170
References
Morozow, D., M. Rucki, Z. Siemiatkowski, and Yu. Gutsalenko. 2019. Tribological tests
of the ceramic cutting tools after yttrium (Y + ) and rhenium (Re + ) ion implantation.
Tribologia 285(3):71–77. https://doi .org /10 .5604 /01 .3001 .0013 .5436
Morozow, D., Z. Siemiątkowski, E. Gevorkyan, M. Rucki, J. Matijošius, A. Kilikevičius, J.
Caban, and Z. Krzysiak. 2020. Effect of yttrium and rhenium ion implantation on the
performance of nitride ceramic cutting tools. Materials 13:4687. https://doi .org /10 .3390 /
ma13204687
Morozow, D., M. Barlak, Z. Werner, M. Pisarek, P. Konarski, J. Zagórski, M. Rucki, L.
Chałko, M. Łagodziński, J. Narojczyk, Z. Krzysiak, and J. Caban. 2021. Wear resistance improvement of cemented tungsten carbide deep-hole drills after ion implantation. Materials 14(2):239. https://doi .org /10 .3390 /ma14020239
Mostaghimi, J., L. Pershin, and S. Yugeswaran. 2017. Heat transfer in DC AND RF plasma
torches. In: F. Kulacki (Ed.), Handbook of Thermal Science and Engineering. Cham:
Springer. https://doi .org /10 .1007 /978 -3 -319 -32003 -8 _27-1
Mouritz, A.P. 2012. Introduction to Aerospace Materials. Cambridge, UK: Woodhead
Publishing. https://doi .org /10 .1533 /9780857095152 .154
Mubarok, F., and N. Espallargas. 2015. Suspension plasma spraying of sub-micron silicon
carbide composite coatings. Journal of Thermal Spray Technology 24:817–825. https://
doi .org /10 .1007 /s11666 -015 -0242-2
Mukherjee, A., Deepmala, P. Srivastava, and J.K. Sandhu. 2021. Application of smart materials in civil engineering: A review. Materials Today: Proceedings, Article in Press.
https://doi .org /10 .1016 /j .matpr .2021 .03 .304
Muresan, L.M. 2015. Corrosion protective coatings for Ti and Ti alloys used for biomedical
implants. In: A. Tiwari, J. Rawlins, and Ll.H. Hihara (Eds.), Intelligent Coatings for
Corrosion Control, pp. 585–602. Oxford, UK: Butterworth-Heinemann. https://doi .org /
10 .1016 /B978 -0 -12 -411467 -8 .00017-9
Nagalingam, S.V., and G.C.I. Lin. 2008. CIM: Still the solution for manufacturing industry.
Robotics and Computer-Integrated Manufacturing 24(3):332–344. https://doi .org /10 .
1016 /j .rcim .2007 .01 .002
Nagimova, A., and A. Perveen. 2019. A review on laser machining of hard to cut materials.
Materials Today: Proceedings 18(Part 7):2440–2447. https://doi .org /10 .1016 /j .matpr .
2019 .07 .092
Nalawade, S.P., F. Picchioni, and L.P.B.M. Janssen. 2006. Supercritical carbon dioxide as a
green solvent for processing polymer melts: Processing aspects and applications. Progress
in Polymer Science 31:19–43. https://doi .org /10 .1016 /j .progpolymsci .2005 .08 .002
Narojczyk, J., D. Morozow, J.W. Narojczyk, and M. Rucki. 2018. Ion implantation of the tool’s
rake face for machining of the Ti-6Al-4V alloy. Journal of Manufacturing Processes
34(Part A):274–280. https://doi .org /10 .1016 /j .jmapro .2018 .06 .017
Natarajan, Y., P.K. Murugesan, M. Mohan, and Sh.A.L. Ali Khan. 2020. Abrasive water
jet machining process: A state of art of review. Journal of Manufacturing Processes
49:271–322. https://doi .org /10 .1016 /j .jmapro .2019 .11 .030
Nath, A.K. 2014. Laser drilling of metallic and nonmetallic substrates. In: S. Hashmi, G.
Ferreira Batalha, Ch.J. Van Tyne, and B. Yilbas (Eds.), Comprehensive Materials
Processing. Vol. 9, pp. 115–175. Amsterdam: Elsevier. https://doi .org /10 .1016 /B978 -0 -
08 -096532 -1 .00904-3
National Research Council. 1994. Free Electron Lasers and Other Advanced Sources of
Light: Scientific Research Opportunities. Washington, DC: The National Academies
Press. https://doi .org /10 .17226 /9182
Neikov, O.D. 2019. Powders for additive manufacturing processing. In: O.D. Neikov, S.S.
Naboychenko, and N.A. Yefimov (Eds.), Handbook of Non-Ferrous Metal Powders
(Second Edition), pp. 373–399. Amsterdam: Elsevier. https://doi .org /10 .1016 /B978 -0 -
08 -100543 -9 .00013-0
References
Morozow, D., M. Rucki, Z. Siemiatkowski, and Yu. Gutsalenko. 2019. Tribological tests
of the ceramic cutting tools after yttrium (Y + ) and rhenium (Re + ) ion implantation.
