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Low velocity impact response of sandwich beams with soft cores and carbon nanotube reinforced face sheets based on Extended High Order Sandwich Panel Theory

机译:基于扩展高阶夹心板理论的软芯夹芯梁和碳纳米管增强面板的低速冲击响应

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摘要

Response of sandwich beam with carbon nanotube reinforced composite (CNTRC) face sheets and soft core subjected to the action of an impacting mass based on the Extended High Order Sandwich Panel Theory (EHSAPT) is first analyzed. Distribution of fibers through the thickness of the face sheets could be uniform or functionally graded (FG). Contact force between the impactor and the beam is obtained using the conventional Hertz law. The field equations are derived via the Ritz based applied to the total energy of the system. The solution is obtained in the time domain by implementing the well-known Runge-Kutta method. After examining the validity of the present solution, the effects of distribution of Carbon Nanotubes (CNTs), nanotube volume fraction, core-to-face sheet thickness ratio, initial velocity of the impactor and the impactor mass are studied in detail. Finally, it is concluded that, the highest peak contact force and the lowest indentation of the top face sheet belong to the sandwich beam with V distribution figure of face sheet, followed by the UD and A-ones, respectively. Also, numerical results reveal that employing FG-CNTs in face sheets has a prominent role on impact response of the sandwich panel with soft core. (C) 2017 Elsevier Masson SAS. All rights reserved.
机译:首先分析了基于扩展高阶夹心板理论(EHSAPT)的碳纳米管增强复合材料(CNTRC)面板和软芯对夹心梁的响应。纤维在面板厚度上的分布可以是均匀的,也可以是功能梯度的(FG)。冲击器与梁之间的接触力是使用常规赫兹定律获得的。场方程是通过基于Ritz应用于系统总能量得出的。通过实施众所周知的Runge-Kutta方法,可以在时域中获得解决方案。在检查了本解决方案的有效性之后,详细研究了碳纳米管(CNT)的分布,纳米管的体积分数,芯-面片的厚度比,撞击器的初始速度和撞击器质量的影响。最后得出结论,顶面板的最高峰值接触力和最低压痕属于具有面板V分布图的夹层梁,其次为UD和A-one。而且,数值结果表明,在面板中使用FG-CNT在具有软芯的夹芯板的冲击响应中具有重要作用。 (C)2017 Elsevier Masson SAS。版权所有。

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