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The Numerical Simulation Research of Steam Heating Process ofHeated Mandrel Winding

机译:蒸汽加热过程的数值仿真研究芯轴绕组

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The external curing method is usually adopted as the traditional molding process of thermoset fiber composite shell, which places the wound shell into the thermal compression reactor or the oven to cure. This kind of process greatly limits the molding efficiency because winding and curing proceed respectively and separately. The internal curing can be adopted because of the hollow structure of the cylinder-shaped shell, which heats the mandrel with high pressure steam to realize the in-situ curing of the wound shell. This paper researches the new fiber composite molding process named heated mandrel winding. Not only does the heated mandrel winding inherit the advantages of internal curing process, it also greatly improves molding efficiency and quality. This paper introduces the process principle of heated mandrel winding and uses the finite element analysis software FLUENT to carry out the numerical simulation of steam flow and heat transfer during the mandrel heating process, and the simulation results are verified by experiment. According to the simulation results, the distribution and changing course of the flow field and temperature field of the system are obtained, and the relationships between the physical quantities including pressure, temperature and velocity and the parameters of the steam control and channel structure are analyzed.
机译:外部固化方法通常采用热固性纤维复合壳的传统成型过程,使伤口壳体放入热压缩反应器或烘箱中以固化。这种过程极大地限制了模塑效率,因为绕组和固化分别且分开地进行。由于圆柱形壳体的中空结构,可以采用内部固化,这将心轴与高压蒸汽一起加热以实现伤口壳的原位固化。本文研究了新的纤维复合成型过程,名为加热的心轴绕组。不仅加热的心轴绕组继承了内部固化过程的优点,它也大大提高了成型效率和质量。本文介绍了加热心轴绕组的过程原理,并使用有限元分析软件流畅,在心轴加热过程中进行蒸汽流量和热传递的数值模拟,并通过实验验证模拟结果。根据仿真结果,获得了系统的流场和温度场的分布和变化过程,分析了包括压力,温度和速度的物理量与蒸汽控制和通道结构的参数之间的关系。

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