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首页> 外文期刊>Journal of Composite Materials >Static ultrasonic welding of carbon fibre unidirectional thermoplastic materials and the influence of heat generation and heat transfer
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Static ultrasonic welding of carbon fibre unidirectional thermoplastic materials and the influence of heat generation and heat transfer

机译:碳纤维单向热塑性材料的静态超声波焊接及发热和热传递的影响

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摘要

Ultrasonic welding is a promising technology to join fibre-reinforced thermoplastic composites. While current studies are mostly limited to fabric materials the applicability to unidirectional materials, as found in aerospace structures, would offer opportunities for joining primary aircraft structures. However, due to the highly anisotropic flow of a molten unidirectional ply undesired squeeze flow phenomena can occur at the edges of the weld overlap. This paper investigates how the fibre orientation in the plies adjacent to the weld line influences the welding process and the appearance of edge defects. Ultrasonic welding experiments with different layups and energy director configurations were carried out while monitoring temperatures at different locations inside and outside the weld overlap. The joints were characterized by single lap shear tests, analysis of corresponding fracture surfaces and microscopic cross-sections. Results showed that the anisotropic flow and the anisotropic thermal conductivity of the plies adjacent to the weld line have a distinct effect on the appearance and location of edge defects. By using energy directors that cover only part of the weld overlap area a new approach was developed to mitigate edge defects caused by the highly directional properties of the unidirectional plies.
机译:超声波焊接是连接纤维增强热塑性复合材料的一种很有前途的技术。虽然目前的研究主要局限于织物材料,但航空航天结构中发现的单向材料的适用性将为连接主要飞机结构提供机会。然而,由于熔融单向铺层的高度各向异性流动,在焊缝重叠的边缘可能会出现不希望出现的挤压流动现象。本文研究了焊缝附近层中的纤维取向如何影响焊接过程和边缘缺陷的出现。进行了不同铺层和能量控制器配置的超声波焊接试验,同时监测了焊接重叠内外不同位置的温度。通过单搭接剪切试验、相应断裂面分析和微观横截面对接头进行了表征。结果表明,焊缝附近的各向异性流动和各向异性导热系数对边缘缺陷的出现和位置有明显的影响。通过使用仅覆盖部分焊缝重叠区域的能量控制器,开发了一种新方法,以减轻由单向层的高度定向特性引起的边缘缺陷。

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