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Fracture
Bulk Metallic Glasses as Structural Materials: A Review
Bulk Metallic Glasses as Structural Materials: A Review
,
Kruzic, J. J.
, Advanced Engineering Materials, Volume 18, Issue 8, p.1308–1331, (2016)
Papers:
Bulk Metallic Glasses
Fatigue
Fracture
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about Bulk Metallic Glasses as Structural Materials: A Review
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Designed heterogeneities improve the fracture reliability of a Zr-based bulk metallic glass
Designed heterogeneities improve the fracture reliability of a Zr-based bulk metallic glass
,
Li, B. S.
,
H. Shakur Shahabi
,
Scudino S.
,
Eckert J.
, and
Kruzic J. J.
, Materials Science and Engineering A, Volume 646, p.242-248, (2015)
Papers:
Bulk Metallic Glasses
Fracture
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about Designed heterogeneities improve the fracture reliability of a Zr-based bulk metallic glass
Google Scholar
Intergranular Nanostructure Effects on Strength and Toughness of Si3N4
Intergranular Nanostructure Effects on Strength and Toughness of Si3N4
,
Mikijelj, B.
,
Nawaz Z.
,
Kruzic J. J.
,
Idrobo J.
,
Swab J. J.
,
Ozcoban H.
,
Jelitto H.
,
Schneider G. A.
,
Fett T.
, and
Liu Y.
, Journal of the American Ceramic Society, Volume 98, Issue 5, p.1650-1657, (2015)
Papers:
Ceramics
Fracture
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about Intergranular Nanostructure Effects on Strength and Toughness of Si3N4
Google Scholar
Development of ultra-high temperature molybdenum borosilicides
Development of ultra-high temperature molybdenum borosilicides
,
Schneibel, J. H.
,
Kruzic J. J.
, and
Ritchie R. O.
, 20th Annual Conference on Fossil Energy Materials, Knoxville, TN, (2006)
Papers:
Fracture
Intermetallics
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about Development of ultra-high temperature molybdenum borosilicides
Google Scholar
Mo-Si-B alloy development
Mo-Si-B alloy development
,
Schneibel, J. H.
,
Brady M. P.
,
III H. M. Meyer
,
Horton J. A.
,
Kruzic J. J.
, and
Ritchie R. O.
, 19th Annual Conference on Fossil Energy Materials, Knoxville, TN, (2005)
Papers:
Intermetallics
Fracture
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about Mo-Si-B alloy development
Google Scholar
Effects of aging on the toughness of human cortical bone: A study from nano to macro size-scales
Effects of aging on the toughness of human cortical bone: A study from nano to macro size-scales
,
Nalla, R. K.
,
Kruzic J. J.
,
Kinney J. H.
,
Balooch M.
,
Ager J. W.
,
Martin M. C.
,
Tomsia A. P.
, and
Ritchie R. O.
, Mechanical Properties of Bioinspired and Biological Materials, MRS Symposium Proceedings, Volume 844, p.53-58, (2005)
Papers:
Fracture
Biomaterials
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about Effects of aging on the toughness of human cortical bone: A study from nano to macro size-scales
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Role of microstructure in promoting fracture and fatigue resistance in Mo-Si-B alloys
Role of microstructure in promoting fracture and fatigue resistance in Mo-Si-B alloys
,
Kruzic, J. J.
,
Schneibel J. H.
, and
Ritchie R. O.
, Integrative and Interdisciplinary Aspects of Intermetallics, MRS Symposium Proceedings, Volume 842, p.303-308, (2005)
Papers:
Intermetallics
Fatigue
Fracture
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about Role of microstructure in promoting fracture and fatigue resistance in Mo-Si-B alloys
Google Scholar
Mo-Si-B alloy development
Mo-Si-B alloy development
,
Schneibel, J. H.
,
Kruzic J. J.
, and
Ritchie R. O.
, 18th Annual Conference on Fossil Energy Materials, Knoxville, TN, (2004)
Papers:
Intermetallics
Fatigue
Fracture
Read more
about Mo-Si-B alloy development
Google Scholar
Mo-Si-B alloy development
Mo-Si-B alloy development
,
Schneibel, J. H.
,
Tortorelli P. F.
,
Kramer M. J.
,
Thom A. J.
,
Kruzic J. J.
, and
Ritchie R. O.
, 17th Annual Conference on Fossil Energy Materials, Oak Ridge, TN, (2003)
Papers:
Intermetallics
Fatigue
Fracture
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about Mo-Si-B alloy development
Google Scholar
The contrasting role of microstructure in influencing fracture and fatigue-crack growth in gamma-based titanium aluminides at large and small crack sizes
The contrasting role of microstructure in influencing fracture and fatigue-crack growth in gamma-based titanium aluminides at large and small crack sizes
,
Kruzic, J. J.
,
Campbell J. P.
,
McKelvey A. L.
,
Choe H.
, and
Ritchie R. O.
, Gamma Titanium Aluminides 1999, TMS Annual Meeting, (1999)
Papers:
Intermetallics
Fatigue
Fracture
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about The contrasting role of microstructure in influencing fracture and fatigue-crack growth in gamma-based titanium aluminides at large and small crack sizes
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