A solid state phase transformation of Ti-6Al-4V was studied using high speed in situ x-ray diffraction measurements made during rapid cooling of a cold metal transfer arc weld bead deposited onto a water cooled substrate. Analysis of body centered cubic (BCC) and hexagonal close packed (HCP) lattices revealed an abrupt, nonlinear shift in the lattice parameters of both phases just after the HCP phase had nucleated. Postmortem transmission electron microscopy confirmed that V diffusion was mostly suppressed during cooling. Together, these results indicate that at this cooling rate of approximately 104 K/s, which is representative of cooling rates of many additive manufacturing and welding processes, kinematic coherency of the BCC–HCP interfaces gives rise to the anomalous lattice expansion and contraction behaviors of both phases during the initial nucleation and growth stages of (mostly) martensitic transformation from BCC to HCP; the role of diffusion in such lattice anomalies is shown to be minimal.
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25 April 2022
Research Article|
April 26 2022
The roles of kinematic constraint and diffusion in non-equilibrium solid state phase transformations of Ti-6Al-4V Available to Purchase
Nathan S. Johnson
;
Nathan S. Johnson
a)
1
Stanford University
, Menlo Park, California 94025, USA
a)Author to whom correspondence should be addressed: [email protected]
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Donald W. Brown;
Donald W. Brown
2
Los Alamos National Laboratory
, Los Alamos, New Mexico 87544, USA
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John S. Carpenter;
John S. Carpenter
2
Los Alamos National Laboratory
, Los Alamos, New Mexico 87544, USA
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Behnam Amin-Ahmadi;
Behnam Amin-Ahmadi
3
Department of Mechanical Engineering, Colorado School of Mines
, Golden, Colorado 80401, USA
4
Confluent Medical Technologies
, Fremont, California 94539, USA
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Craig A. Brice;
Craig A. Brice
3
Department of Mechanical Engineering, Colorado School of Mines
, Golden, Colorado 80401, USA
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Branden B. Kappes;
Branden B. Kappes
5
KMMD LLC
, Castle Rock, Colorado 80108, USA
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Aaron P. Stebner
Aaron P. Stebner
6
Woodruff School of Mechanical Engineering and School of Materials Science and Engineering, Georgia Institute of Technology
, Atlanta, Georgia 30313, USA
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Nathan S. Johnson
1,a)
Donald W. Brown
2
John S. Carpenter
2
Behnam Amin-Ahmadi
3,4
Craig A. Brice
3
Branden B. Kappes
5
Aaron P. Stebner
6
1
Stanford University
, Menlo Park, California 94025, USA
2
Los Alamos National Laboratory
, Los Alamos, New Mexico 87544, USA
3
Department of Mechanical Engineering, Colorado School of Mines
, Golden, Colorado 80401, USA
4
Confluent Medical Technologies
, Fremont, California 94539, USA
5
KMMD LLC
, Castle Rock, Colorado 80108, USA
6
Woodruff School of Mechanical Engineering and School of Materials Science and Engineering, Georgia Institute of Technology
, Atlanta, Georgia 30313, USA
a)Author to whom correspondence should be addressed: [email protected]
Appl. Phys. Lett. 120, 171901 (2022)
Article history
Received:
January 04 2022
Accepted:
April 07 2022
Citation
Nathan S. Johnson, Donald W. Brown, John S. Carpenter, Behnam Amin-Ahmadi, Craig A. Brice, Branden B. Kappes, Aaron P. Stebner; The roles of kinematic constraint and diffusion in non-equilibrium solid state phase transformations of Ti-6Al-4V. Appl. Phys. Lett. 25 April 2022; 120 (17): 171901. https://doi.org/10.1063/5.0084229
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