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Non-Hoop Winding Effect on Bonding Temperature of Laser Assisted Tape Winding Process

机译:非箍绕组效应激光辅助胶带绕组工艺的粘接温度

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One of the advanced methods for production of thermoplastic composite methods is laser assisted tape winding (LATW). Predicting the temperature in LATW process is very important since the temperature at nip-point (bonding line through width) plays a pivotal role in a proper bonding and hence the mechanical performance. Despite the hoop-winding where the nip-point is the straight line, non-hoop winding includes a curved nip-point line. Hence, the non-hoop winding causes somewhat a different power input through laser-rays and -reflections and consequently generates unknown complex temperature profile on the curved nip-point line. Investigating the temperature at the nip-point line is the point of interest in this study. In order to understand this effect, a numerical model is proposed to capture the effect of laser-rays and their reflections on the nip-point temperature. To this end, a 3D optical model considering the objects in LATW process is considered. Then, the power distribution (absorption and reflection) from the optical analysis is used as an input (heat flux distribution) for the thermal analysis. The thermal analysis employs a fully-implicit advection-diffusion model to calculate the temperature on the surfaces. The results are examined to demonstrate the effect of winding direction on the curved nip-point line (tape width) which has not been considered in literature up to now. Furthermore, the results can be used for designing a better and more efficient setup in the LATW process.
机译:热塑性复合方法生产的先进方法之一是激光辅助磁带绕组(LATW)。预测Latw过程中的温度非常重要,因为辊隙点(通过宽度宽度宽度)的温度在适当的粘合中起着枢轴作用并因此在机械性能下起作用。尽管旋转卷绕辊隙是直线的,但是非箍绕组包括弯曲的镊点线。因此,非箍绕组引起通过激光射线和-reflections的不同功率输入,因此在弯曲的辊隙线上产生未知的复温曲线。调查扼流带线的温度是本研究的兴趣点。为了理解这种效果,提出了一种数值模型来捕获激光射线的效果及其对镊点温度的反射。为此,考虑考虑LatW过程中的对象的3D光学模型。然后,来自光学分析的功率分布(吸收和反射)用作热分析的输入(热通量分布)。热分析采用完全隐含的平坦扩散模型来计算表面上的温度。检查结果以证明绕组方向对弯曲辊隙线(磁带宽度)的影响,该弯曲点线(磁带宽度)在迄今未被考虑的文献中尚未考虑。此外,结果可用于在LatW过程中设计更好且更有效的设置。

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