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M. Suliga

References [1] O. Pawelski, H. Vollmer, Thermische Sim­ulation des Einflusses der Ziehgeschwindigkeit auf die mechanischen Eigenschaften gezogener Stahldrähte, Arch. Eisenhuttenw 47 , 1, 9-13 (1976). [2] M. Suliga, The influence of the high drawing speed on mechanical-technological properties of high carbon steel wires, Archieves of Metallurgy and Materials, Quarterly 56 , 3, Warszawa-Kraków, 823-828 (2011). [3] M. Suliga, The influence of drawing speed on multi-pass drawing process of high carbon

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M. Suliga

References [1] M. Suliga, The influence of the high drawing speed on mechanical-technological properties of high carbon steel wires, Archieves of Metallurgy and Materials, Quarterly 56 , 3, Warszawa-Kraków, 823-828 (2011). [2] M. Suliga, The influence of the multipass drawing process in classical and hydrodynamic dies on residual stresses of high carbon steel wires, Archieves of Metal­lurgy and Materials Quarterly 56 , 4, Warszawa-Kraków, 939-944 (2011). [3] J. Łuksza, A. Skołyszewski, F. Witek, W

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J. Piwnik and K. Mogielnicki

Manufacturing Technology, 125-129 (2007). [11] E. Vidal- Sallé, S. Maisonnette-Masson, J.C. Boyer, About the validity of the plastic wave model for an actual roughness of axisymmetric tooling in bulk forming, International Journal of Material Forming 2, 217-220 (2009). [12] J. Piwnik, K. Mogielnicki, M. Gabrylewski, P. Baranowski, The experimental tool for microextrusion of metals, Archives of Foundry Engineering, 195-198 (2011).

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Grobelny Pawel, Legutko Stanislaw and Lukasz Furmanski

. [3] Krolczyk G. M., Legutko S., Analysis by measurement of surface roughness variations in turning process of duplex stainless steel, Metrology and Measurement Systems 21 (4) (2014) 759-770. [4] Nieslony P., Krolczyk G. M., Wojciechowski S., Chudy R., Zak K., Maruda R. W.,Surface quality and topographic inspection of variable compliance part after precise turning, Applied Surface Science 435 (2018) 91-101. [5] Ciurana J., Hernandez L., Delgado J.,Energy density analysis on single tracks formed by selective laser melting with CoCrMo