Lean system design framework based on lean functionalities and criteria integration in production machines design phase
Manufacturing needs more and more requirements (sustainability, agility, Industry 4.0 technologies, etc.) to meet customer demands. Nowadays, companies apply Lean tools to improve machines and systems performance in their use phase. Lean tools application on existing machines ensures some functional...
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University of Belgrade - Faculty of Mechanical Engineering, Belgrade
2021
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oai:doaj.org-article:fdeb55676ce9465886e08bcc9cab7a972021-12-05T21:01:45ZLean system design framework based on lean functionalities and criteria integration in production machines design phase1451-20922406-128X10.5937/fme2103575Shttps://doaj.org/article/fdeb55676ce9465886e08bcc9cab7a972021-01-01T00:00:00Zhttps://scindeks-clanci.ceon.rs/data/pdf/1451-2092/2021/1451-20922103575S.pdfhttps://doaj.org/toc/1451-2092https://doaj.org/toc/2406-128XManufacturing needs more and more requirements (sustainability, agility, Industry 4.0 technologies, etc.) to meet customer demands. Nowadays, companies apply Lean tools to improve machines and systems performance in their use phase. Lean tools application on existing machines ensures some functionalities like (Reduce changeover time, eliminate wastes, Involve Human Skills, etc.). The purpose of this paper is to offer designers a design support method and tool to design a performant system (production system, machines, etc.) by integrating Lean functionalities from the early design phases, with a minimum of needs to improve the system in the use phase via Lean. For this purpose, we analyze the Lean principles and tools to identify functionalities provided by Lean. These functionalities are analyzed and classified to integrate them into the design of manufacturing systems in the context of Industry 4.0. A "Lean-System-Design" approach defines a systematic and detailed guide for the integration of Lean from the early design phase. We provide the software tool specifications, which represent the first steps of its implementation. We have illustrated our proposal with a case study on the design of a waste treatment machine.Slim RabihHoussin RémyCoulibaly AmadouChibane HichamUniversity of Belgrade - Faculty of Mechanical Engineering, Belgradearticleproduction machines designproduction systems design machines designlean thinkinglean designindustry 4.0performance criteriaEngineering (General). Civil engineering (General)TA1-2040Mechanics of engineering. Applied mechanicsTA349-359ENFME Transactions, Vol 49, Iss 3, Pp 575-586 (2021) |
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production machines design production systems design machines design lean thinking lean design industry 4.0 performance criteria Engineering (General). Civil engineering (General) TA1-2040 Mechanics of engineering. Applied mechanics TA349-359 |
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production machines design production systems design machines design lean thinking lean design industry 4.0 performance criteria Engineering (General). Civil engineering (General) TA1-2040 Mechanics of engineering. Applied mechanics TA349-359 Slim Rabih Houssin Rémy Coulibaly Amadou Chibane Hicham Lean system design framework based on lean functionalities and criteria integration in production machines design phase |
description |
Manufacturing needs more and more requirements (sustainability, agility, Industry 4.0 technologies, etc.) to meet customer demands. Nowadays, companies apply Lean tools to improve machines and systems performance in their use phase. Lean tools application on existing machines ensures some functionalities like (Reduce changeover time, eliminate wastes, Involve Human Skills, etc.). The purpose of this paper is to offer designers a design support method and tool to design a performant system (production system, machines, etc.) by integrating Lean functionalities from the early design phases, with a minimum of needs to improve the system in the use phase via Lean. For this purpose, we analyze the Lean principles and tools to identify functionalities provided by Lean. These functionalities are analyzed and classified to integrate them into the design of manufacturing systems in the context of Industry 4.0. A "Lean-System-Design" approach defines a systematic and detailed guide for the integration of Lean from the early design phase. We provide the software tool specifications, which represent the first steps of its implementation. We have illustrated our proposal with a case study on the design of a waste treatment machine. |
format |
article |
author |
Slim Rabih Houssin Rémy Coulibaly Amadou Chibane Hicham |
author_facet |
Slim Rabih Houssin Rémy Coulibaly Amadou Chibane Hicham |
author_sort |
Slim Rabih |
title |
Lean system design framework based on lean functionalities and criteria integration in production machines design phase |
title_short |
Lean system design framework based on lean functionalities and criteria integration in production machines design phase |
title_full |
Lean system design framework based on lean functionalities and criteria integration in production machines design phase |
title_fullStr |
Lean system design framework based on lean functionalities and criteria integration in production machines design phase |
title_full_unstemmed |
Lean system design framework based on lean functionalities and criteria integration in production machines design phase |
title_sort |
lean system design framework based on lean functionalities and criteria integration in production machines design phase |
publisher |
University of Belgrade - Faculty of Mechanical Engineering, Belgrade |
publishDate |
2021 |
url |
https://doaj.org/article/fdeb55676ce9465886e08bcc9cab7a97 |
work_keys_str_mv |
AT slimrabih leansystemdesignframeworkbasedonleanfunctionalitiesandcriteriaintegrationinproductionmachinesdesignphase AT houssinremy leansystemdesignframeworkbasedonleanfunctionalitiesandcriteriaintegrationinproductionmachinesdesignphase AT coulibalyamadou leansystemdesignframeworkbasedonleanfunctionalitiesandcriteriaintegrationinproductionmachinesdesignphase AT chibanehicham leansystemdesignframeworkbasedonleanfunctionalitiesandcriteriaintegrationinproductionmachinesdesignphase |
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1718371041638612992 |