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Work Safety During Usage, Repair and Maintenance of Machines - a Review of Work Safety in the Aspect of Accidents at Work

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The usage, repair and maintenance of machines is one of the areas in which it still records a significant number of accident events. The occurrence of accidents at work generates social and economic costs for the enterprise. Therefore, employers should be take measures to improve safety at the workplace. The publication presents an accident analysis based on a comparison of the following measures: accident rates (i.e. number of accidents, event effects) and ratio analysis (frequency rate indicator and total accident rate indicator). Calculated indicators allowed to determine the accident rate during the usage, repair and maintenance of machines. The analysis covered a five-year period - i.e. 2013-2017. On the basis of the analyzes carried out, the proposal was presented of possible prevention solutions to reduce the number of accidents at work.
Rocznik
Strony
151--161
Opis fizyczny
Bibliogr. 20 poz., rys., tab.
Twórcy
  • Silesian University of Technology, ul. Akademicka 2A 44-100 Gliwice, Poland
Bibliografia
  • 1. Act of June 26, 1974. The Labour Code. Available at:http://prawo.sejm.gov.pl/isap.nsf/download.xsp/WDU19740240141/U/D197401 41Lj.pdf [Accessed 1 June 2019].
  • 2. Act of October 30, 2002 on social insurance for accidents at work and occupational diseases
  • 3. Directive 2009/104/EC of the European Parliament of the Council of 16 September 2009 concerning the minimum safety and health requirements for the use of work equipment by workers at work.
  • 4. Directive 2006/42/EC of the European Parliament and of Council of 17 May 2006 on machinery.
  • 5. Furman, J., Kuczyńska-Chałada, M., Poloczek R. (2018). Improvement of production processes with the use of Lean Manufacturing tools. MAPE 2018, [online] Volume 1(1), pp. 529-535. Available at: https://content.sciendo.com/abstract/journals/mape/1/1/article-p529.xml [Accessed 1 June 2019].
  • 6. Furman, J., Kuczyńska-Chałada, M., Pawlak, S. (2017). The influence of lean manufacturing tools on the product quality in the casting process - case study. In: METAL 2017: 26th International Conference on Metallurgy and Materials, Ostrava: Tanger, p. 2220.
  • 7. Gajdzik, B., Wyciślik, A. (2016). Ramowe zasady implementacji metody 5S w laboratorium chemicznym. Przemysł Chemiczny, vol. 2, issue: 1, pp.10-13.
  • 8. Gajdzik, B. (2013). World Class Manufacturing in metallurgical enterprises Metalurgija, vol. 52, issue: 1, pp. 131-134. Available at:https://hrcak.srce.hr/index.php?show=clanak&id_clanak_jezik=129153
  • 9. Gala, B., Wolniak, R. (2013). Problems of implementation 5S practices in an industrial company. Management System in Production Engineering, vol. 12, no. 4, pp. 8-14. Available at:http://wydawnictwo.panova.pl/pliki/12_2013/2013_12_02_Gala.pdf
  • 10. Kuczyńska-Chałada, M., Furman, J., Pawlak, Sz. (2017). The implementation of 5S method in the production plant which conducts casting operations. In: METAL 2017: 26th International Conference on Metallurgy and Materials, Ostrava: Tanger, p. 2219-2222.
  • 11. https://stat.gov.pl/obszary-tematyczne/rynek-pracy/warunki-pracy-wypadki-przy-pracy/ [Accessed 1 June 2019].
  • 12. Lis, T., Nowacki, K (2005). Occupational health and safety management in an industrial plant. Publishing Silesian University of Technology.
  • 13. Lis, T., Nowacki, K., Kania, H., Jucha, S. (2016). System LOCKOUT – TAGOUT dla bezpieczeństwa pracy. In R. Knosala, ed., Innowacje w zarządzaniu i inżynierii produkcji, Opole: Oficyna Wydawnicza PTZP, pp. 413-421. Available at:http://www.ptzp.org.pl/files/konferencje/kzz/artyk_pdf_2016/T2/t2_0413.pdf
  • 14. Regulation of the Minister of Economy of October 30, 2002 on minimum requirements regarding health and safety at work in the use of machines by employees at work.
  • 15. Małysa, T, Nowacki, K., Lis, T. (2017). The correlation between structure of employment and accidents at work in metallurgical enterprises. In: METAL 2017: 26th International Conference on Metallurgy and Materials, pp. 2244-2249.
  • 16. Małysa, T., Nowacki, K., Furman, J. (2016). The risk management methodology in the metallurgical enterprises. In: METAL 2016: 25th International Conference on Metallurgy and Materials, pp. 1925-1930.
  • 17. Małysa, T., Pawlak, Sz. (2017). Selection of preventive solutions as an element of improving safety of work with usage of machines, Scientific Papers of Silesian University of Technology. Organization and Management Series, pp. 267-278. Available at: https://www.polsl.pl/Wydzialy/ROZ/ZN/Documents/z%20105/20%20Ma%C5%82y sa,%20Pawlak.pdf [Accessed 1 June 2019].
  • 18. Moeuf, A. Tamayo, S., Lamouri, S., Pellerin, Lelievre, A. (2016). Strengths and weaknesses of small and medium sized enterprises regarding the implementation of lean manufacturing. IFAC-Paper On Line, vol.49, issue: 12, pp. 71-76. Available at: https://www.sciencedirect.com/science/article/pii/S2405896316308059.
  • 19. Skuza, Z., Prusak, R., Budzik, R. (2011) Contemporary elements of quality management system in the metallurgical enterprises. Metalurgija, vol. 50, issue: 2, pp. 137-140.
  • 20. Wolniak, R. (2013). Metody i narzędzia lean production i ich rola w kształtowaniu innowacji w przemyśle. In R. Knosala, ed., Innowacje w zarządzaniu i inżynierii produkcji, Opole: Oficyna Wydawnicza PTZP, pp. 524-533. Available at:http://www.ptzp.org.pl/files/konferencje/kzz/artyk_pdf_2013/p049.pdf
Uwagi
Opracowanie rekordu ze środków MEiN, umowa nr SONP/SP/546092/2022 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2022-2023).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-b3e274f9-f36f-46fe-ac88-ea59ad58c9bc
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