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Stress Concentration Resulting from Irregular Shape of Explosively Cladded Materials Connections - Fem Simulation

., Guo X., Li L. (2013), Tensile Anisotropy of Cu/Al Clad Metals After Prestrain Using Digital Image Correlation, Journal of Materials Engineering and Performance , 22, 3825-3833. 11. Szulc Z., Gałka A., Bański R., Pocica A. (2007), Explosive Cladding With Titanium - the development of technologies and Areas of Industrial Applications, XII Scientific and Technical Welding Conference “Progress, innovation and Quality Requirements ofWelding Processes” , 13-14 (in Polish). 12. Wronka B. (2010), Testing of Explosive Welding and Welded Joints: Joint Mechanism and

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The Parameter Correlation of Acoustic Emission and High-Frequency Vibrations in the Assessment Process of the Operating State of the Technical System

. (2012) The Energy Technology Innovation System, Annual Review of Environment and Resource , 37, 137-162. 5. Hreha P., Hloch S., Valíček J., Monková K., Monka P., Harničárová M., Fusek M., Konjatić P. (2010), Impact of abrasive mass flow rate when penetrating into a material on its vibration, Tehnički vjesnik - Technical Gazette , 17(4), 475-479. 6. Hyung-Deok S. , Hun L. (2014) Disentangling the role of knowledge similarity on the choice of alliance structure, Journal of Engineering and Technology Management , 30(4), 350-362. 7. Janoušek I

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Dry Ice Compaction in Piston Extrusion Process

REFERENCES 1. Chen L., Zhang X. (2014), A review study of solid-gas sublimation flow refrigeration: From basic mechanism to alications, International Journal od Refrigeration , 40, 61-83. 2. Dong S., Song B., Hansz B., Liao H.L., Coddet C., (2012) Modeling of dry ice blasting and its alication in thermal spray, Material Research Innovations , 16, 61-66. 3. Drzymała Z. (1988), Basics of Compaction Engineering of Material Compaction (in polish), PWN, Warsaw. 4. Górecki J., Malujda I., Talaśka K. (2013), Research on Densification

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Research on the Properties of Co-Tic and Ni-Tic Hip-Sintered Alloys

.S., Dmitrieva G.P., Nosenko A.V., Semirga A.M. (2014) Wear-resistant alloy for protection of contact surfaces of working aircraft engine blades from oxidation at high temperatures, Science and Innovation , 10(4), 20–28. 7. Cherepova T.S., Dmytrieva H.P. (2016b) Properties of titanium carbide-strenghtened cobalt-based sintered alloys, Metal Physics and Advanced Technologies , 38(11), 1497–1512 (in Ukrainian). 8. Cherepova T.S., Dmytrieva H.P., Hosenko V.K. (2015) Heat resistance of cast and sintered alloys based on nickel and cobalt strengthened with

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Investigation of Mechanochemical Leaching of Non-Ferrous Metals

, innovations, and future directions: a review, Mineral Processing and Extractive Metallurgy Review , 37(2), 73–119. 7. Golik V., Komaschenko V., Morkun V., Khasheva Z. (2015d), The effectiveness of combining the stages of ore fields development, Metallurgical and Mining Industry , 5, 401–405. 8. Golik V., Komashchenko V., Morkun V. (2015b), Innovative technologies of metal extraction from the ore processing mill tailings and their integrated use, Metallurgical and Mining Industry , 3, 49–52. 9. Golik V., Komashchenko V., Morkun V. (2015c

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