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Featured researches published by Tyler Harrington.


Scientific Reports | 2016

High-Entropy Metal Diborides: A New Class of High-Entropy Materials and a New Type of Ultrahigh Temperature Ceramics

Joshua Gild; Yuanyao Zhang; Tyler Harrington; Sicong Jiang; Tao Hu; Matthew C. Quinn; William. M Mellor; Naixie Zhou; Kenneth S. Vecchio; Jian Luo

Seven equimolar, five-component, metal diborides were fabricated via high-energy ball milling and spark plasma sintering. Six of them, including (Hf0.2Zr0.2Ta0.2Nb0.2Ti0.2)B2, (Hf0.2Zr0.2Ta0.2Mo0.2Ti0.2)B2, (Hf0.2Zr0.2Mo0.2Nb0.2Ti0.2)B2, (Hf0.2Mo0.2Ta0.2Nb0.2Ti0.2)B2, (Mo0.2Zr0.2Ta0.2Nb0.2Ti0.2)B2, and (Hf0.2Zr0.2Ta0.2Cr0.2Ti0.2)B2, possess virtually one solid-solution boride phase of the hexagonal AlB2 structure. Revised Hume-Rothery size-difference factors are used to rationalize the formation of high-entropy solid solutions in these metal diborides. Greater than 92% of the theoretical densities have been generally achieved with largely uniform compositions from nanoscale to microscale. Aberration-corrected scanning transmission electron microscopy (AC STEM), with high-angle annular dark-field and annular bright-field (HAADF and ABF) imaging and nanoscale compositional mapping, has been conducted to confirm the formation of 2-D high-entropy metal layers, separated by rigid 2-D boron nets, without any detectable layered segregation along the c-axis. These materials represent a new type of ultra-high temperature ceramics (UHTCs) as well as a new class of high-entropy materials, which not only exemplify the first high-entropy non-oxide ceramics (borides) fabricated but also possess a unique non-cubic (hexagonal) and layered (quasi-2D) high-entropy crystal structure that markedly differs from all those reported in prior studies. Initial property assessments show that both the hardness and the oxidation resistance of these high-entropy metal diborides are generally higher/better than the average performances of five individual metal diborides made by identical fabrication processing.


Scripta Materialia | 2018

A new class of high-entropy perovskite oxides

Sicong Jiang; Tao Hu; Joshua Gild; Naixie Zhou; Jiuyuan Nie; Mingde Qin; Tyler Harrington; Kenneth S. Vecchio; Jian Luo


Acta Materialia | 2016

Determination of geometrically necessary dislocations in large shear strain localization in aluminum

Chaoyi Zhu; Tyler Harrington; Veronica Livescu; George T. Gray; Kenneth S. Vecchio


Journal of Non-crystalline Solids | 2017

An experimental investigation on the notch toughness of Cu-Zr-based bulk metallic glasses with in-situ crystallization

Laura M. Andersen; Sabine Faulhaber; Tyler Harrington; Douglas C. Hofmann; Huikai Cheng; Kenneth S. Vecchio


International Journal of Plasticity | 2017

Investigation of the shear response and geometrically necessary dislocation densities in shear localization in high-purity titanium

Chaoyi Zhu; Veronica Livescu; Tyler Harrington; Olivia F. Dippo; George T. Gray; Kenneth S. Vecchio


Scripta Materialia | 2018

Design of non-equiatomic high entropy alloys with heterogeneous lamella structure towards strength-ductility synergy

Cheng Zhang; Chaoyi Zhu; Tyler Harrington; Kenneth S. Vecchio


Measurement Science and Technology | 2018

Application of a novel new multispectral nanoparticle tracking technique

Cameron McElfresh; Tyler Harrington; Kenneth S. Vecchio


Journal of The European Ceramic Society | 2018

High-entropy fluorite oxides

Joshua Gild; Mojtaba Samiee; Jeffrey L. Braun; Tyler Harrington; Heidy Vega; Patrick E. Hopkins; Kenneth S. Vecchio; Jian Luo


Powder Technology | 2018

Spark erosion as a high-throughput method for producing bimodal nanostructured 316L stainless steel powder

Tyler Harrington; Cameron McElfresh; Kenneth S. Vecchio


Acta Materialia | 2018

Dislocation-type evolution in quasi-statically compressed polycrystalline nickel

Chaoyi Zhu; Tyler Harrington; George T. Gray; Kenneth S. Vecchio

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Jian Luo

University of California

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Joshua Gild

University of California

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Pranab Sarker

University of Texas at Arlington

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Jon-Paul Maria

North Carolina State University

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Donald W. Brenner

North Carolina State University

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Chaoyi Zhu

University of California

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