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Numerical and experimental study on free vibration of 3D-printed polymeric functionally graded plates

机译:3D打印聚合物功能梯度板自由振动的数值和实验研究

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摘要

The paper presents the free vibration analysis of simply supported 3D printed polymeric functionally graded (FG) plates with variation of material stiffness and density along their length. The analytical formulation based on Higher-Order Shear Deformation Theory (HSDT) accounts for both the shear deformation and thickness stretching effect by a sinusoidal variation of the displacement field across the thickness. The problem is then modelled using the finite element (FE) method. The FE solutions are obtained using linear hexahedral solid elements with spatially graded property distribution at different Gauss points, which is implemented by a subroutine (USDFLD) in the ABAQUS FE software. In order to validate the proposed graded FE solutions, experimental tests using Portable Digital Vibrometer (PDV) performed to capture the first natural frequency of designed and manufactured 3D printed polymeric FG plates. It can be concluded that the presented analytical formulation is not only accurate, but also provides for simple prediction of the free vibration of FG plates. Also, the good agreement found between the numerical models and experimental results demonstrates the effectiveness of graded solid elements in the modelling of FG plate vibration.
机译:本文介绍了简单支撑的3D打印聚合物功能梯度(FG)板的自由振动分析,其材料硬度和密度沿其长度都有变化。基于高阶剪切变形理论(HSDT)的解析公式通过整个厚度范围内位移场的正弦变化来说明剪切变形和厚度拉伸效果。然后使用有限元(FE)方法对问题进行建模。使用线性六面体实体元素在不同的高斯点处具有空间渐变的特性分布,可以通过有限元分析解决方案,这是通过ABAQUS FE软件中的子例程(USDFLD)实现的。为了验证提议的分级有限元解决方案,使用便携式数字振动计(PDV)进行了实验测试,以捕获设计和制造的3D打印聚合物FG板的第一个固有频率。可以得出结论,所提出的分析公式不仅准确,而且还提供了FG板自由振动的简单预测。而且,数值模型与实验结果之间的良好一致性证明了梯度固元在FG板振动建模中的有效性。

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