Unified description of the softening behavior of beta-metastable and alpha+beta titanium alloys during hot deformation

In this work, we propose a unified description of the softening behavior of a β metastable alloy and Ti6Al4V alloy. In the first part we provide sound evidence that the hot deformation of Ti6Al4V of the beta phase above and below the beta transus temperature takes place solely by dynamic recovery at...

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Published in:Materials science & engineering. A, Structural materials : properties, microstructure and processing Vol. 651; pp. 280 - 290
Main Authors: Poletti, Cecilia, Germain, Lionel, Warchomicka, Fernando, Dikovits, Martina, Mitsche, Stefan
Format: Journal Article
Language:English
Published: Elsevier B.V 10-01-2016
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Abstract In this work, we propose a unified description of the softening behavior of a β metastable alloy and Ti6Al4V alloy. In the first part we provide sound evidence that the hot deformation of Ti6Al4V of the beta phase above and below the beta transus temperature takes place solely by dynamic recovery at moderate strains, similarly to the behavior of the Ti5Al5Mo5V3Cr1Zr near-beta alloy. This study was possible due to the combination of the fast cooling rates achieved after controlled hot deformation and the reconstruction of the parent beta phase from electron backscattered diffraction measurements of the frozen alpha phase by using an innovative developed algorithm. The dynamic recovery as a common dynamic restoration behavior for Ti6Al4V and Ti5Al5Mo5V3Cr1Zr is described mathematically with a Derby type relationship of the subgrain size and the stress of the beta phase. A rule of mixture allows the determination of the load partition between the two allotropic phases.
AbstractList In this work, we propose a unified description of the softening behavior of a beta metastable alloy and Ti6Al4V alloy. In the first part we provide sound evidence that the hot deformation of Ti6Al4V of the beta phase above and below the beta transus temperature takes place solely by dynamic recovery at moderate strains, similarly to the behavior of the Ti5Al5Mo5V3Cr1Zr near-beta alloy. This study was possible due to the combination of the fast cooling rates achieved after controlled hot deformation and the reconstruction of the parent beta phase from electron backscattered diffraction measurements of the frozen alpha phase by using an innovative developed algorithm. The dynamic recovery as a common dynamic restoration behavior for Ti6Al4V and Ti5Al5Mo5V3Cr1Zr is described mathematically with a Derby type relationship of the subgrain size and the stress of the beta phase. A rule of mixture allows the determination of the load partition between the two allotropic phases.
In this work, we propose a unified description of the softening behavior of a β metastable alloy and Ti6Al4V alloy. In the first part we provide sound evidence that the hot deformation of Ti6Al4V of the beta phase above and below the beta transus temperature takes place solely by dynamic recovery at moderate strains, similarly to the behavior of the Ti5Al5Mo5V3Cr1Zr near-beta alloy. This study was possible due to the combination of the fast cooling rates achieved after controlled hot deformation and the reconstruction of the parent beta phase from electron backscattered diffraction measurements of the frozen alpha phase by using an innovative developed algorithm. The dynamic recovery as a common dynamic restoration behavior for Ti6Al4V and Ti5Al5Mo5V3Cr1Zr is described mathematically with a Derby type relationship of the subgrain size and the stress of the beta phase. A rule of mixture allows the determination of the load partition between the two allotropic phases.
Author Mitsche, Stefan
Germain, Lionel
Dikovits, Martina
Warchomicka, Fernando
Poletti, Cecilia
Author_xml – sequence: 1
  givenname: Cecilia
  surname: Poletti
  fullname: Poletti, Cecilia
  email: cecilia.poletti@tugraz.at
  organization: Institute of Materials Science and Welding, Graz University of Technology, Austria
– sequence: 2
  givenname: Lionel
  surname: Germain
  fullname: Germain, Lionel
  organization: Laboratoire d'Etude des Microstructures et de Mécanique des Matériaux (LEM3), UMR 7239, CNRS/Université de Lorraine, F-57045 Metz, France
– sequence: 3
  givenname: Fernando
  surname: Warchomicka
  fullname: Warchomicka, Fernando
  organization: Institute of Materials Science and Welding, Graz University of Technology, Austria
– sequence: 4
  givenname: Martina
  surname: Dikovits
  fullname: Dikovits, Martina
  organization: Institute of Materials Science and Welding, Graz University of Technology, Austria
– sequence: 5
  givenname: Stefan
  surname: Mitsche
  fullname: Mitsche, Stefan
  organization: Institute for Electron Microscopy and Nanoanalysis (FELMI), Graz University of Technology, Austria
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Titanium alloys
Parent phase reconstruction
Load partition
Dynamic recovery
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Snippet In this work, we propose a unified description of the softening behavior of a β metastable alloy and Ti6Al4V alloy. In the first part we provide sound evidence...
In this work, we propose a unified description of the softening behavior of a beta metastable alloy and Ti6Al4V alloy. In the first part we provide sound...
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StartPage 280
SubjectTerms Algorithms
Beta phase
Deformation
Dynamic recovery
Dynamics
Hot deformation
Load partition
Parent phase reconstruction
Recovery
Restoration
Softening
Titanium alloys
Titanium base alloys
Title Unified description of the softening behavior of beta-metastable and alpha+beta titanium alloys during hot deformation
URI https://dx.doi.org/10.1016/j.msea.2015.10.109
https://search.proquest.com/docview/1786207257
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