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磁辅助复合材料制造:一种在真空袋/铺层工艺中实现高固结压力的灵活新技术。

Magnet Assisted Composite Manufacturing: A Flexible New Technique for Achieving High Consolidation Pressure in Vacuum Bag/Lay-Up Processes.

作者信息

Pishvar Maya, Amirkhosravi Mehrad, Altan M Cengiz

机构信息

School of Aerospace and Mechanical Engineering, University of Oklahoma.

School of Aerospace and Mechanical Engineering, University of Oklahoma;

出版信息

J Vis Exp. 2018 May 17(135):57254. doi: 10.3791/57254.

Abstract

This work demonstrates a protocol to improve the quality of composite laminates fabricated by wet lay-up vacuum bag processes using the recently developed magnet assisted composite manufacturing (MACM) technique. In this technique, permanent magnets are utilized to apply a sufficiently high consolidation pressure during the curing stage. To enhance the intensity of the magnetic field, and thus, to increase the magnetic compaction pressure, the magnets are placed on a magnetic top plate. First, the entire procedure of preparing the composite lay-up on a magnetic bottom steel plate using the conventional wet lay-up vacuum bag process is described. Second, placement of a set of Neodymium-Iron-Boron permanent magnets, arranged in alternating polarity, on the vacuum bag is illustrated. Next, the experimental procedures to measure the magnetic compaction pressure and volume fractions of the composite constituents are presented. Finally, methods used to characterize microstructure and mechanical properties of composite laminates are discussed in detail. The results prove the effectiveness of the MACM method in improving the quality of wet lay-up vacuum bag laminates. This method does not require large capital investment for tooling or equipment and can also be used to consolidate geometrically complex composite parts by placing the magnets on a matching top mold positioned on the vacuum bag.

摘要

这项工作展示了一种协议,该协议使用最近开发的磁辅助复合材料制造(MACM)技术来提高通过湿铺真空袋工艺制造的复合材料层压板的质量。在该技术中,永磁体用于在固化阶段施加足够高的固结压力。为了增强磁场强度,从而增加磁压实压力,磁体放置在磁性顶板上。首先,描述了使用传统湿铺真空袋工艺在磁性底部钢板上制备复合材料铺层的整个过程。其次,说明了一组以交替极性排列的钕铁硼永磁体在真空袋上的放置方式。接下来,介绍了测量复合材料成分的磁压实压力和体积分数的实验步骤。最后,详细讨论了用于表征复合材料层压板微观结构和力学性能的方法。结果证明了MACM方法在提高湿铺真空袋层压板质量方面的有效性。该方法不需要在模具或设备上进行大量资本投资,并且通过将磁体放置在位于真空袋上的匹配顶模上,还可用于固结几何形状复杂的复合材料部件。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d7d1/6101221/43ec7a0a16ae/jove-135-57254-11.jpg

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