Article
Open Access
Effect of Post-Process Machining on Surface Properties of Additively Manufactured H13 Tool Steel
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Published/Copyright:
August 28, 2018
Published Online: 2018-08-28
Published in Print: 2018-08-16
© 2018, Carl Hanser Verlag, München
Articles in the same Issue
- Praxis-Informationen/From and for Practice
- AWT Info
- HTM-Praxis
- Kurzfassungen/Abstracts
- Kurzfassungen
- Inhalt/Contents
- Inhalt
- Scientific Contributions/Fachbeiträge
- Effect of Post-Process Machining on Surface Properties of Additively Manufactured H13 Tool Steel
- Processing of the Heat Resistant Bearing Steel M50NiL by Selective Laser Melting
- Effect of Inductor Design on the Hardness after Induction Hardening using Line Inductors
- Wear Behavior of Carbonitrided and Nitrided Hot Working Steels*
- Influence of Tool Properties on the Thermomechanical Load during Turning of Hybrid Components and the Resulting Surface Properties
Keywords for this article
Additive manufacturing;
selective laser melting;
milling;
deep rolling;
surface and subsurface properties
Creative Commons
BY 4.0
Articles in the same Issue
- Praxis-Informationen/From and for Practice
- AWT Info
- HTM-Praxis
- Kurzfassungen/Abstracts
- Kurzfassungen
- Inhalt/Contents
- Inhalt
- Scientific Contributions/Fachbeiträge
- Effect of Post-Process Machining on Surface Properties of Additively Manufactured H13 Tool Steel
- Processing of the Heat Resistant Bearing Steel M50NiL by Selective Laser Melting
- Effect of Inductor Design on the Hardness after Induction Hardening using Line Inductors
- Wear Behavior of Carbonitrided and Nitrided Hot Working Steels*
- Influence of Tool Properties on the Thermomechanical Load during Turning of Hybrid Components and the Resulting Surface Properties