Reactivity of Carbon Based Materials for Powder Metallurgy Parts and Hard Metal Powders Manufacturing

Author:

GILARDI Raffaele1,ALZATI Luigi1,ORO Raquel2,HRYHA Eduard3,NYBORG Lars3,BERG Sigurd4,RADICCHI Luigi5

Affiliation:

1. Imerys Graphite & Carbon Switzerland Ltd.

2. Technical University Wien

3. Chalmers University of Technology

4. Höganäs AB

5. Sigmacarb SA

Publisher

Japan Society of Powder and Powder Metallurgy

Subject

Materials Chemistry,Metals and Alloys,Industrial and Manufacturing Engineering,Mechanical Engineering

Reference9 articles.

1. 1) H. Danninger, G. Frauendienst, K. D. Streb, R. Ratzi: “Dissolution of different graphite grades during sintering of PM steels”, Mater. Chem. Phys., 67 (2001) 72–77.

2. 2) K. P. Jonnalagadda, R. Frykholm: “Influence of Graphite type on the Diffusion of Copper in Fe–C–Cu alloy systems”, PM13 Conference Proceedings, Pune, India (2013).

3. 3) E. Hryha, L. Nyborg, L. Alzati: “Effect of Carbon Source on Oxide Reduction in Cr-Prealloyed PM Steels”, Proceedings of the 2012 Powder Metallurgy World Congress & Exhibition, H. Miura and A. Kawasaki ed., Yokohama, Japan Society of Powder and Powder Metallurgy, (2013) 16A-T9-11 (CD-ROM).

4. 4) E. Hryha, L. Nyborg, L. Alzati: “Dissolution of carbon in Cr-prealloyed PM steels: effect of carbon source”, Powder Metallurgy, 58 (2015) 7–11.

5. 5) N. Asada, Y. Yamamoto, K. Shimatani, S. Honkawa, M. Miyake: “Particle size of fine grain WC by the continuous direct carburization process”, Metal Powder Report, 45 (1990) 60–64.

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