Search Results - "McHenry, Michael E."

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  1. 1

    Soft Magnetic Materials in High-Frequency, High-Power Conversion Applications by Leary, Alex M., Ohodnicki, Paul R., McHenry, Michael E.

    Published in JOM (1989) (01-07-2012)
    “…Advanced soft magnetic materials are needed to match high-power density and switching frequencies made possible by advances in wide band-gap semiconductors…”
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    Journal Article
  2. 2

    Magnetic nanoparticle-based solder composites for electronic packaging applications by SIYANG XU, HABIB, Ashfaque H, PICKEL, Andrea D, McHENRY, Michael E

    Published in Progress in materials science (2015)
    “…Sn-Ag-Cu (SAC) alloys are regarded as the most promising alternative for traditional Pb-Sn solders used in electronic packaging applications. However, the…”
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    Journal Article
  3. 3

    Near Room Temperature Magnetocaloric Response of an (FeNi)ZrB Alloy by Ipus, Jhon J., Ucar, Huseyin, McHenry, Michael E.

    Published in IEEE transactions on magnetics (01-10-2011)
    “…Mechanical alloying of (Fe 70 Ni 30 ) 89 Zr 7 B 4 powders leads to the formation of a γ-FeNi phase. In order to obtain single γ-phase, a powdered sample was…”
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    Journal Article Conference Proceeding
  4. 4

    Mössbauer analysis of compositional tuning of magnetic exchange interactions in high entropy alloys by Perrin, Alice, Sorescu, Monica, Ravi, Vishal, Laughlin, David E., McHenry, Michael E.

    Published in AIP advances (01-03-2019)
    “…We measured the change in the average hyperfine field strength of several high entropy alloys in relation to small compositional deviations from the equiatomic…”
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    Journal Article
  5. 5

    Amorphous and nanocrystalline materials for applications as soft magnets by McHenry, Michael E, Willard, Matthew A, Laughlin, David E

    Published in Progress in materials science (01-01-1999)
    “…This review seeks to summarize the recent developments in the synthesis, structural characterization, properties, and applications in the fields of amorphous,…”
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    Journal Article
  6. 6

    Nucleation and growth model for {110}- and {111}-truncated nanoparticles by Jones, Nicholas J., Swaminathan, Raja, McHenry, Michael E., Laughlin, David E.

    Published in Journal of materials research (28-10-2015)
    “…Nanoparticle-sized powders have seen more and more use in many of today's applications. As particle size decreases, many properties change including the…”
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    Journal Article
  7. 7

    Shear band formation and fracture behavior of nanocrystalline (Co,Fe)-based alloys by Daniil, Maria, Ohodnicki, Paul R., McHenry, Michael E., Willard, Matthew A.

    Published in Philosophical magazine (Abingdon, England) (28-04-2010)
    “…The crystal structure, crystallization, fracture behavior and mechanical properties of (Co 1 − x Fe x ) 89 Zr 7 B 4 (x = 0-0.7) nanocrystalline ribbons were…”
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    Journal Article
  8. 8

    Metal Amorphous Nanocomposite Soft Magnetic Material-Enabled High Power Density, Rare Earth Free Rotational Machines by Simizu, Satoru, Ohodnicki, Paul R., McHenry, Michael E.

    Published in IEEE transactions on magnetics (01-05-2018)
    “…Metal amorphous nanocomposites (MANCs) are promising soft magnetic materials (SMMs) for power electronic applications offering low power loss at high frequency…”
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    Journal Article
  9. 9

    The Effects of Strain-Annealing on Tuning Permeability and Lowering Losses in Fe-Ni-Based Metal Amorphous Nanocomposites by Aronhime, Natan, DeGeorge, Vincent, Keylin, Vladimir, Ohodnicki, Paul, McHenry, Michael E.

    Published in JOM (1989) (01-11-2017)
    “…Fe-Ni-based metal amorphous nanocomposites with a range of compositions (Fe 100− x Ni x ) 80 Nb 4 Si 2 B 14 (30 ≤  x  ≤ 70) are investigated for motor and…”
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    Journal Article
  10. 10

    Strength distributions of laminated FeNi-based metal amorphous nanocomposite ribbons by Schneider, Kyle P, McHenry, Michael E, de Boer, Maarten P

    Published in Journal of composite materials (01-04-2023)
    “…Metal Amorphous Nanocomposite (MANC) materials offer low losses at high magnetic switching frequency, enabling high power density motors with increased…”
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    Journal Article
  11. 11

    Analysis of surface roughness and oxidation of FeNi-based metal amorphous nanocomposite alloys by Egbu, James, Ohodnicki, Jr, Paul R., Baltrus, John P., Talaat, Ahmed, Wright, Ruishu F., McHenry, Michael E.

