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Part A: Materials Science

Simultaneous measurement of tracer and interdiffusion coefficients: an isotopic phenomenological diffusion formalism for the binary alloy

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Pages 3515-3526 | Received 02 May 2013, Accepted 29 May 2013, Published online: 04 Jul 2013

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A. R. Allnatt, T. R. Paul, I. V. Belova & G. E. Murch. (2016) A high accuracy diffusion kinetics formalism for random multicomponent alloys: application to high entropy alloys. Philosophical Magazine 96:28, pages 2969-2985.
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I.V. Belova, Y.H. Sohn & G.E. Murch. (2015) Measurement of tracer diffusion coefficients in an interdiffusion context for multicomponent alloys. Philosophical Magazine Letters 95:8, pages 416-424.
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V.G. Vaks, A.Yu. Stroev, I.R. Pankratov, K.Yu. Khromov, A.D. Zabolotskiy & I.A. Zhuravlev. (2015) Statistical calculations of tracer and intrinsic diffusion coefficients in concentrated alloys and estimates of microscopic parameters of diffusion from experimental data. Philosophical Magazine 95:14, pages 1536-1572.
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Articles from other publishers (22)

Yang Yang, David W. Christianson & Michele V. Manuel. (2023) Experimental study of diffusion coefficients and assessment of atomic mobilities in FCC Al–Cu–V alloys. Calphad 83, pages 102629.
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Weisen Zheng, Tong Wu, Tao Luo & Xiao-Gang Lu. (2023) High-throughput study of atomic mobility in face-centered cubic Ni–Cu–Fe alloys through coupling two-dimensional diffusion simulations and diffusion triple experiments. Journal of Alloys and Compounds 942, pages 168956.
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I. V. Belova, T. Fiedler & G. E. Murch. (2022) Novel General Solution for the Analysis of a Multicomponent Interdiffusion Couple. Journal of Phase Equilibria and Diffusion 43:6, pages 746-752.
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Julia Kundin, Ingo Steinbach, Katrin Abrahams & Sergiy V. Divinski. (2021) Pair-exchange diffusion model for multicomponent alloys revisited. Materialia 16, pages 101047.
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Neelamegan Esakkiraja, Anuj Dash, Avik Mondal, K.C. Hari Kumar & Aloke Paul. (2021) Correlation between estimated diffusion coefficients from different types of diffusion couples in multicomponent system. Materialia 16, pages 101046.
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Mohammad Afikuzzaman, Irina V. Belova & Graeme E. Murch. (2021) Novel Interdiffusion Analysis in Multicomponent Alloys - Part 1: Application to Ternary Alloys. Diffusion Foundations 29, pages 161-177.
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G.M. Muralikrishna, B. Tas, N. Esakkiraja, V.A. Esin, K.C. Hari Kumar, I.S. Golovin, I.V. Belova, G.E. Murch, A. Paul & S.V. Divinski. (2021) Composition dependence of tracer diffusion coefficients in Fe–Ga alloys: A case study by a tracer-diffusion couple method. Acta Materialia 203, pages 116446.
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E. Petrishcheva, L. Tiede, D. Heuser, H. Hutter, G. Giester & R. Abart. (2020) Multicomponent diffusion in ionic crystals: theoretical model and application to combined tracer- and interdiffusion in alkali feldspar. Physics and Chemistry of Minerals 47:8.
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Tri Widodo Besar Riyadi. (2020) Structure and Properties of Ni˗Al˗Ti Systems Formed by Combustion Synthesis. Materials Science Forum 991, pages 44-50.
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Dhimas Wicaksono, Xiao Meng Zhu, Mohammad Sukri Mustapa, Sulis Yulianto, Ahmad Yunus Nasution & Tri Widodo Besar Riyadi. (2020) Effect of Ti Contents on the Microstructure and Mechanical Properties of Ni˗Al˗Ti System. Materials Science Forum 991, pages 24-29.
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Esin A. Schulz, Abhishek Mehta, Irina V. Belova, Graeme E. Murch & Yongho Sohn. (2018) Simultaneous Measurement of Isotope-Free Tracer Diffusion Coefficients and Interdiffusion Coefficients in the Cu-Ni System. Journal of Phase Equilibria and Diffusion 39:6, pages 862-869.
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Dandan Liu, Dandan Huang, Shuhong Liu, Yong Du & Sergiy V. Divinski. (2017) Composition-dependent tracer diffusion coefficients in the B2 Ni–Al–Ti alloy via a combination of radiotracer and diffusion couple techniques. Journal of Alloys and Compounds 720, pages 332-339.
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L. Zhou, M.A. Dayananda & Y.H. Sohn. 2017. Handbook of Solid State Diffusion, Volume 1. Handbook of Solid State Diffusion, Volume 1 203 237 .
V. G. Vaks, K. Yu. Khromov, I. R. Pankratov & V. V. Popov. (2016) Statistical theory of diffusion in concentrated bcc and fcc alloys and concentration dependencies of diffusion coefficients in bcc alloys FeCu, FeMn, FeNi, and FeCr. Journal of Experimental and Theoretical Physics 123:1, pages 59-85.
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S. Jothi, N. Winzer, T.N. Croft & S.G.R. Brown. (2015) Meso-microstructural computational simulation of the hydrogen permeation test to calculate intergranular, grain boundary and effective diffusivities. Journal of Alloys and Compounds 645, pages S247-S251.
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T. Ahmed, I. V. Belova, A. V. Evteev, E. V. Levchenko & G. E. Murch. (2015) Comparison of the Sauer-Freise and Hall Methods for Obtaining Interdiffusion Coefficients in Binary Alloys. Journal of Phase Equilibria and Diffusion 36:4, pages 366-374.
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T.R. Paul, I.V. Belova, E.V. Levchenko, A.V. Evteev & G.E. Murch. (2015) Determining a Tracer Diffusivity by way of the Darken-Manning Equation for Interdiffusion in Binary Alloy Systems. Diffusion Foundations 4, pages 25-54.
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J. Dąbrowa, Witold Kucza, Katarzyna Tkacz-Śmiech, Bogusław Bożek & Marek Danielewski. (2015) Interdiffusion: Consistency of Darken's and Onsager's Methods. Defect and Diffusion Forum 363, pages 29-34.
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Marek Danielewski & Henryk Leszczyński. (2015) Computation of Trajectories and Displacement Fields in a Three-Dimensional Ternary Diffusion Couple: Parabolic Transform Method. Mathematical Problems in Engineering 2015, pages 1-11.
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Tanvir Ahmed, Irina V. Belova & Graeme E. Murch. (2015) Finite Difference Solution of the Diffusion Equation and Calculation of the Interdiffusion Coefficient using the Sauer-Freise and Hall Methods in Binary Systems. Procedia Engineering 105, pages 570-575.
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Nagraj S. Kulkarni, Robert J. Bruce Warmack, Bala Radhakrishnan, Jerry L. Hunter, Yongho Sohn, Kevin R. Coffey, Graeme E. Murch & Irina V. Belova. (2014) Overview of SIMS-Based Experimental Studies of Tracer Diffusion in Solids and Application to Mg Self-Diffusion. Journal of Phase Equilibria and Diffusion 35:6, pages 762-778.
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V. G. Vaks, A. Yu. Stroev, I. R. Pankratov & A. D. Zabolotskiy. (2014) Statistical theory of diffusion in concentrated alloys. Journal of Experimental and Theoretical Physics 119:2, pages 272-299.
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