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COMPARISON OF AS-BUILT FEA SIMULATIONS AND EXPERIMENTAL RESULTS FOR ADDITIVELY MANUFACTURED DOGBONE GEOMETRIES

机译:人工制造的DOGBONE几何体的有限元模拟与实验结果的比较

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Fused Deposition Modeling (FDM - a technology of additive manufacturing) parts entail a certain amount of ambiguity in terms of its material properties and microstructure due to its manufacturing technique. Therefore, an FDM part differs from its design model in terms of strength and stiffness. With an increasing amount of FDM parts being used as end use products, it is necessary to simulate and analyze them. Due to the differences in microstructure and material properties of FDM parts, it is necessary to determine the accuracy of analysis methods like Finite Element Analysis (FEA) while analyzing the non-continuous, non-linear FDM parts. The goal of this study is to compare FEA simulations of the as-built geometries with the experimental tests of actual FDM parts. A dogbone geometry with different infill patterns is tested under tensile loading. Further, as-built 3D models are simulated using FEA and the stress results are compared with experimental data. This study found that FEA results are not always an accurate or reliable means of predicting FDM part behaviors.
机译:熔融沉积建模(FDM-增材制造技术)零件由于其制造技术而在材料特性和微观结构方面存在一定的歧义。因此,FDM零件在强度和刚度方面不同于其设计模型。随着越来越多的FDM零件被用作最终用途产品,有必要对其进行仿真和分析。由于FDM零件的微观结构和材料特性的差异,在分析非连续,非线性FDM零件时,有必要确定诸如有限元分析(FEA)之类的分析方法的准确性。这项研究的目的是将实际几何形状的有限元分析与实际FDM零件的实验测试进行比较。在拉伸载荷下测试了具有不同填充图案的dog骨几何形状。此外,使用FEA对已建成的3D模型进行了仿真,并将应力结果与实验数据进行了比较。这项研究发现,有限元分析结果并不总是预测FDM零件行为的准确或可靠的方法。

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