The Directory of Open Access Journals
DOAJ Logotype
Open
Global
Trusted
Main actions
Support
Institutions and libraries
Publishers
Institutional and library supporters
Apply
Application form
Guide to applying
The DOAJ Seal
Transparency & best practice
Publisher information
Licensing & copyright
Search
Menu
Secondary actions
Search
Journals
Articles
Documentation
API
OAI-PMH
Widgets
Public data dump
OpenURL
XML
Metadata help
Preservation
About
About DOAJ
DOAJ at 20
DOAJ team
Ambassadors
Advisory Board & Council
Editorial Policy Advisory Group
Volunteers
News
Support
Institutions and libraries
Publishers
Institutional and library supporters
Apply
Application form
Guide to applying
The DOAJ Seal
Transparency & best practice
Publisher information
Licensing & copyright
Login
Login
Quick search
Close
×
Journals
Articles
Search by keywords:
In the field:
In all fields
Title
ISSN
Subject
Publisher
Country of publisher
Search
Frontiers in Robotics and AI
(Jul 2021)
Corrigendum: Design of an Inkjet-Printed Rotary Bellows Actuator and Simulation of its Time-Dependent Deformation Behavior
Gabriel Dämmer,
Gabriel Dämmer,
Michael Lackner,
Sonja Laicher,
Rüdiger Neumann,
Zoltán Major
Affiliations
Gabriel Dämmer
Institute of Polymer Product Engineering, Johannes Kepler University Linz, Linz, Austria
Gabriel Dämmer
Advanced Development Control and Robotics, Festo SE and Co. KG, Esslingen, Germany
Michael Lackner
Institute of Polymer Product Engineering, Johannes Kepler University Linz, Linz, Austria
Sonja Laicher
Advanced Development Control and Robotics, Festo SE and Co. KG, Esslingen, Germany
Rüdiger Neumann
Advanced Development Control and Robotics, Festo SE and Co. KG, Esslingen, Germany
Zoltán Major
Institute of Polymer Product Engineering, Johannes Kepler University Linz, Linz, Austria
DOI
https://doi.org/10.3389/frobt.2021.729549
Journal volume & issue
Vol. 8
Abstract
Read online
No abstracts available.
Keywords
bellow actuator
printed robotics
design for additive manufacture
multi-material 3D printing
soft pneumatic actuator
time-dependent materials
WeChat QR code
Close