David McDowell

David McDowell

Georgia Institute of Technology

H-index: 93

North America-United States

About David McDowell

David McDowell, With an exceptional h-index of 93 and a recent h-index of 53 (since 2020), a distinguished researcher at Georgia Institute of Technology, specializes in the field of materials, mechanics, multiscale modeling, materials design.

His recent articles reflect a diverse array of research interests and contributions to the field:

Multiscale modeling of crystal defects in structural materials

An atomistic-to-microscale characterization of the kink-controlled dislocation dynamics in bcc metals through finite-temperature coarse-grained atomistic simulations

A new framework for the assessment of model probabilities of the different crystal plasticity models for lamellar grains in Titanium alloys

Effect of sample size on the maximum value distribution of fatigue driving forces in metals and alloys

Modeling the statistical distribution of fatigue crack formation lifetime in large volumes of polycrystalline microstructures

Dislocation formation in the heteroepitaxial growth of PbSe/PbTe systems

Foreword to the special issue

Atomistic determination of Peierls barriers of dislocation glide in nickel

David McDowell Information

University

Position

Regents' Professor

Citations(all)

28931

Citations(since 2020)

10790

Cited By

22860

hIndex(all)

93

hIndex(since 2020)

53

i10Index(all)

369

i10Index(since 2020)

244

Email

University Profile Page

Georgia Institute of Technology

Google Scholar

View Google Scholar Profile

David McDowell Skills & Research Interests

materials

mechanics

multiscale modeling

materials design

Top articles of David McDowell

Title

Journal

Author(s)

Publication Date

Multiscale modeling of crystal defects in structural materials

Jian Wang

Haixuan Xu

Huajian Gao

David L McDowell

2024/1/17

An atomistic-to-microscale characterization of the kink-controlled dislocation dynamics in bcc metals through finite-temperature coarse-grained atomistic simulations

Acta Materialia

Rigelesaiyin Ji

Thanh Phan

Youping Chen

David L McDowell

Liming Xiong

2024/1/1

A new framework for the assessment of model probabilities of the different crystal plasticity models for lamellar grains in Titanium alloys

Modelling and Simulation in Materials Science and Engineering

Aditya Venkatraman

Soumya Mohan

V Roshan Joseph

David L McDowell

Surya R Kalidindi

2023/4/28

Effect of sample size on the maximum value distribution of fatigue driving forces in metals and alloys

International Journal of Fatigue

Mohammadreza Yaghoobi

Krzysztof S Stopka

David L McDowell

Lori Graham-Brady

Kirubel Teferra

2023/11/1

Modeling the statistical distribution of fatigue crack formation lifetime in large volumes of polycrystalline microstructures

Acta Materialia

Tang Gu

Krzysztof S Stopka

Chuan Xu

David L McDowell

2023/4/1

Dislocation formation in the heteroepitaxial growth of PbSe/PbTe systems

Acta Materialia

Yang Li

Boyang Gu

Adrian Diaz

Simon R Phillpot

David L McDowell

...

2023/11/1

Foreword to the special issue

International Journal of Fatigue

D Hattingh

M Vormwald

D Taylor

D Nowell

Y Hong

...

2023

Atomistic determination of Peierls barriers of dislocation glide in nickel

Journal of the Mechanics and Physics of Solids

Yipin Si

Yin Zhang

Dengke Chen

Jonathan L Wormald

Benjamin S Anglin

...

2023/9/1

Microstructure-Sensitive modeling of surface roughness and notch effects on extreme value fatigue response

International Journal of Fatigue

Krzysztof S Stopka

Mohammadreza Yaghoobi

John E Allison

David L McDowell

2023/1/1

Neighborhood spatial correlations and machine learning classification of fatigue hot-spots in Ti–6Al–4V

Mechanics of Materials

Adrienne Muth

Aditya Venkatraman

Reji John

Adam Pilchak

Surya R Kalidindi

...

2023/7/1

Nonequilibrium statistical thermodynamics of thermally activated dislocation ensembles: part 3—Taylor–Quinney coefficient, size effects and generalized normality

Journal of Materials Science

David L McDowell

2023/12/28

Multiscale modeling of hydrogen-affected crack tip damage using fully coupled chemo-mechanical crystal plasticity framework for austenitic stainless steel

International Journal for Multiscale Computational Engineering

Theodore Zirkle

Ting Zhu

David L McDowell

2023

ρ-CP: Open source dislocation density based crystal plasticity framework for simulating temperature-and strain rate-dependent deformation

Computational Materials Science

Anirban Patra

Suketa Chaudhary

Namit Pai

Tarakram Ramgopal

Sarthak Khandelwal

...

2023/5/1

Investigation of chemical short range order strengthening in a model Fe–12Ni–18Cr (at.%) stainless steel alloy: A modeling and experimental study

Acta Materialia

Kevin Chu

Edwin Antillon

Colin Stewart

Keith Knipling

Patrick Callahan

...

2023/12/1

Multiscale Concurrent Atomistic-Continuum (CAC) modeling of multicomponent alloys

Computational Materials Science

Kevin Chu

Adrian Diaz

Youping Chen

Ting Zhu

David L McDowell

2022/1/1

Coarse-grained atomistic modeling of dislocations and generalized crystal plasticity

Journal of Micromechanics and Molecular Physics

Alex Selimov

Kevin Chu

David L McDowell

2022/6/6

Effects of interdiffusion on shear response of semi-coherent {111} interfaces in Ni/Cu

International Journal of Plasticity

A Selimov

K Chu

DL McDowell

2022/10/1

Modeling dislocation-mediated hydrogen transport and trapping in face-centered cubic metals

Journal of Engineering Materials and Technology

Theodore Zirkle

Luke Costello

Ting Zhu

David L McDowell

2022/1/1

Resonant interaction between phonons and PbTe/PbSe (001) misfit dislocation networks

Acta Materialia

Yang Li

Zexi Zheng

Adrian Diaz

Simon R Phillpot

David L McDowell

...

2022/9/15

Simulated effects of sample size and grain neighborhood on the modeling of extreme value fatigue response

Acta Materialia

Krzysztof S Stopka

Mohammadreza Yaghoobi

John E Allison

David L McDowell

2022/2/1

See List of Professors in David McDowell University(Georgia Institute of Technology)