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Experimental and numerical study on the low-velocity impact behavior of foam-core sandwich panels

机译:泡沫芯夹芯板低速冲击行为的实验与数值研究

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This paper presents the results of an experimental and numerical study on the low-velocity impact behavior of foam-core sandwich panels. Panels with polyurethane foam core and plain weave carbon fabric laminated face-sheets were subjected to low-velocity impact with hemispherical steel impactors of different diameters at various energy levels. Digital image correlation technique (a non-contact measuring system) was used to measure the real-time displacement and velocity of the impactor, and the back surface out-of-plane panel deflection time-history. A load sensor was used to record the contact force time-history. Non-destructive inspection and destructive sectioning methods were used to evaluate the internal and external damage on the sandwich panels after impact. The effects of impact variables such as impactor diameter, impact energy, and sandwich panel configuration parameters, such as face-sheet thickness and foam core thickness on the impact behavior and resulting impact damage states were studied. Based on the generalized Schapery theory, a progressive damage model is developed to describe the nonlinear behavior of plain weave carbon laminates during impact. The foam core was modeled as a crushable foam material. Coupon tests were conducted to determine the input parameters for the progressive damage model and the foam crushing properties. Three-dimensional finite element models were implemented to analyze the impact response incorporating the progressive damage model. Results from the numerical models were found to agree well with experimental observations.
机译:本文介绍了泡沫芯夹心板低速冲击行为的实验和数值研究结果。具有聚氨酯泡沫芯和平纹碳纤维织物层压面板的面板在不同的能量水平下受到不同直径的半球形钢质冲击器的低速冲击。使用数字图像关联技术(非接触式测量系统)来测量冲击器的实时位移和速度,以及背面平面外面板的挠曲时间历史。负载传感器用于记录接触力的时间历史。使用非破坏性检查和破坏性切片方法来评估冲击后夹心板上的内部和外部损坏。研究了冲击变量(例如冲击器直径,冲击能量和夹芯板配置参数,例如面板厚度和泡沫芯厚度)对冲击行为和产生的冲击破坏状态的影响。基于广义Schapery理论,建立了渐进式损伤模型来描述平纹碳层压板在冲击过程中的非线性行为。将泡沫芯建模为可压碎的泡沫材料。进行了优惠券测试以确定渐进式损伤模型的输入参数和泡沫破碎特性。实施了三维有限元模型以结合渐进式损伤模型来分析冲击响应。发现数值模型的结果与实验观察非常吻合。

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