Faculty of Mechanical Engineering, University of Maribor, Maribor, Slovenia.
Sci Rep. 2023 May 19;13(1):8158. doi: 10.1038/s41598-023-35418-8.
The auxetic cellular structures are one of the most promising metamaterials for vibration damping and crash absorption applications. Therefore, their use in the bicycle handlebar grip was studied in this work. A preliminary computational design study was performed using various auxetic and non-auxetic geometries under four load cases, which can typically appear. The most representative geometries were then selected and fabricated using additive manufacturing. These geometries were then experimentally tested to validate the discrete and homogenised computational models. The homogenised computational model was then used to analyse the biomechanical behaviour of the handlebar grip. It was observed that handle grip made from auxetic cellular metamaterials reduce the high contact pressures, provide similar stability and hereby improve the handlebar ergonomics.
各向异性细胞结构是最有前途的减振和吸能应用的超材料之一。因此,本工作研究了其在自行车把手套中的应用。在四种典型的负载情况下,使用各种各向异性和非各向异性的几何形状进行了初步的计算设计研究。然后选择最具代表性的几何形状,并使用增材制造进行制造。然后对这些几何形状进行了实验测试,以验证离散和均匀化的计算模型。然后使用均匀化的计算模型来分析把手套的生物力学行为。观察到由各向异性细胞超材料制成的把手套减少了高接触压力,提供了类似的稳定性,从而改善了把手套的人体工程学。