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Static and Dynamic Mechanical Properties of 3D Printed ABS as a Function of Raster Angle

机译:3D打印ABS的静态和动态力学性能随光栅角度的变化

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摘要

Due to the rapid growth of 3D printing popularity, including fused deposition modeling (FDM), as one of the most common technologies, the proper understanding of the process and influence of its parameters on resulting products is crucial for its development. One of the most crucial parameters of FDM printing is the raster angle and mutual arrangement of the following filament layers. Presented research work aims to evaluate different raster angles (45°, 55°, 55’°, 60° and 90°) on the static, as well as rarely investigated, dynamic mechanical properties of 3D printed acrylonitrile butadiene styrene (ABS) materials. Configuration named 55’° was based on the optimal winding angle in filament-wound pipes, which provides them exceptional mechanical performance and durability. Also in the case of 3D printed samples, it resulted in the best impact strength, comparing to other raster angles, despite relatively weaker tensile performance. Interestingly, all 3D printed samples showed surprisingly high values of impact strength considering their calculated brittleness, which provides new insights into understanding the mechanical performance of 3D printed structures. Simultaneously, it proves that, despite extensive research works related to FDM technology, there is still a lot of investigation required for a proper understanding of this process.
机译:由于3D打印(包括熔融沉积建模(FDM))作为最常见的技术之一迅速普及,因此对其过程及其参数对最终产品的影响的正确理解对其开发至关重要。 FDM打印的最关键参数之一是随后的灯丝层的光栅角度和相互排列。当前的研究工作旨在评估3D打印丙烯腈丁二烯苯乙烯(ABS)材料在静态以及很少研究的动态力学性能上的不同光栅角度(4​​5°,55°,55'°,60°和90°)。命名为55′°的配置是基于细丝缠绕管的最佳缠绕角度,从而为它们提供了出色的机械性能和耐用性。同样在3D打印样品的情况下,尽管拉伸性能相对较弱,但与其他栅格角度相比,它仍具有最佳的冲击强度。有趣的是,考虑到其计算的脆性,所有3D打印的样品都显示出令人惊讶的高冲击强度值,这为理解3D打印结构的机械性能提供了新的见解。同时,它证明,尽管有关FDM技术的研究工作广泛,但仍需要进行大量调查才能正确理解此过程。

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