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porous Ni-Cr alloy bonded diamond grinding wheel. Materials Science Forum 532–
533:373–376. https://doi .org /10 .4028 /www .scientific .net /msf .532 -533 .373
Šulc, J., and H. Jelínková. 2013. Solid-state lasers for medical applications. In: H. Jelínková
(Ed.), Lasers for Medical Applications, pp. 127–176. Cambridge, UK: Woodhead
Publishing. https://doi .org /10 .1533 /9780857097545 .2 .127
Sun, H., and K. Kusumoto. 2010. Drilling performance of plasma arc drilling method.
Quarterly Journal of the Japan Welding Society 28(4):421–426. https://doi .org /10 .2207 /
qjjws .28 .421
Sun, Y., Ch. Zhang, J. Wu, Q. Meng, B. Liu, K. Gao, and L. He. 2019. Enhancement of oxidation resistance via titanium boron carbide coatings on diamond particles. Diamond and
Related Materials 92:74–80. https://doi .org /10 .1016 /j .diamond .2018 .12 .019
Sykutera, D., P. Czyżewski, and P. Szewczykowski. 2020. The microcellular structure of
injection molded thick-walled parts as observed by in-line monitoring. Materials
13:5464. https://doi .org /10 .3390 /ma13235464
Sze, R.C., and D.G. Harris. 1995. Tunable excimer lasers. In: F.J. Duarte (Ed.), Tunable Lasers
Handbook, pp. 33–61. San Diego: Academic Press. https://doi .org /10 .1016 /B978 -
012222695 -3 /50004-0
Szostak, M., P. Krzywdzińska, and M. Barczewski. 2018. MuCell ® and InduMold technologies in production of high quality automotive parts from polymer materials. Polimery
63(2):145–152. https://doi .org /dx .doi .org /10 .14314 /polimery .2018 .2.8
Teixeira, V., J. Carneiro, P. Carvalho, E. Silva, S. Azevedo, and C. Batista. 2011. High barrier plastics using nanoscale inorganic films. In: J.-M. Lagarón (Ed.), Multifunctional
and Nanoreinforced Polymers for Food Packaging, pp. 285–315. Cambridge, UK:
Woodhead Publishing. https://doi .org /10 .1533 /9780857092786 .1 .285
The Library of Manufacturing. 2021. http://the libr aryo fman ufac turing .com /vacuum _mold
_casting .html (accessed on February, 8, 2021).
Thoe, T.B., D.K. Aspinwall, and M.L.H. Wise. 1998. Review on ultrasonic machining.
International Journal of Machine Tools and Manufacture 38(4):239–255. https://doi .
org /10 .1016 /S0890 -6955(97)00036-9
TiN Coatings (Titanium Nitride). 2021. http://www .teercoatings .co .uk /index .php ?page=9
(accessed on June, 14, 2021)
Tolio, T., A. Bernard, M. Colledani, S. Kara, G. Seliger, J. Duflou, O. Battaia, and Sh. Takata.
2017. Design, management and control of demanufacturing and remanufacturing systems. CIRP Annals 66(2):585–609. https://doi .org /10 .1016 /j .cirp .2017 .05 .001
Tominaga, K., H. Adachi, and K. Wasa. 2012. Functional thin films. In: K. Wasa, I. Kanno,
and H. Kotera (Eds.), Handbook of Sputtering Technology (Second Edition), pp. 361–
520. Oxford, UK: William Andrew Publishing. https://doi .org /10 .1016 /B978 -1 -4377 -
3483 -6 .00006-1
Tomlinson, D., and J. Wichmann. 2014. Chemical milling environmental improvements,
aerospace is green and growing. NASF Surface Technology White Papers 78(9):1–7.
Toumanov, N.I. 2003. Plasma and High Frequency Processes for Obtaining and Processing
Materials in the Nuclear Fuel Cycle. New York: Nova Science Publishers.
Trexel Data on MuCell Technology. 2021. https://trexel .com /technology -solutions /mucell/
(accessed on February, 4, 2021).
Tripathi, H.S., B. Mukherjee, S. Das, M.K. Haldar, S.K. Das, and A. Ghosh. 2003. Synthesis
and densification of magnesium aluminate spinel: Effect of MgO reactivity. Ceramics
International 29(8):915–918. https://doi .org /10 .1016 /S0272 -8842(03)00036-1
Tsegelnik, E.V. 2015. Perspectives of the laser technology applications in the aircraft
industry. Open Infromation and Computer Integrated Technologies 70:121–129 (in
Russian).
