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首页> 外文期刊>Materials Science and Engineering. A, Structural Materials: Properties, Microstructure and Processing >Carbon fabric reinforced polyetherimide composites: Influence of weave of fabric and processing parameters on performance properties and erosive wear
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Carbon fabric reinforced polyetherimide composites: Influence of weave of fabric and processing parameters on performance properties and erosive wear

机译:碳纤维增强聚醚酰亚胺复合材料:织物的织造和加工参数对性能和腐蚀磨损的影响

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摘要

Woven carbon fabric reinforced (55 vol.%) polyetherimide (PEI) composites were fabricated using three types of weaves viz. plain (P), twill (T), and satin-4 H (S) by impregnation technique. Three more similar composites were fabricated with film technique to study the influence of both, weave of fabric and processing technique on the performance properties of the total seven composites including neat PEI. The composites were evaluated for physical and mechanical properties along with erosion wear behavior studied in identical conditions. In almost all properties viz. tensile strength (TS), modulus (TM), elongation to break (e), flexural strength and modulus, interlaminar shear strength (ILSS), etc., film technique proved far inferior to impregnation technique because of improper wetting of fiber strands, as evidenced by SEM studies. CF reinforcement enhanced all the properties of PEI manifold except elongation to break. None of the weaves proved best performer in all the mechanical properties. In case of erosive wear studies, plain weave composite proved slightly better than satin weave composite. Composite with twill weave proved poorest performer. In case of film technique, however, trends were different where plain weave composite proved poorest and satin proved best. Efforts were made to correlate various strength properties with wear resistance W_R. The factor (elongation x toughness) showed fairly good correlation with W_R. SEM studies were conducted to understand wear mechanisms.
机译:使用三种类型的编织结构制造了碳纤维织物增强的(55体积%)聚醚酰亚胺(PEI)复合材料。普通(P),斜纹(T)和satin-4 H(S)的浸渍技术。用薄膜技术制造了另外三种相似的复合材料,以研究织物的织造和加工技术对包括纯PEI在内的总共七种复合材料的性能的影响。对复合材料的物理和机械性能以及在相同条件下研究的腐蚀磨损行为进行了评估。在几乎所有属性中。拉伸强度(TS),模量(TM),断裂伸长率(e),弯曲强度和模量,层间剪切强度(ILSS)等,由于纤维股线润湿不当,薄膜技术被证明远不如浸渍技术。 SEM研究证明。 CF增强增强了PEI歧管的所有性能,除了断裂伸长率。在所有机械性能中,没有一种编织物表现出最佳性能。在进行侵蚀性磨损研究的情况下,平纹复合材料比缎纹复合材料稍好。斜纹编织复合材料表现最差。但是,在薄膜技术的情况下,在平纹复合材料最差,缎面最好的情况下,趋势有所不同。努力使各种强度特性与耐磨性W_R相关。因子(伸长率x韧性)与W_R表现出相当好的相关性。进行了SEM研究以了解磨损机理。

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