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Effect of Print Angle on Mechanical Properties of FDM 3D Structures Printed with POM Material

机译:打印角对POM材料印刷FDM 3D结构力学性能的影响

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Fused deposition modeling (FDM) is currently the most popular form of 3D printing. Using this technique, the materials are stacked layer by layer. This study investigates how to increase the mechanical strength of the structure by changing the direction of structure using ANSYS Workbench, SolidWorks 3D Computer Aided Design software (CAD) software, and Umaker (3D printer). The study was divided into two parts. In the first part, model data samples were imported into ANSYS for analysis prior to printing. The models were drawn using the SolidWorks software. The second part used the Umaker 3D printer to print the samples using the polyacetal material (POM). The structures were made using three different directions, 0°, 45°, and 90° of the fused deposition modeling machine. Test specimens were fabricated according to the ASTM D638 165 mm × 19 mm × 7 mm [1], type I standard. The mechanical integrity of the samples was assessed using tensile strength tests. The tensile strengths at specified angles of the structure were compared across specimens of each direction type. The results showed that the strength values of the 45° direction type were 65-72% of those of specimen in the 0° direction type demonstrating that direction is a relevant factor in the mechanical integrity of 3D printed structures. Using the results of this study, the life span and mechanical strength of 3D printed structures can be increased.
机译:融合沉积建模(FDM)是目前最受欢迎的3D打印形式。使用这种技术,材料通过层堆叠层。本研究通过ANSYS Workbench,SolidWorks 3D计算机辅助设计软件(CAD)软件和Umaker(3D打印机)来调查如何通过改变结构方向来提高结构的机械强度。该研究分为两部分。在第一部分中,在打印之前,将模型数据样本导入ANSYS进行分析。使用SolidWorks软件绘制模型。第二部分使用umaker 3D打印机使用聚缩醛材料(POM)打印样品。使用三个不同的方向,0°,45°和90°的熔融沉积建模机进行结构。根据ASTM D638 165mm×19mm×7mm [1],制造测试样品,I型标准。使用拉伸强度试验评估样品的机械完整性。将在每个方向类型的标本进行比较结构的特定角度的拉伸强度。结果表明,在0°方向类型中,45°方向型的强度值为65-72%的样品中的样品,表明方向是3D印刷结构的机械完整性的相关因子。使用本研究的结果,可以增加3D印刷结构的寿命和机械强度。

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