Design of 3D Digitization Integrated Robotic Arm to Help Clinical Applications

M. B. Selek, Aykut Solmaz, Emrah Cetintas, Kaan Ugur, Y. Isler
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引用次数: 1

Abstract

Thanks to developing technology, robots have been integrated into many parts of daily life. Robots are called programmable, multifunctional, work, and timesaving devices. In this study, it is aimed to enhance a robotic arm to become a new tool for transferring an object to the virtual environment by integrating a three-dimensional digitizing property to the robotic arm. The robotic arm is developed using the software of Autodesk Fusion 360 and its physical prototype is implemented using PLA filament in three dimensional printers. A general-purpose microcontroller board of Arduino Mega 2560 model connected to motor drivers is used to control stepper motors that conduct robotic arm actions. Encoders used in the threedimensional digitizer are connected to digital pins of the Arduino board to calculate the X-Y-Z coordinates of the object in the space. The proposed system is controlled via the interface program, which is developed in Python programming language. As a result, a device to use in clinical applications is available in our biomechanics laboratuary, now.
三维数字化集成机械臂设计助力临床应用
由于科技的发展,机器人已经融入了日常生活的许多方面。机器人被称为可编程、多功能、工作和节省时间的设备。在本研究中,通过将机械臂的三维数字化特性集成到机械臂中,旨在增强机械臂成为将物体转移到虚拟环境中的新工具。利用Autodesk Fusion 360软件开发了机械臂,并在三维打印机上使用PLA长丝实现了机械臂的物理原型。采用Arduino Mega 2560型通用微控制器板连接电机驱动器,控制步进电机进行机械臂动作。三维数字化仪使用的编码器连接到Arduino板的数字引脚上,计算物体在空间中的X-Y-Z坐标。采用Python编程语言编写的接口程序对系统进行控制。因此,我们的生物力学实验室现在就有了一种用于临床应用的设备。
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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