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Implementation and Benefits of the 5S Method in Improving Workplace Organisation – A Case Study Cover

Implementation and Benefits of the 5S Method in Improving Workplace Organisation – A Case Study

Open Access
|Nov 2024

References

  1. Arata, S,. Sugiuchi, M., Ikaga T., Shiraishi Y., Hayashi T., Ando Sh., Kawakuboet Sh. (2023) Economic benefits of the effects of office environment on perceived work efficiency and presenteeism. Building and Environment, 243: 110712. https://doi.org/10.1016/j.buildenv.2023.110712
  2. Midor, K., and Wilkowski, G. (2021) Recertification of a Quality Management System based on ISO 9001 – is it a must for a modern manufacturing company? Production Engineering Archives, 27(3), pp. 217-222. https://doi.org/10.30657/pea.2021.27.29
  3. García-Alcaraz, J., Morales García, A., Díaz-Reza, J.R., Macías, A.J., Lardies C.J., and Fernández J.B. (2022) Effect of lean manufacturing tools on sustainability: The case of Mexican maquiladoras. Environmental Science and Pollution Research, 29, pp. 39622-39637. https://doi.org/10.1007/s11356-022-18978-6
  4. Sati, S.A., and Adam, A. (2019) Evaluating the effectiveness of 5S implementation in the industrial sector. International journal of innovative science and research technology, 4(10), pp. 804-808.
  5. Monden, Y. (2021) Toyota production system: an integrated approach to just-in-time. CRc Press.
  6. Fabrizio, T. and Tapping, D. (2006) 5S for the office: organizing the workplace to eliminate waste. CRC Press.
  7. Gitlow, H.S. (2009) A guide to lean Six Sigma management skills. Auerbach Publications, 2009. https://doi.org/10.1201/9781420084177
  8. Havrylenko, Y., Kholodniak, Y., Halko, S., Vershkov, O., Bondarenko, L., Suprun, O., Miroshnyk, O., Shchur, T., Śrutek, M. and Gackowska, M. (2021) Interpolation with Specified Error of a Point Series Belonging to a Monotone Curve. Entropy, 23, 493. https://doi.org/10.3390/e23050493.
  9. Ikumapayi, O.M., Akinlabi E.T., Mwema F.M. and Ogbonnaet O.S. al. (2020) Six sigma versus lean manufacturing – An overview. Materials Today Proceedings, 26, pp. 3275-3281. https://doi.org/10.1016/j.matpr.2020.02.986
  10. Sin, A.B., Suhaiza Zailani S., Mohammad Iranmanesh M., and T. Ramayah, T. (2015) Structural equation modelling on knowledge creation in Six Sigma DMAIC project and its impact on organizational performance. International Journal of Production Economics, 168, pp. 105-117. https://doi.org/10.1016/j.ijpe.2015.06.007
  11. Tohidi, H. and Khedriliraviasl, K. (2012) Six sigma methodology and its relationship with lean manufacturing system. Advances in Environmental Biology, 6(2), pp. 895-906.
  12. Hirano, H. (1995) 5 pillars of the visual workplace. CRC Press.
  13. Makhija A., Wickramasinghe C., Tiwari M., 5S – Visual management, Lean Tools in Apparel Manufacturing, Wood-head Publishing 2021, pp. 131-208. https://doi.org/10.1016/B978-0-12-819426-3.00009-6.
  14. Žitňák, M., Korenko, M., Shchur, T., Kiełbasa, P., Kazán, L. and Mazur, M. (2023). Risk management in manufacturing practice using the point method, CzOTO 2023, volume 5, issue 1, pp. 318-331, https://doi.org/10.2478/czoto-2023-0035
