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打印速度提高和细丝颜色对熔融沉积成型打印聚乳酸试样尺寸精度和拉伸性能的影响

The Impact of Elevated Printing Speeds and Filament Color on the Dimensional Precision and Tensile Properties of FDM-Printed PLA Specimens.

作者信息

Ardeljan Deian Dorel, Frunzaverde Doina, Cojocaru Vasile, Turiac Raul Rusalin, Bacescu Nicoleta, Ciubotariu Costel Relu, Marginean Gabriela

机构信息

Department of Engineering Science, Babeș-Bolyai University, Traian Vuia Square 1-4, 320085 Reșița, Romania.

Institute of Mechanical Engineering, Westphalian University of Applied Sciences Gelsenkirchen Bocholt Recklinghausen, Neidenburger Str. 43, 45897 Gelsenkirchen, Germany.

出版信息

Polymers (Basel). 2025 Jul 30;17(15):2090. doi: 10.3390/polym17152090.

Abstract

This study examines the effect of elevated printing speeds (100-600 mm/s) on the dimensional accuracy and tensile strength of PLA components fabricated via fused deposition modeling (FDM). To isolate the influence of printing speed, all other parameters were kept constant, and two filament variants-natural (unpigmented) and black PLA-were analyzed. ISO 527-2 type 1A specimens were produced and tested for dimensional deviations and ultimate tensile strength (UTS). The results indicate that printing speed has a marked impact on both geometric precision and mechanical performance. The optimal speed of 300 mm/s provided the best compromise between dimensional accuracy and tensile strength for both filaments. At speeds below 300 mm/s, under-extrusion caused weak layer bonding and air gaps, while speeds above 300 mm/s led to over-extrusion and structural defects due to thermal stress and rapid cooling. Black PLA yielded better dimensional accuracy at higher speeds, with cross-sectional deviations between 2.76% and 5.33%, while natural PLA showed larger deviations of up to 8.63%. However, natural PLA exhibited superior tensile strength, reaching up to 46.59 MPa, with black PLA showing up to 13.16% lower UTS values. The findings emphasize the importance of speed tuning and material selection for achieving high-quality, reliable, and efficient FDM prints.

摘要

本研究考察了提高打印速度(100 - 600毫米/秒)对通过熔融沉积成型(FDM)制造的聚乳酸(PLA)部件尺寸精度和拉伸强度的影响。为了分离打印速度的影响,所有其他参数保持不变,并分析了两种长丝变体——天然(未染色)和黑色PLA。制作了ISO 527 - 2 1A型试样,并对其尺寸偏差和极限拉伸强度(UTS)进行了测试。结果表明,打印速度对几何精度和机械性能都有显著影响。300毫米/秒的最佳速度为两种长丝在尺寸精度和拉伸强度之间提供了最佳折衷。在低于300毫米/秒的速度下,挤出不足会导致层间结合薄弱和气隙,而高于300毫米/秒的速度则会由于热应力和快速冷却导致挤出过度和结构缺陷。黑色PLA在较高速度下具有更好的尺寸精度,横截面偏差在2.76%至5.33%之间,而天然PLA的偏差则高达8.63%。然而,天然PLA表现出更高的拉伸强度,最高可达46.59兆帕,黑色PLA的UTS值则低至13.16%。这些发现强调了速度调整和材料选择对于实现高质量、可靠且高效的FDM打印的重要性。

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