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助力康复:低成本3D打印智能矫形器的设计与结构分析

Empowering Rehabilitation: Design and Structural Analysis of a Low-Cost 3D-Printed Smart Orthosis.

作者信息

Popișter Florin, Dragomir Mihai, Ciudin Paul, Goia Horea Ștefan

机构信息

Department of Design Engineering and Robotics, Faculty of Industrial Engineering, Robotics and Production Management, Technical University of Cluj-Napoca, B-dul Muncii 103-105, 400641 Cluj-Napoca, Romania.

出版信息

Polymers (Basel). 2024 May 7;16(10):1303. doi: 10.3390/polym16101303.

Abstract

Three-dimensional (3D) printing of polymer materials encompasses a wide range of applications and innovations. Polymer-based 3D printing, also known as additive manufacturing, has gained significant attention due to its versatility, cost-effectiveness, and potential to revolutionize various industries. The current paper focuses on obtaining a durable low-cost rehabilitation knee orthosis. Researchers propose that the entire structure should be obtained using modern equipment within the additive manufacturing domain-3D printing. The researchers focus on determining, through a 3D analysis of the entire 3D model assembly, which parts present a high degree of stress when a kinematic simulation is developed. The entire 3D model of the orthosis starts based on the result obtained from a 3D scanning of the knee joint of a patient, providing a precise fixation, and allowing for direct personalization. Based on the results and identification of the critical parts, there will be used different materials and a combination of 3D printing strategies to validate the physical model of the entire orthosis. For the manufacturing process, the researchers use two types of low-cost fused filament fabrication (FFF), which are easy to find on the worldwide market. The motivation for manufacturing the entire assembly using 3D printing techniques is the short time in which complex shapes can be obtained, which is relevant for the present study. The main purpose of the present research is to advance orthotic technology by developing an innovative knee brace made of 3D-printed polymers that are designed to be lightweight, easy-to-use, and provide comfort and functionality to patients during the rehabilitation process.

摘要

聚合物材料的三维(3D)打印涵盖了广泛的应用和创新。基于聚合物的3D打印,也称为增材制造,因其多功能性、成本效益以及变革各行业的潜力而备受关注。本文聚焦于获得一种耐用的低成本康复膝关节矫形器。研究人员提议,整个结构应使用增材制造领域的现代设备——3D打印来制造。研究人员通过对整个3D模型组件进行3D分析,来确定在进行运动学模拟时哪些部件承受的应力程度较高。矫形器的整个3D模型基于对一名患者膝关节的3D扫描结果构建,从而实现精确固定,并允许直接个性化定制。根据关键部件的结果和识别情况,将使用不同的材料以及3D打印策略的组合来验证整个矫形器的物理模型。在制造过程中,研究人员使用两种易于在全球市场上找到的低成本熔丝制造(FFF)方法。使用3D打印技术制造整个组件的动机在于能够在短时间内获得复杂形状,这与本研究相关。本研究的主要目的是通过开发一种由3D打印聚合物制成的创新型膝关节支具来推动矫形技术的发展,该支具设计轻巧、易于使用,并在康复过程中为患者提供舒适感和功能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2708/11125049/4c3de808beee/polymers-16-01303-g001.jpg

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