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Study of the molecular structure of PET films obtained by an inverse stretching process .1. Constant speed drawing of amorphous films

机译:通过反向拉伸工艺获得的PET薄膜分子结构的研究1。等速拉伸非晶膜

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The constant rate stretching of amorphous poly(ethylene terephthalate) films is the first step of the industrial ''inverse'' process. To study this process, films deformed under uniaxial planar symmetry conditions have been produced on a laboratory stretching machine in order to discuss the influence of macroscopic parameters, such as draw ratio, temperature and melt viscosity of the amorphous film, on the deformation mechanism. The structure of oriented films has been characterized by combining X-ray diffraction and refractive index measurements. Stress strain curves have been simultaneously recorded. The draw temperature and the molecular weight of the polymer are determining factors controlling the development of molecular orientation and crystalline structure in the stretched films. The major influence of relaxation processes is described and a comparison with constant force drawn films is given.
机译:非晶聚对苯二甲酸乙二醇酯薄膜的恒定速率拉伸是工业“逆向”工艺的第一步。为了研究这一过程,在实验室拉伸机上制备了在单轴平面对称条件下变形的薄膜,以讨论宏观参数(如拉伸比,温度和非晶薄膜的熔体粘度)对变形机理的影响。通过结合X射线衍射和折射率测量来表征取向膜的结构。同时记录了应力应变曲线。聚合物的拉伸温度和分子量是控制拉伸膜中分子取向和晶体结构发展的决定因素。描述了松弛过程的主要影响,并给出了与恒力拉伸薄膜的比较。

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