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Fiber reinforced epoxy resin composite materials using carboxylate-alumoxanes as cross-linking agents

机译:纤维增强环氧树脂复合材料使用羧酸铝氧基作为交联剂

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Chemically functionalized alumina nanoparticles (carboxylate-alumoxanes) are used as the inorganic component of a new class of inorganic-organic hybrid materials. Lysine- or para-hydroxybenzoic acid-derivatized alumoxanes are readily prepared from the reaction of boehmite, [Al(O)(OH)]_n, with the appropriate carboxylic acid. The peripheral organic hydroxides and amines of these carboxylate-alumoxanes either react directly with epoxide resins, such as the diglycidyl ether of bisphenol-A (DER 332), to form a hybrid material, or in the presence of an organi resin and hardener system to form a composite material. SEM and AFM show a uniform distribution of alumina nanoparticles within the resin matrix. The properties and cure times of the alumoxane hybrid and composite materials are distinct from both the pure resins and from a physical blend of the resins with traditional ceramic fillers. A significant increase in thermal stability and tensile strength is observed for both the hybrid and composite resin systems. In addition, both carbon fiber and crbon/Kevlar~circleR matting have been successfully incorporated into the hybrid resin systems resulting in further property improvements.
机译:化学官能化的氧化铝纳米颗粒(羧酸盐的铝氧烷)用作一类新的无机 - 有机杂化材料中的无机成分。赖氨酸或对羟基苯甲酸衍生的铝氧烷可以容易地从勃姆石的反应中,制备的Al(O)(OH)] _ N,用适当的羧酸。这些羧酸盐的铝氧烷的周有机氢氧化物和胺可以直接与环氧化物树脂,如双酚A(DER 332)的二缩水甘油醚反应,以形成混合材料,或者在organi树脂和固化剂体系的存在下,以形成复合材料。 SEM和AFM表明氧化铝纳米颗粒的树脂基质中的均匀分布。铝氧烷的混合和复合材料的性能和固化时间从两个纯树脂和从与传统的陶瓷填料的树脂的物理共混物是不同的。在热稳定性和拉伸强度的增加显著观察到的用于混合动力车和复合树脂系统两者。此外,这两种碳纤维和crbon /凯夫拉尔〜circleR消光已被成功地掺入导致进一步性能改进的混合树脂系统。

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