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Increasing the performance of continuous compression moulding by local pressure adaption

机译:通过局部压力适应提高连续压缩成型的性能

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Continuous compression moulding (CCM) is an efficient process for manufacturing endless fibre-reinforced thermoplastic composites, so called organic sheets. The semi-finished products are fully impregnated and consolidated and can be thermoformed into complex 3D-geometries. Applications benefit from excellent weight-specific features as well as functional integration. Nevertheless, limited production speed and lower than acceptable manufacturing quality are still a challenge, especially with the use of high shrinkage polymers. Hence, porosities and defects due to pressure drops inside the laminate during impregnation and solidification can cause degradation in material properties. With the integration of an active adaptive pressing tool and an inline pressure measurement system, the process can be optimised towards guided impregnation and improved pressure distribution. A calculation method based on the B-factor method by Mayer has been adapted for the CCM process in order to enhance the tool design. Both, production speed as well as organic sheet quality can be improved with the optimised processing system presented in the following work.
机译:连续压缩成型(CCM)是制造环形纤维增强热塑性复合材料的有效方法,所以称为有机片。半成品完全浸渍并整合,可以热成复杂的3D几何形状。应用程序受益于出色的重量特定功能以及功能集成。然而,生产速度有限,比可接受的制造质量低仍然是一个挑战,特别是在使用高收缩聚合物。因此,在浸渍和凝固过程中,层压板内的压力下降引起的孔隙率和缺陷可导致材料性能降解。随着主动自适应压制工具和内联压力测量系统的整合,该方法可以针对引导浸渍和改善的压力分布进行优化。基于Mayer的B因子方法的计算方法已经适用于CCM过程,以增强工具设计。通过以下工作中提供的优化处理系统,可以提高生产速度以及有机片材质量。

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