Design Optimization of DR3AM Vapor Polishing Device for ABS 3D-Printed Parts

Rosa Mae D. Baluyut, Jan Rapaela B. Bartolome, H. R. B. De Guzman, Josefa L. Morales, Anthony N. Moscosa, Angeline D. Olavides, Jan Aubrey B. Sanchez, M. T. Espino, Ciara Catherine L. Gache, B. Tuazon, J. Dizon
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Abstract

3D printing is an additive manufacturing method that turns digital design into an actual product. A 3D-printed part sometimes requires post-processing to enhance its physical and mechanical properties. Acetone vapor polishing is one of those techniques which is highly beneficial in smoothing ABS 3D-printed parts. Previously, an acetone vapor polishing device has been developed which uses a mist maker. However, for a more efficient polishing method, an optimized vapor polishing device using heat has been fabricated in this study. To assess the efficiency of this device, the researchers test the dimensional accuracy, surface roughness, tensile strength, and impact strength of polished and unpolished ABS 3D-printed specimens. The findings showed that the surface smoothness of the polished cube specimens did not significantly alter its physical geometry. The tensile test reveals that the overall elasticity of the polished tensile specimen has increased significantly while the impact test also shows that the polished specimens have the capacity to sustain a resistive impact from a swinging pendulum. Thus, all testing procedures indicated that post-processing using the optimized vapor polishing device has improved the overall physical and mechanical properties of the polished specimens.
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ABS 3d打印零件DR3AM蒸汽抛光装置的设计优化
3D打印是一种将数字设计转化为实际产品的增材制造方法。3d打印部件有时需要后处理以增强其物理和机械性能。丙酮蒸汽抛光是一种非常有利于光滑ABS 3d打印部件的技术。在此之前,已经开发了一种使用雾发生器的丙酮蒸汽抛光装置。然而,为了获得更有效的抛光方法,本研究制作了一种优化的热蒸汽抛光装置。为了评估该设备的效率,研究人员测试了抛光和未抛光ABS 3d打印样品的尺寸精度、表面粗糙度、抗拉强度和冲击强度。结果表明,抛光立方体试样的表面光滑度没有显著改变其物理几何形状。拉伸试验表明,抛光后拉伸试样的整体弹性显著提高,冲击试验也表明,抛光后的试样具有抵抗摆锤冲击的能力。因此,所有的测试程序都表明,使用优化的蒸汽抛光装置进行后处理可以改善抛光样品的整体物理力学性能。
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