外光谱法研究了有序度或结晶度。常规管道和定向管道之间的基本结构差异是,聚合物链优先定向于定向管道的环向,而聚合物链在常规管道中是各向同性的,轴向优先对齐。 C–Cl拉伸模式的分析表明,单轴取向管在轴向方向上的C–Cl键排列比双轴管高得多,这与双轴管的周向裂纹的断裂韧性更高有关。与传统的挤压管相比,DSC和红外光谱法都检测不到定向管的结晶度或有序性变化。

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  • 来源
    《Journal of Materials Science 》 |2002年第8期| 1675-1682| 共8页
  • 作者

    J. A. Kwon; R. W. Truss;

  • 作者单位

    Department of Mining Minerals and Materials Engineering The University of Queensland;

    Department of Mining Minerals and Materials Engineering The University of Queensland;

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  • 正文语种 eng
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