  15. Shingo, S. (2019) A revolution in manufacturing: the SMED system. Routledge.
  16. Havrylenko Y., Kholodniak Y., Halko S., Vershkov O., Miroshnyk O., Suprun O., Dereza O., Shchur T., Śrutek M. (2021) Representation of a Monotone Curve by a Contour with Regular Change in Curvature. Entropy 23, 923. https://doi.org/10.3390/e23070923
  17. Ulewicz, R., Lazar, L.V. (2019) The Effect of Lean Tools on the Safety Level in Manufacturing Organisations. System Safety: Human – Technical Facility – Environment, 2019, Sciendo, vol. 1 no. 1, pp. 514-521. https://doi.org/10.2478/czoto-2019-0066
  18. Horrevorts, M., Van Ophem, J., and Terpstra, P. (2017) Impact of cleanliness on the productivity of employees. Facilities, 36.9/10, 442-459. https://doi.org/10.1108/F-02-2017-0018
  19. Mrugalska, B., Konieczna, M. and Wyrwicka, M. (2020) How to improve manufacturing process implementing 5S practices: a case study. In: Intelligent Human Systems Integration 2020: Proceedings of the 3rd International Conference on Intelligent Human Systems Integration (IHSI 2020): Integrating People and Intelligent Systems, February 19-21, 2020, Modena, Italy. Springer International Publishing, 2020. pp. 1225-1232. https://doi.org/10.1007/978-3-030-39512-4_187
  20. Abdulmalek, F. A. and Rajgopal, J. (2007) Analyzing the benefits of lean manufacturing and value stream mapping via simulation: A process sector case study. International Journal of production economics, 107.1, pp. 223-236. https://doi.org/10.1016/j.ijpe.2006.09.009
  21. Nawanir, G., Lim, K.T., Othman, S.N. (2015) Measurement instrument for lean manufacturing. International Journal of Applied Science and Technology, 5.4, pp. 102-111.
  22. Santos, E., Lima, T. M.; Gaspar, P. D. (2023) Optimization of the production management of an upholstery manufacturing process using lean tools: a case study. Applied Sciences, 13.17: 9974. https://doi.org/10.3390/app13179974
  23. Veres, C., Marian, L., Moica, S., Al-Akel, K. (2018) Case study concerning 5S method impact in an automotive company. Procedia manufacturing, 22, pp. 900-905. https://doi.org/10.1016/j.promfg.2018.03.127
  24. Costa, L.B., Filho, M.G, Fredendall, L.D., Paredes F.J. (2018) Lean, six sigma and lean six sigma in the food industry: A systematic literature review. Trends in Food Science & Technology, 82(2), 122-133. https://doi.org/10.1016/j.tifs.2018.10.002
  25. Korenko, M., Bujna, M., Földešiová, D., Dostál, P., Kyselica, P. (2015) Risk analysis at work in manufacturing organization. Acta Universitatis Agriculturae et Silviculturae Mendelianae Brunensis, 63(5), pp. 1493-1497. https://doi.org/10.11118/actaun201563051493
  26. Siwiec, D., Pacana, A. (2021) Method of improve the level of product quality. Production Engineering Archives, 27(1), pp. 1-7. https://doi.org/10.30657/pea.2021.27.1
  27. Pawlak, Sz., Nowacki, K., Kania H. (2023) Analysis of the impact of the 5S tool and Standardization on the duration of the production process – Case study. Production Engineering Archives 29(4), pp. 421-427. https://doi.org/10.30657/pea.2023.29.47
  28. Ciecińska, B., Oleksiak, B. (2023) The use of quality management tools to ensure safe working conditions at CO2 laser workstations. Production Engineering Archives 29(4), pp. 393-400. https://doi.org/10.30657/pea.2023.29.44
  29. Małysa, T., Furman, J. (2023) Visual solutions as a way to improve work safety when using machines – selected aspects of VM. Management Systems in Production Engineering, 31(1), pp. 53-58. https://doi.org/10.2478/mspe-2023-0007
  30. Palange, A., Dhatrak, P. (2021) Lean manufacturing a vital tool to enhance productivity in manufacturing. Materials Today Proceedings, 46, pp. 729-736. https://doi.org/10.1016/j.matpr.2020.12.193
