Bio-inspired soft pneumatic gripper for agriculture harvesting

Book chapter


Alex Clark, Liam Goodsell-Carpenter, Pia Buckow, Daniel Hewett, Francis White, Adil Imam, Nabila Naz, Breeshea Robinson, Soumaya K. Manna and Abdullahi Ahmed 2024. Bio-inspired soft pneumatic gripper for agriculture harvesting. in: M. Nazmul Huda, Mingfeng Wang and Tatiana Kalganova (ed.) Towards Autonomous Robotic Systems (TAROS 2024) Cham Springer. pp. 266-277
AuthorsAlex Clark, Liam Goodsell-Carpenter, Pia Buckow, Daniel Hewett, Francis White, Adil Imam, Nabila Naz, Breeshea Robinson, Soumaya K. Manna and Abdullahi Ahmed
EditorsM. Nazmul Huda, Mingfeng Wang and Tatiana Kalganova
Abstract

For agricultural harvesting, handling fruits and vegetables are important processes which need a flexible but firm grip with dexterity. Due to the existing limitations of standard traditional grippers, a diverse range of soft grippers has been developed utilising elastomer, silicon, flexible plastic material etc. The manufacturing process includes mainly moulding or 3D printing and is actuated by pneumatic/ hydraulic drives, tendon drives or electrical signals. Still, there is a gap in the current market of soft grippers in terms of creating the required holding force with flexibility and bending to handle delicate foods. To overcome these existing limitations, a bio-inspired soft gripper is developed from 3D printing using Ninjaflex material. The proposed pneumatic controlled gripper is integrated with a hair-like fine structure and DIP-inspired feature to provide better grip to surfaces along with electrostatic attraction and suction. A comprehensive FEA simulation has been performed on material selection to find lower stress, longer lifespan, and higher bending capacity. Three basic tests are conducted to evaluate its performance: static friction, block force and radius of curvature. Besides, a simple grasping experiment is also conducted for holding tomatoes and coffee cups. Considering these results, the developed gripper has the potential to be acceptable in the current agricultural industry for handling objects.

KeywordsAgriculture; Harvesting; Tools; Grippers; 3D printing
Page range266-277
Year2024
Book titleTowards Autonomous Robotic Systems (TAROS 2024)
PublisherSpringer
Output statusPublished
Place of publicationCham
SeriesLecture Notes in Computer Science
ISBN9783031720611
9783031720628
Publication dates
Online30 Dec 2024
Publication process dates
Deposited21 Jul 2025
Digital Object Identifier (DOI)https://doi.org/10.1007/978-3-031-72062-8_24
Publisher's version
File Access Level
Restricted
Event25th Towards Autonomous Robotic Systems (TAROS)
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