Effect of temperature on microstructure and mechanical behavior of diffusion bonded Armor 500 and AISI 1040 steels
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Ihsan Kirik
Abstract
The purpose of this study is to join Armor 500 steel and medium carbon steel (AISI 1040) by using diffusion welding and to experimentally examine the effect of welding temperature on microstructure and mechanical properties. Diffusion welded joints were performed at 700, 800, 900 and 1000 °C, under a pressure of 3 MPa and for a welding period of 30 minutes. In order to determine the structural changes occurring in the joint zone; SEM and EDS analyses were conducted. Also, microhardness and overlapping shifting tests were carried out in order to determine the mechanical behaviors. Based on the experiment results, it was observed that welding temperature had an important effect on the strengths of diffusion welded joints. Consequently, it was determined that a sample joined at 900 °C had a strength of 960 MPa.
Kurzfassung
Der Zweck der diesem Beitrag zugrunde liegenden Untersuchung ist es, den Stahl Armor 500 mit dem Stahl AISI 1040, einem Werkstoff mit mittlerem Kohlenstoffgehalt, mittels Diffusionsschweißens zu verbinden und die Auswrikung der Schweißtemperatur auf die Mikrostruktur und die mechanischen Eigenschaften experimentell zu ermitteln. Die diffusionsgeschweißten Verbindungen wurden bei 700, 800, 900 und 1000 °C unter einem Druck von 3 MPa und einer Schweißdauer von 30 Minuten hergestellt. Um die strukturellen Veränderungen in der Verbindungszone zu bestimmen, wurden SEM- und EDS-Analysen durchgeführt. Zudem wurde die Mikrohärte geprüft, um das mechanische Verhalten zu bestimmen, und es wurden durch Versuche die Überlappung geprüft. Basierend auf diesen Experimenten stellte sich heraus, dass die Schweißtemperatur einen deutlichen Einfluss auf die Festigkeit der Diffusionsschweißverbindungen hat. Schließlich wurde ermittelt, dass eine bei 900 °C verbundene Probe eine Festigkeit von 960 MPa aufweist.
References
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© 2015, Carl Hanser Verlag, München
Artikel in diesem Heft
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- Inhalt
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- Effect of quench and strain aging on the mechanical properties of low carbon microalloyed steels
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- Kalender/Calendar
- Kalender
Artikel in diesem Heft
- Inhalt/Contents
- Inhalt
- Fachbeiträge/Technical Contributions
- Influence of the production process on the deformation and fatigue performance of friction drilled internal threads in the aluminum alloy 6060*
- Effect of quench and strain aging on the mechanical properties of low carbon microalloyed steels
- Effect of temperature on microstructure and mechanical behavior of diffusion bonded Armor 500 and AISI 1040 steels
- Analysis of industrial conditions during multi-stage cooling of C70D high-carbon steel wire rod
- Effect of cryogenic treatment on the microstructure and wear behavior of a T-42 tool steel
- Application of the response surface methodology in the ball burnishing process for the prediction and analysis of surface hardness of the aluminum alloy AA 7075
- The memory effect in polyolefinic products: A tool for confirming the steam sterilization process
- Neutron tomography in archaeology*
- Ultraschallprüfung von Betonbauteilen – laufzeitgesteuerte Gruppenstrahler mit Punktkontaktprüfköpfen
- Acoustic emission testing of surface roughness and wear caused by grinding of ceramic materials
- Electrochemical impedance spectroscopy of hardened compacted cemented soils at early curing stage
- Microstructure and pore fractal dimensions of recycled thermal insulation concrete
- Microstructure and tribological properties of electrolytic plasma nitrided high-speed steel
- Exploitation of limestone in brick making
- Effect of alkaline treatment on physico-mechanical properties of black rice husk ash filled polypropylene biocomposites
- Kalender/Calendar
- Kalender