Chip formation and tool wear in turning of aluminum-alloyed UHC-steels

Author:

Denkena B.,Koehler J.,Dittrich M. A.

Publisher

Springer Science and Business Media LLC

Subject

Industrial and Manufacturing Engineering,Mechanical Engineering

Reference15 articles.

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2. Sherby OD, Kum DW et al (1988) UHCS containing aluminum, US Patent #4.769.214

3. Lesuer DR, Syn CK et al (1993) The case for ultrahigh-carbon steels as structural materials. JOM 45:40–46

4. Taleff EM, Nagao M et al (1996) High-strain-rate superplasticity in ultrahigh-carbon steel containing 10 wt% Al (UHCS-10Al). Scr Mater 34(12):1919–1923

5. Inden G, Sauthoff G, Grundlegende Untersuchungen zur Darstellbarkeit von Kaltband auf der Basis von Fe-Al-Legierungen. Untersuchungen des Einflusses von Legierungselementen auf die Konstitution—Vorordnungszustände und Defektstrukturen—und die Zähigkeitseigenschaften. In: Drewes EJ, Frommeyer G et al (eds) Höherfester Leichtbauwerkstoff auf der Basis von Eisen-Aluminium-Legierungen. Final report 03 N 3013, 1999

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1. Fabrication of piston pins made of a novel aluminium-alloyed UHC steel;The International Journal of Advanced Manufacturing Technology;2019-02-28

2. Grinding tool design for the manufacturing of UHC-steel;The International Journal of Advanced Manufacturing Technology;2017-10-18

3. Material removal and chip formation mechanisms of UHC-steel during grinding;The International Journal of Advanced Manufacturing Technology;2017-03-16

4. Effects of alloying elements in UHC-steels and consequences for the machinability;CIRP Journal of Manufacturing Science and Technology;2015-08

5. Flow stress and temperature considerations for orthogonal cutting of an aluminum-alloyed UHC-steel;Production Engineering;2015-06-18

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