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首页> 外文期刊>Journal of Composites Science >Energy Direction in Ultrasonic Impregnation of Continuous Fiber-Reinforced Thermoplastics
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Energy Direction in Ultrasonic Impregnation of Continuous Fiber-Reinforced Thermoplastics

机译:超声波浸渍连续纤维增强热塑性塑料的能量方向

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摘要

As a new and innovative processing method for fabrication for fiber-reinforced thermoplastic composites (CFRTs), the feasibility of ultrasonic welding technology was proven in several studies. This method offers potential for the direct manufacturing of CFRT–metal structures via embedded pin structures. Despite the previous studies, a deeper understanding of the process of energy input and whether fibers work as energy directors and consequently can, in combination with chosen processing parameters, influence the consolidation quality of the CFRTs, is still unknown. Consequently, the aim of this work is to establish a deeper process understanding of the ultrasonic direct impregnation of fiber-reinforced thermoplastics with an emphasis on the fiber’s function as energy directors. Based on the generated insights, a better assessment of the feasibility of direct, hybrid part manufacturing is possible. The produced samples were primarily evaluated by optical and mechanical test methods. It is demonstrated that with higher welding time and amplitude, a better consolidation quality can be achieved and that independent of the process parameters chosen in this study, no significant fiber breakage occurs. This is interpreted as a sign of a gentle impregnation process. Furthermore, based on the examination of single roving and 5-layer set-ups, it is shown that the glass fibers function as energy directors and can influence the transformation of sonic energy into thermal energy. In comparison to industrially available CFRT material, the mechanical properties are weaker, but materials and processes offer potential for significant improvement. Based on these findings, proposals for a direct impregnation and joining process are made.
机译:作为用于纤维增强热塑性复合材料(CFRTS)的制造的新的和创新的加工方法,在几项研究中证明了超声波焊接技术的可行性。该方法提供了通过嵌入的销结构直接制造CFRT-金属结构的潜力。尽管先前的研究,但更深入地了解能量输入过程以及纤维是否作为能量导演,因此可以与所选择的处理参数相结合影响CFRT的整合质量,仍然未知。因此,这项工作的目的是建立更深入的过程理解,对纤维增强热塑性塑料的超声波直接浸渍,重点是纤维功能作为能量导演。基于所产生的见解,更好地评估直接,混合零件制造的可行性。产生的样品主要通过光学和机械试验方法评估。据证明,通过较高的焊接时间和幅度,可以实现更好的合并质量,并且独立于本研究中选择的过程参数,不会发生显着的纤维破裂。这被解释为温和的浸渍过程的标志。此外,基于单粗纱和5层设置的检查,显示玻璃纤维作为能量导演的作用,可以影响声学能量转化为热能。与工业上可获得的CFRT材料相比,机械性能较弱,但材料和工艺提供了显着改善的潜力。基于这些调查结果,制定了直接浸渍和加入过程的提案。

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