EngineeringMaterials ScienceMedicine

Joon Lee, Jeongyoon Han, Doyoung Kim, Seokhwan Jeong

2026.1.20Soft Robotics

DOI: 10.48550/arxiv.2601.13737

tlooto Summary

The flexible RIM Hand, a biomimetic robotic hand that precisely replicates the carpometacarpal joints and employs superelastic Nitinol wires throughout its skeletal framework, offers improved dexterity, compliance, and anthropomorphism, making it promising for prosthetic and service-robot applications.

Abstract

This paper presents the flexible RIM Hand, a biomimetic robotic hand that precisely replicates the carpometacarpal (CMC) joints and employs superelastic Nitinol wires throughout its skeletal framework. By modeling the full carpal-to-metacarpal anatomy, the design enables realistic palm deformation through tendon-driven fingers while enhancing joint restoration and supports skeletal structure with Nitinol-based dorsal extensors. A flexible silicone skin further increases contact friction and contact area, enabling stable grasps for diverse objects. Experiments show that the palm can deform up to 28%, matching human hand flexibility, while achieving more than twice the payload capacity and three times the contact area compared to a rigid palm design. The RIM Hand thus offers improved dexterity, compliance, and anthropomorphism, making it promising for prosthetic and service-robot applications.

Citation format

LEE, Joon, et al. RIM hand: A robotic hand with an accurate carpometacarpal joint and nitinol-supported skeletal structure [preprint]. arXiv, 2026. arXiv:2601.13737.