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Experimental study of particle migration in polymer processing

机译:聚合物加工颗粒迁移的实验研究

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Extrusion and injection molding processes of filled polymers are widely used in industry due to their high strength-to-weight ratios and for their ability to manufacture a variety of geometries while improving the overall mechanical and thermal properties. However, filler migration and filler-matrix separation during processing are phenomena that are not fully understood. To gain an improved understanding of these phenomena, polypropylene samples with different glass bead concentrations were manufactured using extrusion, injection molding and a customized screwless extruder that was built in-house. Computed tomography was performed on the samples to observe particle position and distribution after material solidification. For all three processes, filler migration and filler-matrix separation was observed. In the extrusion and screwless extrusion processes, particles migrated towards the wall, contrary to current theories and believes. During the injection molding process, filler-matrix separation was manifested as bead-free zones in the center region and the walls of the spiral mold at the entrance region of the spiral mold. These bead-free zones were later filled at the far end of the spiral mold suggesting migration of particles along flow with almost no bead-free zones at the end of the mold. Particle redistribution towards the wall and the center during flow could possibly have happened due to migration and fountain flow effects. POLYM. COMPOS., 40:2165-2177, 2019. (c) 2018 Society of Plastics Engineers
机译:填充聚合物的挤出和注塑方法由于其高强度为重量比而广泛用于工业中,并且能够在提高整体机械和热性质的同时制造各种几何形状的能力。然而,加工过程中的填充迁移和填充矩阵分离是不完全理解的现象。为了改善对这些现象的理解,使用挤出,注塑和内置的定制无螺杆挤出机制造具有不同玻璃珠粒浓度的聚丙烯样品。在样品上进行计算的断层扫描,以观察物质凝固后的颗粒位置和分布。对于所有三种方法,观察到填料迁移和填充基质分离。在挤出和无缝挤出工艺中,颗粒迁移到墙壁上,与当前的理论相反,相反。在注射成型过程中,填料 - 基质分离在中心区域中显示为胎珠区和螺旋模的入口区域的螺旋模具的壁。这些胎珠区后来填充在螺旋模具的远端,表明颗粒沿着模具末端的几乎没有胎珠区迁移。由于迁移和喷泉流动效应,流动期间,玻璃朝向墙壁和中心可能发生的颗粒。聚合物。 Compos。,40:2165-2177,2019。(c)2018年塑料工程师协会

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