The Effect of Infill Angle and Build Orientation on the Impact Strength and Production Time of Porous Infill Structure

Vincent Wibisono
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Abstract

In developing a lightweight structure, the density of the structure can be reduced by converting a solid structure to a porous infill structure. Previous research has investigated that a triangular infill structure has the highest impact strength compared to other infill patterns. However, the impact strength of this structure may still be improved by adjusting other parameters without extending the production time. This research goal is to investigate the effect of the build orientation and infill angle on the impact strength and the production time of the triangular infill structure. To achieve that goal, this research uses a 3D printing process to manufacture a triangular infill structure made of Polylactic Acid. Seven levels of infill angle and two levels of build orientation are used to find the effect. In this experiment, twenty-six Charpy Impact specimens are printed using the Fused Deposition Modelling machine. Each specimen is printed according to ISO 179 standards and tested using a GT-7045 impact testing machine to measure the impact strength of the specimen. The results of this experiment indicate that the resistance of the on-edge build orientation to the impact load is better than the flat build orientation. The on-edge build orientation type requires less printing time compared to the flat build orientation type for each infill angle. The use of a 45-degree infill angle exhibits the highest impact resistance. To achieve the shortest printing time, the 0-degree infill angle is recommended.
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填充角和建造方向对多孔填充结构冲击强度和生产时间的影响
在开发轻质结构时,可以通过将固体结构转换为多孔填充结构来降低结构的密度。以往的研究表明,与其他填充结构相比,三角形填充结构具有最高的冲击强度。但在不延长生产时间的情况下,通过调整其他参数仍可提高该结构的冲击强度。本研究的目的是研究建造方向和填充角度对三角形填充结构的冲击强度和生产时间的影响。为了实现这一目标,本研究使用3D打印工艺制造了由聚乳酸制成的三角形填充结构。利用七层的填充角度和两层的建筑方向来寻找效果。在本实验中,使用熔融沉积成型机打印了26个Charpy冲击试样。每个试样都按照ISO 179标准进行印刷,并使用GT-7045冲击试验机进行测试,以测量试样的冲击强度。实验结果表明,边筑面对冲击载荷的抵抗能力优于平筑面。对于每个填充角,与平面构建方向类型相比,边缘构建方向类型需要更少的打印时间。45度填充角的使用表现出最高的抗冲击性。为达到最短的打印时间,建议使用0度填充角。
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