Effect of heat treatment on phase structure and thermal conductivity of a copper-infiltrated steel

Author:

Klein S.,Weber S.,Theisen W.

Publisher

Springer Science and Business Media LLC

Subject

Mechanical Engineering,Mechanics of Materials,General Materials Science

Reference39 articles.

1. Berns H, Theisen W (2008) Eisenwerkstoffe: Stahl und Gusseisen, 4th edn. Springer, Berlin

2. Dahl W (ed) (1993) Eigenschaften und Anwendungen von Stählen, vol 2, 1st edn. Verlag der Augustinus-Buchhandlung, Aachen

3. Valls I, Casas B, Rodriguez N (2009) Importance of tool material thermal conductivity in the die longevity and product quality in hpdc. In: Beiss P, Broeckmann C, Franke S, Keysselitz B (eds) Tool steels—deciding factor in worldwide production, vol 1. Mainz, Aachen, pp 127–140

4. Valls I, Casas B, Rodriguez N, Paar U (2010) Benefits from using high thermal conductivity tool steels in the hot forming of steels. La Metallurgia Italiana - n. 11–12

5. Meurisse E, Ernst C, Bleck W (2012) Improvement of thermal conductivity of hot-work tool steels by alloy design and heat treatment. In: Leitner H, Kranz R, Tremmel A (eds) TOOL 2012: developing the world of tooling. Verlag Gutenberghaus, Knittelfeld, pp 215–224

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