arXiv:2607.22320cs.RO2026-07

用折纸结构实现柔软手部的高精度弯曲与简易制造

A Monolithic Hand with Asymmetric Origami Bending and Dual-chamber Actuators

  • 采用非对称折纸结构与双腔设计,实现手指与掌部协同运动
  • 最大弯曲角度达203°(手指)和40°(掌部),输出力分别达6.3N与16N
  • 单材料一体成型,适合快速制造,适合医疗、抓取等场景

软体机械手固有的被动适应性使其在需要安全柔顺交互的应用中具有优势。然而,现有软体机械手常因结构复杂,难以同时实现良好输出性能与简便制造。本文提出非对称折纸弯曲(AOB)结构与非对称双腔(ADC)设计,构建了用于仿折纸软体机械手(OSOR)的手指与掌部执行器。通过定义非对称比表征单元几何不对称性,建立了AOB与ADC结构的解析模型,并基于几何分析开发了有限元分析工具。该设计支持使用单一热塑性聚氨酯材料通过选择性激光烧结工艺实现一体化制造。实验验证表明,手指与掌部最大弯曲范围分别为203°和40°,输出力为6.3N和16N。该手可完成捏持组织、双指稳定抓握水瓶、仅掌抓握及制造分类中的动力抓握。其紧凑性、高性能与易制造性为软体机械手发展提供了新可能。

原文摘要 · Abstract (English)

The passive adaptability inherent in soft robotic hands affords them advantages in applications that require safe and compliant interaction. However, existing soft robotic hands often struggle to simultaneously achieve adequate output performance and easy manufacturing due to their complicated structures. In this paper, we introduce the asymmetric origami bending (AOB) pattern for generating bending motion and the asymmetric dual-chamber (ADC) design for obtaining multifunction capability. The AOB single (AOB-S) chamber and AOB dual-chamber (AOB-D) units are designed and constitute the finger and palm actuators of the proposed Origami-inspired SOft Robotic (OSOR) hand. The OSOR hand achieves bio-inspired fingers-palm motions and adequate output performance within a monolithic structure that significantly simplifies the manufacturing process. By defining the asymmetric ratio to characterize the geometric asymmetry of the unit, the analytical models of the AOB and ADC structures are proposed. The Finite Element Analysis tool for the design of AOB actuators is obtained by geometric analysis. The asymmetric origami design grants the integrated manufacturing of the OSOR hand through a Selective Laser Sintering printing process with a single thermoplastic polyurethane material. The model and simulations are validated by experimental results. Experiments show the finger and palm maximum bending motion range of 203° and 40°, respectively, with output forces of 6.3 N and 16 N. The OSOR hand is capable of pinching a piece of tissue, stably grasping water bottles with two fingers, palm-only grasping, and completing the power grasps in the taxonomy of manufacturing grasps. The compactness, performance, and easy manufacturing of the proposed hand benefit the development of the soft robotic hand with new possibilities.

软体机器人折纸结构一体制造多任务抓取

Thank you to arXiv for use of its open access interoperability. PaperDance 不是 arXiv 官方产品;中文卡片由大模型生成,请以原文为准。