CALPHAD 2026 — Tuesday, June 9, 2026

Day 2 of conference
Québec City Convention Centre
TimeActivityRoom
7:15–8:00BreakfastEspace Urbain
8:00–10:00
Fundamental Thermo Modelling – 3
Chairs: B.J. Lee & A. Saengdeejing
  1. O2.1 Bayesian Design of Experiments for Calphad Modeling — B. Bocklund
  2. O2.2 Utilizing CALPHAD databases for alloy microstructure prediction via phase-field modeling — T. Morino
  3. O2.3 Toward Defect Phase Diagrams by Integrating Constraints into CALPHAD — M. to Baben
  4. O2.4 Thermodynamic Modeling of Pure Elements with Quantitative Model Selection and Uncertainty Quantification… — N. A. Richter
  5. O2.5 A Cluster-Based Computational Thermodynamics Framework with Intrinsic Chemical Short-Range Order: New De… — B.-C. Zhou
  6. O2.6 Calphad models for the liquid phase — B. Sundman
306AB
10:00-10:20Break — refreshmentsFoyer 306
10:20–12:00
CALPHAD Assisted Material Design of Metallic Systems – 2
Chairs: K. Frisk & M. Sluiter
  1. O2.7 Combinatorial Additive Manufacturing–Enabled Materials Discovery and Modeling of W–Re–Os Alloys — W. Chen
  2. O2.8 Development of a high-throughput approach to assess oxidation resistance using chemically graded Ni-base… — M. Perrut
  3. O2.9 Evaluation of the Cu-Ti phase diagram and thermodynamic prediction of continuous and discontinuous preci… — I. Ohnuma
  4. O2.10 Phase diagrams of Bi-Cu-Sn-Te quaternary system — C.-H. Ho
  5. O2.11 Materials design of high-strength, ultra-pure copper alloys for the next-generation detectors to unravel… — D. Spathara
306AB
12:00-13:30LunchEspace Urbain
13:30–15:30
CALPHAD Applications – 1
Chairs: M. to Baben & B. Davis
  1. O2.12 Thermodynamic and Kinetic Modelling of Oxide-Metal Reactions During Casting of Reactive Alloys — J. Moses
  2. O2.13 Schaeffler diagram – a CALPHAD-view on an established application tool — A. Schneider
  3. O2.14 Deoxidation Equilibria in Liquid Alloys — M.-K. Paek
  4. O2.15 Integration of thermodynamics with process development in ferroalloy production — B. Davis
  5. O2.16 An assessment of hydrogen-induced NiTi martensite transition — G. Pollini
  6. O2.17 Investigation of the effects of tramp elements on the pearlitic transformation for a sustainable steelma… — A. Maille
306AB
15:30-15:50Break — refreshmentsFoyer 306
15:50–17:50
CALPHAD Applications – 2
Chairs: I.H. Jung & T. Morino
  1. O2.18 Thermodynamic Modelling of Protective Coating for Solid Oxide Electrolysis Cells — M. Saab
  2. O2.19 Modelling and probing solid solution-aqueous solution equilibria of aqueous nickel iron sulfate at 6 °C — J. Self
  3. O2.20 Unexpected Cracking in WAAM Cu-Ni Deposited on Steel Base Plates: Understanding the Role of Fe — T. Avey
  4. O2.21 Blast Furnace Simulation Using a CASCADE Framework and ChemApp for Python — A. Mansy
  5. O2.22 Modelling of inorganic solid phases formed during pyrogasification of biomass — D. A. Pinto Huanaco
  6. O2.23 Machine learning-assisted crystal plasticity modeling of microcrack behavior in gradient-structured stee… — X. X. Luo
306AB
17:50–19:30DinnerEspace Urbain
P2.1 Unexpected interfacial reactions in Co/GeTe and Ni/GeTe couples — C.-H. HoP2.2 Experimental Investigation of Phase Equilibria in Ni-Ce-Cr system — Swathi Mallika DikondaP2.3 Diffusivities and atomic mobilities of fcc phase in Co-rich Co–F… — Zhenmin DuP2.4 Thermodynamic modelling of battery cathode materials: early-stag… — L. FenocchioP2.5 Thermodynamic modeling of the Hf-Nb-V system — T. G. OliveiraP2.6 Study on microstructure and property of novel γ′-strengthened mu… — Cuiping GuoP2.7 Bayesian Active Learning of Zero-Phase-Fraction Lines — C. HardcastleP2.8 A robotic calorimetry laboratory for phase diagrams on demand — K. HuangP2.9 Thermodynamic investigations on the enthalpy of mixing of tribut… — Gude Jogeswara RaoP2.10 The top Calphad scientists according to their citation records — G. KaptayP2.11 Assessment of the Thermodynamics and Thermophysical Properties o… — Ursula R. KattnerP2.12 The experimental and theoretical study of the In-La-Ni system — A. KroupaP2.13 Comparison of model of hydrogen permeation through iron plates w… — J. R. LeemanP2.14 Modeling and experimental study of IMC formation at Sn/Cu interf… — T. PeričkováP2.15 Efficient Single-Phase Region Search via Gradient-Informed Gauss… — C. MaguireP2.16 Machine Learning–Accelerated Investigation of Phase Stability in… — M. PalumboP2.17 Thermodynamically Driven Microstructural Evolution and Property … — P. ZhouP2.18 Breaking the Charge Neutrality Boundary in Perovskite Using the … — Adam ShenkP2.19 Liquidus projection of the Co-Si-B system in the Co-rich region — E. K. S. PellegrinoP2.20 Topologically Constrained Machine Learning of Phase Diagrams Usi… — J. TeermanP2.21 Phase equilibria and thermodynamic activities for Li-ion battery… — M. TrabelsiP2.22 Phase diagrams and interfacial reactions of Ni-Bi-Sb ternary sys… — Yung-Chun TsaiP2.23 Physically-constrained prediction of the liquidus curve for mult… — J. WillwerthP2.24 Illuminating early-stage oxidation of ZrC using Small-Cell DFT MD — Philip WurznerP2.25 Intelligent Design and Development of Ultra-High-Strength Steels… — Xiaoqun LiP2.26 Simulating H2 replacement of natural gas in DRI-MIDREX Process u… — Camille Rincent