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Simulation and optimization of mandrel-heating process for connposite shells using internal heat-curing method

机译:内热固化法模拟空心壳芯棒加热工艺

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摘要

Internal heat-curing is a new method involving heating a mandrel inside a composite shell with steam to make a composite cure. High-quality composite shells can be efficiently molded using this method. However, the mandrel temperature does not change as expected during heating, and the temperature difference on the mandrel is large. In order to analyze the reasons for these problems, a mandrel-heating process in which an internal heat-curing method is applied to the composite shell is studied. A numerical simulation of the mandrel-heating process for a slender cylinder-shaped pipe is carried out, and the mandrel structure is optimized according to the simulation results. Temperature tests on the mandrel show that the uniformity of the optimized mandrel temperature is improved. The research in this article provides a basis for the temperature control and structural design of mandrels and their inner channels. Heating at the expected temperature is achieved, ensuring the quality of the formed composite shell.
机译:内部热固化是一种新方法,涉及用蒸汽加热复合壳内部的心轴以进行复合固化。使用这种方法可以有效地成型高质量的复合材料外壳。然而,芯轴温度在加热期间不会如预期的那样变化,并且芯轴上的温差较大。为了分析产生这些问题的原因,研究了一种将内部热固化方法应用于复合材料壳的芯棒加热工艺。对细长圆柱管的芯棒加热过程进行了数值模拟,并根据仿真结果优化了芯棒结构。在心轴上进行的温度测试表明,优化后的心轴温度的均匀性得到了改善。本文的研究为心轴及其内部通道的温度控制和结构设计提供了基础。实现了在预期温度下的加热,从而确保了成型复合壳的质量。

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