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NONDESTRUCTIVE CHARACTERIZATION/EVALUATION OF FUNCTIONAL SANDWICH AND HYBRID CARBON-CARBON COMPOSITES

机译:功能性夹层和杂交碳复合材料的无损特征/评价

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Carbon/carbon (C/C) composites were developed on a conceptual basis with a goal of developing low cost functional composites. The current approach in choosing a precursor material system deviates from conventional C/C systems in that nonwoven carbon mat reinforcement is used in conjunction with continuous fabric. C/C composite systems considered in this study are classified into two categories; hybrid and sandwich. These composites were fabricated from continuous woven carbon fabric in plain, eight harness satin (8HS) and stretch broken weave architectures along with nonwoven carbon mat reinforcement. In sandwich composites, the nonwoven mat is sandwiched between continuous fabric reinforcement; while in hybrid composites, the nonwoven mat is alternated with continuous reinforcement. Ultrasonic and vibration based nondestructive evaluation/characterization (NDE/C) was conducted at three processing stages, namely; as-cured, after first carbonization and after first densification. Ultrasonic velocity measurements in the in-plane and through-the-thickness directions were found to be influenced by the evolving material microstructure and fabric architecture. Vibration damping of sandwich and hybrid composites was found to be an order of magnitude higher than conventional woven C/C composites. Acoustic emission (AE) signatures from the two composite systems were correlated to matrix cracking, fiber filament and bundle fracture, onset and occurrence of delamination and failure of the nonwoven layer(s). With regard to processing, the incorporation of nonwoven carbon mat in conjunction with continuous reinforcement enabled rapid infiltration during densification stage of sandwich and hybrid C/C composites. [References: 11]
机译:碳/碳(C / C)复合材料是在概念性的基础上开发的,其目的是开发低成本功能复合材料。选择前体材料系统的目前方法偏离在非织造碳垫加强件中与连续织物结合使用的传统C / C系统。本研究中考虑的C / C复合系统分为两类;杂交和三明治。这些复合材料由普通的连续编织碳织物制成,八个线束缎面(8HS)并拉伸破碎的编织架构以及非织造碳垫加固。在夹心复合材料中,非织造垫夹在连续织物加固之间;在混合复合材料中,非织造垫与连续加强交替。超声波和基于振动的非破坏性评估/表征(NDE / C)在三个处理阶段进行,即;在第一次碳化后和首次致密化后固化。发现在面内和厚度方向上的超声速度测量受到不断变化的材料微观结构和织物结构的影响。发现夹层和混合复合材料的振动阻尼是比常规编织C / C复合材料高的数量级。来自两个复合系统的声学发射(AE)签名与基质裂化,纤维长丝和束断裂,发作和非织造层失效的发生和发生。关于加工,结合连续增强的非织造碳垫在夹层和杂交C / C复合材料的致密化阶段提供快速渗透。 [参考:11]

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