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In situ 3D printing of poly-ether-ether-ketone / poly-ether-imide hierarchical cellular foams containing electromagnetic absorbent

机译:含电磁吸收剂的聚醚醚酮/聚醚酰亚胺多级孔泡沫的原位3D打印

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摘要

For the expanding application of light-weight integral structures meeting both structural and physical re-quirements, the development of advanced materials with high performances in multiple functions and their automatically manufacturing processes with mass production potential at low cost has received sustained attention from both academia and industry. Therefore, an in situ 3D printing technology of poly-ether-ether -ketone (PEEK)/ poly-ether-imide (PEI) hierarchical cellular foam containing electromagnetic absorbent was proposed in this paper. Fillers with electromagnetic functions, nano-carbon and Fe3O4, were introduced into the blend of two high-performance thermoplastics, semicrystalline PEEK and amorphous PEI, and a lightweight nanocomposite foam with functionalized hierarchical cellular structure in micrometer scale was manufactured by combining in situ foaming process into 3D printing. The in situ foaming mechanism of the materials was carefully studied and optimal process parameters were obtained. When the desorption time of materials is 48 h, the 3D printed foams present the smallest cell size and the highest cell density. The foaming behavior of this special material is different from that of batch foaming. Mechanical tests show that the flexural modulus in-creases with decreasing cell size and increasing cell density. In X-band (8.2-12.4 GHz), the hierarchical cellular structure with gradient layers performs low reflectivity and absorption-dominant EMI shielding properties. The lightweight nanocomposite foam manufactured by the in situ 3D printing technology have great potential for applications such as functional-structural integrated skins in aerospace, protection of high-power instruments and 5 G communication products.
机译:轻量级的扩大应用同时满足这两种结构和整体结构物理re-quirements,的发展先进材料和高性能多种功能和自动制造工艺和大规模生产以低成本获得持续的潜力来自学术界和产业界的关注。因此,一个原位的3 d打印技术poly-ether-ether酮(PEEK) / poly-ether-imide(裴)层次细胞泡沫包含提出了电磁吸收剂纸。碳和Fe3O4引入混合两种高性能热塑性塑料,半晶质的PEEK和无定形裴泡沫轻质纳米复合材料与功能化分层蜂窝结构千分尺规模生产的结合现场发泡过程分为3 d打印。现场发泡材料的机制仔细研究和最佳工艺参数被获得。材料是48 h, 3 d印刷泡沫最小的细胞大小和最高的细胞密度。材料是不同于批量发泡。力学测试表明,弯曲模量大幅提高,减少细胞大小和增加细胞密度。GHz),分层蜂窝结构执行低反射率和梯度层absorption-dominant EMI屏蔽特性。轻量级的纳米复合材料生产的泡沫有很大的原位3 d打印技术潜在的应用程序等functional-structural综合皮肤航空航天、大功率设备的保护和5 G通信产品。

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