CORTEXA
← Browse
arxivcs.RO2026-07-16

Hybrid Rigid-Soft Robotic Gripper with Shape Adaptation, Uniform Force Distribution, and Self-Locking Capabilities

Xi Chen, Yun Wang, Lichao Yang, Haitao Li, Ya Xiong

Conventional robotic grippers face a significant challenge in agricultural automation: the trade-off between compliant, adaptive grasping, pressure balancing among all joints, and high load capacity, often at the cost of high energy consumption. This paper presents a novel hybrid rigid-soft gripper that integrated low-cost, membrane-based pneumatic actuators with 3D-printed dual ratchet-pawl mechanisms to simultaneously achieve shape adaptation, uniform force distribution, and energy-free self-locking. The dual-ratchet structure assembled in an offset configuration significantly increased the angular resolution of the joint locking mechanism. Key experimental results demonstrated the gripper's superior performance: a remarkable maximum load capacity of 4200 g, far exceeding that of conventional soft grippers (45-210 g); more uniform force distribution across object sizes (1.75-35.29% difference ratio) compared to a rigid gripper (56.77-66.44%), with peak contact forces remaining below surface damage thresholds; and a 50.05% reduction in total energy consumption to 42.6 J per grasp cycle, achieved by eliminating the need for continuous pneumatic pressure through the self-locking mechanism, compared to 85.28 J for a conventional soft gripper. The combination of additive manufacturing for ratchets and commercially available materials for pneumatic chambers ensured a low-cost and easily fabricated design. These findings validated that the proposed gripper successfully bridged the gap between soft compliance and rigid reliability, offering a robust and efficient solution for scalable agricultural harvesting and manipulation tasks.

View free PDFSource page

Related papers

arxivcs.ROcs.AI2026-07-07

A Continual Learning Framework for Adaptive Control of Modular Soft Robots

Nilay Kushawaha, Muhammad Sunny Nazeer, Baljinder Singh Bal, Cecilia Laschi, Egidio Falotico

Soft robots have attracted significant attention in applications such as medical intervention, rehabilitation, and robotic manipulation due to their inherent compliance, flexibility, and high degrees of freedom. Modular soft robots (MSRs), composed of multiple interconnected segm…

View free PDFSource page
arxivcs.RO2026-07-22

Distributed Acoustic Localization Array Deployed Using a Soft Everting Vine Robot

Sebastian Lorca Godoy, Ciera McFarland, Michael Val, Antonio Alvarez Valdivia, Nathaniel Hanson, Margaret McGuinness

Soft robot exteroception is increasingly being explored for a variety of field applications. In this work, we present a sound-based system for localizing disaster victims in confined and unstructured environments, based on a distributed acoustic sensing architecture embedded alon…

View free PDFSource page
arxivcs.RO2026-07-22

Distributed Motion Planning with Safety Guarantees for Self-Reconfiguring Robotic Boats

Alejandro Gonzalez-Garcia, Wei Wang, Wei Xiao, Wilm Decre, Jan Swevers, Carlo Ratti, et al.

Aquatic self-reconfigurable robots must assemble into desired shapes while ensuring safe interactions among multiple agents. This paper proposes a hybrid framework that combines distributed Model Predictive Control (MPC) with Control Barrier Functions (CBFs) for multi-agent shape…

View free PDFSource page
arxivcs.RO2026-07-16

Robust Silicone Pour Casting and Sensor Embedding Procedures for Soft Robotic Actuators

Harshit Thakker, Paul Dela Cruz, Mostafa Mo. Massoud, Jacqueline Libby

Soft robots are well-suited for applications such as rehabilitation and surgery that require adaptable and safe interaction with their environment. However, the challenges of reproducible and scalable fabrication of soft robots limit their real-world deployment. Various fabricati…

View free PDFSource page
arxivcs.RO2026-07-08

Soft Robotic Exogloves for Dexterous Mobility -- Towards Personalized Rehabilitation

Paul Dela Cruz, Mostafa Mo. Massoud, Jacqueline Libby

Soft robotic exogloves can provide hand rehabilitation and assistance. Fitting these gloves often relies on standardized measurements not tailored to the individual, limiting their effectiveness, especially for fine articulation necessary for dexterous manipulation. We present th…

View free PDFSource page