The Effect of the Process Temperature on the Bondability in Diffusion Bonding of AISI 430 with Nodular Cast Iron

Author:

Taskin Mustafa1,Ozan Sermin1,Kolukisa Sedat2

Affiliation:

1. Faculty of Technical Education, Department of Metallurgy. Firat University Elazig 23119 , Elazig Turkey

2. Faculty of Engineering Science and Architecture, Department of Mechanical Engineering, Dicle University , Diyarbakir 21680 , Turkey

Abstract

Abstract The effect of process temperature on the bond-ability of stainless steel AISI 430 and nodular cast iron was studied. The diffusion bonding was investigated experimentally under a protective atmosphere at various temperatures and a prescribed constant pressure blow which would cause macro-deformation. Microstructure examinations were carried out with the help of optical microscopy, SEM and EDS. Hardness values were measured by HV scale under a load of 200 g. At the bond interface cross section, decarburized and dechromised regions were observed on the ductile cast iron side and the stainless steel side respectively. Best mechanical and metallurgical properties were observed for the specimen bonded at 1100 °C process temperature at 15 MPa, for 20 min. As a function of the process temperature elevation, an increase of graphite atoms, migrating towards the interface, and a reduction of graphite atoms at the nodular graphite diameters was noticed.

Publisher

Walter de Gruyter GmbH

Subject

Metals and Alloys,Mechanics of Materials,Condensed Matter Physics,Electronic, Optical and Magnetic Materials

Reference9 articles.

1. Murray W. Mahoney and Cliff C. Bamton, Rockwell International Science Center “Fundamentals of Diffusion Bonding” ASM Hand Book 1993 Volume 6, page 156

2. Sue Dunkerton “Diffusion Bonding” TWI World Centre for Materials Joining Technology, pages 1-5

3. Partridge, P.G. (1989), “Diffusion Bonding of Metals” Agard 168, Nato publication.

4. Egan, P.W. (1985), “Diffusion Bonding of Mild Steel” M.S. University of Belfast.

5. Fitzpatrick, G.A., Broughton, T. (1988), “Diffusion Bonding Aeroengine components” Defense Science Journal. 38 pages 470 - 490.

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