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Compression after impact performance of carbon-fiber foam-core sandwich composites in low temperature arctic conditions

机译:碳纤维泡沫芯夹芯复合材料在低温北极条件下的冲压性能

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This study investigates the compression after impact (CAI) behavior of carbon-fiber foam-core sandwich composites in low temperature arctic conditions. Low-velocity impact and CAI tests are experimentally conducted across temperature from -70 degrees C to 23 degrees C. Results show higher compressive strength for non-impacted specimens at low temperature. However, upon impact, severe damage and complex failure modes at low temperature lead to significant reduction in CAI strength by 60%. X-ray micro-computed tomography reveal additional CAI damage mechanisms, such as auxiliary facesheet matrix cracking, localized back facesheet delaminationinduced buckling, and front facesheet debonding. The types of CAI damage modes and failure locations are apparently different for room and low temperature conditions. The findings of this study are supported by a newly proposed analytical model that predicts CAI performance using fracture mechanics based concepts. This work evidently demonstrates that the damage tolerance of sandwich composites is severely reduced at low temperature conditions.
机译:本研究研究了低温北极条件下碳纤维泡沫芯夹层复合材料的冲击(CAI)行为后的压缩。低速撞击和CAI测试在-70℃至23℃的温度下进行实验进行。结果显示出低温下的非撞击样品的抗压强度。然而,在撞击时,低温下严重损伤和复杂的失效模式导致CAI强度的显着降低60%。 X射线微计算机断层扫描显示额外的CAI损坏机制,例如辅助面板矩阵裂缝,本地化背面面板分层引出的屈曲和前置面板剥离。 CAI损坏模式和故障位置的类型对于房间和低温条件显然是不同的。该研究的发现得到了一种新提出的分析模型,可以使用基于裂缝力学的概念预测CAI性能。这项工作明显表明,在低温条件下夹心复合材料的损伤耐受性严重降低。

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