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Influence of Operating Parameters on Running-in Wear of EN-31 Steel

References [1] R. Kumar, S. Kumar, B. Prakash, A. Sethuramiah, Assessment of engine liner wear from bearing area curves, Wear, 2000, 282-286. [2] A.V. Sreenath, N. Raman, Running-in wear of compression ignition engine: factors influencing the conformance between cylinder liner and piston ring, Wear 38 , 1976, 271-289. [3] P. Pawlus, A study on the functional properties of honed cylinders surface during running-in, Wear, 1994, 247-254. [4] M. Zheng, A.H. Naeim, B. Walter, G. John, Break-in liner

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Wear Resistance of the Cermet Cutting Tools After Aluminum (Al+) and Nitrogen (N+) Ion Implantation

.A., Matula G.: Podstawy metalurgii proszków i materiały spiekane. Cermetale narzędziowe. Open Access Library 8 (2012) 9-39. 6. Shepard S.R., Suh N.P.: The Effects of Ion Implantation on Friction and Wear of Metals. Journal of Lubrication Technology, 104 (1982) 29-38. 7. Huang X., Etsion I., Shao T., Effects of elastic modulus mismatch between coating and substrate on the friction and wear properties of TiN and TiAlN coating systems. Wear, 338-339 (2015) 54-61. 8. PalDey S., Deevi S.C., Single layer and multilayer wear resistant coatings of (Ti, Al)N: A

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Comparative Study of Wear Resistance of the Composite with Microhybrid Structure and Nanocomposite

., Hahnel S., Dowling A.H., Fleming G.J.P. (2013), The in vitro wear behavior of experimental resin-based composites derived from a commercial formulation, Dental Matererials , 29, 365–374. 4. Hambire U.V., Tripathi V.K. (2013), Optimization of compressive strength in Zirconia nanoclusters of the Bis-GMA and TEGDMA based dental composites, Procedia Engineering , 51, 494–500. 5. Heintze S.D., Zappini G., Rousson V. (2005), Wear of ten dental restorative materials in five wear simulators—Results of a round robin test, Dental Materials , 21, 304

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Influence of Finish Milling Strategies on the Tool Wear

.E.H. VENTURA, A. HASSUI. 2013. Evaluation of static cutting forces and tool wear in HSM process applied to pocket milling. Int. J. Adv. Manuf. Tech. 65, pp. 1681-1689. 4. T. VOPÁT, J. PETERKA, V. ŠIMNA, M. KURUC. 2015. The influence of different types of copy milling on the surface roughness and tool life of end mills. Procedia Engineering , Vol. 100, pp. 868–876. ISSN 1877-7058 5. D. BEGIC-HAJDAREVIC, M. KULENOVIC, A. CEKIC. 2014. Experimental study on the high speed machining of hardened steel. Procedia Engineering, Vol. 69, pp. 291–295. 6. T. XIANHUA

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A Wear Geometry Model of Plain Woven Fabric Composites

References [1] Huang T., Li T., Xin S., et al.: Mechanical and tribological properties of hybrid fabric-modified polyetherimide composites, Wear, Vol.306(1-2), pp. 64-72, 2013. [2] Sharma M, Bijwe J., Mitschang P.: Wear performance of PEEK-carbon fabric composites with strengthened fiber-matrix interface, Wear, Vol. 271(9-10), pp. 2261-2268, 2011. [3] Ren G., Zhang Z., Zhu X., et al.: Influence of functional graphene as filler on the tribological behaviors of Nomex fabric/phenolic composite, Composites: Part A, Vol. 49, pp. 157-164, 2013. [4] Bijwe J

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Wear Calculation for Sliding Friction Pairs

circular sliding contact. Journal of Applied Mechanics, 125-131. 5. Rudzitis, J., et al. (2005). 3D Roughness Effects on Tribology of Sliding Surfaces. In: Proceedings of the 10th International Conference on Metrology and Properties of Engineering Surfaces, 345-348. Saint Etienne (France): Publication de l’Université de Saint-Etienne. 6. Students E. (1996). Wear Calculation of Sliding Friction Surfaces. Riga: Riga Technical University.

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The Wear of Particulate Cu-Graphite Composite System

. KÚDELA, A. SCHWEIGHOFER, J. KUNKELA, Compos. Manuf. 1 (1992) 43 K. PRAKASAN, S. SESHAN, Microstructure and properties of squeeze cast Cu-carbon fibre metal matrix composite, J. Mat. Sci. 34 (1999) 5045 S. F. MOUSTAFA, S. A. EL-BADRY, A. M. SANAD, B. KIEBACK, Friction and wear of copper-graphite composites made with Cu-coated and uncoated graphite powders, Wear 253 (2002) 699-710 Y. Z. ZHAN, G. ZHANG, Friction and wear behavior of copper matrix composites reinforced with SiC and graphite

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Fretting Wear as an Example of Destruction of Railway Vehicles Wheelsets

condition. Wear 400-401, pp. 62-73 Kowalski S. (2016). Application of dimensional analysis in the fretting wear studies. Journal of the Balkan Tribological Association, Vol. 22, No 4, pp. 3076-3088 Kowalski S. (2018). Assessment of the possibility of the application of a CrN+OX multi-layer coating to mitigate the development of fretting wear in a press-fit joint. Wear 398-399, pp. 13-21 Kowalski S. (2016). Influence of molybdenum coating on fretting wear development in clamped joint. Journal of the Balkan Tribological Association, Vol. 22, No 2A-I, pp

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Survey on Road-Tyre Contact Patch Pattern and Wear Related Aspects

. Reithmaier, T. Salzinger. Survey on motor vehicles tyres and related aspects. The European commission enterprise directorate general unit, 2003 , 1 - 173 [11] M. H. M. Saad, M. J. M. Nor, K. W. Kiat. Design and development of an economical driving simulator, Journal of Mechanical Engineering - Strojnícky časopis 2005 (56), No. 5, pp. 364 - 368. [12] H. A. Lupker, F. Montanaro, D. Donadio, E. Gelosa, M. A. Vis. Truck tyre wear assessment and prediction. In 7th International Symposium on Heavy Vehicle Weights & Dimensions , Delft, The Netherlands, 2002

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Evaluation of Wear of Milling Cutters for Drilling of Nail Holes Used for Osteosynthesis of Long Bones of Lower Limbs

References [1] Florencio-Silva, R., Sasso, G. R. S., Sasso-Cerri, E., Simores, M. J., Cerri, P. S. “Biology of Bone Tissue: Structure, Function, and Factors That Influence Bone Cells”, BioMed Research International, pp. 1 – 17. 2015 . DOI: 10.1155/2015/421746. [2] Staroveski, T., Brezak, D., Toma Udiljak, T. “Drill wear monitoring in cortical bone drilling”, Medical Engineering & Physics 37 (6), pp. 560 – 566, 2015 . DOI: https://doi.org/10.1016/j.medengphy.2015.03.014 [3] Jantunen, E. “A summary of methods applied to tool condition

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