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Rotational moulding of PEEK polymer liners with carbon fibre/PEEK over tape-placement for space cryogenic fuel tanks

机译:带碳纤维/ PEEK的PEEK聚合物衬里的滚塑成型,用于带式放置,用于太空低温燃料箱

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摘要

PEEK polymers are investigated as replacement materials for metallic liners in composite overwrapped pressure vessels (COPVs) for fuel tank applications in space. A novel, integrally heated, rotational moulding tool has been developed to produce PEEK polymer liners, samples of which have then been overwrapped using CF/PEEK in a laser assisted tape-placement (LATP) process to produce demonstrator samples of a polymer lined COPV. Helium permeability testing has shown that the designs are capable of resisting leakage to acceptable levels for fuel storage, while X-ray CT scanning and cryogenic cycling have shown that the current design is capable of resisting crack growth over multiple cycles. Nano-indentation testing has shown that the LATP process has created a region of reduced modulus in the PEEK polymer at the surface of the liner where the CF/PEEK has been tape-laid. This laser-affected zone of reduced polymer modulus in the composite interface region has enabled an enhanced resistance to crack growth formations from thermal residual stresses in comparison to hot plate moulded test samples. (C) 2017 Elsevier Ltd. All rights reserved.
机译:研究了PEEK聚合物作为复合包覆压力容器(COPV)中金属衬里的替代材料,这些材料用于太空油箱。已开发出一种新颖的整体加热旋转模塑工具来生产PEEK聚合物衬里,然后使用CF / PEEK在激光辅助胶带放置(LATP)工艺中将其样品包裹起来,以生产聚合物衬里COPV的演示样品。氦气渗透性测试表明,该设计能够将泄漏抵抗到可接受的水平,以进行燃料存储,而X射线CT扫描和低温循环表明,当前的设计能够抵抗多个循环中的裂纹扩展。纳米压痕测试表明,LATP工艺在衬有CF / PEEK的衬里表面的PEEK聚合物中产生了模量降低的区域。与热板模塑测试样品相比,该激光影响的复合材料界面区域中聚合物模量降低的区域能够增强抵抗由热残余应力引起的裂纹扩展的能力。 (C)2017 Elsevier Ltd.保留所有权利。

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