  31. Bayo-Moriones, A., Bello-Pintado, A., Merino-Díaz De Cerio, J. (2010) 5S use in manufacturing plants: contextual factors and impact on operating performance. International Journal of Quality & Reliability Management 27(2), pp. 217-230. https://doi.org/10.1108/02656711011014320
  32. Costa, C., Pinto Ferreira, L., Carlos Sá, J. (2018) Implementation of 5S methodology in a metalworking company. DAAAM International Scientific Book, pp. 001-012. https://doi.org/10.2507/daaam.scibook.2018.01
  33. Czifra, G. (2017) Implementation process of 5S for a company in real life-problems, solutions, successes. Research Papers Faculty of Materials Science and Technology Slovak University of Technology, 25.41, pp. 79-86. https://doi.org/10.1515/rput-2017-0024
  34. Kamińska A. (2016) Praktyczne zastosowanie 5S w wybranych fabrykach branży motoryzacyjnej. Studia Oeconomica Posnaniensia, 10, pp. 134-144. https://doi.org/10.18559/SOEP.2016.10.10
  35. Senthil, K., K.M., Akila, K., Arun, K.K., Prabhuet S. (2022) Implementation of 5S practices in a small scale manufacturing industries. Materials Today Proceedings, 62, pp. 1913-1916. https://doi.org/10.1016/j.matpr.2022.01.402
  36. Muotka, S., Togiani, A., Varis, J. (2023) A design thinking approach: Applying 5S methodology effectively in an industrial work environment. Procedia CIRP, 2023, 119: pp. 363-370. https://doi.org/10.1016/j.procir.2023.03.103
  37. Sangode, P. B. (2018) Impact of 5S methodology on the efficiency of the workplace: study of manufacturing firms. International Journal of Research in Commerce & Management, 9.12.
  38. Singh, A., Ahuja, I.S. (2015) Review of 5S methodology and its contribute ons towards manufacturing performance. International journal of process management and benchmarking, 5(4), pp. 408-424. https://doi.org/10.1504/IJPMB.2015.072320
  39. Camuffo, A., De Stefano, F., Paolino, C. (2017) Safety reloaded: lean operations and high involvement work practices for sustainable workplaces. Journal of Business Ethics, 143, pp. 245-259. https://doi.org/10.1007/s10551-015-2590-8
  40. Kanamori, S., Shibanuma, A., Jimba, M. (2016) Applicability of the 5S management method for quality improvement in health-care facilities: a review. Tropical medicine and health, 2016, 44: pp. 1-8. https://doi.org./10.1186/s41182-016-0022-9
  41. Niciejewska, M., Obrecht M. (2020) Impact of behavioral safety (behavioural-based safety – bbs) on the modification of dangerous behaviors in enterprises. [in:] (red. Robert Ulewicz, Ružica R. Nikolić) System Safety: Human – Technical Facility – Environment, 2020 pp. 324-332.
  42. Oleksiak, B., Ciecińska, B., Ołów, P., Hordyńska, M. (2023) Analysis of the Possibility of Introducing the Reduction of Changeover Time of Selected CNC Machines Using the SMED Method. Production Engineering Archives 29(1), pp. 83-93. https://doi.org/10.30657/pea.2023.29.10
  43. Singh, J., Singh, H. (2021) Strategic implementation of justin-time practices for enhancing the performance of manufacturing industry-an empirical investigation. International Journal of Manufacturing Technology and Management, 2021, 35.4: pp. 369-388. https://doi.org/10.1504/IJMTM.2021.121111
  44. Korenko, M.; Kaplík, P. (2016) Implementation of 5S approach in the manufacturing organization. Mechanisation and electrification of agriculture, 4, pp. 212-215.
DOI: https://doi.org/10.2478/mspe-2024-0047 | Journal eISSN: 2450-5781 | Journal ISSN: 2299-0461
Language: English
Page range: 498 - 507
Submitted on: May 1, 2024
Accepted on: Oct 1, 2024
Published on: Nov 9, 2024
Published by: STE Group sp. z.o.o.
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2024 Magdalena Mazur, Maroš Korenko, Miroslav Žitňák, Taras Shchur, Paweł Kiełbasa, Petr Dostál, Oleg Dzhidzhora, Adam Idzikowski, published by STE Group sp. z.o.o.
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