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Fiber Dispersion and Breakage in Deep Screw Channel during Processing of Long Fiber-reinforced Polypropylene

机译:长纤维增强聚丙烯加工过程中深螺旋通道中的纤维分散和断裂

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Long glass fiber-reinforced thermoplastics are usually processed by pultruded granules, but glass fiber rovings were used to process long glass fiber-reinforced thermoplastics in this study. This article investigated the dispersion and breakage of fibers during extrusion processing of long glass fiber-reinforced polypropylene containing 30 wt% glass fibers at a certain processing conditions. For this study, the morphology of the surface and polished cross-section of helices was observed by digital photography, as was the morphology of the remaining fiber after burning. On this basis, the fiber/polymer system behavior in the screw channel and the dispersion mechanism of the fiber bundles were analyzed. Moreover, scanning electron microscopy (SEM) was used to observe individual fiber cross-sections to analyze the mechanism of fiber breakage. Finally, the effect of processing conditions such as temperature, screw speed and fiber content on fiber length and dispersion was studied. The results show that the fiber agglomerates composed of fiber bundles form near the barrel surface at the fiber feed point and then undergo three main stages: compression, impregnation, and dispersion. The fiber bundles separate into daughter bundles and individual fibers in different parts of the screw channel. In addition, the results indicate that the fibers can suffer tensile fracture and bending fracture during the extrusion processing. Finally, this paper includes suggestions for improving fiber bundle dispersion and reducing fiber breakage.
机译:长玻璃纤维增​​强的热塑性塑料通常通过拉挤颗粒进行加工,但是在本研究中,玻璃纤维粗纱用于加工长玻璃纤维增​​强的热塑性塑料。本文研究了在一定的加工条件下,长玻璃纤维增​​强聚丙烯(包含30 wt%的玻璃纤维)的挤压成型过程中纤维的分散和断裂。对于这项研究,通过数字摄影观察了螺旋的表面和抛光截面的形态,以及燃烧后剩余纤维的形态。在此基础上,分析了螺旋通道中的纤维/聚合物体系行为以及纤维束的分散机理。此外,使用扫描电子显微镜(SEM)观察单个纤维的横截面,以分析纤维断裂的机理。最后,研究了温度,螺杆速度和纤维含量等加工条件对纤维长度和色散的影响。结果表明,由纤维束组成的纤维团聚体在纤维进料点附近的桶表面形成,然后经历三个主要阶段:压缩,浸渍和分散。纤维束分离为子束,并在螺旋通道的不同部分分离出单个纤维。另外,结果表明,纤维在挤出加工过程中会遭受拉伸断裂和弯曲断裂。最后,本文提出了改善纤维束分散和减少纤维断裂的建议。

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