Development and Accuracy Test of a Fused Deposition Modeling (FDM) 3D Printing using H-Bot Mechanism

B. Hadisujoto, Robby Wijaya
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引用次数: 7

Abstract

Additive manufacturing process known as the 3D printing process is an advanced manufacturing process including one of the components to support industrial revolution 4.0. The initial development of a 3D printing machine at Sampoerna University is the background of this research. The 3D printing setup of Fused Deposition Modeling (FDM) was built using H-bot moving mechanism by considering the rigidity aspect. The FDM printing method is selected due to its cost and reliability. In this early development, the brackets were custom made using a 3D printer with Polylactic Acid (PLA) material. The result showed that the software worked properly in accordance with the assembled mechanical and electrical parts. The 3D printer could print simple objects such as planes and cubes with small dimensions. However, the printing specimen still lacked accuracy caused by the less rigidity of linear rail brackets, less coplanar belt arrangement, and error in some electronic components.
基于H-Bot机制的熔融沉积建模(FDM) 3D打印的开发与精度测试
增材制造工艺被称为3D打印工艺,是一种先进的制造工艺,包括支持工业革命4.0的组件之一。Sampoerna大学的3D打印机的初步开发是这项研究的背景。从刚性角度出发,利用H-bot移动机构建立了熔融沉积模型(FDM)的3D打印装置。选择FDM打印方法是由于其成本和可靠性。在这个早期的开发中,支架是使用聚乳酸(PLA)材料的3D打印机定制的。结果表明,该软件与所装配的机电部件工作正常。3D打印机可以打印小尺寸的平面和立方体等简单物体。但由于线性导轨支架刚性较差、共面皮带布置较少、部分电子元件存在误差等原因,打印样品的精度仍然存在一定的不足。
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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