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Modeling of spherulitic crystallization in thermoplastic tow-placement process: heat transfer analysis

机译:热塑性丝束放置过程中球晶的建模:传热分析

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An impingement heat transfer analysis is presented for hot gas torch heating in a tow-placement process of thermoplastic matrix composites. It is shown that experimentally available convective heat transfer correlations for normal and oblique impingement can be adapted to the geometry specific to the process by following first principles. Parametric studies are conducted using a coupled heat transfer and crystallization kinetics model for fabrication of a fiber-reinforced poly-ether-ether-ketone composite. Effects of processing parameters, in terms of torch incidence angle, θ, torch exit diameter, D, torch distance to target, L, hot gas temperature, T_(noz), gas velocity, U_(noz), line speed, V, and number of layers in tow substrate, n_(layer), on the crystallinity development in product are elucidated. Based on an optimal level of crystallinity, a processing window is identified by determining minimum and sonic gas velocities at various gas temperatures and line speeds.
机译:提出了一种冲击热传递分析,用于热塑性基质复合材料丝束放置过程中热气炬的加热。结果表明,通过遵循第一原理,对于法向和斜向冲击的实验可用对流传热相关性可以适应于该过程所特有的几何形状。使用耦合的热传递和结晶动力学模型进行参数研究,以制造纤维增强的聚醚-醚-酮复合材料。处理参数的影响,包括割炬入射角θ,割炬出口直径,D,割炬到目标的距离,L,热气体温度,T_(noz),气体速度,U_(noz),线速度,V和阐明了产品中结晶度发展的丝束基材中的层数n_(层)。根据最佳的结晶度水平,通过确定各种气体温度和线速度下的最小和声速来确定加工窗口。

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