3D打印的低技术正障碍推/滑行轮椅配件的设计迭代。

IF 1.9 4区 医学 Q2 REHABILITATION Disability and Rehabilitation-Assistive Technology Pub Date : 2024-08-01 Epub Date: 2023-10-25 DOI:10.1080/17483107.2023.2272861
Soran Jalal Abdullah, Javeed Shaikh Mohammed
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引用次数: 0

摘要

目的:在通过手动门或遇到障碍物时驾驶轮椅对一些用户来说是一项挑战。此前,一种使用现成组件、传统制造和3D打印紧固件制造的低成本、低技术配件证明了不可跨越的正向障碍物推动或滑动的概念。目前的工作介绍了配件的完全3D打印原型的制造和测试。方法:使用ABS(10%填充密度)对附件进行3D打印。对整个附件进行了有限元应力分析模拟。原型测试是将附件安装在一个无人使用的电动轮椅上,靠着门和一个约25的障碍物进行的 N和~50 N阻力。结果:所有关键部件的最大应力均未超过ABS的断裂强度。测试结果证明了全3D打印附件推开手动门的能力和机械坚固性,使其能够轻松导航通过门,并推动或滑过障碍物。目前的原型在可制造性、重量、设计和安全性方面比以前的原型有所改进。结论:据我们所知,这是第一次演示一种完全3D打印的轮椅配件,它可以在不可跨越的积极障碍物上推动或滑动。未来的研究将涉及临床监督下不同场景下的最终用户满意度评估和功能评估。该附件的推动或滑动能力可能对患有神经肌肉疾病或截瘫的轮椅使用者有益。
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3D-printed design iteration of a low-tech positive obstacle pushing/gliding wheelchair accessory.

Purpose: Steering a wheelchair while navigating through manual doors or against obstacles is challenging for some users. Previously, a low-cost, low-tech accessory made using off-the-shelf components, conventional manufacturing, and 3D-printed fasteners demonstrated the proof-of-concept for uncrossable positive obstacle pushing or gliding. Current work presents the fabrication and testing of an entirely 3D-printed prototype of the accessory.

Methods: The accessory was 3D-printed using ABS (10% fill density) in sections. A finite element stress analysis simulation was performed for the entire accessory. Prototype tests were done with the accessory installed on an unoccupied powered wheelchair against a door and an obstacle with ∼25 N and ∼50 N resistance forces, respectively.

Results: The maximum stresses in none of the crucial components exceeded the break strength of ABS. Test results demonstrate the ability and mechanical robustness of the fully 3D-printed accessory to push open manual doors, allowing easy navigation through doors, and to push or glide against obstacles. The current prototype improves over the previous prototype in terms of manufacturability, weight, design, and safety.

Conclusions: To the best of our knowledge, this is the first demonstration of an entirely 3D-printed wheelchair accessory that pushes or glides against uncrossable positive obstacles. Future studies would involve end-user satisfaction assessment and functionality evaluation in different scenarios under clinical supervision. The pushing or gliding ability of the accessory could be beneficial to wheelchair users with neuromuscular disorders or paraplegia.

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来源期刊
CiteScore
5.70
自引率
13.60%
发文量
128
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