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Evaluation of temperature effects on low velocity impact damage in composite sandwich panels with polymeric foam cores

机译:温度对聚合物泡沫芯复合夹芯板低速冲击损伤的影响评估

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In this study we investigate the response of closed cell polymeric foam core sandwich panels with woven carbon/epoxy laminate facesheets under low velocity impacts. Two levels of energy, 10 J and 50 J simulating barely visible and visible impact damage categories are examined under cold, room and high temperature conditions. A finite element modeling framework is proposed for the sandwich composite comprising continuum damage, cohesive layers and crushable foam model with isotropic hardening for the core. The model shows how progressive damage in the facesheets, interlaminar damage between the layers and the crushable foam can be used to model low velocity impact and temperature effects. Ultrasonic testing and high speed cameras are used to determine the damage and delamination characteristics. The higher exposure temperatures result in larger damage zones for both the low and high impact energies. The elevated temperature enhanced the penetration rate and indentation depth showing degradations in the out of plane properties. The visible damage test results in significant damage in the core and facesheets dependent on the temperature ranges tested. In the barely visible damage category, the composite facesheet layers attached to the foam experience a tension failure under low energy impact despite surface indications showing no fiber fracture. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在这项研究中,我们研究了低速冲击下碳纤维/环氧树脂层压面板与闭孔聚合物泡沫芯夹芯板的响应。在寒冷,室温和高温条件下,分别模拟了几乎看不见的和可见的冲击损伤类别的10 J和50 J两级能量。提出了一种夹层复合材料的有限元建模框架,该结构包括连续性损伤,内聚层和具有各向同性硬化作用的可破碎泡沫模型。该模型显示了面板中的渐进式损伤,层之间的层间损伤以及可压碎的泡沫如何用于模拟低速冲击和温度效应。超声波测试和高速相机用于确定损坏和分层特征。较高的暴露温度会导致低和高冲击能量的损坏区域更大。升高的温度提高了穿透速率和压痕深度,显示出平面外性能的降低。可见的损坏测试会根据测试的温度范围对型芯和面板造成重大损坏。在几乎看不见的损坏类别中,尽管表面显示没有纤维断裂,但附着在泡沫上的复合面板层在低能量冲击下会发生拉伸破坏。 (C)2015 Elsevier Ltd.保留所有权利。

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