Publication:
Effect of Segment Types on Characterization of Soft Sensing Textile Actuators for Soft Wearable Robots

Loading...
Thumbnail Image

Institution Authors

Item type:Person,
Özlem, Kadir
Araştırma Görevlisi
Item type:Person,
Atalay, Aslı Tunçay
Doktor Ogretim uyesi
Item type:Person,
İnce, Gökhan
Docent
Item type:Person,
Atalay, Özgür
Profesor

Advisor

Journal Title

Journal ISSN

Volume Title

Publisher

MDPI AG

Research Projects

Organizational Units

Journal Issue

Abstract

The use of textiles in soft robotics is gaining popularity because of the advantages textiles offer over other materials in terms of weight, conformability, and ease of manufacture. The purpose of this research is to examine the stitching process used to construct fabric-based pneumatic bending actuators as well as the effect of segment types on the actuators’ properties when used in soft robotic glove applications. To impart bending motion to actuators, two techniques have been used: asymmetry between weave and weft knit fabric layers and mechanical anisotropy between these two textiles. The impacts of various segment types on the actuators’ grip force and bending angle were investigated further. According to experiments, segmenting the actuator with a sewing technique increases the bending angle. It was discovered that actuators with high anisotropy differences in their fabric combinations have high gripping forces. Textile-based capacitive strain sensors are also added to selected segmented actuator types, which possess desirable properties such as increased grip force, increased bending angle, and reduced radial expansion. The sensors were used to demonstrate the controllability of a soft robotic glove using a closed-loop system. Finally, we demonstrated that actuators integrated into a soft wearable glove are capable of grasping a variety of items and performing various grasp types.

Description

Journal or Series

Biomimetics

ISSN

ISBN

Rights

OPEN

Keywords

Malzeme Bilimi (çeşitli), Technology, Materials science, biomaterials, Materials Science (miscellaneous), Mühendislik, Mühendislik (çeşitli), soft actuator, Engineering, Geotechnical Engineering, Materials science, Article, Biomaterials, Design, Genel Mühendislik, Media Technology, General Materials Science, Engineering, Computing & Technology (ENG), Engineering (miscellaneous), wearable robot, General Engineering, Mühendislik, Bilişim ve Teknoloji (ENG), sensing actuator, Glove, soft robotic, Harita Mühendisliği-Geomatik, Mühendislik, çok disiplinli, Fizik Bilimleri, textile-based actuator, Biyomalzemeler, Engineering, multidisciplinary, Physical Sciences, Malzeme bilimi, biyomateryal, Genel Malzeme Bilimi, Engineering and Technology, soft robotic, soft actuator, sensing actuator, textile-based actuator, wearable robot, Mühendislik ve Teknoloji, Medya Teknolojisi, Malzeme Bilimi

Citation

Collections

Endorsement

Review

Supplemented By

Referenced By

Related Patent

Related Goal

2
Görüntülenme
0
İndirme
Altmetric
Dimensions
PlumX Metrikleri
BIP! Indicators
Google Scholar
Scholar'da Ara ↗