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Effect of hot water on the mechanical performance of unidirectional carbon fiber-reinforced nylon 6 composites

机译:热水对单向碳纤维增强尼龙6复合材料的机械性能的影响

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摘要

One of the major concerns of carbon fiber-reinforced nylon 6 composites (CF/Nylon 6) is its sensitivity to environmental degradation, especially hygrothermal aging. In this study, neat nylon 6 plates and unidirectional CF/Nylon 6 laminates with different fiber orientations manufactured by hot compression method were subjected to water absorption tests by immersing them in 80 degrees C and 98 degrees C hot water for various time durations. The corresponding flexural mechanical properties, including the flexural modulus and flexural strength, of the as-prepared samples before and after water absorption were evaluated by using three-point bending tests. The effects of immersion time, fiber orientation, and water temperature on the flexural properties are discussed. Flexural cyclic tests were conducted to evaluate the stiffness degradation of neat nylon 6 and unidirectional CF/Nylon 6 laminates. Optical observation and scanning electron microscopy were used to observe the fracture behavior of unidirectional CF/Nylon 6 laminates before and after water absorption. Results indicated that the flexural modulus and strength of unidirectional CF/Nylon 6 laminates in different fiber orientations decreased by approximate to 8%-60% and approximate to 40%-60% after hot water immersion, which was mainly caused by the weakened matrix (the cleavage reaction of the main chain and plasticization of the matrix) and weakened interfacial properties (attack on the interface by hot water). The fracture behavior of 0 degrees CF/Nylon 6 laminates after water immersion tended to be more ductile than those without hot water immersion.
机译:碳纤维增强尼龙6复合材料(CF /尼龙6)的主要问题之一是其对环境降解,尤其是湿热老化的敏感性。在该研究中,通过将通过热压缩法制造的不同纤维取向的整齐尼龙6平板和单向CF /尼龙6层叠在80℃和98摄氏度的热水中进行吸水试验,以进行各种时间持续时间。通过使用三点弯曲试验评估吸水前后的制备样品的相应弯曲力学性能,包括弯曲模量和弯曲强度。讨论了浸渍时间,纤维取向和水温对弯曲性能的影响。进行弯曲环状试验以评估整齐尼龙6和单向CF /尼龙6层压材料的刚度降解。光学观察和扫描电子显微镜用于观察在吸水之前和之后的单向CF /尼龙6层压板的断裂行为。结果表明,不同纤维取向的单向CF /尼龙6层压板的弯曲模量和强度通过近似为8%-60%,热水浸渍后的近似为40%-60%,主要由弱化基质引起的(基质主链和塑化的裂解反应)和弱化界面性质(热水界面的攻击)。在水浸泡后0度Cf /尼龙6层压物的断裂行为往往比没有热水浸渍的那些更韧性。

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