Śpiewak Szczepan, Wojnicz Wiktoria, Awrejcewicz Jan, Mazur Magdalena, Ludwicki Michał, Stańczyk Bartosz, Zagrodny Bartłomiej
Institute of Mechanics and Machine Design, Faculty of Mechanical Engineering and Computer Science, Czestochowa University of Technology, ul. Dabrowskiego 73, 42-201 Czestochowa, Poland.
Faculty of Mechanical Engineering and Ship Technology, Gdansk University of Techology, ul. Narutowicza 11/12, 80-233 Gdansk, Poland.
Materials (Basel). 2024 Jul 10;17(14):3406. doi: 10.3390/ma17143406.
This study is focused on the application of 3D-printed elements and conventional elements to create a prototype of a custom-made exoskeleton for lower limb rehabilitation. The 3D-printed elements were produced by using Fused Deposition Modeling technology and acrylonitrile butadiene styrene (ABS) material. The scope of this work involved the design and construction of an exoskeleton, experimental testing of the ABS material and numerical research by using the finite element method. On the basis of the obtained results, it was possible to deduce whether the load-bearing 3D-printed elements can be used in the proposed mechanical construction. The work contains full data of the material models used in FEM modeling, taking into account the orthotropic properties of the ABS material. Various types of finite elements were used in the presented FE models. The work is a comprehensive combination of material testing issues with the possibility of implementing the obtained results in numerical strength models of machine parts.
本研究聚焦于应用3D打印部件和传统部件来创建一个用于下肢康复的定制外骨骼原型。3D打印部件采用熔融沉积建模技术和丙烯腈丁二烯苯乙烯(ABS)材料制作而成。这项工作的范围包括外骨骼的设计与构建、ABS材料的实验测试以及使用有限元方法进行数值研究。基于所获结果,能够推断出承重的3D打印部件是否可用于所提议的机械结构中。该工作包含了有限元建模中使用的材料模型的完整数据,同时考虑了ABS材料的正交各向异性特性。在所展示的有限元模型中使用了各类有限元。这项工作是材料测试问题与将所得结果应用于机器零件数值强度模型可能性的全面结合。