Development of a large-scale multi-extrusion FDM printer, and its challenges

Q1 Engineering
Md. Hazrat Ali , Syuhei Kurokawa , Essam Shehab , Muslim Mukhtarkhanov
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引用次数: 6

Abstract

This study focuses on the development of a large-dimensional 3D printer and its challenges in general. The major fused deposition modeling (FDM) printers focus on printing small-scale parts due to their challenges in printing large-scale objects using thermoplastic polymer filaments. A novel large-dimensional multi-extrusion FDM printer is developed at the workshop and printed several large-dimensional objects to emphasize its prospects in developing large-scale products. The printer has a print bed with a dimension of 900 mm × 1100 mm × 770 mm with respect to the length–width–height (L–W–H), respectively. There are many challenges to successfully printing large-dimensional objects using FDM technology. The experimental design elaborates on the challenges experienced during printing various large-dimensional objects. In addition, the paper focuses on the qualitative analysis of the optimal process parameters in section 4.5. Based on the experimental results, the key challenges are found to be uneven bed temperature, bending of print bed due to thermal effect, surface unsticks due to lack of adhesive force, surrounding temperature, and irregular filament feed. Experimental results also validate the key design specifications and their impact on enhancing large-scale 3D printing. The developed printer is capable of printing large-scale objects with five different thermoplastic materials using five individual extruders simultaneously. It adds a new dimension of flexible automation in additive manufacturing (AM).

大型多挤出FDM打印机的研制及其挑战
本研究的重点是大尺寸3D打印机的开发及其总体挑战。主要的熔融沉积建模(FDM)打印机专注于打印小尺寸零件,因为它们在使用热塑性聚合物丝打印大型物体方面存在挑战。在车间开发了一种新型的大尺寸多挤压FDM打印机,并打印了几个大尺寸物体,以强调其在开发大型产品方面的前景。打印机有一个打印床,其长度-宽度-高度(L–W–H)分别为900 mm×1100 mm×770 mm。使用FDM技术成功打印大尺寸对象存在许多挑战。实验设计阐述了在打印各种大尺寸物体时所遇到的挑战。此外,本文在第4.5节中重点对最佳工艺参数进行了定性分析。根据实验结果,发现关键挑战是床层温度不均匀、热效应导致的印刷床弯曲、缺乏附着力导致的表面不粘、周围温度和不规则的进丝。实验结果还验证了关键设计规范及其对增强大规模3D打印的影响。所开发的打印机能够使用五台单独的挤出机同时打印具有五种不同热塑性材料的大型物体。它为增材制造(AM)中的柔性自动化增加了一个新的维度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
International Journal of Lightweight Materials and Manufacture
International Journal of Lightweight Materials and Manufacture Engineering-Industrial and Manufacturing Engineering
CiteScore
9.90
自引率
0.00%
发文量
52
审稿时长
48 days
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