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Dislocation substructures of three die-cast Mg–Al–Ca-based alloys. Scripta Materialia. 58:914–917.. 2008.
Decoupling build orientation-induced geometric and texture effects on the mechanical response of additively manufactured IN625 thin-walled elements. Materials Science and Engineering: A. 870:144826.. 2023.
Displacement Mapping During In-Situ Straining In The SEM. MICROSCOPY AND MICROANALYSIS-NEW YORK-. 5:334–335.. 1999.
Development of dendritic structure in the liquid-metal-cooled, directional-solidification process. Metallurgical and Materials Transactions A. 42:2723–2732.. 2011.
Determination of Surface Topography from Laser Ablation using EBSD. Microscopy and Microanalysis. 21:2369–2370.. 2015.
Deformation mechanisms in a Ru–Ni–Al ternary B2 intermetallic alloy. Acta materialia. 55:2715–2727.. 2007.
Dynamic deformation and damage in cast $\gamma$-TiAl during taylor cylinder impact: Experiments and model validation. Metallurgical and Materials Transactions A. 35:2557–2566.. 2004.
Damage mechanisms during very high cycle fatigue of a coated and grit-blasted Ni-based single-crystal superalloy. International Journal of Fatigue. 142. 2021.
Design of Nickel-Cobalt-Ruthenium Multi-Principal Element Alloys. Acta Materialia. :16013.. 2020.
Damage Nucleation During Transverse Creep of a Directionally Solidified Ni-based Superalloy. Materials Science and Engineering A. 858:144089.. 2022.
Detection of a marker layer in a 7YSZ thermal barrier coating by femtosecond laser-induced breakdown spectroscopy. Surface and Coatings Technology. 202:3940–3946.. 2008.
Depth-profiling study of a thermal barrier coated superalloy using femtosecond laser-induced breakdown spectroscopy. Spectrochimica Acta Part B: Atomic Spectroscopy. 63:27–36.. 2008.
Defect reduction in large superalloy castings by liquid-tin assisted solidification.. PARSONS 2003: Sixth International Charles Parsons Turbine Conference. :649–661.. 2003.
Directional solidification of large superalloy castings with radiation and liquid-metal cooling: a comparative assessment. Metallurgical and Materials Transactions A. 35:3221–3231.. 2004.
Determination of matrix and precipitate elastic constants in ($\gamma$–$\gamma$′) Ni-base model alloys, and their relevance to rafting. Materials Science and Engineering: A. 260:212–221.. 1999.
Deformation of Ru–Al–Ta ternary alloys. Intermetallics. 12:755–762.. 2004.
The Development of gamma/ gamma Interfacial Dislocation Networks During Creep in Nickel-Base Superalloys. Superalloys 1992. :557–566.. 1992.
Development of grain-scale slip activity and lattice rotation fields in Inconel 718. Acta Materialia. 226:117627.. 2022.
Dynamic response of thin films on substrates subjected to femtosecond laser pulses. Acta Materialia. 84:136–144.. 2015.
Development of $\gamma$ phase stacking faults during high temperature creep of Ru-containing single crystal superalloys. Acta Materialia. 55:5802–5812.. 2007.
Dynamics of Ultrafast Laser Induced Damage in Single Crystal Ni-Based Superalloy During Machining. MRS Proceedings. 980:0980–II05.. 2006.
Dynamics of Ultrafast Laser Induced Damage in Single Crystal Ni-Based Superalloy During Machining. Advanced Intermetallic-Based Alloys(MRS Symposium Proceedings Series Volume 980). 980:571–576.. 2007.
Designing nickel base alloys for microstructural stability through low γ-γ′ interfacial energy and lattice misfit. Materials and Design. 140:249–256.. 2018.
Development and Application of an Optimization Protocol for Directional Solidification: Integrating Fundamental Theory, Experimentation and Modeling Tools. Superalloys 2012. :653–662.. 2012.
Damage mechanism identification in composites via machine learning and acoustic emission. npj Computational Materials. 7:95.. 2021.