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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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Radha K. Prasad and Mukesh K. Sahu

, 415–429. [24] B ejan A., K earney D.W., K reith F.: Second law analysis and synthesis of solar collector systems . J. Sol. Energ-T ASME 103 (1981), 1, 23–28. [25] I ncropera F.P., D e W itt D.P.: Fundamentals of heat and mass transfer. 5th Edn., John Wiley & Sons, New York 2006. [26] S aini S., S aini R.P.: Development of correlations for Nusselt number and friction factor for solar air heater with roughened duct having arc-shaped wire as artificial roughness . Sol. Energy 82 (2008), 12, 1118–1130. [27] M alhotra A., G arg H

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Szymon Jakubiak, Justyna Tomaszewska, Anna Jackiewicz, Jakub Michalski and Krzysztof J. Kurzydłowski

sensors. Sens. Actuators A: Phys. , 190, 153–160. DOI: 10.1016/j.sna.2012.11.031. Baek S.-H., Kim S.-B., Shin J.-K., Kim J. H., 2012. Preparation of hybrid silicon wire and planar solar cells having ZnO antireflection coating by all-solution processes. Sol. Energy Mater. Sol. Cells , 96, 251–256. DOI: 10.1016/j.solmat.2011.10.007. Ben-Sasson M., Lu X., Bar-Zeev E., Zodrow K.R., Nejati S., Qi G., Elimelech M., 2014. In situ formation of silver nanoparticles on thin-film composite reverse osmosis membranes for biofouling mitigation. Water Res. , 62, 260

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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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V. Šefl

.; Karjalainen-Roikonen, P.; Arilahti, E.; Moilanen, P. Low cycle behaivor of 316 NG alloy in PWR environment. 2004. 26. Gangloff, R. P.; Ives, M. B. Environment Induced Cracking of Metals.1990. 27. Chopra, O.; Shack, W. J. Review of the Margins for ASME Code Fatigue Design Curve - Effects of Surface Roughness and Material Variability; 2003. 28. Higuchi, M.; Iida, K. Nuclear Engineering and Design 1991, 129, 293-306. 29. Katada, Y.; Nagata, N.; Sato, S. ISIJ Intl. 1993, 31, 877-883. 30. Nakao, G