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首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Real time development of structure in partially molten state stretching of PP as detected by spectral birefringence technique
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Real time development of structure in partially molten state stretching of PP as detected by spectral birefringence technique

机译:光谱双折射技术检测聚丙烯在部分熔融状态下的结构实时发展

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摘要

Our main focus in this study is to investigate the deformation behavior of PP in temperature range where the PP is partially molten using a newly developed uniaxial stretching system. This system allows the real time study of the structural reorganization processes as reflected in birefringence coupled with true stress and true strain at temperature and deformation rates used in industrial film process. This instrument revealeed that birefringence-stress relationship is linear beyond an initial yielding point until the onset of strain hardening beyond which negative deviation from this linearity is observed. At lower strains the films were found to continue to change significantly during holding stage leading to increase in birefringence. These changes observed in holding stage decreases with decrease of stretching speed and temperature and with increase of total strain. Increased strain rates result in destruction of crystallites that involves block rotations of these regions leading to observation of lower birefringence at faster rates. The latter process generates large amount of stretched amorphous chains that gradually convert to crystalline state during holding.
机译:本研究的主要重点是使用新开发的单轴拉伸系统研究PP在部分熔融状态下的温度范围内的PP变形行为。该系统允许对结构重组过程进行实时研究,反映为双折射以及在工业薄膜工艺中使用的温度和变形速率下的真实应力和真实应变。该仪器揭示了双折射-应力关系在初始屈服点之前是线性的,直到应变硬化开始为止,超过该屈服点观察到与该线性的负偏差。在较低的应变下,发现薄膜在保持阶段会继续发生明显变化,从而导致双折射增加。在保持阶段观察到的这些变化随着拉伸速度和温度的降低以及总应变的增加而减小。增加的应变速率导致晶体的破坏,这些晶体涉及这些区域的块旋转,从而导致以更快的速率观察到较低的双折射。后一个过程生成大量拉伸的非晶链,这些链在保持期间逐渐转变为结晶态。

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