ShapeForce: Low-Cost Soft Robotic Wrist for Contact-Rich Manipulation

Fuente: arXiv
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Main Authors: Zhu, Jinxuan, Yan, Zihao, Xiao, Yangyu, Guo, Jingxiang, Tie, Chenrui, Cao, Xinyi, Zheng, Yuhang, Shao, Lin
Format: Preprint
Published: 2025
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author Zhu, Jinxuan
Yan, Zihao
Xiao, Yangyu
Guo, Jingxiang
Tie, Chenrui
Cao, Xinyi
Zheng, Yuhang
Shao, Lin
author_facet Zhu, Jinxuan
Yan, Zihao
Xiao, Yangyu
Guo, Jingxiang
Tie, Chenrui
Cao, Xinyi
Zheng, Yuhang
Shao, Lin
contents Contact feedback is essential for contact-rich robotic manipulation, as it allows the robot to detect subtle interaction changes and adjust its actions accordingly. Six-axis force-torque sensors are commonly used to obtain contact feedback, but their high cost and fragility have discouraged many researchers from adopting them in contact-rich tasks. To offer a more cost-efficient and easy-accessible source of contact feedback, we present ShapeForce, a low-cost, plug-and-play soft wrist that provides force-like signals for contact-rich robotic manipulation. Inspired by how humans rely on relative force changes in contact rather than precise force magnitudes, ShapeForce converts external force and torque into measurable deformations of its compliant core, which are then estimated via marker-based pose tracking and converted into force-like signals. Our design eliminates the need for calibration or specialized electronics to obtain exact values, and instead focuses on capturing force and torque changes sufficient for enabling contact-rich manipulation. Extensive experiments across diverse contact-rich tasks and manipulation policies demonstrate that ShapeForce delivers performance comparable to six-axis force-torque sensors at an extremely low cost.
format Preprint
id arxiv_https___arxiv_org_abs_2511_19955
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle ShapeForce: Low-Cost Soft Robotic Wrist for Contact-Rich Manipulation
Zhu, Jinxuan
Yan, Zihao
Xiao, Yangyu
Guo, Jingxiang
Tie, Chenrui
Cao, Xinyi
Zheng, Yuhang
Shao, Lin
Robotics
Contact feedback is essential for contact-rich robotic manipulation, as it allows the robot to detect subtle interaction changes and adjust its actions accordingly. Six-axis force-torque sensors are commonly used to obtain contact feedback, but their high cost and fragility have discouraged many researchers from adopting them in contact-rich tasks. To offer a more cost-efficient and easy-accessible source of contact feedback, we present ShapeForce, a low-cost, plug-and-play soft wrist that provides force-like signals for contact-rich robotic manipulation. Inspired by how humans rely on relative force changes in contact rather than precise force magnitudes, ShapeForce converts external force and torque into measurable deformations of its compliant core, which are then estimated via marker-based pose tracking and converted into force-like signals. Our design eliminates the need for calibration or specialized electronics to obtain exact values, and instead focuses on capturing force and torque changes sufficient for enabling contact-rich manipulation. Extensive experiments across diverse contact-rich tasks and manipulation policies demonstrate that ShapeForce delivers performance comparable to six-axis force-torque sensors at an extremely low cost.
title ShapeForce: Low-Cost Soft Robotic Wrist for Contact-Rich Manipulation
topic Robotics
url https://arxiv.org/abs/2511.19955