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PUBLICATIONS LIST

Journal Publications (Total: 60)
(* indicates Dr. Charit's student)

A. Guria* and I. Charit, “Tensile Properties of Accident-Tolerant Aluminum-Bearing Ferritic Steels,” Annals of Nuclear Energy, in press (2016-2017).

A. Dutt, S. Pasebani*, I. Charit and R.S. Mishra, “On the Creep Behavior of Dual-Scale Particle Strengthened Nickel Based Alloy,” Materials Science & Engineering A, in press (2016-2017).

S. Sitler, K.S. Raja and I. Charit, “ZrB2-HfB2 Solid Solutions as Electrode Materials for Hydrogen Reaction in Acidic and Basic Solutions,” Materials Letters, in press (2016).

S. Sitler, K.S. Raja and I. Charit, “Metal Rich Transition Metal Diborides as Electrocatalysts for Hydrogen Evolution Reactions in a Wide Range of pH,” Journal of Electrochemical Society, 163 (13) (2016) H1069-H1075.

T. Shrestha*, M. Basirat, S. Alsagabi*, A. Sittiho*, I. Charit and G.P. Potirniche, “Creep Rupture Behavior of Welded Grade 91 Steel,” Materials Science & Engineering A, 669 (2016) 75-86.

S. Alsagabi*, J. Ninlachart, K.S. Raja and I. Charit, “Passivity and Localized Corrosion of AZ31 Magnesium Alloy in High pH Electrolytes,” Journal of Materials Engineering & Performance, 25 (6) (2016) 2364-2374.

S. Sitler, C. Hill*, K.S. Raja and I. Charit, “Transition Metal Diborides as Electrode Material for MHD Direct Power Extraction: High Temperature Oxidation of ZrB2-HfB2 Solid Solution with LaB6 Addition,Metallurgical and Materials Transactions – Energy, 3E (2016) 90-99.

S. Pasebani*, I. Charit, Y. Wu, J. Burns, K.N. Allahar, D.P. Butt, J.I. Cole, and S.F. Alsagabi, “Lanthana-Bearing Nanostructured Ferritic Steels via Spark Plasma Sintering,” Journal of Nuclear Materials, 470 (2016) 297-306.

S. Pasebani*, I. Charit, D.P. Butt, J.I. Cole, Y.Q. Wu, J. Burns, “Sintering Behavior of Lanthana-Bearing Nanostructured Ferritic Steel Consolidated via Spark Plasma Sintering,” Advanced Engineering Materials, 18 (2) (2016) 324-332.

S. Alsagabi*, I. Charit and S. Pasebani*, “The Irradiation Performance and Microstructural Evolution in 9Cr-2W Steel under Ion Irradiation, Journal of Materials Engineering and Performance, 25 (2) (2016) 401-408.

T. Shrestha*, I. Charit, and G.P. Potirniche, "In-situ Tensile Deformation and Residual Stress Measurement by Neutron Diffraction in Modified 9Cr-1Mo Steel," Journal of Materials Engineering and Performance, 24 (2015) 4710-4720.

M. Basirat, T. Shrestha*, L. Barannyk, G.P. Potirniche, and I. Charit, “A Creep-Damage Model for High-Temperature Deformation and Failure of 9Cr-1Mo Steel Weldments,” Metals, 5 (2015) 1487-1506.

A. Guria* and I. Charit, “Observation of Serrated Flow in APMTTM Alloy,” Materials Letters, 160 (2015) 55-57.

S. Pasebani*, I. Charit and R.S. Mishra, “Effect of Tool Rotation Rate on Constituent Particles in a Friction Stir Processed 2024Al Alloy,” Materials Letters, 160 (2015) 64-67.

S. Pasebani*, I. Charit, J. Burns, S. Alsagabi, D.P. Butt, J.I. Cole, L.M. Price and L. Shao, “Microstructural Stability of a Self-Ion Irradiated Lanthana-Bearing Nanostructured Ferritic Steel,” Journal of Nuclear Materials, 462 (2015) 191-204.

J. Webb* and I. Charit, “Neutronic Effects of Rhenium, Gadolinia and Uranium Dioxide Addition to a Tungsten Based Fast Spectrum Space Reactor,” Annals of Nuclear Energy, 79 (2015) 9-17.

T. Shrestha*, S. Alsagabi*, I. Charit, G.P. Potirniche, and M.V. Glazoff, “Effect of Heat Treatment on Microstructure and Hardness of Grade 91 Steel,” Metals, 5(1) (2015) 131-149. http://www.mdpi.com/2075-4701/5/1/131/htm (full text available).

S. Pasebani*, A. Dutt, I. Charit and R.S. Mishra, “Oxide Dispersion Strengthened Nickel Based Alloys via Spark Plasma Sintering,” Materials Science & Engineering A, 630 (2015) 155-169.

