Low speed impact on sandwich beam with flexible core and face sheets reinforced with FG-CNTs

Manar Hamid Jasim, A. M. Al-araji
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Abstract

Purpose The purpose of this study is to model the theory of the low-velocity impact (LVI) process on sandwich beams consisting of flexible cores and face sheets reinforced with functionally graded carbon nanotubes (CNTs). Design/methodology/approach A series of parameters derived from molecular dynamics are used to consider the size scale in the mixture rule for the combination of CNTs and resin. A procedure involving the use of the first-order shear deformation theory of the beam is used to provide the displacement field of the sandwich beam. The energy method and subsequently the generalized Lagrange method are used to derive the motion equations. Due to the use of Hertz’s nonlinear theory to calculate the contact force, the equations of motion are nonlinear. Validation of the problem is carried out by comparing natural frequencies with other papers. Findings The influence of a series of parameters such as CNTs distributions pattern in the face sheets, the influence of the CNTs volume fraction and the influence of the core thickness to the face sheets thickness ratio in the issue of LVI on sandwich beams with clamped-clamped boundary conditions is investigated. The result shows that the type of CNTs pattern in the face sheet and the CNTs volume fraction have a very important effect on the answer to the problem, which is caused by the change in the value of the Young’s modulus of the beam at the contact surface. Changes in the core thickness to the face sheets thickness ratio has little effect on the impact response. Originality/value Considering the important application of sandwich structures in vehicles, aviation and ships, in this research, sandwich beams consisting of flexible core and CNTs-reinforced face sheets are investigated under LVI.
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夹层梁受到的低速冲击,夹层梁的柔性芯材和面材使用 FG-CNT 加固
本研究的目的是模拟由功能分级碳纳米管(CNTs)增强的柔性芯材和面片组成的夹层梁的低速冲击(LVI)过程理论。使用梁的一阶剪切变形理论提供夹层梁的位移场。能量法和随后的广义拉格朗日法用于推导运动方程。由于使用赫兹非线性理论计算接触力,因此运动方程是非线性的。研究结果研究了一系列参数,如 CNTs 在面片中的分布模式、CNTs 体积分数的影响以及芯材厚度与面片厚度比对夹层梁 LVI 问题的影响。结果表明,面片中 CNTs 图案的类型和 CNTs 体积分数对问题的答案有非常重要的影响,这是由接触面处梁的杨氏模量值变化引起的。考虑到夹层结构在车辆、航空和船舶中的重要应用,本研究对由柔性芯材和 CNT 增强面片组成的夹层梁进行了低速冲击响应研究。
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