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Evaluation of postural-assist exoskeleton for manual material handling

Omobolanle Ogunseiju (Myers-Lawson School of Construction, Virginia Tech, Blacksburg, Virginia, USA)
Johnson Olayiwola (Myers-Lawson School of Construction, Virginia Tech, Blacksburg, Virginia, USA)
Abiola Akanmu (Myers Lawson School of Construction, Virginia Polytechnic Institute and State University, Blacksburg, Virginia, USA)
Oluwole Alfred Olatunji (School of Design and the Built Environment, Curtin University, Perth, Australia)

Engineering, Construction and Architectural Management

ISSN: 0969-9988

Article publication date: 29 April 2021

Issue publication date: 24 March 2022

742

Abstract

Purpose

Work-related musculoskeletal disorders constitute a severe problem in the construction industry. Workers' lower backs are often affected by heavy or repetitive lifting and prolonged awkward postures. Exoskeletal interventions are effective for tasks involving manual lifting and repetitive movements. This study aims to examine the potential of a postural-assist exoskeleton (a passive exoskeleton) for manual material handling tasks.

Design/methodology/approach

From an experimental observation of participants, the effects of postural-assist exoskeleton on tasks and workers were measured. Associated benefits of the exoskeleton were assessed through task performance, range of motion and discomfort.

Findings

Findings suggest that the exoskeleton influenced discomfort significantly, however range of motion decreased with lifting tasks. The reduced back flexion and increased hip flexion were also indicatives of the participants' responsiveness to the feedback from the exoskeleton. In addition, task completion time increased by 20%, and participants' back pain did not reduce.

Research limitations/implications

The work tasks were performed in a controlled laboratory environment and only wearable inertia measurement units (IMUs) were used to assess the risk exposures of the body parts.

Practical implications

This study opens a practical pathway to human-exoskeleton integration, artificial regeneration or enablement of impaired workforce and a window toward a new order of productivity scaling. Results from this study provide preliminary insights to designers and innovators on the influence of postural assist exoskeleton on construction work. Project stakeholders can be informed of the suitability of the postural assist exoskeletons for manual material handling tasks.

Originality/value

Little has been reported on the benefits and impact of exoskeletons on tasks' physical demands and construction workers' performance. This study adds value to the existing literature, in particular by providing insights into the effectiveness and consequences of the postural-assist exoskeleton for manual material handling tasks.

Keywords

Citation

Ogunseiju, O., Olayiwola, J., Akanmu, A. and Olatunji, O.A. (2022), "Evaluation of postural-assist exoskeleton for manual material handling", Engineering, Construction and Architectural Management, Vol. 29 No. 3, pp. 1358-1375. https://doi.org/10.1108/ECAM-07-2020-0491

Publisher

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Emerald Publishing Limited

Copyright © 2021, Emerald Publishing Limited

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