New Design and Prototype of 2-degree-of-freedom Planar Parallel Manipulator for Use In Creating an Infinite 3D Printer

Miguel De La Melena, Shanzhong Duan
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Abstract

A 3D printing is a rapidly growing and evolving field filled with a diverse array of printers capable of printing an equally as diverse amount of material. A new type of material extrusion 3D printer was recently developed and features the capabilities of printing infinitely long objects due to design decision of angling the XY plane and incorporating a rotating bed. The innovative design for the infinite 3D printer features a 2-DoF planar parallel manipulator (PPM) that will control the hot-end motion in the XY plane. This innovative design will greatly reduce the mass of moving parts in comparison to other infinite 3D printers. This reduction of weight will reduce inertia and allow for this new printer to achieve higher accelerations. In addition to the development of the new 3D printer, this paper presents a kinematic and dynamic model of the angled PPM, a finite element analysis of the critical components of the PPM, and an optimization approach to determine arm length of the PPM. The dynamic model simulation was developed in MATLAB and the results were compared with field data collected to verify the model. A meta-heuristic optimization was performed to optimize arm length of the connectors while maximizing the dynamic performance of the PPM with consideration of the usable workspace. The results of these examinations yield a validated mechanism that will be suitable for the development of a new type of infinite 3D printer.
用于创建无限 3D 打印机的 2 自由度平面平行机械手的新设计和原型
三维打印是一个发展迅速、日新月异的领域,其中充斥着各种各样的打印机,能够打印的材料也同样多种多样。最近开发出了一种新型材料挤压式三维打印机,由于在设计上决定了 XY 平面的角度并结合了旋转床,该打印机具有打印无限长物体的功能。无限三维打印机的创新设计采用了 2-DoF 平面平行机械手 (PPM),可控制热端在 XY 平面上的运动。与其他无限三维打印机相比,这种创新设计将大大减少运动部件的质量。重量的减轻将减少惯性,使这款新型打印机能够实现更高的加速度。除了新型 3D 打印机的开发,本文还介绍了成角度 PPM 的运动学和动力学模型、PPM 关键部件的有限元分析以及确定 PPM 臂长的优化方法。动态模型模拟是在 MATLAB 中开发的,其结果与现场收集的数据进行了比较,以验证模型。还进行了元启发式优化,以优化连接器的臂长,同时最大限度地提高 PPM 的动态性能,并考虑到可用工作空间。这些研究结果产生了一种经过验证的机制,将适用于新型无限 3D 打印机的开发。
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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