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首页> 外文期刊>Engineering Structures >Three-dimensional elastic-plastic pulse response and energy absorption of curved composite sandwich panel using DQ - Newmark method
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Three-dimensional elastic-plastic pulse response and energy absorption of curved composite sandwich panel using DQ - Newmark method

机译:使用DQ - Newmark方法三维弹性塑料脉冲响应和弯曲复合夹芯板的能量吸收

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摘要

The current study aims to present a three-dimensional numerical analysis to predict the elastic-plastic behavior of a single-curvature, simply supported, composite sandwich panel. The PVC foam core is modeled with isotropic elastic-perfectly plastic properties based on the extended non-linear higher-order sandwich panel theory. An efficient and accurate numerical approach, a combination of differential quadrature, and Newmark methods were implemented to distinguish panel layers' deformations and stresses. The non-linear governing partial differential equations of motion are discretized and reduced to ordinary differential equations by applying the differential quadrature method (DQM) and are solved using the Newmark method. The various failure modes of the sandwich panel, including facesheet fracture, foam shear fracture, and foam yield were investigated. The stress components and transient responses obtained from the present method are compared with the finite element solutions using commercial software ANSYS and also compare with those reported in the literature and good agreement is achieved. It is observed that significantly less computational time and hardware capacity for the proposed method is required with respect to the finite element solution. A parametric study proved that sandwich panel with H100 foam core has the highest energy absorption and this parameter increases with increasing the span of the panel.
机译:目前的研究旨在提出三维数值分析,以预测单曲率的弹性塑性行为,简单地支撑,复合夹心板。 PVC泡沫核心以各向同性的弹性 - 完美的塑性特性为基础,基于延伸的非线性高级夹心面板理论。实现了高效和准确的数值方法,实现了差分正交和纽马克方法的组合,以区分面板层的变形和应力。通过应用差分正交方法(DQM)并使用Newmark方法来离散化和减少运动的非线性控制偏微分方程并减少到常微分方程。研究了夹层面板的各种故障模式,包括面分裂缝骨折,泡沫剪切裂缝和泡沫产率。将从本方法获得的应力分量和瞬态响应与使用商业软件ANSYS的有限元解决方案进行比较,并与文学中报告的那些相比,实现了良好的协议。观察到,对于有限元解决方案,需要显着较低的计算时间和所提出的方法的硬件容量。参数研究证明,具有H100泡沫芯的夹心板具有最高的能量吸收,并且该参数随着面板的跨度而增加。

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