A fractal gripper with switchable mode for geometry adaptive manipulation

Abstract Despite thriving development in academic and practical scenarios, multi-joint underactuated manipulators is still struggling with grasp stability, especially in case of heavy or irregular-shaped objects. A gripper with fractal morphology is invented to improve the grasping capacity of multi...

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Main Authors: Jiaxin Huang, Jian Shen, Yilin Zheng, Yanbo Guo, Zhigong Song
Format: Article
Language:English
Published: Nature Portfolio 2025-04-01
Series:Scientific Reports
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Online Access:https://doi.org/10.1038/s41598-025-98752-z
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author Jiaxin Huang
Jian Shen
Yilin Zheng
Yanbo Guo
Zhigong Song
author_facet Jiaxin Huang
Jian Shen
Yilin Zheng
Yanbo Guo
Zhigong Song
author_sort Jiaxin Huang
collection DOAJ
description Abstract Despite thriving development in academic and practical scenarios, multi-joint underactuated manipulators is still struggling with grasp stability, especially in case of heavy or irregular-shaped objects. A gripper with fractal morphology is invented to improve the grasping capacity of multi-joint underactuated manipulators. Combining the adaptivity of fractal geometry and the principle of lever, the invented fractal gripper achieves superior grasping capacity. The self-recovery feature is realized by resilient design to activate the function of continuous robust grasping and improve the grasping efficiency. Besides, the grasped objects can be held softly owing to the contact force redistribution and pressure re-equilibrium. Meanwhile, the fractal finger is wrapped by elastic polymer to ensure a safe and secure grasp. Fractal gripper with switchable mode promote its applicability. In the fingertip pressure experiments, we tested the fractal gripper and demonstrated its ability to stably envelop complex objects while ensuring even force distribution. Well-designed grab experiments with objects of diverse shapes and sizes demonstrate the multi-scale adaptability and superior grasping stability of the fractal gripper. Our study brings a transformative design paradigm to integrate traditional machine design with mathematical and mechanical principles, which meets critical requirements from a broader field of practical scenarios, such as dealing with irregular heavy objects in everyday housework, agricultural harvesting and underwater operations.
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issn 2045-2322
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publishDate 2025-04-01
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series Scientific Reports
spelling doaj-art-bf9c6f1d2f4c47118b2c09f2330f6fa02025-08-20T03:14:06ZengNature PortfolioScientific Reports2045-23222025-04-0115111910.1038/s41598-025-98752-zA fractal gripper with switchable mode for geometry adaptive manipulationJiaxin Huang0Jian Shen1Yilin Zheng2Yanbo Guo3Zhigong Song4Jiangsu Provincial Key Laboratory of Food Advanced Manufacturing Equipment Technology, School of Mechanical Engineering, Jiangnan UniversityJiangsu Provincial Key Laboratory of Food Advanced Manufacturing Equipment Technology, School of Mechanical Engineering, Jiangnan UniversityJiangsu Provincial Key Laboratory of Food Advanced Manufacturing Equipment Technology, School of Mechanical Engineering, Jiangnan UniversityJiangsu Guoxin CorpJiangsu Provincial Key Laboratory of Food Advanced Manufacturing Equipment Technology, School of Mechanical Engineering, Jiangnan UniversityAbstract Despite thriving development in academic and practical scenarios, multi-joint underactuated manipulators is still struggling with grasp stability, especially in case of heavy or irregular-shaped objects. A gripper with fractal morphology is invented to improve the grasping capacity of multi-joint underactuated manipulators. Combining the adaptivity of fractal geometry and the principle of lever, the invented fractal gripper achieves superior grasping capacity. The self-recovery feature is realized by resilient design to activate the function of continuous robust grasping and improve the grasping efficiency. Besides, the grasped objects can be held softly owing to the contact force redistribution and pressure re-equilibrium. Meanwhile, the fractal finger is wrapped by elastic polymer to ensure a safe and secure grasp. Fractal gripper with switchable mode promote its applicability. In the fingertip pressure experiments, we tested the fractal gripper and demonstrated its ability to stably envelop complex objects while ensuring even force distribution. Well-designed grab experiments with objects of diverse shapes and sizes demonstrate the multi-scale adaptability and superior grasping stability of the fractal gripper. Our study brings a transformative design paradigm to integrate traditional machine design with mathematical and mechanical principles, which meets critical requirements from a broader field of practical scenarios, such as dealing with irregular heavy objects in everyday housework, agricultural harvesting and underwater operations.https://doi.org/10.1038/s41598-025-98752-zFractal gripperGrasping capacityMulti-joint underactuated manipulatorSwitchable modeMulti-scale adaptability
spellingShingle Jiaxin Huang
Jian Shen
Yilin Zheng
Yanbo Guo
Zhigong Song
A fractal gripper with switchable mode for geometry adaptive manipulation
Scientific Reports
Fractal gripper
Grasping capacity
Multi-joint underactuated manipulator
Switchable mode
Multi-scale adaptability
title A fractal gripper with switchable mode for geometry adaptive manipulation
title_full A fractal gripper with switchable mode for geometry adaptive manipulation
title_fullStr A fractal gripper with switchable mode for geometry adaptive manipulation
title_full_unstemmed A fractal gripper with switchable mode for geometry adaptive manipulation
title_short A fractal gripper with switchable mode for geometry adaptive manipulation
title_sort fractal gripper with switchable mode for geometry adaptive manipulation
topic Fractal gripper
Grasping capacity
Multi-joint underactuated manipulator
Switchable mode
Multi-scale adaptability
url https://doi.org/10.1038/s41598-025-98752-z
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