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Influences of Process Conditions on Stretching Characteristics of Crystalline Polymer Film

机译:工艺条件对结晶聚合物膜拉伸特性的影响

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Developing the interior structures of polymer films is essential for creating novel functions of such films. This study investigates the effects of extension parameters and processing procedures on the super-structure of a polypropylene (PP) film. An biaxial extension device is also designed and fabricated to analyze the effects of annealing, extension temperature, extension rate and other parameters on the super-structures of PP films. Based on super-structure analyses, the relationships between extension parameters and film structures are determined, and an extension process that involves a second time stretching procedure is suggested. Experimental results indicate that void structures can be generated by biaxial extension at the interface between the crystalline and amorphous regions in a film. The mechanical strength of the film is also affected by stretching and become highly oriented. Although a low extension temperature can increase the number of void structures generated at a low extension ratio, structure sizes are dispersed. Additionally, voids with uniform size can be obtained when the film is stretched at a high temperature; however, it needs a high extension ratio to promote the formation of void structures. As for annealing treatment, when the annealing temperature increased, the size and quantity of the spherulites that were formed in films by annealing also increased, but these films tend to have similar sizes and numbers of void structures. Based on the experimental results, this study also describes how parameters influence the void structures of a PP film created during the extension process. Analysis results further demonstrate how extension parameters and processing procedures can be adjusted to improve the fabrication of PP films.
机译:显影聚合物膜的内部结构对于产生这种薄膜的新功能是必不可少的。本研究研究了延伸参数和加工程序对聚丙烯(PP)膜的超结构的影响。双轴扩展装置还设计和制造,以分析退火,延长温度,延长速率和其他参数对PP薄膜的超结构的影响。基于超结构分析,确定了扩展参数和膜结构之间的关系,并且提出了涉及第二时间拉伸过程的扩展过程。实验结果表明,在膜中结晶和非晶区域之间的界面处,可以通过双轴延伸产生空隙结构。薄膜的机械强度也受拉伸影响并高度取向。尽管低延伸温度可以增加以低延伸比产生的空隙结构的数量,但是结构尺寸分散。另外,当薄膜在高温下拉伸时,可以获得具有均匀尺寸的空隙;然而,它需要高延长率以促进空隙结构的形成。对于退火处理,当退火温度增加时,通过退火形成的薄膜中形成的球晶的尺寸和量也增加,但这些薄膜倾向于具有相似的尺寸和空隙结构的数量。本研究基于实验结果,还描述了参数如何影响在延伸过程中产生的PP膜的空隙结构。分析结果进一步证明了如何调整延长参数和加工程序以改善PP膜的制造。

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