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Prediction of degree of impregnation in thermoplastic unidirectional carbon fiber prepreg by multi-scale computational fluid dynamics

机译:多尺度计算流体动力学预测热塑性单向碳纤维预浸料的浸渍程度

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摘要

A multi-scale simulation approach was proposed to predict the degree of impregnation (Dol) in thermoplastic unidirectional carbon fiber prepreg (UD-CFP). The multi-scale approach included a two-dimensional (2D) micro-scale computational fluid dynamics (CFD) in a representative elementary volume (REV) of carbon fiber (CF) tow, a 3D macro-scale CFD of an entire impregnation die with 15 sliding CF tows, and a process-scale simulation assembling data from the micro- and macro-scale CFDs. In the macro-scale steady-state CFD, thermoplastic resin injection and CF tow insertion were considered for an impregnation die 10 cm in width. In the micro-scale transient CFD, impregnation mechanisms of resin into CF filaments 7 mu m in diameter were identified in terms of surface coverage, capillary permeation, and penetration through CF filaments. The Dol as a function of pressure and time was obtained from the micro-scale CFD within a range of pressures found in the macro-scale CFD. In the process-scale simulation, the cumulative Dol of the 15 tows was predicted along the impregnation die length with the aid of the micro- and macro-scale CFD results. Combining the multi-scale models gives a potential to predict the uniformity of the transverse resin amount in the final UD-CFP product. (C) 2018 Elsevier Ltd. All rights reserved.
机译:提出了一种多尺度模拟方法来预测热塑性单向碳纤维预浸料(UD-CFP)中的浸渍(DOL)的程度。多尺度方法包括在碳纤维(CF)丝束的代表性基本体积(Rev)中的二维(2D)微级计算流体动力学(CFD),整个浸渍模具的3D宏观CFD 15滑动CF TOOS,以及从微型和宏观CFD的流程级仿真组装数据。在宏观级稳态CFD中,考虑热塑性树脂注射和CF丝束插入宽度为10cm的浸渍模具。在微级瞬态CFD中,在表面覆盖,毛细血管渗透和通过CF长丝渗透方面,鉴定树脂的浸渍机制为CF长丝7μmm。作为压力和时间的函数的DOL是从宏观级CFD中发现的一系列压力内的微级CFD获得的。在过程规模模拟中,借助于微观和宏观CFD结果,沿着浸渍模长预测了15个丝束的累积DOL。组合多尺度模型可以预测最终UD-CFP产品中横向树脂量的均匀性。 (c)2018年elestvier有限公司保留所有权利。

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