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首页> 外文期刊>Journal of Composite Materials >Limiting Mechanisms of Mode I Interlaminar Toughening of Composites Reinforced with Aligned Carbon Nanotubes
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Limiting Mechanisms of Mode I Interlaminar Toughening of Composites Reinforced with Aligned Carbon Nanotubes

机译:取向碳纳米管增强复合材料的I型层间增韧的限制机理

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Analytical models are presented for the Mode I interlaminar fracture of laminated composites reinforced with aligned carbon nanotubes (CNT_s). The models are based on the crack-closure technique for fiber bridging, where the aligned CNT_s enhance toughness mechanistically through either pullout (frictional sliding) from the matrix or sword-in-sheath sliding. The models are independent of the scale of reinforcement and demonstrate significant enhanced toughening for nanoscale reinforcement (CNT_s) as opposed to typical mm-scale reinforcements (stitches and Z-pins). Complete analytical expressions for crack-growth resistance (G_R(Δ_a)) are obtained including normalized closed-form expressions for steady-state toughness for any scale of z-direction fiber reinforcement. The model is verified by comparison to previous experimental results for Z-pins and also aligned CNT_s, and is used to define regimes where the competing mechanisms of toughening are operative. CNT strength is a key parameter limiting toughness enhancement in the frictional pullout mechanism.
机译:提出了用取向碳纳米管(CNT_s)增强的层压复合材料的I型层间断裂的分析模型。这些模型基于用于纤维桥接的裂纹闭合技术,其中对齐的CNT_s通过从基体中拉出(摩擦滑动)或鞘中剑滑动而机械地增强韧性。这些模型与增强材料的尺寸无关,并且证明了纳米级增强材料(CNT_s)的显着增强韧性,与典型的毫米级增强材料(针和Z销)相反。获得了抗裂纹扩展性的完整分析表达式(G_R(Δ_a)),包括针对任何规模的z方向纤维增强材料的稳态韧性的标准化闭合形式表达式。通过与Z销和对齐的CNT_s的先前实验结果进行比较来验证该模型,并用于定义增韧的竞争机制起作用的状态。 CNT强度是限制摩擦拉拔机制中韧性提高的关键参数。

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