Łukaszewski Krzysztof, Raj Ratnesh, Karwasz Anna
Faculty of Mechanical Engineering, Poznan University of Technology, Piotrowo 3 STR, 61-138 Poznan, Poland.
Department of Mechanical Engineering, Indian Institute of Technology (Indian School of Mines), Dhanbad 826004, Jharkhand, India.
Materials (Basel). 2023 Sep 9;16(18):6132. doi: 10.3390/ma16186132.
Limb injuries frequently necessitate orthotic bracing, and the utilization of material extrusion (MEX) additive manufacturing (AM) or 3D printing offers a rapid and cost-effective means of producing orthoses. These characteristics are highly sought after in today's orthotic market. The study focused on the mechanical strength analysis of the wrist-hand orthosis (WHO) made of PET-G filament. Experimental testing and simulation were employed to assess the properties of individualized wrist orthoses fabricated through the MEX AM process. Standard three-point bending samples were manufactured using PET-G filament on a low-cost MEX 3D printer, alongside orthotic fragments and complete orthosis. Experimental testing was performed using a universal testing machine, and results were juxtaposed with those from a finite element simulation model created in the Abaqus environment. This comprehensive research approach facilitates the comparison of the modulus of elasticity of the fabricated components, enabling a comparison between the mechanical properties of the complete wrist-hand orthosis (WHO) product and those of a conventional bending sample.
肢体损伤常常需要使用矫形支具,而材料挤出(MEX)增材制造(AM)或3D打印技术为生产矫形器提供了一种快速且经济高效的方法。这些特性在当今的矫形器市场上备受青睐。该研究聚焦于由PET-G长丝制成的手腕-手部矫形器(WHO)的机械强度分析。采用实验测试和模拟来评估通过MEX增材制造工艺制造的个性化手腕矫形器的性能。使用PET-G长丝在低成本的MEX 3D打印机上制造标准三点弯曲样本,以及矫形片段和完整的矫形器。使用万能试验机进行实验测试,并将结果与在Abaqus环境中创建的有限元模拟模型的结果并列比较。这种全面的研究方法有助于比较所制造部件的弹性模量,从而能够比较完整的手腕-手部矫形器(WHO)产品与传统弯曲样本的机械性能。