L
Leslie Lamberson
Researcher at Colorado School of Mines
Publications - 41
Citations - 315
Leslie Lamberson is an academic researcher from Colorado School of Mines. The author has contributed to research in topics: Fracture (geology) & Fracture toughness. The author has an hindex of 8, co-authored 37 publications receiving 175 citations. Previous affiliations of Leslie Lamberson include California Institute of Technology & Drexel University.
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Journal ArticleDOI
Ripplocations: A universal deformation mechanism in layered solids
Michel W. Barsoum,X. Zhao,S. Shanazarov,A. Romanchuk,S. Koumlis,S. Pagano,Leslie Lamberson,Garritt J. Tucker +7 more
TL;DR: In this article, it was shown that confined buckling leads to the nucleation of multiple ripplocations that rapidly propagate away from under the indenter in a wavelike manner, and upon unloading, they disappear, after dissipating considerable frictional energy.
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Simultaneous twinning and microband formation under dynamic compression in a high entropy alloy with a complex energetic landscape
Daniel L. Foley,S. H. Huang,Elaf A. Anber,Elaf A. Anber,L. Shanahan,Y. Shen,Andrew C. Lang,Christopher M. Barr,Douglas E. Spearot,Leslie Lamberson,Mitra L. Taheri +10 more
TL;DR: In this article, the development of deformation substructures is assessed in the Cantor HEA (CoCrFeMnNi) due to quasistatic and dynamic compression.
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Strain Rate Dependent Compressive Response of Open Cell Polyurethane Foam
S. Koumlis,Leslie Lamberson +1 more
TL;DR: In this article, the compressive response of an open cell polyurethane foam currently used as liner in the advanced combat helmet is examined across strain rates, where a traditional load frame is used to investigate the quasi-static behavior, and two different modifications of a conventional split-Hopkinson bar configuration are used to probe the dynamic response.
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Simultaneous Twinning and Microband Formation Under Dynamic Compression in a High Entropy Alloy with a Complex Energetic Landscape
Daniel L. Foley,S. H. Huang,Elaf A. Anber,L. Shanahan,Y. Shen,Andrew C. Lang,Christopher M. Barr,Douglas E. Spearot,Leslie Lamberson,Mitra L. Taheri +9 more
TL;DR: In this article, the development of deformation substructures in the Cantor HEA (CoCrFeMnNi) due to quasistatic and dynamic compression was assessed.
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Rate-dependent fracture modes in human femoral cortical bone
TL;DR: In this article, an over-deterministic least squares method is presented and used to evaluate Mode I (opening) and Mode II (shear) stress intensity factors (SIF) for fracture initiation at slow, intermediate and high SIF rates.