    Published in Journal of alloys and compounds (15-08-2022)
    “…We report on a systematic investigation of newly developed (Fe70Ni30)80Nb4B14Si2 metal amorphous nanocomposites (MANCs) and the factors affecting their surface…”
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    Journal Article
  12. 12
  13. 13

    Amorphous and Nanocomposite Materials for Energy-Efficient Electric Motors by Silveyra, Josefina M., Xu, Patricia, Keylin, Vladimir, DeGeorge, Vincent, Leary, Alex, McHenry, Michael E.

    Published in Journal of electronic materials (01-01-2016)
    “…We explore amorphous soft-magnetic alloys as candidates for electric motor applications. The Co-rich system combines the benefits of low hysteretic and…”
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    Journal Article
  14. 14

    Magnetic properties and crystallization kinetics of (Fe100−xNix)80Nb4Si2B14 metal amorphous nanocomposites by Aronhime, Natan, Zoghlin, Eli, Keylin, Vladimir, Jin, Xin, Ohodnicki, Paul, McHenry, Michael E.

    Published in Scripta materialia (01-01-2018)
    “…Fe-Ni based metal amorphous nanocomposites (MANCs) are investigated in the pseudo-binary alloys (Fe100−xNix)80Nb4Si2B14. To optimize the soft magnetic…”
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    Journal Article
  15. 15

    Understanding Magnetic Exchange Interactions by the Pressure Dependent Curie Temperature in FeCoNiCuMn High Entropy Alloys by Perrin, Alice, McCall, Scott, McElfresh, Michael, Laughlin, David E., McHenry, Michael E.

    Published in Journal of phase equilibria and diffusion (01-10-2021)
    “…We report the pressure (P) dependent Curie temperature, T c (P) in a FeCoNiCuMn high entropy alloy (HEA). We analyze T c (P) in terms of d-orbital contraction…”
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    Journal Article
  16. 16

    Magnetic Properties of Ordered and Disordered Spinel-Phase Ferrimagnets by Willard, Matthew A., Nakamura, Yuichiro, Laughlin, David E., McHenry, Michael E.

    Published in Journal of the American Ceramic Society (01-12-1999)
    “…In spinel‐phase ferrimagnets, disorder in the cation distribution between octahedral and tetrahedral sites can influence such fundamental magnetic properties…”
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    Journal Article
  17. 17

    Finite element analysis modeling of high voltage and frequency 3-phase solid state transformers enabled by metal amorphous nanocomposites by Nazmunnahar, Mst, Simizu, Satoru, Ohodnicki, Paul R., Bhattacharya, Subhashis, McHenry, Michael E.

    Published in Journal of materials research (13-08-2018)
    “…We review the materials paradigm for metal amorphous nanocomposite (MANC) soft magnetic materials to showcase in solid state transformers (SSTs). We report 2D…”
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    Journal Article
  18. 18

    IEEE International Magnetics Conference (Intermag) 2014 Foreword by Schultz, Ludwig, McHenry, Michael E.

    Published in IEEE transactions on magnetics (01-11-2014)
    “…The IEEE International Magnetics Conference (Intermag) 2014 was held in Dresden, Germany, from May 4-8, 2014. The meeting, held at the International Congress…”
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  19. 19

    Studies on Structural, Magnetic and Thermal Properties of xFe[sub]2TiO[sub]4-(1-x)Fe[sub]3O[sub]4 (0 less than or equal to x less than or equal to 1) Pseudo-binary System by Sorescu, Monica, Xu, Tianhong, Wise, Adam, Diaz-Michelena, Marina, McHenry, Michael E

    “…The xFe[sub]2TiO[sub]4-(1-x)Fe[sub]3O[sub]4 pseudo-binary systems (0 less than or equal to x less than or equal to 1) of ulvospinel component were synthesized…”
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    Journal Article
  20. 20

    Nanoscale-Driven Crystal Growth of Hexaferrite Heterostructures for Magnetoelectric Tuning of Microwave Semiconductor Integrated Devices by Hu, Bolin, Chen, Zhaohui, Su, Zhijuan, Wang, Xian, Daigle, Andrew, Andalib, Parisa, Wolf, Jason, McHenry, Michael E, Chen, Yajie, Harris, Vincent G

    Published in ACS nano (25-11-2014)
    “…A nanoscale-driven crystal growth of magnetic hexaferrites was successfully demonstrated at low growth temperatures (25–40% lower than the temperatures…”
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    Journal Article