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David B. Menasche
David B. Menasche
Research Scientist
Verified email at hamiltoniangroup.com - Homepage
Title
Cited by
Cited by
Year
Modeling slip system strength evolution in Ti-7Al informed by in-situ grain stress measurements
DC Pagan, PA Shade, NR Barton, JS Park, P Kenesei, DB Menasche, ...
Acta Materialia 128, 406-417, 2017
1232017
Microstructural effects on damage evolution in shocked copper polycrystals
EJ Lieberman, RA Lebensohn, DB Menasche, CA Bronkhorst, AD Rollett
Acta Materialia 116, 270-280, 2016
542016
Comparison between diffraction contrast tomography and high-energy diffraction microscopy on a slightly deformed aluminium alloy
L Renversade, R Quey, W Ludwig, D Menasche, S Maddali, RM Suter, ...
IUCrJ 3 (1), 32-42, 2016
502016
Fiducial marker application method for position alignment of in situ multimodal X-ray experiments and reconstructions
PA Shade, DB Menasche, JV Bernier, P Kenesei, JS Park, RM Suter, ...
Journal of Applied Crystallography 49 (2), 700-704, 2016
302016
Quantifying intermediate‐frequency heterogeneities of SOFC electrodes using X‐ray computed tomography
WK Epting, Z Mansley, DB Menasche, P Kenesei, RM Suter, K Gerdes, ...
Journal of the American Ceramic Society 100 (5), 2232-2242, 2017
282017
Three-dimensional α colony characterization and prior-β grain reconstruction of a lamellar Ti–6Al–4V specimen using near-field high-energy X-ray diffraction microscopy
E Wielewski, DB Menasche, PG Callahan, RM Suter
Journal of Applied Crystallography 48 (4), 1165-1171, 2015
212015
AFRL additive manufacturing modeling series: challenge 4, 3D reconstruction of an IN625 high-energy diffraction microscopy sample using multi-modal serial sectioning
MG Chapman, MN Shah, SP Donegan, JM Scott, PA Shade, D Menasche, ...
Integrating Materials and Manufacturing Innovation 10, 129-141, 2021
182021
Deep learning approaches to semantic segmentation of fatigue cracking within cyclically loaded nickel superalloy
DB Menasche, PA Shade, S Safriet, P Kenesei, JS Park, WD Musinski
Computational Materials Science 198, 110683, 2021
172021
Importance of outliers: A three-dimensional study of coarsening in -phase iron
YF Shen, S Maddali, D Menasche, A Bhattacharya, GS Rohrer, RM Suter
Physical Review Materials 3 (6), 063611, 2019
172019
Shock induced damage in copper: A before and after, three-dimensional study
DB Menasche, J Lind, SF Li, P Kenesei, JF Bingert, U Lienert, RM Suter
Journal of applied physics 119 (15), 2016
152016
Accuracy and precision of near-field high-energy diffraction microscopy forward-model-based microstructure reconstructions
DB Menasche, PA Shade, RM Suter
Journal of Applied Crystallography 53 (1), 107-116, 2020
142020
Afrl additive manufacturing modeling series: challenge 4, in situ mechanical test of an in625 sample with concurrent high-energy diffraction microscopy characterization
DB Menasche, WD Musinski, M Obstalecki, MN Shah, SP Donegan, ...
Integrating Materials and Manufacturing Innovation 10 (3), 338-347, 2021
112021
Correlation of thermally induced pores with microstructural features using high energy X-rays
DB Menasche, PA Shade, J Lind, SF Li, JV Bernier, P Kenesei, ...
Metallurgical and Materials Transactions A 47, 5580-5588, 2016
102016
3D reconstruction of an additive manufactured IN625 tensile sample using serial sectioning and multi-modal characterization
MG Chapman, MD Uchic, JM Scott, MN Shah, SP Donegan, PA Shade, ...
Microscopy and Microanalysis 25 (S2), 342-343, 2019
42019
Grain boundary migration in polycrystalline α-Fe
Z Xu, YF Shen, SK Naghibzadeh, X Peng, V Muralikrishnan, S Maddali, ...
Acta Materialia 264, 119541, 2024
22024
The Role of Mutually Attractive Interactions Between Neutral Atoms: A Split-Operator Method Analysis
D Menasche
Senior Capstone, American Univ, 2011
12011
Four-dimensional microstructurally small fatigue crack growth in cyclically loaded nickel superalloy specimen
DB Menasche, PA Shade, P Kenesei, JS Park, WD Musinski
International Journal of Fatigue 177, 107920, 2023
2023
Error Analysis of Near-Field High Energy Diffraction Microscopy
D Menasche
Carnegie Mellon University, 0
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