Preprint Article Version 1 NOT YET PEER-REVIEWED

A Study on Diffusion Bonding between Ti-6Al-4V Alloy and Interstitial Free Steel

  1. Metallurgy and Material Engineering Department, Engineering Faculty, Adıyaman University, 02040 Adıyaman, Turkey
  2. Metallurgy and Material Engineering Department, Engineering Faculty, Batman University, 72000 Batman, Turkey
  3. Mechanical and Manufacturing Engineering Department, Technology Faculty, Batman University, 72000 Batman, Turkey
  4. Metallurgy and Material Engineering Department, Technology Faculty, Gazi University, 06560 Ankara, Turkey Turkey
Version 1 : Received: 26 October 2016 / Approved: 27 October 2016 / Online: 27 October 2016 (11:43:55 CEST)
Version 2 : Received: 7 November 2016 / Approved: 8 November 2016 / Online: 8 November 2016 (08:40:10 CET)

How to cite: Kaya, M.; Kırık, İ.; Kılıç, M.; Karakurt, E.; Gülenç, B. A Study on Diffusion Bonding between Ti-6Al-4V Alloy and Interstitial Free Steel. Preprints 2016, 2016100117 (doi: 10.20944/preprints201610.0117.v1). Kaya, M.; Kırık, İ.; Kılıç, M.; Karakurt, E.; Gülenç, B. A Study on Diffusion Bonding between Ti-6Al-4V Alloy and Interstitial Free Steel. Preprints 2016, 2016100117 (doi: 10.20944/preprints201610.0117.v1).

Abstract

In this study, Ti–6Al–4V alloy was diffusion bonded to Interstitial Free Steel at different temperatures, under a pressure of 5 MPa for 30 min. The effect of bonding temperature on the microstructural development across the joint region was investigated using an optic microscopy, a scanning electron microscope (SEM) equipped with X-ray energy dispersive spectrometer (EDS), and shear strength of bonded specimens. The results showed that intermetallic phases such as FeTi and Fe2Ti were occurred interface of bonded specimens. In addition to, it was seen that shear strength of bonded specimens were decreased with increasing temperature due to growing intermetallic.

Subject Areas

diffusion bonding; Interstitial Free Steel; Ti–6Al–4V; interface characterization

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