World's Best Scientists 2026 revealed!
David M. Parks

David M. Parks

D-Index & Metrics

Mechanical and Aerospace Engineering

D-Index
48
Citations
13474
World Ranking
1254
National Ranking
509

Materials Science

D-Index
47
Citations
13354
World Ranking
10988
National Ranking
2577

Research.com Recognitions

  • 2017 - Drucker Medal, American Society of Mechanical Engineers

Overview

David M. Parks is affiliated with MIT in the United States, with research focused primarily in the field of Engineering. Their work encompasses several subfields including Mechanics of Materials, Mechanical Engineering, Civil and Structural Engineering, Radiological and Ultrasound Technology, and Radiation.

Their published research covers a range of topics related to material sciences and radiological measurements. Main areas of study include:

  • Fatigue and fracture mechanics
  • High Temperature Alloys and Creep
  • Fire effects on concrete materials
  • Radioactivity and Radon Measurements
  • Radiation Detection and Scintillator Technologies
  • Radioactive contamination and transfer
  • Advancements in Photolithography Techniques

Several recent papers illustrate their contributions to these domains:

  • "Accurate Effective Stress Measures: Predicting Creep Life for 3D Stresses Using 2D and 1D Creep Rupture Simulations and Data" (2021), published in Integrating Materials and Manufacturing Innovation
  • "Long-term evaluation of a reusable radon-in-water proficiency test" (2023), published in Journal of the European Radon Association
  • "Optimizing Transformation-Induced Plasticity to Resist Microvoid Softening" (2024), published in Metallurgical and Materials Transactions A

David M. Parks has collaborated with various researchers over time. Frequent co-authors include:

  • Andrea Rovinelli
  • Mark Messner
  • T.-L. Sham
  • Uttam Kumar Saha
  • Pamela R. Turner

The scientist's publications appear in several specialized venues reflecting their multidisciplinary approach. Frequent publication venues are:

  • Integrating Materials and Manufacturing Innovation
  • Journal of the European Radon Association
  • Metallurgical and Materials Transactions A

Recognition for their work includes the Drucker Medal awarded by the American Society of Mechanical Engineers in 2017.

Best Publications

  • Large inelastic deformation of glassy polymers. part I: rate dependent constitutive model

    Mary C. Boyce;David M. Parks;Ali S. Argon

  • Multiscale micromechanical modeling of polymer/clay nanocomposites and the effective clay particle

    N. Sheng;M.C. Boyce;D.M. Parks;G.C. Rutledge

  • On numerically accurate finite element solutions in the fully plastic range

    Unknown

  • A constitutive model for transformation plasticity accompanying strain-induced martensitic transformations in metastable austenitic steels

    R.G. Stringfellow;D.M. Parks;G.B. Olson

  • Mechanics of deformation of single- and multi-wall carbon nanotubes

    Antonio Pantano;David M. Parks;Mary C. Boyce

  • On criteria for J-dominance of crack-tip fields in large-scale yielding

    RM McMeeking;DM Parks

  • Modeling the evolution of crystallographic dislocation density in crystal plasticity

    Athanasios Arsenlis;David M. Parks

  • The virtual crack extension method for nonlinear material behavior

    Unknown

  • Crystal plasticity model with enhanced hardening by geometrically necessary dislocation accumulation

    LP Laurens Evers;DM Parks;Wam Marcel Brekelmans;Mgd Marc Geers

  • On the evolution of crystallographic dislocation density in non-homogeneously deforming crystals

    Athanasios Arsenlis;David M. Parks;Richard Becker;Vasily V. Bulatov

  • Determination of elastic T-stress along three-dimensional crack fronts using an interaction integral

    Nakamura Toshio;David M. Parks

  • On the kinematics of finite strain plasticity

    M.C. Boyce;G.G. Weber;D.M. Parks

  • Micromechanical modeling of the elasto-viscoplastic behavior of semi-crystalline polymers

    van Jaw Hans Dommelen;DM Parks;MC Boyce;Wam Marcel Brekelmans

  • Numerical determination of the elastic driving force for directional coarsening in Ni-superalloys

    S. Socrate;D.M. Parks

  • Three-dimensional stress field near the crack front of a thin elastic plate

    T. Nakamura;D. M. Parks

  • Micromechanical modeling of large plastic deformation and texture evolution in semi-crystalline polymers

    B.J. Lee;D.M. Parks;S. Ahzi

  • A constitutive model for the anisotropic elastic–plastic deformation of paper and paperboard

    Qingxi S. Xia;Mary C. Boyce;David M. Parks

  • Simulation of large strain plastic deformation and texture evolution in high density polyethylene

    B.J Lee;A.S Argon;D.M Parks;S Ahzi

  • Polycrystalline plastic deformation and texture evolution for crystals lacking five independent slip systems

    D.M. Parks;S. Ahzi

  • Nonlinear structural mechanics based modeling of carbon nanotube deformation.

    Antonio Pantano;Mary C. Boyce;David M. Parks

  • Antisymmetrical 3-D stress field near the crack front of a thin elastic plate

    T. Nakamura;D.M. Parks

  • Measurement of interface strength by a laser spallation technique

    V. Gupta;A.S. Argon;D.M. Parks;J.A. Cornie

Frequent Co-Authors

Mary C. Boyce
Mary C. Boyce Columbia University
Said Ahzi
Said Ahzi University of Strasbourg
Wam Marcel Brekelmans
Wam Marcel Brekelmans Eindhoven University of Technology
Fpt Frank Baaijens
Fpt Frank Baaijens Eindhoven University of Technology
Stan Veprek
Stan Veprek Technical University of Munich

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