A Study of the Solid Freeform Fabrication (SFF) System with Dual Laser System

Dong Soo Kim, Y. J. Ahn, W. Lee, S. Bae, K. Choi
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引用次数: 5

Abstract

A solid freeform fabrication (SFF) system using selective laser sintering (SLS) is currently recognized as a leading process and SLS extends the applications to machinery and automobiles due to the various materials employed. In order to develop a more elaborate and rapid system for fabricating large objects compared to existing SLS, this study employs a new selective dual-laser sintering (SDLS) process. It contains a 3-axis, dynamic focusing scanner system for scanning large areas instead of the existing fθ lens used in commercial SLS. Therefore, the unique scanning path generation is necessary to eliminate the factors of quality deterioration in case of fabricating larger objects. Also, this paper will address development of an SFF system which employs the dual laser system and the unique scanning device. Experiments were performed to evaluate the effect of a scanning path and fabrication parameters on sintering process and to fabricate the various 3D objects using polymer powder.
双激光固体自由曲面加工(SFF)系统研究
使用选择性激光烧结(SLS)的固体自由曲面制造(SFF)系统目前被认为是一种领先的工艺,由于使用的材料多种多样,SLS将应用扩展到机械和汽车。为了开发一种比现有的SLS更精细、更快速的大型物体制造系统,本研究采用了一种新的选择性双激光烧结(SDLS)工艺。它包含一个3轴动态聚焦扫描系统,用于扫描大面积,而不是现有的商用SLS中使用的fθ透镜。因此,在制造较大的物体时,独特的扫描路径生成对于消除质量恶化的因素是必要的。此外,本文还将讨论采用双激光系统和独特扫描装置的SFF系统的开发。通过实验研究了扫描路径和制备参数对烧结过程的影响,并利用聚合物粉末制备了各种三维物体。
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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