Related Experiment Video
Updated: Sep 25, 2026

Rod-based Fabrication of Customizable Soft Robotic Pneumatic Gripper Devices for Delicate Tissue Manipulation
Published on: August 2, 2016
FaBrick: An actuated fabric building platform for constructing scalable and versatile soft robots
Mingyuan Li1, Russell Dickerson1, Runze Zuo1
1College of Engineering, University of Michigan Ann Arbor, G.G. Brown Building, 2350 Hayward St, Ann Arbor, MI 48109, USA.
Abstract:
Soft robots have shown promise across applications such as wearable assistance, gripping, manipulation, and locomotion, where adaptability, safety, and compliance are essential. These functions are largely enabled by a small set of fundamental actuation modes: contraction, bending, twisting, rotation, and stiffening; but existing soft actuators that realize these motions are constructed using distinct materials and fabrication methods. This lack of standardization fragments the design process, limits scalability, and restricts accessibility for nonspecialized users. To address these challenges, this paper introduces FaBrick, a modular actuated fabric material made through a scalable manufacturing process that uses heated, patterned rolling to produce it at arbitrary lengths. Through folding, cutting, sealing, and stapling, FaBrick material can be configured to replicate the contractile, twisting, rotational, and bending motions of other soft pneumatic actuators. Each actuator type is fabricated, modeled, and experimentally validated, and the actuators are integrated into (i) wearable robotic limbs, (ii) a one-piece adaptive gripper, (iii) an elephant trunk-inspired manipulator, and (iv) a quadruped-like locomotion robot. Together, these results establish FaBrick as a scalable, versatile, and user-friendly foundation for building integrated soft robotic systems from a single material platform.
More Related Videos
05:47Simulation of a Scaled Assembly Process with Collaboration of a Robotic Arm and Monitoring through a Vision System for Quality Control
Published on: August 29, 2025
11:06Design and Fabrication of an Elastomeric Unit for Soft Modular Robots in Minimally Invasive Surgery
Published on: November 14, 2015