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Trends in Development of Weld Overlaying During The 21ST Century

References BERNARDSKII, V.N. – MAKOVETSKAYA, O.K. 2005. Contemporary condition and forecast for the development of welding production in China. In Svarochnoe proizvodstvo, 2005. no. 4, pp. 47–53. BERNARDSKII, V.N. – MAKOVETSKAYA, O.K. 2007. Modern economy welding production and market of welding equipment. In Avtomaticheskay svarka, 2007. no. 1, pp. 44–48. GEHANI, M.L. 2006. Welding equipment in India: present state and perspectives. In Avtomaticheskay svarka, 2006. no. 4, pp. 32–36. GUMENYUK, I.V. – IVASKOV O.F. 2006. Perspectives in the development

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Research on the Impact of Amplitude of Vibrations on Electrical Parameters of Vibroarc Weld Overlay in Argon

References Asnie, А. Е. 1982. Welding in a mixture of reactive gases. Kiev : Naukova Dumka, 1982. Lenivkin, V. А. 1989. Technical characteristics of welding arc in shielding gases. Moscow : Machine Building, 1989. Russo, L. V. 1984. Arc welding in inert gases. Leningrad : Shipbuilding, 1984. Nikolov , M. - Tonchev , G. - Kangalov , P. - Todorov , E. 2002. Research of the influence of amplitude of vibrations on the process of getting refurbishing surface in the medium of argon. In Autovehiculul, mediul simasina

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Orbital TIG Welding of Titanium Tubes with Perforated Bottom Made of Titanium-Clad Steel

. Skowrońska, B., Chmielewski, T., Pachla, W., Kulczyk, M., Skiba, J., Presz, W. (2019). Friction Weldability of UFG 316L stainless steel. Archives of Metallurgy and Materials , 64, 1051-1058. 8. Winczek, J., Gawronska, E., Gucwa, M., Sczygiol, N. (2019). Theoretical and experimental investigation of temperature and phase transformation during SAW overlaying. Applied Sciences , 9(7), 1472. 9. Talkington, J., Harwig, D., Castner. H., Mitchell, G. (2000). Development of titanium weld color inspection tools. Welding Journal, 79(3), 35-38. 10. Margolin. H

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Impact Tests of UHSS Steel Welded Joints Using the Drop - Tower Impact Drop Method

spawania stali wysokowytrzymałych ulepszanych cieplnie, Przegląd Spaw. - Weld. Technol. Rev., 90(4), (2018), 9–13. 5. Winczek J., Gawrońska E., Gucwa M., Sczygiol N., Theoretical and experimental investigation of temperature and phase transformation during SAW overlaying, Appl. Sci., 9(7), (2019), 1–17. 6. Hebert M., Rousseau C. E., Shukla A., Shock loading and drop weight impact response of glass reinforced polymer composites, Compos. Struct., 84(3), (2008), 199–208. 7. ASTM D7136/D7136M - 12, Standard Test Method for Measuring the Damage Resistance of

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Selected problems on application of steel sandwich panels to marine structures

References Boroński D., Kozak J.: Research on deformations of laser welded joint of a steel sandwich structure model. Polish Maritime Research, No.2, 2004 Boyd S. W., Blake J. I. R., Shenoi R. A., Mawella J.: Optimisation of steel-composite connections for structural marine applications. Composites: Part B 39 (2008) Clifford S. M., Manger C. I. C., Clyne T. W.: Characterisation of a glass-fibre reinforced vinylester to steel joint for use between a naval GRP superstructure and

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The Possibility of Increasing the Wearing Resistance of Mulcher Tools

/0826/15, scientific peer-reviewed collection, pp. 80-89. ISBN 978-80-228-2920-5. MÜLLER, M. - HRABĚ, P. 2013. Overlay materials used for increasing lifetime of machine parts working under conditions of intensive abrasion. In Research in Agricultural Engineering, vol. 59, no. 1, pp. 16-22. STN 01 5084. 1974. Determination of metal material resistance against wear by abrasive cloth. SÚTN Bratislava. STN 41 4220. 1976 Manganese-chromium steel 14 220. SÚTN Bratislava. STN EN ISO 148-1. 2017 Metallic materials - Charpy

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Microstructure and Mechanical Properties of Ni-WC Thermal Sprayed Composite Coatings

–71. 4. Liyanage T., Fisher G., Gerlich A.P., Microstructures and abrasive wear performance of PTAW deposited Ni–WC overlays using different Ni-alloy chemistries. Wear 274–275 (2012) 345–354. 5. Bober M., Grześ J., The structure of Ni-TiC composite coatings deposited by PPTAW method. Composites Theory and Practice 15, 2 (2015) 72-77. 6. Berger L.-M., Application of hardmetals as thermal spray coatings, International Journal of Refractory Metals & Hard Materials 49 (2015) 350–364. 7. Tillmann W., Hagen L., Luo1 W., Chehreh A.B., Microstructural

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Deflection Ductility of Slabs Made of Hybrid Mesh-And-Fibre-Reinforced Cementbased Composite

cementitious composites under fatigue flexure”, Journal of Materials in Civil Engineering, 16(5): 433-443, DOI:10.1061/(ASCE)0899-1561(2004)16:5(433) 30. M.A.A. Aldahdooh, N.M. Bunnori and M.A.M. Johari, “Influence of palm oil fuel ash on ultimate flexural and uniaxial tensile strength of green ultra-high performance fibre reinforced cementitious composites.” Materials and Design, 54: 694- 701, 2014, DOI:10.1016/j.matdes.2013.08.094 31. H.E. Yucel, H. Jashami and M. Sahmaran, "Thin ECC overlay systems for rehabilitation of rigid concrete

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