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Comparison of Quasi-static and Cyclic Fatigue Delamination Resistance of Carbon Fiber Reinforced Polymer-Matrix Laminates under Different Mode Loading

机译:碳纤维增强聚合物基层压板在不同模式载荷下的准静态和循环疲劳分层抗力比较

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Delamination resistance data from different carbon-fiber reinforced polymer-matrix (CFRP) composites are compared for different loading modes, i.e., quasi-static and cyclic fatigue, opening tensile mode Ⅰ, in-plane shear mode Ⅱ, and fixed-ratio mixed-mode Ⅰ/Ⅱ. For this, data from round robin tests conducted at the authors laboratories will be complemented by selected results from literature. Questions related to delamination resistance of CFRP composites with implications for composite structural design and testing include, e.g., the determination of threshold values in cyclic fatigue, the question of conservative mode (mode Ⅰ versus mode Ⅱ), approaches for data analysis, and possible analogies in short crack cyclic fatigue between fracture behavior of structural metal alloys and CFRP. The scatter in Paris-type law data analysis of cyclic fatigue tests and the resulting apparent threshold behavior that has implications for composite structural design will be presented. Load measurement resolution yields the major contribution to scatter in displacement controlled fatigue tests. The analogous displacement resolution for load controlled tests is discussed and limitations in test control and of power law displacement data fitting for analysis are pointed out.
机译:比较了不同碳纤维增强聚合物基复合材料在不同加载模式下的抗分层数据,这些加载模式为准静态和循环疲劳,开放拉伸模式Ⅰ,面内剪切模式Ⅱ和固定比例混合模式。模式Ⅰ/Ⅱ。为此,作者实验室进行的循环测试数据将与文献中选定的结果相辅相成。与CFRP复合材料的抗脱层性有关的问题,包括对复合材料结构设计和测试的影响,例如,循环疲劳阈值的确定,保守模式(模式Ⅰ与模式Ⅱ)问题,数据分析方法以及可能的类比结构金属合金的断裂行为与CFRP之间的短裂纹循环疲劳试验将介绍巴黎类型法则对循环疲劳测试的分散性以及由此产生的明显阈值行为,这对复合结构设计具有影响。载荷测量分辨率对位移控制疲劳测试中的散布起了主要作用。讨论了负载控制试验的类似位移分辨率,指出了试验控制的局限性以及指出了适合分析的幂律位移数据的局限性。

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