AUTOMATION OF A 3D PRINTED HAND PROSTHESIS WITH ARDUINO APPLICATION

C. Oliveira
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Abstract

This study deals with the analysis of an automation method for a functional hand prosthesis. The possibility of adapting to a prosthesis manufactured by the 3D printing process that originally moved mechanically was evaluated, with the aim of automating this artifact and making it functional. It was idealized to develop an automation system for this type of prosthesis, so that obtaining by the additive manufacturing method is quick and easy, and is suitable to receive the customized automation system and accessible to users. After all the modeling and confection processes were completed, the Arduino® software with C / C ++ language was used, developing the programming for the prosthesis. The program was created with the function of performing reading by electromyography sensors (EGM), which has the function of capturing the action potentials produced by muscle fibers of the arm and its contraction, and sending this captured data to the Arduino® board, which then sends a signal to the micro motors, responsible for moving the arms. fingers. It was possible to manufacture the prosthesis, as planned and projected on a computer design platform, performing automation, testing the degree of movement qualitatively. Satisfactory results were obtained in its production and adequacy of automation at the prototype level. as planned and projected on a computational design platform, performing automation, testing the degree of movement qualitatively. Satisfactory results were obtained in its production and adequacy of automation at the prototype level. as planned and projected on a computational design platform, performing automation, testing the degree of movement qualitatively. Satisfactory results were obtained in its production and adequacy of automation at the prototype level.
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基于arduino应用的3d打印手假体自动化
本研究针对功能性手假体的自动化方法进行分析。评估了适应由3D打印过程制造的最初机械移动的假体的可能性,目的是使该人工制品自动化并使其发挥作用。理想地开发了一种用于该类型义肢的自动化系统,使增材制造方法获得快速简便,适合接收定制的自动化系统并且易于用户使用。在所有建模和制作过程完成后,使用Arduino®软件,使用C / c++语言进行假体编程。该程序的功能是通过肌电传感器(EGM)进行读取,EGM具有捕获手臂肌肉纤维产生的动作电位及其收缩的功能,并将捕获的数据发送到Arduino®板,然后将信号发送到微型电机,负责移动手臂。的手指。可以在计算机设计平台上按照计划和投影制造假体,执行自动化,定性地测试运动程度。在生产过程中取得了满意的结果,在原型水平上实现了充分的自动化。在计算设计平台上进行规划和投影,执行自动化,定性地测试运动程度。在生产过程中取得了满意的结果,在原型水平上实现了充分的自动化。在计算设计平台上进行规划和投影,执行自动化,定性地测试运动程度。在生产过程中取得了满意的结果,在原型水平上实现了充分的自动化。
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