Liu Jingjing, Naeem Muhammad Awais, Al Kouzbary Mouaz, Al Kouzbary Hamza, Shasmin Hanie Nadia, Arifin Nooranida, Abd Razak Nasrul Anuar, Abu Osman Noor Azuan
Centre for Applied Biomechanics, Department of Biomedical Engineering, Faculty of Engineering, University of Malaya, Kuala Lumpur 50603, Malaysia.
The Chancellery, Universiti Tenaga Nasional, Kajang 43000, Malaysia.
Polymers (Basel). 2023 Jan 4;15(2):255. doi: 10.3390/polym15020255.
3D printing is the most suitable method to manufacture the frame parts of powered ankle-foot prostheses but the compressive strength of the 3D-printed part needs to be ensured. According to the compression test standard ASTM D695, the effect of infill pattern and density, which is transferred to the mass of the standard specimen, on the compressive strength is investigated with a carbon fiber-reinforced nylon material. With the same infill pattern, specimens with more mass have a higher compressive strength. With the same mass, specimens with triangular fill have a higher compressive strength than those with rectangular and gyroid fills. Compared with specimens with a solid fill, specimens with a triangular fill can also provide more compressive strength in a unit mass. According to the results of standard specimens, following the requirement of strength and lightweight, 41% triangular fill is selected to manufacture the supporting part of a powered ankle-foot prosthesis. Under a compressive load of 1225 N, the strain of the assembly of the standard adaptor and the 3D-printed part is 1.32 ± 0.04%, which can meet the requirement of the design. This study can provide evidence for other 3D-printed applications with the requirement of compressive strength.
3D打印是制造动力踝足假肢框架部件最合适的方法,但需要确保3D打印部件的抗压强度。根据压缩试验标准ASTM D695,采用碳纤维增强尼龙材料,研究了填充图案和密度(其转移到标准试样的质量上)对抗压强度的影响。在相同的填充图案下,质量更大的试样具有更高的抗压强度。在相同质量下,三角形填充的试样比矩形和螺旋形填充的试样具有更高的抗压强度。与实心填充的试样相比,三角形填充的试样在单位质量下也能提供更高的抗压强度。根据标准试样的结果,按照强度和轻量化的要求,选择41%的三角形填充来制造动力踝足假肢的支撑部件。在1225 N的压缩载荷下,标准适配器与3D打印部件组件的应变是1.32±0.04%,这能够满足设计要求。本研究可为其他有抗压强度要求的3D打印应用提供依据。