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首页> 外文期刊>Materialpruefung: Werkstoffe und Bauteile, Forschung Prufung Anwendung >In situ computed tomography for the characterization of the fatigue damage development in glass fiber-reinforced polyurethane
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In situ computed tomography for the characterization of the fatigue damage development in glass fiber-reinforced polyurethane

机译:原位计算断层扫描,用于表征玻璃纤维增强聚氨酯的疲劳损伤发育

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摘要

Fiber-reinforced polymers show a continuous material degradation under cyclic loading, which is why damage development has to be investigated for an exact assessment of fatigue properties. In order to obtain information on damage in the internal volume, conventional mechanical test methods require accompanying support by further developed techniques. In this study, a methodology for in situ computed tomography has been developed and applied to glass fiber-reinforced polyurethane. Polyurethane has advantages over epoxy in terms of impact strength, damage tolerance and abrasion, which are important for various applications. Fatigue properties, on the other hand, are largely unknown. Optimized imaging parameters for computed tomography have been established in order to obtain detailed 3D volume images suitable for analysis. The 3D volumes of the damage state were recorded according to defined fatigue load steps and used to evaluate and correlate the damage development with the mechanical properties. The results confirm known damage characteristics of fiber-reinforced composites but also show material and structure-related differences in crack formation and propagation.
机译:纤维增强聚合物在环状载荷下显示出连续的物质降解,这就是为什么必须研究损伤的损伤开发以确切地评估疲劳性能。为了获得有关内部体积损坏的信息,常规的机械测试方法需要通过进一步开发的技术随附的支持。在该研究中,已经开发出原位计算断层扫描的方法,并应用于玻璃纤维增​​强聚氨酯。在碰撞强度,损伤耐受性和磨损方面具有对环氧树脂的优点,这对于各种应用很重要。另一方面,疲劳性能在很大程度上是未知的。已经建立了用于计算断层扫描的优化成像参数,以便获得适合分析的详细的3D体积图像。根据定义的疲劳负载步骤记录损伤状态的3D体积,并用于评估和与机械性能进行损伤开发。结果证实了纤维增强复合材料的已知损伤特性,但也显示出裂缝形成和繁殖的材料和结构相关的差异。

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