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Modified foam cores for full thermoplastic composite sandwich structures

机译:用于全热塑性复合夹层结构的改性泡沫芯

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摘要

Full thermoplastic composite sandwich structures with a foam core offer the possibility to be manufactured by fusion bonding in significant shorter cycle times than thermoset-based sandwiches. However, the application of foam cores results in lower mechanical properties such as compression and shear strength compared to honeycomb cores, therefore foam-based sandwiches cannot compete with sandwich structures based on Aramid/phenolic honeycomb cores, the current state of the art. In order to improve the mechanical performance of foam core-based sandwiches while maintaining their advantages, concepts to reinforce the foams were developed in this study. By introducing rods either orthogonally or diagonally to the skin plane, which are fusion bonded to the skins during processing, the compression and shear properties can be improved by up to 1000% and 72%, respectively. Even when correcting for the weight increase, an improved specific compression strength could be achieved. And therefore, the pinning looks especially promising when only applied locally in highly loaded areas for example.
机译:具有泡沫芯的全热塑性复合夹层结构提供了通过融合粘合制造的可能性,而不是基于热固性的三明治的循环次数。然而,与蜂窝芯相比,泡沫芯的施加导致较低的机械性能,例如压缩和剪切强度,因此基于泡沫的夹心不能基于芳族聚酰胺/酚蜂窝芯,所列现有技术的夹层结构竞争。为了提高泡沫芯的三明治的机械性能同时保持其优点,在本研究中开发了加强泡沫的概念。通过在加工过程中掺入皮肤粘合的皮肤平面的皮肤平面上引入棒材,可以分别提高压缩和剪切性能高达1000%和72%。即使在校正重量增加时,也可以实现改进的特定压缩强度。因此,当例如在高负载区域中仅在局部应用时,钉扎看起来特别有希望。

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