The Effect of Nozzle Size on the Tensile and Flexural Properties of PLA Parts Fabricated Via FDM

M. N. Sudin, N. Daud, F. Ramli, M. Yusuff
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Abstract

The nozzle of a 3D printer extrudes molten filament onto the print surface. The detachable and adjustable nozzle of a 3D printer allows for the printing of lines of varying thickness. This study intends to investigate the effect of nozzle diameter on the tensile and flexural properties of printed specimens. The tensile and flexural specimens were prepared according to ASTM D638 Type 1 and ISO 178, respectively. After specimens were printed with nozzles having diameters of 0.3, 0.4, 0.5, 0.6, and 0.8 mm, tensile and flexural tests were conducted using an Instron 5585 machine. Each specimen was printed with 0.2 mm layer thickness, a line pattern, and 100 percent infill. Tensile and flexural behaviors of PLA specimens were comparable, according to the findings. Tensile and flexural strengths increase as nozzle diameter increases, but they are only effective up to a certain diameter. At a nozzle diameter of 0.6 mm, the maximum tensile strength was 33.32 MPa, and at a nozzle diameter of 0.5 mm, the maximum flexural strength was 76.76 MPa. The flexural strength decreases when using nozzles with diameters of 0.6 and 0.8 mm, and the tensile strength decreases when using a nozzle with a larger diameter (0.8 mm). Because the diameter of the nozzle has a significant impact on the mechanical properties of a part, it is crucial to choose the correct nozzle diameter for optimal mechanical properties.
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喷嘴尺寸对FDM制备PLA零件拉伸和弯曲性能的影响
3D打印机的喷嘴将熔融的长丝挤出打印表面。3D打印机的可拆卸和可调节喷嘴允许打印不同厚度的线条。本研究旨在探讨喷嘴直径对打印试样拉伸和弯曲性能的影响。拉伸和弯曲试样分别按照ASTM D638 Type 1和ISO 178制备。在用直径为0.3、0.4、0.5、0.6和0.8 mm的喷嘴打印样品后,使用Instron 5585机器进行拉伸和弯曲试验。每个样品都打印了0.2 mm的层厚,线条图案,100%填充。根据研究结果,PLA试件的拉伸和弯曲行为具有可比性。拉伸和弯曲强度随着喷嘴直径的增加而增加,但它们仅在一定直径内有效。当喷嘴直径为0.6 mm时,最大抗拉强度为33.32 MPa,当喷嘴直径为0.5 mm时,最大抗折强度为76.76 MPa。使用直径为0.6和0.8 mm的喷嘴时,抗弯强度降低,使用直径较大(0.8 mm)的喷嘴时,抗拉强度降低。由于喷嘴的直径对零件的力学性能有重要影响,因此选择正确的喷嘴直径以获得最佳的力学性能至关重要。
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