首页> 外文会议>SAMPE EUROPE International Conference >OPTIMAL THERMOPLASTIC COMPOSITE MATERIAL FOR LOW COST FABRICATION OF LARGE COMPOSITE AEROSPACE STRUCTURES USING NASA RESINS OR POSS NANOPARTICLE MODIFICATIONS
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OPTIMAL THERMOPLASTIC COMPOSITE MATERIAL FOR LOW COST FABRICATION OF LARGE COMPOSITE AEROSPACE STRUCTURES USING NASA RESINS OR POSS NANOPARTICLE MODIFICATIONS

机译:用于使用NASA树脂或POSS纳米粒子修饰的大型复合航空航天结构的低成本制造的最佳热塑性复合材料

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Thermoplastic laminates in situ consolidated via tape or tow placement require full mechanical properties. Realizing full properties requires resin crystallinity to be controlled - partial crystallinity leads to unacceptably low laminate compression properties. There are two approaches: utilize an amorphous matrix resin; or place material made from a semi-crystalline resin featuring kinetics faster than the process. In this paper, a matrix resin evaluation and trade study was completed with commercial and NASA amorphous polyimides on the one hand, and with PEKK mixed with POSS nanoparticles for accelerated crystallinity growth on the other. A new thermoplastic impregnated material, 6 mm wide (0.25-in) AS-4 carbon/LaRC 8515 dry polyimide tow, was fabricated. Since LaRC 8515 is fully amorphous, it attains full properties following in situ consolidation, with no post processing required to build crystallinity. The tow in situ processing was demonstrated via in situ thermoplastic filament winding it into rings.
机译:通过带或牵引放置的原位原位的热塑性层压板需要完全机械性能。实现全部性质需要树脂结晶度待控制 - 部分结晶性导致不可接受的低层压压缩性能。有两种方法:利用非晶基质树脂;或从半晶树脂制成的材料,其具有比工艺更快的动力学。在本文中,一方面用商业和美国国家航空航天局无定形聚酰亚胺完成了基质树脂评价和贸易研究,并用PEKK与POSS纳米颗粒混合,用于加速结晶性生长。制造了一种新的热塑性浸渍材料,制造6mm宽(0.25英寸)至-4碳/ LARC 8515干燥聚酰亚胺丝丝。由于LARC 8515是完全无定形的,因此它在原位整合之后达到全部性质,没有所需的后处理来构建结晶度。通过原位热塑性灯丝绕到环,牵引原位处理。

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