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Meltblown Structures Formed by a Robotic and Meltblowing Integrated System: Impact of Process Parameters on Fiber Orientation and Diameter Distribution

机译:由机器人和熔喷集成系统形成的熔喷结构:工艺参数对纤维取向和直径分布的影响

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摘要

In a previous publication, we described a novel system that forms three-dimensional (3D) structures on 3D molds and two-dimensional (2D) structures on a rotating drum through proper integration of a laboratory scale meltblown unit with a small die and a six-axis robot. In this paper, we investigate the impact of take-up speed, die-to-collector distance (DCD), polymer throughput rate, and attenuating air pressure on the fiber orientation and diameter distribution of 2D structures formed by the system. We introduce a new parameter, the fiber stream approach angle, which can be precisely controlled by the robot, and discuss its impact on the meltblown structure. In the experimental range studied, fiber orientation and diameter distribution are significantly impacted by the parameters. Among these parameters, the fiber stream approach angle shows the highest effect on fiber orientation distribution.
机译:在以前的出版物中,我们描述了一种新颖的系统,该系统通过适当集成实验室规模的熔喷单元和一个小模具和六个模头,在3D模具上形成三维(3D)结构并在转鼓上形成二维(2D)结构。轴机器人。在本文中,我们研究了卷取速度,管芯到收集器的距离(DCD),聚合物吞吐速率以及衰减的气压对系统形成的2D结构的纤维取向和直径分布的影响。我们介绍了一个可以由机器人精确控制的新参数,纤维流接近角,并讨论了其对熔喷结构的影响。在所研究的实验范围内,纤维取向和直径分布受到参数的显着影响。在这些参数中,纤维流的接近角对纤维取向分布显示出最大的影响。

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