首页> 外文期刊>International Journal of Material Forming: Official Journal of the European Scientific Association for Material Forming - ESAFORM >Ultrasonic welding of thermoplastic composites: a numerical analysis at the mesoscopic scale relating processing parameters, flow of polymer and quality of adhesion
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Ultrasonic welding of thermoplastic composites: a numerical analysis at the mesoscopic scale relating processing parameters, flow of polymer and quality of adhesion

机译:热塑性复合材料的超声波焊接:介观尺度的数值分析,涉及加工参数,聚合物流量和附着力质量

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摘要

Ultrasonic continuous welding of thermoplastic composite plates is a very promising process of particular interest for the assembly of aeronautics large parts. Its modeling and simulation however suffers from the difficulty of accounting for the very different time scales that rule the thermo-mechanical phenomena at the level of the adhesion zone. This problem was addressed in our previous works and led to an original simulation tool presented in Levy et al. (Eur J Mech A, Solids 30(4):501-509, 2011a). In this paper, the adopted time-homogenized multiphysical modeling of the flow at the mesoscopic scale of the energy directors is first presented. Then, using the numerical software in a 2D approach, an extensive numerical parametric study of the process is presented. The phenomena allowing welding are confirmed to be an initial strain concentration in the energy director, and the formation of a flowing fold. The influence of the following process parameters are finally investigated: amplitude of vibrations, holding force of the sonotrode, thickness of the plates, radius of curvature at the tip of the director, angle of the director. Process efficiency and weld quality is evaluated through simple indicators such as the equivalent stiffness analysis, the healing degree and the risk of porosity entrapment. The present study, carried at the mesoscopic scale, provides a better understanding of the complex interactions between physical and process parameters and enables to draw important technological conclusions for the design of energy directors.
机译:热塑性复合材料板的超声连续焊接是非常有前途的过程,对于航空航天大型零件的组装尤为重要。然而,其建模和模拟的困难在于难以解释非常不同的时间尺度,这些时间尺度决定了粘附区域水平上的热机械现象。这个问题在我们以前的工作中得到了解决,并导致了Levy等人提出的原始仿真工具。 (Eur J Mech A,Solids 30(4):501-509,2011a)。本文首先介绍了在能量导向器的介观尺度下采用的时间均质流的多物理场模型。然后,使用二维方法中的数值软件,对该过程进行了广泛的数值参数研究。证实了允许焊接的现象是能量导向器中的初始应变集中,并且形成了流动的褶皱。最后研究了以下工艺参数的影响:振动幅度,超声波发生器的保持力,板的厚度,指向矢尖端的曲率半径,指向矢角度。可通过简单的指标(如等效刚度分析,愈合程度和夹带气孔的风险)来评估过程效率和焊接质量。本研究以介观尺度进行,可以更好地理解物理参数和过程参数之间的复杂相互作用,并可以为能量导向器的设计得出重要的技术结论。

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