Physical Ergonomic Improvement and Safe Design of an Assembly Workstation through Collaborative Robotics
One of the key interesting features of collaborative robotic applications is the potential to lighten the worker workload and potentiate better working conditions. Moreover, developing robotics applications that meets ergonomic criteria is not always a straightforward endeavor. We propose a framewor...
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doaj-daac20d38b0042cfa4c0a2c6519f26132021-02-19T00:01:54ZengMDPI AGSafety2313-576X2021-02-017141410.3390/safety7010014Physical Ergonomic Improvement and Safe Design of an Assembly Workstation through Collaborative RoboticsAna Colim0Carlos Faria1João Cunha2João Oliveira3Nuno Sousa4Luís A. Rocha5Associação Laboratório Colaborativo em Transformação Digital—DTx Colab, 4800-058 Guimarães, PortugalAssociação Laboratório Colaborativo em Transformação Digital—DTx Colab, 4800-058 Guimarães, PortugalAssociação Laboratório Colaborativo em Transformação Digital—DTx Colab, 4800-058 Guimarães, PortugalAssociação Laboratório Colaborativo em Transformação Digital—DTx Colab, 4800-058 Guimarães, PortugalHuman Engineering, Production and Systems Department, University of Minho, 4800-058 Guimarães, PortugalAssociação Laboratório Colaborativo em Transformação Digital—DTx Colab, 4800-058 Guimarães, PortugalOne of the key interesting features of collaborative robotic applications is the potential to lighten the worker workload and potentiate better working conditions. Moreover, developing robotics applications that meets ergonomic criteria is not always a straightforward endeavor. We propose a framework to guide the safe design and conceptualization of ergonomic-driven collaborative robotics workstations. A multi-disciplinary approach involving robotics and ergonomics and human factors shaped this methodology that leads future engineers through the digital transformation of a manual assembly (with repetitive and hazardous operations) to a hybrid workstation, focusing on the physical ergonomic improvement. The framework follows four main steps, (i) the characterization of the initial condition, (ii) the risk assessment, (iii) the definition of requirements for a safe design, and (iv) the conceptualization of the hybrid workstation with all the normative implications it entails. We applied this methodology to a case study in an assembly workstation of a furniture manufacturing company. Results show that the methodology adopted sets an adequate foundation to accelerate the design and development of new human-centered collaborative robotic workstations.https://www.mdpi.com/2313-576X/7/1/14human–robot collaborationsafe designrisk assessmentsafety standardizationphysical ergonomicswork-related musculoskeletal disorders |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Ana Colim Carlos Faria João Cunha João Oliveira Nuno Sousa Luís A. Rocha |
spellingShingle |
Ana Colim Carlos Faria João Cunha João Oliveira Nuno Sousa Luís A. Rocha Physical Ergonomic Improvement and Safe Design of an Assembly Workstation through Collaborative Robotics Safety human–robot collaboration safe design risk assessment safety standardization physical ergonomics work-related musculoskeletal disorders |
author_facet |
Ana Colim Carlos Faria João Cunha João Oliveira Nuno Sousa Luís A. Rocha |
author_sort |
Ana Colim |
title |
Physical Ergonomic Improvement and Safe Design of an Assembly Workstation through Collaborative Robotics |
title_short |
Physical Ergonomic Improvement and Safe Design of an Assembly Workstation through Collaborative Robotics |
title_full |
Physical Ergonomic Improvement and Safe Design of an Assembly Workstation through Collaborative Robotics |
title_fullStr |
Physical Ergonomic Improvement and Safe Design of an Assembly Workstation through Collaborative Robotics |
title_full_unstemmed |
Physical Ergonomic Improvement and Safe Design of an Assembly Workstation through Collaborative Robotics |
title_sort |
physical ergonomic improvement and safe design of an assembly workstation through collaborative robotics |
publisher |
MDPI AG |
series |
Safety |
issn |
2313-576X |
publishDate |
2021-02-01 |
description |
One of the key interesting features of collaborative robotic applications is the potential to lighten the worker workload and potentiate better working conditions. Moreover, developing robotics applications that meets ergonomic criteria is not always a straightforward endeavor. We propose a framework to guide the safe design and conceptualization of ergonomic-driven collaborative robotics workstations. A multi-disciplinary approach involving robotics and ergonomics and human factors shaped this methodology that leads future engineers through the digital transformation of a manual assembly (with repetitive and hazardous operations) to a hybrid workstation, focusing on the physical ergonomic improvement. The framework follows four main steps, (i) the characterization of the initial condition, (ii) the risk assessment, (iii) the definition of requirements for a safe design, and (iv) the conceptualization of the hybrid workstation with all the normative implications it entails. We applied this methodology to a case study in an assembly workstation of a furniture manufacturing company. Results show that the methodology adopted sets an adequate foundation to accelerate the design and development of new human-centered collaborative robotic workstations. |
topic |
human–robot collaboration safe design risk assessment safety standardization physical ergonomics work-related musculoskeletal disorders |
url |
https://www.mdpi.com/2313-576X/7/1/14 |
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