M.V. Glazzoff*, I. Charit and P. Sabharwall, “Computational Thermodynamic Modeling of Hot Corrosion of Alloys Haynes 242 and Hastelloy N for Molten Salt Service in Advanced High Temperature Reactors,” Nuclear Energy Science and Power Generation Technology, 3 (3) (2014) doi. 10.4172/2325-9809.1000125.

S. Alsagabi*, T. Shrestha* and I. Charit, "High Temperature Deformation Behavior of Grade 92 Steel," Journal of Nuclear Materials, 453 (1-3)(2014) 151-157.

J. Wang, W. Yuan, R.S. Mishra, and I. Charit, "An Evaluation of Creep behavior in Friction Stir Welded MA754 Alloy," Journal of Materials Engineering & Performance, 23 (9) (2014) 3159-3164.

J. Webb* and I. Charit, "Fabrication of Cermets via Spark Plasma Sintering for Nuclear Applications," JOM, 66 (6) (2014) 943-952.

S. Pasebani* and I. Charit, "Effect of Alloying Elements on the Microstructure and Mechanical Properties of Nanostructured Ferritic Steels Produced by Spark Plasma Sintering," Journal of Alloys & Compounds, 599 (2014) 206-211.

K. Chitrada, K.S. Raja, B. Pesic, and I. Charit, “Corrosion Behavior of Surface Modified Nd-Fe-B Permanent Magnet in Dilute Chloride Environments,” Electrochimica Acta, 123 (2014) 23-32.

T. Shrestha*, S. Gollapudi, I. Charit, and K.L. Murty, "Creep Deformation Behavior of Sn-Zn Solder Alloys," Journal of Materials Science, 49 (2014) 2127-2135.

S. Pasebani*, I. Charit, Y.Q. Wu, D.P. Butt, and J.I. Cole, “Mechanical Alloying of Lanthana-Bearing Nanostructured Ferritic Steels,” Acta Materialia, 61 (2013) 5605-5617.

Y.Q. Wu, K.N. Allahar, J. Burns, B. Jaques, I. Charit, D.P. Butt, and J.I. Cole, "ODS Alloys via Spark Plasma Sintering: A Combinational Characterization Study by TEM and APT," Crystal Research and Technology, 49 (9) (2014) 645-652.

J. Wang, W. Yuan, R.S. Mishra, and I. Charit, “Microstructural Evolution and Mechanical Properties of Friction Stir Welded ODS Alloy MA754,” Journal of Nuclear Materials, 442 (1-3) (2013) 1-6.

K.N. Allahar, J. Burns, B. Jaques, Y.Q. Wu, I. Charit, J. Cole and D.P. Butt, "Ferritic Oxide Dispersion Strengthened Alloys by Spark Plasma Sintering," Journal of Nuclear Materials, 443 (2013) 256-265.

T. Shrestha*, M. Basirat, I. Charit, G. Potirniche and K. Rink, “Creep Rupture Behavior of Grade 91 Steel,” Materials Science & Engineering A, 565 (2013) 382-391.              

S. Pasebani*, I. Charit, D.P. Butt and J.I. Cole, “A Preliminary Study on the Development of La2O3-Bearing Nanostructured Ferritic Steels via High Energy Ball Milling,” Journal of Nuclear Materials, 434 (1-3) (2013) 282-286.

J. Wang, W. Yuan, R.S. Mishra, and I. Charit, “Microstructure and Mechanical Properties of Friction Stir Welded Oxide Dispersion Strengthened Alloy,” Journal of Nuclear Materials, 432 (1-3) (2013) 274-280.

M. Basirat, T. Shrestha*, G. Potirniche, I. Charit and K. Rink, “A Study of the Creep Behavior of Modified 9Cr-1Mo,” International Journal of Plasticity, 37 (2012) 95-107.

J.A. Webb* and I. Charit, “Analytical Determination of Thermal Conductivity of W-UO2 and W-UN Cermet Nuclear Fuels,” Journal of Nuclear Materials, 427 (2012) 87-94.

T. Shrestha*, M. Basirat, I. Charit, G. Potirniche, K. Rink and U. Sahaym, “Creep Deformation Mechanisms in Modified 9Cr-1Mo Steel,” Journal of Nuclear Materials, 423 (2012) 110-119.

S. Alsagabi* and I. Charit, “Fundamental Studies on the Thermal Stability and Mechanical Characteristics of AZ31 Alloy,” Materials Science and Engineering A, 536 (2012) 64-72.

J.A. Webb* and I. Charit, “Monte Carlo Analysis of Simple Geometries Containing Tungsten-Rhenium Alloys Engrained with Uranium Dioxide and Uranium Mononitride,” Nuclear Engineering and Design, 241 (8) (2011) 2968-2973.

C.S. Seok, B. Marple, Y.J. Song, S. Gollapudi, I. Charit and K.L. Murty, “High Temperature Deformation Characteristics of ZirloTM Tubing via Ring Creep and Burst Tests,” Nuclear Engineering and Design, 241 (2011) 599-602.

K.L. Murty, S. Gollapudi, and I. Charit, “Newtonian Viscous Creep in Metals,” Transactions of the Indian Institute of Metals, 63 (2-3) (2010) 85-91.

