Oropeza Daniel, Hart A John
Department of Mechanical Engineering, Massachusetts Institute of Technology, Cambridge, MA 02139 USA.
Int J Adv Manuf Technol. 2021 Jun;114:3459-3473. doi: 10.1007/s00170-021-07123-1. Epub 2021 Apr 26.
Binder jet additive manufacturing (BJAM) is capable of fabricating complex three-dimensional components from a variety of material classes. Understanding the fundamentals of BJAM, including spreading of thin layers of powder, powder-binder interactions, and post-processing is critical to develop robust process parameters for BJAM. Toward meeting these needs, this work presents the design, fabrication, and qualification of a testbed for modular, mechanized, BJAM. The testbed seeks to replicate the operating conditions of commercial AM equipment and features fully programmable motion control including powder spreading using a precision roller mechanism, powder supply via a vibrating hopper, and gantry positioning of an inkjet printhead. The inkjet deposition system allows for the use of variable nozzle diameters, the exploration of novel binder compositions, and full control of jetting parameters. Validation of the accuracy and repeatability of the machine and its subsystems, as well as the fabrication of exemplary stainless steel components, are described. The precision engineered testbed can therefore enable the study of the BJAM process, exploration of novel binder compositions, and processing of custom powders to further scientific research and industrial applicability of BJAM.
粘结剂喷射增材制造(BJAM)能够从多种材料类别中制造复杂的三维部件。了解BJAM的基本原理,包括粉末薄层的铺展、粉末与粘结剂的相互作用以及后处理,对于为BJAM开发稳健的工艺参数至关重要。为了满足这些需求,本文介绍了一种用于模块化、机械化BJAM的试验台的设计、制造和鉴定。该试验台旨在复制商用增材制造设备的运行条件,并具有完全可编程的运动控制功能,包括使用精密辊机构进行粉末铺展、通过振动料斗供应粉末以及喷墨打印头的龙门定位。喷墨沉积系统允许使用可变喷嘴直径、探索新型粘结剂成分以及完全控制喷射参数。文中描述了该机器及其子系统的精度和重复性验证,以及示例性不锈钢部件的制造。因此,经过精密设计的试验台能够促进对BJAM工艺的研究、新型粘结剂成分的探索以及定制粉末的加工,从而推动BJAM的进一步科学研究和工业应用。