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基于生物启发,利用3D打印细胞超材料设计符合人体工程学的工具手柄。

Bioinspired Design of Ergonomic Tool Handles Using 3D-Printed Cellular Metamaterials.

作者信息

Harih Gregor, Plesec Vasja

机构信息

Laboratory for Integrated Product Development and CAD, Faculty of Mechanical Engineering, University of Maribor, Slovenia Smetanova ulica 17, 2000 Maribor, Slovenia.

出版信息

Biomimetics (Basel). 2025 Aug 8;10(8):519. doi: 10.3390/biomimetics10080519.

Abstract

The design of ergonomic tool handles is crucial for user comfort and performance, yet conventional stiff materials often lead to uneven pressure distribution and discomfort. This study investigates the application of 3D-printed cellular metamaterials with tunable stiffness, specifically gyroid structures, to enhance the ergonomic and haptic properties of tool handles. We employed finite element analysis to simulate finger-handle interactions and conducted subjective comfort evaluations with participants using a foxtail saw with handles of varying gyroid infill densities and a rigid PLA handle. Numerical results demonstrated that handles with medium stiffness significantly reduced peak contact pressures and promoted a more uniform pressure distribution compared to the stiff PLA handle. The softest gyroid handle, while compliant, exhibited excessive deformation, potentially compromising stability. Subjective comfort ratings corroborated these findings, with medium-stiffness handles receiving the highest scores for overall comfort, fit, and force transmission. These results highlight that a plateau-like mechanical response of the 3D-printed cellular metamaterial handle, inversely bioinspired by human soft tissue, effectively balances pressure redistribution and grip stability. This bioinspired design approach offers a promising direction for developing user-centered products that mitigate fatigue and discomfort in force-intensive tasks.

摘要

符合人体工程学的工具手柄设计对于用户的舒适度和操作性能至关重要,然而传统的硬质材料常常导致压力分布不均和不适感。本研究探讨了具有可调刚度的3D打印多孔超材料,特别是类螺旋结构,在增强工具手柄的人体工程学和触觉特性方面的应用。我们采用有限元分析来模拟手指与手柄的相互作用,并让参与者使用具有不同类螺旋填充密度手柄的狐尾锯和刚性聚乳酸(PLA)手柄进行主观舒适度评估。数值结果表明,与硬质PLA手柄相比,中等刚度的手柄显著降低了峰值接触压力,并促进了更均匀的压力分布。最软的类螺旋手柄虽然柔顺,但表现出过度变形,可能会影响稳定性。主观舒适度评分证实了这些发现,中等刚度手柄在整体舒适度、贴合度和力传递方面得分最高。这些结果表明,受人体软组织反向启发的3D打印多孔超材料手柄的平台状机械响应有效地平衡了压力重新分布和握持稳定性。这种受生物启发的设计方法为开发以用户为中心的产品提供了一个有前景的方向,可减轻高强度用力任务中的疲劳和不适感。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/de71/12383637/58c20b5babac/biomimetics-10-00519-g001.jpg

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