S. Gollapudi, K. Rajulapati, I. Charit, C. Koch, R. Scattergood and K.L. Murty, “Creep in Nanocrystalline Materials: Role of Stress Assisted Grain Growth,” Materials Science and Engineering A, 527 (2010) 5773-5781.

S. Gollapudi, K.V. Rajulapati, I. Charit, K.M. Youssef, C.C. Koch, R.O. Scattergood and K.L. Murty, “Understanding Creep in Nanocrystalline Materials,” Transactions of the Indian Institute of Metals, 63 (2-3) (2010) 373-378.

I. Charit and K.L. Murty, “Structural Materials Issues for the Next Generation Fission Reactors,” US Journal of Materials (JOM), 62 (9) (2010) 67-74.

M. Faheem, S. McCormick* and I. Charit, “Microstructural and DSC Studies of Alloy 718TM Plus,” Thermochimica Acta, 496 (2009) 151-155.

K.L. Murty and I. Charit, “Structural Materials for Gen-IV Reactors: Challenges and Opportunities,” Journal of Nuclear Materials, 383 (1-2) (2008) 189-195.

S. Gollapudi, V. Bhosle, I. Charit and K.L. Murty, “Newtonian Viscous Creep in Ti-3Al-2.5V,” Philosophical Magazine, 88 (9) (2008) 1357-1367.

K.L. Murty and I. Charit, “Static Strain Aging and Dislocation-Impurity Interactions in Irradiated Mild Steel,” Journal of Nuclear Materials, 382 (2-3) (2008) 217-222.

S. Gollapudi, I. Charit, and K.L. Murty, “Creep Mechanisms in Ti-3Al-2.5V alloy tubing deformed under closed end internal pressurization,” Acta Materialia, 56 (2008) 2406-2419.

I. Charit and R.S. Mishra, “Abnormal Grain Growth in Friction Stir Processed Alloys,” Viewpoint Paper, Scripta Materialia, 58 (2008) 367-371.

I. Charit and K.L. Murty, “Creep Behavior of Niobium-Modified Zirconium Alloys,” Journal of Nuclear Materials, in 374 (2008) 354-363.

L.B. Johannes, I. Charit, R.S. Mishra and R. Verma, “Enhanced Enhanced Superplasticity via Friction Stir Processing in Continuous Cast AA5083 Al,” Materials Science and Engineering A, 464 (2007) 351-357.

G. Srikant, B. Marple, I. Charit and K.L. Murty, “Characterization of Stress Rupture Behavior of Commercial-Purity-Ti via Burst Testing,” Materials Science and Engineering A, 463 (2007) 203-207.

I. Charit, C.S. Seok and K.L. Murty, “Synergistic Effcts of Interstitial Impurities and Radiation Defects on Mechanical Characteristics of Ferritic Steels,” Journal of Nuclear Materials, 361 (2007) 262-273.

K.L. Murty and I. Charit, “Texture Development and Anisotropic Deformation of Zircaloys,” Progress in Nuclear Energy, 48 (2006) 325-359.

I. Charit and R.S. Mishra, “Low Temperature Superplasticity in Friction-Stir-Processed Ultrafine Grained Al-Zn-Mg-Sc Alloy,” Acta Materialia, 53 (2005) 4211-4223.

A. Dutta, I. Charit, L.B. Johannes and R.S. Mishra, “Deep Cup Forming by Superplastic Punch Stretching of Friction Stir Processed 7075 Al Alloy,” Materials Science and Engineering A, 395 (2005) 173-179.

I. Charit and R.S. Mishra, “Evaluation of Microstructure and Superplasticity in Friction Stir Processed 5083 Al alloy,” Journal of Materials Research, 19 (2004) 3329-3342.

I. Charit and R. S. Mishra, “High Strain Rate Superplasticity in a Commercial 2024 Aluminum via Friction Stir Processing,” Materials Science and Engineering A, 359 (2003) 290-296.

R.S. Mishra, Z. Y. Ma and I. Charit, “Friction Stir Processing: a Novel Technique for Fabrication of Surface Composite,” Materials Science and Engineering A, 341 (2003) 307-310.

I. Charit, R.S. Mishra and M.W. Mahoney, “Multisheet Structures in 7475 Aluminum by Friction Stir Welding in Concert with Post-Weld Superplastic Forming,” Scripta Materialia, 47 (9) (2002) 631-636.

I. Charit and A.H. Chokshi, "Experimental Evidence of Diffusional Creep in the Superplastic 3-mol% Yttria-Stabilized Zirconia," Acta Materialia, 49 (2001), 2239-2249.

Other Publications

Conference Proceeding Papers (35); Oral Conference Presentations (61); Poster Presentations (14); Book Chapters (5); Textbook (1)

(For more information, please refer to Dr. Charit's CV)

 

         
©2016 Indrajit Charit. All rights reserved.

Send comments and suggestions to icharit@uidaho.edu