Tribologia 285(3):71–77. https://doi .org /10 .5604 /01 .3001 .0013 .5436
Morozow, D., Z. Siemiątkowski, E. Gevorkyan, M. Rucki, J. Matijošius, A. Kilikevičius, J.
Caban, and Z. Krzysiak. 2020. Effect of yttrium and rhenium ion implantation on the
performance of nitride ceramic cutting tools. Materials 13:4687. https://doi .org /10 .3390 /
ma13204687
Morozow, D., M. Barlak, Z. Werner, M. Pisarek, P. Konarski, J. Zagórski, M. Rucki, L.
Chałko, M. Łagodziński, J. Narojczyk, Z. Krzysiak, and J. Caban. 2021. Wear resistance improvement of cemented tungsten carbide deep-hole drills after ion implantation. Materials 14(2):239. https://doi .org /10 .3390 /ma14020239
Mostaghimi, J., L. Pershin, and S. Yugeswaran. 2017. Heat transfer in DC AND RF plasma
torches. In: F. Kulacki (Ed.), Handbook of Thermal Science and Engineering. Cham:
Springer. https://doi .org /10 .1007 /978 -3 -319 -32003 -8 _27-1
Mouritz, A.P. 2012. Introduction to Aerospace Materials. Cambridge, UK: Woodhead
Publishing. https://doi .org /10 .1533 /9780857095152 .154
Mubarok, F., and N. Espallargas. 2015. Suspension plasma spraying of sub-micron silicon
carbide composite coatings. Journal of Thermal Spray Technology 24:817–825. https://
doi .org /10 .1007 /s11666 -015 -0242-2
Mukherjee, A., Deepmala, P. Srivastava, and J.K. Sandhu. 2021. Application of smart materials in civil engineering: A review. Materials Today: Proceedings, Article in Press.
https://doi .org /10 .1016 /j .matpr .2021 .03 .304
Muresan, L.M. 2015. Corrosion protective coatings for Ti and Ti alloys used for biomedical
implants. In: A. Tiwari, J. Rawlins, and Ll.H. Hihara (Eds.), Intelligent Coatings for
Corrosion Control, pp. 585–602. Oxford, UK: Butterworth-Heinemann. https://doi .org /
10 .1016 /B978 -0 -12 -411467 -8 .00017-9
Nagalingam, S.V., and G.C.I. Lin. 2008. CIM: Still the solution for manufacturing industry.
Robotics and Computer-Integrated Manufacturing 24(3):332–344. https://doi .org /10 .
1016 /j .rcim .2007 .01 .002
Nagimova, A., and A. Perveen. 2019. A review on laser machining of hard to cut materials.
Materials Today: Proceedings 18(Part 7):2440–2447. https://doi .org /10 .1016 /j .matpr .
2019 .07 .092
Nalawade, S.P., F. Picchioni, and L.P.B.M. Janssen. 2006. Supercritical carbon dioxide as a
green solvent for processing polymer melts: Processing aspects and applications. Progress
in Polymer Science 31:19–43. https://doi .org /10 .1016 /j .progpolymsci .2005 .08 .002
Narojczyk, J., D. Morozow, J.W. Narojczyk, and M. Rucki. 2018. Ion implantation of the tool’s
rake face for machining of the Ti-6Al-4V alloy. Journal of Manufacturing Processes
34(Part A):274–280. https://doi .org /10 .1016 /j .jmapro .2018 .06 .017
Natarajan, Y., P.K. Murugesan, M. Mohan, and Sh.A.L. Ali Khan. 2020. Abrasive water
jet machining process: A state of art of review. Journal of Manufacturing Processes
49:271–322. https://doi .org /10 .1016 /j .jmapro .2019 .11 .030
Nath, A.K. 2014. Laser drilling of metallic and nonmetallic substrates. In: S. Hashmi, G.
Ferreira Batalha, Ch.J. Van Tyne, and B. Yilbas (Eds.), Comprehensive Materials
Processing. Vol. 9, pp. 115–175. Amsterdam: Elsevier. https://doi .org /10 .1016 /B978 -0 -
08 -096532 -1 .00904-3
National Research Council. 1994. Free Electron Lasers and Other Advanced Sources of
Light: Scientific Research Opportunities. Washington, DC: The National Academies
Press. https://doi .org /10 .17226 /9182
Neikov, O.D. 2019. Powders for additive manufacturing processing. In: O.D. Neikov, S.S.
Naboychenko, and N.A. Yefimov (Eds.), Handbook of Non-Ferrous Metal Powders
(Second Edition), pp. 373–399. Amsterdam: Elsevier. https://doi .org /10 .1016 /B978 -0 -
08 -100543 -9 .00013-0
