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Flexural Property and Mode I Interlaminar Fracture Toughness of Plain Woven Carbon Fiber Reinforced Plastics after Water Absorption and Freezing

机译:弯曲性能和模式I InterlaMINAR滑动碳纤维增强塑料吸水和冻结后的裂缝韧性

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In this study, the effects of water absorption and freezing on flexural property and mode I interlaminar fracture toughness of Carbon Fiber Reinforced Plastics (CFRP) were investigated. Plain woven carbon fiber was used as reinforcement. Epoxy resin was used as matrix. Water absorption test was conducted at 90°C for 24, 100, 250 and 500 hrs. After water absorption, the specimens were kept under -15°C for 24 hrs. Static three point flexural and Double Cantilever Beam (DCB) tests were conducted after water absorption and freezing. As a result, flexural strength and mode I interlaminar fracture toughness of CFRP after water absorption and freezing decreased with an increase of immersion time. Flexural modulus of CFRP did not change after water absorption and freezing. And flexural strength and mode I interlaminar fracture toughness of frozen CFRP after water absorption were lower than those of water absorbed CFRP. From the observation using scanning electron microscope, it is understood that the water absorption and freezing affects the interfacial adhesion between fiber and matrix.
机译:在这项研究中,研究了吸水性和冻结对弯曲性能和模式I的影响碳纤维增强塑料(CFRP)的抗弯曲性能和模式。用普通的编织碳纤维用作增强剂。环氧树脂用作基质。吸水试验在90℃下进行24,100,250和500小时。吸水后,试样在-15℃下保持24小时。在吸水和冷冻后进行静态三点弯曲和双悬臂梁(DCB)试验。结果,随着浸入时间的增加,水吸收和冷冻后CFRP的弯曲强度和模型I InterlaMINAR裂缝韧性降低。在吸水和冷冻后CFRP的弯曲模量没有改变。和弯曲强度和模式I在吸水后冷冻CFRP的InterlaMINAR断裂韧性低于吸收的CFRP。从使用扫描电子显微镜观察,可以理解,吸水和冷冻影响纤维和基质之间的界面粘附。

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