3D Printing:通过3D打印技术对重熔产品的溶化模型技术改进人工表面的特性

Suleiman Ibrahim Yousef, Mahmoud Al-Assad, Maher A
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摘要

与传统方法相比,FDM(熔融沉积建模)3D打印产品通常存在高表面粗糙度和低耐久性的问题。本文研究了印刷后表面处理和涂覆一层金属对其性能的影响,比较了机械表面处理方法(砂纸处理)和化学表面处理方法(溶剂处理)对表面沉积金属层附着力的影响。在ABS产品表面涂覆一层金属,研究了处理和涂覆对打印产品力学性能的影响。结果表明,表面处理后表面粗糙度明显降低,表面粗糙度降低92%,其中以Ra 0.35 μm的砂纸(2000 Grit)磨削效果最好。丙酮表面处理后的拉伸强度提高了50%,金属涂层后的拉伸强度提高了56.25%。对表面沉积金属(CROSS-CUT)进行了附着力测试,结果表明,涂层前对表面进行丙酮蒸汽处理的附着力耐久性最好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Improve Surfaces properties of ABS Products fabricated by fused deposition modeling (FDM) 3D Printing: تحسين خواص الأسطح المصنعة عن طريق الطباعة ثلاثية الأبعاد بتقنية نمذجة ترسيب المنصهر FDM لمنتجات ABS
  FDM (fused deposition modeling) 3D printing products often suffer from high surface roughness and low durability compared to conventional methods. In this paper, the effect of surface treatment after printing and coating with a layer of metal on its properties has been studied, The mechanical surface treatment methods (sandpaper) and chemical (solvent treatment) were compared and their effect on the adhesion strength of the deposited metal layer on the surface. The surface of the ABS product was coated with a layer of metal, the effect of both treatment and coating on the mechanical properties of printing products was studied. The results showed a clear decrease in surface roughness after surface treatment, where surface roughness decreased by 92%, and the best result was when grinding with sandpaper (2000 Grit) was Ra 0.35 μm. The tensile strength after acetone surface treatment was improved by 50% and after coating the product with a layer of metal by 56.25%. The adhesion test of the surface-deposited metal (CROSS-CUT) was conducted, and the result showed that the best adhesion durability was when the surface was treated with acetone vapor before coating.
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