Ergonomic Design for Assembly Manufacturing Workstation Based on Universal Design Principles

Ergonomic Design for Assembly Manufacturing Workstation Based on Universal Design Principles
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基于通用设计原则的装配制造工作站工效设计

DOI:
10.1007/978-3-030-80829-7_106
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发表时间:
2021
期刊:
Lecture Notes in Networks and Systems
影响因子:
--
通讯作者:
Ito Teruaki
Ito Teruaki
中科院分区:
--
文献类型:
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作者:
Hambali Ruzy Haryati;Mohamad Effendi;Ito Teruaki

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除了工作满意度外,设计良好的人体工程学工作环境可提供人身安全,并提高工人的生产力。在制造设施中,工人在工作期间的活动涉及繁重的工作量,例如提升,施加过度的力等。这些都有助于人体工程学问题,并强烈需要有效的对策来改善这一点。本项目旨在验证工人的人机工程学风险,并提出一个制造工作站的人机工程学设计。北欧肌肉骨骼问卷(NMQ)和通用设计的原则,在合作伙伴公司的现有工作站。利用CATIA V5和数字化制造仿真软件DELMIA V5实现了其仿真模型。结果,得到了上肢快速评估(RECT)和工作站能耗的计算分析。结果表明,该设计方案的能耗和回收率均优于现有设计方案。建议的设计的可行性将使用模拟结果进行讨论(177)。
Apart from job satisfaction, well-designed ergonomic work environment provides physical safety as well as enhance productivity of workers. In manufacturing facilities, workers’ activities during work involve heavy workloads, such as lifting, exerting excessive force, etc. These contributes ergonomic issues and effective countermeasure to improve this is strongly required. This project aims to verify the ergonomic risk of workers and propose an ergonomic design for the manufacturing workstation. Nordic musculoskeletal questionnaire (NMQ) and principle of universal design was used in the existing workstation of partner company. Its simulation model was implemented using (CATIA V5) and digital manufacturing simulation software (DELMIA V5). As a result, computed analysis of Rapid Upper Limb Assessment (RULA) and energy consumption in the workstation were obtained. Results showed that RULA and energy consumption of the proposed design were better than the existing design. Feasibility of the proposed design will be discussed using the results of simulation(177).