Thermally Powered Soft Gripper Covered with Silver‐Coated Nylon Fabric Heater Reinforced with Stainless Steel Yarn

Author:

Taherkhani Bahman1ORCID,Çelebi Mehmet Fatih2,Çetin Münire Sibel1,Tuncay Atalay Asli1,Ince Gökhan3,Atalay Ozgur1ORCID

Affiliation:

1. Faculty of Textile Technologies and Design Textile Engineering Department Istanbul Technical University 34437 Istanbul Turkey

2. Faculty of Technology, Mechatronics Engineering Department Marmara University 34854 Istanbul Turkey

3. Faculty of Computer and Informatics Engineering Computer Engineering Department Istanbul Technical University 34437 Istanbul Turkey

Abstract

Soft grippers, generating movement immediately, are generally based on flexible materials actuated by air pressure and comprised of bulky parts, including valves, compressors/pumps, motors, and tubes. In this work, a compact soft gripper with the ability to actuate with a low boiling point liquid (acetone) is presented. SolidWorks 2021 software and 3D printing technology are used to design and manufacture the gripper molds, respectively. The constitutive material of the soft gripper body is highly flexible Ecoflex. A silver‐coated nylon fabric (SCNF) heater reinforced with stainless steel yarn (SSY) covering the external surface of the gripper is designed and manufactured using Autocad 2021 and a laser cutting machine, respectively. The idea is inspired by floating the gripper in warm water to provide smooth heat over a large surface area. The available commercial software Abaqus2021 is used to simulate the mechanical deformation of the gripper, and its results are verified with experimental results. The parameter's effect including the voltage and low boiling liquid volume on achievable force and actuating time are investigated. The relation between the electrical, thermal, and mechanical properties of the presented gripper is discussed in detail.

Publisher

Wiley

Cited by 1 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Meso-macro deformation investigation for biaxial knitted textile based pouch motor;Mechanics of Advanced Materials and Structures;2024-07-17

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