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The development of molecular orientation during formation of cellulose film from viscose

机译:粘胶纤维素膜形成过程中分子取向的发展

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AbstractThe distribution of molecular orientation in cellophane and its correlation with processing conditions have been studied by means of optical retardation measurements. With thin sections of cellophane cut with a standard microtome edge views were obtained, and it was possible to measure optical retardation profiles of the sections. This yielded information about the variation of molecular orientation in different layers of the film. In lanes near the edge of the machine‐cast sheet the machine direction orientation was higher than in center lanes. In layers near the surface, machine direction orientation was higher, and transverse direction orientation was lower than in center layers. Studies of shear induced orientation in viscose indicated that this did not persist long enough to contribute to the structure of cellophane. The distribution of molecular orientation in cellophane was explained in terms of the forces acting on the web during and after coagulation and regeneration. These include the viscous drag of the treatment baths, the internal friction as the viscose is drawn outside the extrusion die, the tendency of the film to shrink during its formation and drying, and the tentering action of machine roll
机译:摘要 通过光学延迟测量方法研究了玻璃纸中分子取向的分布及其与加工条件的相关性。用标准切片机切割的玻璃纸薄片获得了边缘视图,并且可以测量切片的光学延迟曲线。这产生了有关薄膜不同层中分子取向变化的信息。在靠近机器浇铸板边缘的车道中,机器方向方向高于中心车道。在靠近曲面的层中,机器方向高于中心层,横向方向方向低于中心层。对粘胶纤维中剪切诱导取向的研究表明,这种取向持续时间不够长,不足以促进玻璃纸的结构。玻璃纸中分子取向的分布是根据凝固和再生期间和之后作用在网上的力来解释的。这些因素包括处理槽的粘性阻力、粘胶被拉出挤出模具时的内摩擦、薄膜在形成和干燥过程中收缩的趋势以及机器辊的压入作用

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