带精确算法的多功能柔性三维线材弯曲机的设计与实现

Mohammed O. Farhan, M. Al-Khafaji, Muhannad Q. Abood
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摘要

本文介绍了一种柔性线材折弯机的开发情况,其设计克服了传统折弯机的局限性。传统的线材折弯机通常是为特定目的而设计的,需要复杂的编码,价格昂贵,或只能生产二维形状。为了应对这些挑战,我们的研究首先对该领域的现有研究进行了广泛的回顾,然后根据分析结果选择了一个概念。该方法涵盖了整个设计和制造过程。最初的研究为概念选择提供指导,然后通过 SolidWorks 仿真将概念转化为实际设计。理论基础包括从送丝系统到双向和三维弯曲机构等每个机器组件的数学公式。根据计算参数选择主要执行器,并组装机器,其中包括一个数控系统。首先在不使用线材的情况下对机器进行了测试,随后对直径为 3.2 毫米的铝线(1350-H26)、直径为 3.25 毫米的铜线和直径为 2.5 毫米的钢线进行了弯曲测试。结果表明了高精度性能,并强调了在二维和三维线材配置中考虑回弹和弯曲余量对精度的重要性。这项研究不仅有助于柔性线材折弯机的设计和制造,还解决了传统折弯机的不足之处,使线材折弯更加方便、通用和经济。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design and Implementation of a Versatile Flexible 3D Wire Bending Machine with Accuracy Algorithm
This paper presents the development of a flexible wire bending machine designed to overcome limitations associ - ated with traditional counterparts. Traditionally, wire bending machines are often designed for specific purposes, necessitate complex coding, are prohibitively expensive, or are constrained to producing two-dimensional shapes. To address these challenges, our study begins with an extensive review of existing research in the field, fol - lowed by the selection of a concept derived from this analysis. The methodology encompasses the entire design and manufacturing process. Initial research guides the concept selection, which is then translated into a practical design using SolidWorks simulations. The theoretical foundation involves mathematical formulations for each machine component, ranging from the wire feeding system to the bidirectional and 3D bending mechanisms. Main actuators are chosen based on calculated parameters, and the machine is assembled, incorporating a CNC system. The machine is tested first without wire and subsequently with the bending of an aluminum (1350-H26), 3.2 mm diameter wire, copper with 3.25 mm diameter and steel with 2.5 mm diameter. The results demonstrate high ac - curacy performance and underscore the significance of considering spring back and bend allowance for precision in both 2D and 3D wire configurations. This study not only contributes to the design and fabrication of a flexible wire bending machine but also addresses the shortcomings of traditional counterparts, making wire bending more accessible, versatile, and cost-effective.
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