首页> 外文期刊>International Journal of Material Forming: Official Journal of the European Scientific Association for Material Forming - ESAFORM >Study of the ultrasonic compaction process of composite laminates - part I: process modeling
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Study of the ultrasonic compaction process of composite laminates - part I: process modeling

机译:复合材料层压板的超声压制工艺研究-第一部分:工艺建模

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摘要

Recent advances in out-of-autoclave manufacturing processes for composite materials may require the compaction of the pre-preg plies just after placing them. Ultrasonic compactors are a good solution for this task. The quality of the compaction will depend on the frequency and amplitude of the ultrasonic vibration, which produces a viscous heating in the resin. The increase in temperature liquefies the resin, thus helping the air bubbles to escape. The study of how this heat is generated and distributed is fundamental to better understand and optimize the compaction process. In this work, the formulation of a thermomechanical model for the viscous heating of an uncured laminate of pre-preg plies due to ultrasonic vibrations is presented. In addition, a thermal model for the heat transfers to obtain the temperature distribution during the compaction process of composite layers will be shown.
机译:复合材料的高压灭菌器制造工艺的最新进展可能要求在放置预浸料后立即对其进行压实。超声波压实机是完成此任务的良好解决方案。压实的质量将取决于超声振动的频率和幅度,超声振动会在树脂中产生粘性加热。温度升高会使树脂液化,从而帮助气泡逸出。研究如何产生和分配热量是更好地了解和优化压实过程的基础。在这项工作中,提出了一种热力学模型的公式化,该模型用于由于超声波振动而对未固化的预浸料叠层进行粘性加热。另外,将示出用于热传递以在复合层的压实过程期间获得温度分布的热模型。

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