Publications

Export 513 results:
Author Title [ Type(Asc)] Year
Journal Article
Zhang M, Yu Q, Frey C, Walsh F, Payne M, Kumar P, Liu D, Pollock T, Asta M, Ritchie R et al..  2022.  Determination of peak ordering in the CrCoNi medium-entropy alloy via nanoindentation. Acta Materialia. 241:118380.
Fährmann M, Hermann W, Fährmann E, Boegli A, Pollock TM, Sockel HG.  1999.  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.
Das DK, McDonald JP, Levi CG, Yalisove SM, Pollock TM.  2008.  Detection of a marker layer in a 7YSZ thermal barrier coating by femtosecond laser-induced breakdown spectroscopy. Surface and Coatings Technology. 202:3940–3946.
Raeker EB, Tulshibagwale N, Mullin KM, Lamb JD, Pollock TM.  2025.  Detection and classification of cracking via acoustic emission during laser-melting screening for additive manufacturing. JOM (1989). 77:7274–7286.
Rettberg LH, Goodlet BR, Pollock TM.  2016.  Detecting Recrystallization in a Single Crystal Ni-Base Alloy using Resonant Ultrasound Spectroscopy. NDT & E International.
Meher S., Carroll M.C, Pollock T.M, Carroll L.J.  2018.  Designing nickel base alloys for microstructural stability through low γ-γ′ interfacial energy and lattice misfit. Materials and Design. 140:249–256.
Charpagne MA, Vamsi KV, Eggeler YM, Murray SP, Frey C, Kolli SK, Pollock TM.  2020.  Design of Nickel-Cobalt-Ruthenium Multi-Principal Element Alloys. Acta Materialia. :16013.
Holgate CS, Frey C, Endsley MA, Suzuki A, Levi CG, Pollock TM.  2025.  Design of an alumina forming coating for Nb-base refractory alloys. Mater. Des.. 251:113652.
Pollock TM, Jorgensen D, Jackson RW, He M, Suzuki A, Lipkin D.  2014.  Design constraints and higher temperature intermetallic bond coatings.
Pollock T.M, Clarke A.J, Babu S.S.  2020.  Design and Tailoring of Alloys for Additive Manufacturing. Metallurgical and Materials Transactions A: Physical Metallurgy and Materials Science. 51:6000–6019.
Das DK, McDonald JP, Yalisove SM, Pollock TM.  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.
TerBush JR, Chen OH, J Jones W, Pollock TM.  2012.  The dependence of creep behavior on elemental partitioning in Mg-5Al-3Ca-xSn alloys. Metallurgical and Materials Transactions A. 43:3120–3134.
Shi X, Mahajan S, Pollock TM, Arunachalam VS.  1999.  Deformation-induced point defects in NiAl single crystals. Intermetallics. 7:1255–1260.
Feng Q, Nandy TK, Tryon B, Pollock TM.  2004.  Deformation of Ru–Al–Ta ternary alloys. Intermetallics. 12:755–762.
Nandy TK, Feng Q, Pollock TM.  2003.  Deformation of a platinum-containing RuAl intermetallic by< 111> dislocations. Scripta materialia. 48:1087–1092.
Cao F, Pollock TM.  2007.  Deformation mechanisms in a Ru–Ni–Al ternary B2 intermetallic alloy. Acta materialia. 55:2715–2727.
Rhodes BE, Mayer JA, Xu S, Lamb JD, Wendorf J, Echlin MLP, Pollock TM, Eggeler YM, Beyerlein IJ, Gianola DS.  2024.  Deformation mechanisms and defect structures in Heusler intermetallic MnCu2Al. Acta Mater.. 268:119711.
Tu WJ, Pollock TM.  2010.  Deformation and strain storage mechanisms during high-temperature compression of a powder metallurgy nickel-base superalloy. Metallurgical and Materials Transactions A. 41:2002–2009.
Polonsky AT, Echlin MP, Lenthe WC, Dehoff RR, Kirka MM, Pollock TM.  2018.  Defects and 3D structural inhomogeneity in electron beam additively manufactured Inconel 718. Materials Characterization. 143:171–181.
Banerjee A, Rossin J, He M-R, Musinski W, Shade P, Cox M, Schwalbach E, Pollock T, Hemker K..  2023.  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.
Pinz M, Weber G, Stinville J-C, Pollock T, Ghosh S.  2022.  Data-driven Bayesian model-based prediction of fatigue crack nucleation in Ni-based superalloys. npj Computational Materials. 8
Pinz M, Weber G, Stinville J-C, Pollock T, Ghosh S.  2021.  A Data-Driven Bayesian Model for Predicting Fatigue Crack Nucleation in Polycrystalline Ni-Based Superalloys. SSRN Electronic Journal.
Cormier J, Stinville J-C, Suave LMataveli, Mauget F, Patrick V, Marcin L, Pollock T.  2022.  Damage Nucleation During Transverse Creep of a Directionally Solidified Ni-based Superalloy. Materials Science and Engineering A. 858:144089.
Cervellon A, Ormastroni LMaria Bort, Hervier Z, Pollock TM, Pedraza F, Cormier J.  2021.  Damage mechanisms during very high cycle fatigue of a coated and grit-blasted Ni-based single-crystal superalloy. International Journal of Fatigue. 142
Muir C., Swaminathan B., Almansour A, Sevener K, Smith C., Presby M, Kiser J., Pollock T., Daly S..  2021.  Damage mechanism identification in composites via machine learning and acoustic emission. npj Computational Materials. 7:95.

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