Morris Eugene Fine
Affiliations: | 1954-1988 | Materials science | Northwestern University, Evanston, IL |
Area:
physical metallurgyWebsite:
http://www.mccormick.northwestern.edu/news/articles/2015/10/morris-fine-materials-science-pioneer-passes-away.htmlGoogle:
"Morris Eugene Fine"Bio:
(1918 - 2015)
http://www.nae.edu/29388.aspx
https://www.google.com/books/edition/Commencement/jBIPAQAAMAAJ?hl=en&gbpv=1&bsq=substitute%20soft%20solders
Mean distance: 19.47 | S | N | B | C | P |
Cross-listing: Physics Tree - Materials Tree
Parents
Sign in to add mentorRalph Lewis Dowdell | grad student | 1943 | UMN (Physics Tree) | |
(Solderability of Ordinary and Substitute Soft Solders) |
Children
Sign in to add traineeJoseph Gerald Byrne | grad student | 1960 | Northwestern (Physics Tree) |
Herbert Herman | grad student | 1957-1961 | Northwestern (E-Tree) |
Harris Leon Marcus | grad student | 1967 | Northwestern (Physics Tree) |
Peter K. Liaw | grad student | 1980 | Northwestern (E-Tree) |
James G. Conley | grad student | 1987 | Northwestern (E-Tree) |
Zayna M. Connor | grad student | 2000 | Northwestern (Physics Tree) |
Rodney J. McCabe | grad student | 2000 | Northwestern (Physics Tree) |
Michael S. Gagliano | grad student | 2002 | Northwestern (Physics Tree) |
Robert A. Gagliano | grad student | 2002 | Northwestern (Physics Tree) |
R. P. Kolli | grad student | 2007 | Northwestern (Physics Tree) |
Brent A. Fiedler | grad student | 2010 | Northwestern (Physics Tree) |
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Publications
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Huang E, Lam T, Chang I, et al. (2018) Plasticity Enhancement by Fe-Addition on NiAl Alloy: A Synchrotron X-ray Diffraction Mapping and Molecular Dynamics Simulation Study Quantum Beam Science. 2: 18 |
Gross CT, Isheim D, Vaynman S, et al. (2018) Design and Development of Lightly Alloyed Ferritic Fire-Resistant Structural Steels Metallurgical and Materials Transactions A. 50: 209-219 |
Kapoor M, Isheim D, Vaynman S, et al. (2016) Effects of increased alloying element content on NiAl-type precipitate formation, loading rate sensitivity, and ductility of Cu- and NiAl-precipitation-strengthened ferritic steels Acta Materialia. 104: 166-171 |
Song G, Sun Z, Li L, et al. (2015) Ferritic Alloys with Extreme Creep Resistance via Coherent Hierarchical Precipitates. Scientific Reports. 5: 16327 |
Yao Y, Wang Y, Keer LM, et al. (2015) An analytical method to predict electromigration-induced finger-shaped void growth in SnAgCu solder interconnect Scripta Materialia. 95: 7-10 |
Qiao JC, Wang YJ, Pelletier JM, et al. (2015) Characteristics of stress relaxation kinetics of La |
Yao Y, He X, Keer LM, et al. (2015) A continuum damage mechanics-based unified creep and plasticity model for solder materials Acta Materialia. 83: 160-168 |
Kapoor M, Isheim D, Ghosh G, et al. (2014) Aging characteristics and mechanical properties of 1600 MPa body-centered cubic Cu and B2-NiAl precipitation-strengthened ferritic steel Acta Materialia. 73: 56-74 |
Yablinsky CA, Tippey KE, Vaynman S, et al. (2014) Concepts for the Development of Nanoscale Stable Precipitation-Strengthened Steels Manufactured by Conventional Methods Jom. 66: 2467-2475 |
Sun Z, Liebscher CH, Huang S, et al. (2013) New design aspects of creep-resistant NiAl-strengthened ferritic alloys Scripta Materialia. 68: 384-388 |