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A cut-ply specimen for the mixed-mode fracture toughness and fatigue characterisation of FRPs

机译:用于FRp的混合模式断裂韧性和疲劳表征的切割层试样

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摘要

© 2015 Elsevier Ltd.The characterisation of mixed-mode fracture toughness and fatigue delamination growth in fibre-reinforced composites is crucial for assessing the integrity of structural elements in service. An asymmetric cut-ply coupon (ACP) loaded in four-point bending is here proposed to carry out the aforementioned characterisations. Analytical expressions of the energy release rate and mode-mixity for the ACP are derived and validated by means of finite element analysis. A fracture toughness and fatigue characterisation of the carbon/epoxy material IM7/8552 is carried out via ACP specimens. It is proved that the material data obtained from ACP specimens match those generated using ASTM standard mixed-mode bending (MMB) coupons. The main reason for the introduction of the ACP test resides in its applicability to characterisation scenarios where measuring the delamination length with optical means, as required for MMB coupons, is difficult. Such scenarios include the investigation of static and fatigue delamination growth at low and high temperatures, which requires the usage of environmental chambers. This poses significant constraints in terms of volume available for the test rigs, and, most importantly, limitations on visual access to observe delamination propagation. However, the manufacturing of ACP coupons is more complex than for MMB specimens and the testing requires several additional precautions that are here discussed in detail.
机译:©2015 Elsevier Ltd.纤维增强复合材料的混合模式断裂韧性和疲劳分层增长的表征对于评估使用中的结构元件的完整性至关重要。在此提出了以四点弯曲方式加载的非对称切割片状试样(ACP)以实现上述特征。通过有限元分析推导并验证了ACP的能量释放率和模式混合的解析表达式。碳/环氧树脂材料IM7 / 8552的断裂韧性和疲劳特性通过ACP试样进行。事实证明,从ACP样品获得的材料数据与使用ASTM标准混合模式弯曲(MMB)试样生成的材料数据相匹配。引入ACP测试的主要原因在于其适用于表征场景,在这些场景中,难以通过光学手段测量分层长度(如MMB试样所需)。这样的场景包括调查在低温和高温下静态和疲劳分层的增长,这需要使用环境室。对于可用于测试设备的体积而言,这构成了很大的限制,最重要的是,对于观察分层传播的可见通道也存在限制。但是,ACP试样的制造要比MMB试样复杂得多,并且测试还需要一些其他预防措施,在此进行了详细讨论。

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