Investigation of the machinability by milling of the laser sintered Inconel 625/NiTi-TiB2 composite

OBRABOTKAMETALLOV Vol. 23 No. 1 2021 TECHNOLOGY 16. Ni C., Zhu L., Yang Z. Comparative investigation of tool wear mechanism and corresponding machined surface characterization in feed-direction ultrasonic vibration assisted milling of Ti–6Al–4V from dynamic view. Wear , 2019, vol. 436–437, p. 203006. DOI: 10.1016/j.wear.2019.203006. 17. HEM Guidebook: a machinist’s guide to increasing shop productivity with high ef fi ciency milling . Harvey Performance Company, LLC, 2017. Available at: https://www.harveyperformance.com/in-the-loupe/hem-guidebook- download/ (accessed 15.01.2021). 18. Roberts S. High-ef fi ciency milling speed changes rules. Canadian Metalworking , 2018, January 10. Available at: https://www.canadianmetalworking.com/article/cuttingtools/high-ef f i ciency-milling-speed-changes- rules (accessed 15.01.2021). 19. Derek K. Optimize cutting ef fi ciency, optimize throughput. Modern Machine Shop , 2005, February 15. Available at: https://www.mmsonline.com/articles/optimize-cutting-ef f i ciency-optimize-throughput (accessed 15.01.2021). 20. High Speed Machining Vs. HEM . 2017, August 11. Available at: https://www.harveyperformance.com/in-the- loupe/high-ef fi ciency-milling-vs-high-speed-machining/ (accessed 15.01.2021). 21. High ef fi ciency vs. High Feed Milling: which is more productive? Modern Machine Shop , 2018, November 2. Available at: https://www.mmsonline.com/articles/high-ef fi ciency-vs-high-feed-milling-which-is-more-productive (accessed 15.01.2021). 22. Katalog rezhushchego instrumenta kompanii “PK MION” [The cutting tool catalog of the PC MION company]. Tomsk, 2019. Available at: http://pkmion.ru/catalog/frezy/ (accessed 15.01.2021). Con fl icts of Interest The authors declare no con fl ict of interest.  2021 The Authors. Published by Novosibirsk State Technical University. This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/ ).

RkJQdWJsaXNoZXIy MTk0ODM1