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Impact of selected lean management tools on work safety

-288. Gajdzik, B. (2014). 6S w przedsiębiorstwach produkcyjnych. Ewolucja praktyki 5S w kierunku bezpieczeństwa pracy. Problemy Jakości, 46(7-8), pp. 37-42. Grabowska, S. and Furman, J. (2015). Business model of steel company - focus on the innovation. In: METAL 2015: 24th International Conference on Metallurgy and Materials. Ostrava: Tanger, pp.1933. Furman, J., and Kuczyńska-Chałada, M. (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

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Sensorless compensation system for thermal deformations of ball screws in machine tools drives

-drive system, Int. J. Mach. Tool Manu., 39 (1999) 1087-1101. [4] J. Bryan, International status of thermal error research, Ann. CIRP 39 (2) (1990) 645-656. [5] R. Ramesh, M.A. Mannan, A.N. Po, Thermal error measurement and modeling in machine tools. Part I. Influence of varying operation conditions, Int. J. Mach. Tool Manu., 43 (2003) 391-404. [6] M. Kowal, R. Staniek, Compensation system for thermal deformation of ball screws, Proceedings of the 12th Biennial Conference on Engineering Systems Design and Analysis, ESDA 20469

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A Review of TRIZ Tools for Forecasting the Evolution of Technical Systems

metodologii (red. Ryszard Knosala) Innowacje w zarządzaniu i inżynierii produkcji. Tom I. Oficyna Wydawnicza Polskiego Towarzystwa Zarządzania Produkcją, Opole 2018, s. 11-22. [10] Chybowski L., Gawdzińska K., On the Possibilities of Applying the AHP Method to a Multi-criteria Component Importance Analysis of Complex Technical Objects. Advances in Intelligent Systems and Computing 445, 2016, s. 701-710, doi: 10.1007/978-3-319-31307-8_71. [11] Chybowski L., Gawdzińska K., Przetakiewicz W., AHP based multi-criteria function analysis as a TRIZ tool for complex

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Barriers and opportunities in implementation of Lean Manufacturing tools in the ceramic industry

, International Journal of Operations & Production Management, Vol. 24, No. 10. K leszcz , D., U lewicz , R. 2010. Application of the FMEA method In The process of assurance of quality of ceramic ware , Dnipropetrovsk, 9-25. K leszcz , D., U lewicz , R., N owakowska -G runt , J. 2013. The Use of Lean Tools in the Ceramic Industry. In Toyotarity , Management of the Production Values Ankara, Turkey, 94-111. L iker , J.K. 2005. Droga Toyoty , MT Biznes Sp. z o.o., Warszawa. L ocher , D. 2012. Lean w biurze i usługach , MT Biznes Sp. z o.o., Warszawa

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A study on the Utilization of Lean techniques/tools in Indian SMEs

Abstract

The Small and Medium Enterprises (SMEs) are the backbone of all the major economies around the world. Majority of these industries are facing tough environment for existence. The present study explored the most common and easily implementable Lean Tools/Techniques amongst the SMEs. This has been achieved via a detailed survey of SMEs in India. Study concludes with nine most common Lean Tools/Techniques implemented across the surveyed population of Indian SMEs.

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Advancement of Tools Supporting Improvement of Work Safety in Selected Industrial Company

Abstract

In the presented article, the advancement of tools to improve the safety of work in the researched industrial company was taken into consideration. Attention was paid to the skillful analysis of the working environment, which includes the available technologies, work organization and human capital. These factors determine the development of the best prevention activities to minimize the number of accidents.

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Simplifications of the volumetric error model because of the structural loop of machine tools

REFERENCES [1] ISO 10791-1;2015: Test conditions for machining centres - Part 1: Geometric tests for machines with horizontal spindle (horizontal Z-axis) [2] ISO 10791-2;2001 : Test conditions for machining centres - Part 2: Geometric tests for machines with vertical spindle or universal heads with vertical primary rotary axis (vertical Z-axis) [3] ISO 841; 2001 : Industrial automation systems and integration. Numerical control of machines. Coordinate system and motion nomenclature [4] ISO TR-16907; 2015 : Machine tools – numerical

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Influence of Tool Balancing in High Speed Machining

.W.; Mitchell, B.J. (2008)The Basic of Balancing, Balance Technology Inc. Haimer (2009) Manual Haimer Tool Dynamic ISO 1940/1 (2003) Mechanical vibration. Balance quality requirements for rotors in a constant (rigid) state. Kováč, M.; Zvončan, M.; Peterka, J. (2011) Influence of tool balancing on machined surface quality in High Speed Machining, Journal of Production Engineering, vol. 15 (1), p. 11-14. ISSN : 1863-7353 Layne, M.H. (2007) Detecting and Correcting Unbalance in Toolholders for High

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Environmental Management in the Context of Corporate Sustainability Concept

of Management Annals, 11(1), 105-149, DOI: 10.5465/annals.2015.0095. Campos, L.M.S., Heizen, D.A.M., Verdinelli, M.A., Miguel, P.A.C., 2015. Environmental performance indicators: a study on ISO 14001 certified companies . Journal of Cleaner Production, 99, 286-296, DOI: 10.1016/j.jclepro.2015.03.019. Cotrim, S.L., Leal, G.C.L., Filho, D.A.M., 2017. Management tools as a support of cleaner production implementation: a case study in a food industry . International Journal of Services and Operations Management 28(4), 524-539, DOI: 10.1504/IJSOM.2017

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Innovative Use of Quality Management Methods for Product Improvement

”, Quality & Quantity, vol. 46(1), 2012, pp. 315-321. [5] K. Midor, “An analysis of the causes of product defects using quality management tools”, Management Systems in Production Engineering, vol. 4(16), 2014. pp. 162-167. [6] M. Molenda, “Effectiveness of planning internal audits of the quality system”, Zeszyty Naukowe Akademii Morskiej w Szczecinie, no. 32, z. 1, 2012, pp. 48-54. [7] B. Szczęśniak, M. Zasadzień and Ł. Wapienik, „Zastosowanie analizy Pareto oraz diagramu Ishikawy do analizy przyczyn odrzutów w procesie

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