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Numerical and experimental study on deformation of 3D-printed polymeric functionally graded plates: 3D-Digital Image Correlation approach

机译:3D打印聚合物功能梯度板变形的数值和实验研究:3D数字图像相关方法

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This paper presents a novel experimental and simulation investigation of quasi-static transverse deformation of 3D printed polymeric Functionally Graded (FG) plates, which obey the distribution of material properties through the length. Graded solid elements with continuous property distribution at different Gauss points were implemented by a user material subroutine (UMAT) in ABAQUS Finite Element (FE) software. In order to validate the proposed graded FE solutions, the original experimental deflection measurements using 3D-Digital Image Correlation (DIC) technique performed to capture transverse deformation of designed and manufactured 3D printed polymeric FG plates. DIC technique involved tracking the motion of geometric features on a specimen surface over the course of an experiment to generate the displacement field experimentally. It was found that the deviation between FE and experimental out of plane deflection for nonlinear FG plates is higher than that of linear FG plates, which is potentially due to the high gradient distribution of the material inclusions. It can be concluded that the presented 3D-digtal image correlation technique provides for transverse deformation of polymeric FG plates. The deflection contours for the FG plate are not symmetric, differences being more prominent for the linear high stiffness ratio combination. The outcomes of this study can be applied to determine the optimum material distribution to produce a controlled-stiffness polymeric FG plate corresponding to prescribed structural characteristics.
机译:本文提出了一种新的实验和模拟研究,该研究对3D打印聚合物功能梯度(FG)板的准静态横向变形进行了研究,该变形服从了材料特性在长度上的分布。在ABAQUS有限元(FE)软件中,通过用户材料子例程(UMAT)实现了在不同高斯点具有连续属性分布的渐变实体元素。为了验证提出的梯度有限元解决方案,使用3D数字图像关联(DIC)技术进行的原始实验挠度测量可捕获设计和制造的3D打印聚合物FG板的横向变形。 DIC技术涉及在整个实验过程中跟踪样品表面上几何特征的运动,以通过实验产生位移场。发现非线性FG板的FE与实验平面外挠度之间的偏差比线性FG板的偏差大,这可能是由于材料夹杂物的高梯度分布所致。可以得出结论,提出的3D-数字图像相关技术提供了聚合物FG板的横向变形。 FG板的挠曲轮廓不是对称的,线性高刚度比组合的差异更加明显。这项研究的结果可用于确定最佳材料分布,以生产与规定的结构特征相对应的刚度可控的聚合物FG板。

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