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Materials Science

D-Index
87
Citations
26457
World Ranking
1969
National Ranking
591

Overview

Edward J. Garboczi is affiliated with the National Institute of Standards and Technology in the United States. Their research spans engineering and materials science, with a strong focus on the subfields of mechanical engineering, materials chemistry, civil and structural engineering, biomedical engineering, and automotive engineering.

Their work concentrates on several key topics, including:

  • Additive Manufacturing and 3D Printing Technologies
  • Concrete and Cement Materials Research
  • Additive Manufacturing Materials and Processes
  • Innovations in Concrete and Construction Materials
  • Advanced X-ray and CT Imaging
  • Welding Techniques and Residual Stresses
  • Carbon Nanotubes in Composites

Edward J. Garboczi has contributed to multiple papers. Notable recent publications include:

  • "Outcomes and Conclusions from the 2018 AM-Bench Measurements, Challenge Problems, Modeling Submissions, and Conference" (2020), published in Integrating Materials and Manufacturing Innovation
  • "A thermodynamics-guided framework to design lightweight aggregate from waste coal combustion fly ash" (2021), published in Resources Conservation and Recycling
  • "Investigation of the Effect of Artificial Internal Defects on the Tensile Behavior of Laser Powder Bed Fusion 17-4 Stainless Steel Samples: Simultaneous Tensile Testing and X-Ray Computed Tomography" (2020), published in Experimental Mechanics
  • "Thermochemical principles of the production of lightweight aggregates from waste coal bottom ash" (2020), published in Journal of the American Ceramic Society
  • "Relationship between fine aggregate size and the air void system of six mortars: I. Air void content and diameter distribution" (2022), published in Cement and Concrete Composites

Their frequent co-authors include Newell Moser, Narayanan Neithalath, Mathieu Bauchy, Gaurav Sant, and V. K. Tewary, each with multiple collaborative publications.

Edward J. Garboczi's research is regularly published in several recurring venues. These include:

  • Cement and Concrete Composites
  • Construction and Building Materials
  • Powder Technology
  • Additive Manufacturing
  • Integrating Materials and Manufacturing Innovation

Best Publications

  • FRACTURE SIMULATIONS OF CONCRETE USING LATTICE MODELS : COMPUTATIONAL ASPECTS

    E. Schlangen;E.J. Garboczi

  • Three-dimensional mathematical analysis of particle shape using X-ray tomography and spherical harmonics: Application to aggregates used in concrete

    Edward J. Garboczi

  • Water permeability and chloride ion diffusion in portland cement mortars: Relationship to sand content and critical pore diameter

    Pavla Halamickova;Rachel J. Detwiler;Dale P. Bentz;Dale P. Bentz;Edward J. Garboczi;Edward J. Garboczi

  • Permeability, diffusivity, and microstructural parameters: A critical review

    Edward J. Garboczi

  • Elastic moduli of model random three-dimensional closed-cell cellular solids

    A P. Roberts;A P. Roberts;Edward J. Garboczi

  • Elastic Properties of Model Porous Ceramics

    Anthony P. Roberts;Anthony P. Roberts;Edward J. Garboczi

  • Percolation of phases in a three-dimensional cement paste microstructural model

    Dale P. Bentz;Edward J. Garboczi

  • Impedance Spectroscopy of Hydrating Cement‐Based Materials: Measurement, Interpretation, and Application

    Bruce J. Christensen;Bruce J. Christensen;R. Tate Coverdale;R. Tate Coverdale;Rudolf A. Olson;Rudolf A. Olson;Steven J. Ford;Steven J. Ford

  • Elastic properties of model random three-dimensional open-cell solids

    A P. Roberts;A P. Roberts;Edward J. Garboczi

  • Effects of cement particle size distribution on performance properties of Portland cement-based materials

    Dale P. Bentz;Edward J. Garboczi;Claus J. Haecker;Ole M. Jensen

  • Characterization of Metal Powders Used for Additive Manufacturing.

    John A. Slotwinski;Edward J. Garboczi;Paul E. Stutzman;Chiara F. Ferraris

  • Computer simulation of the diffusivity of cement-based materials

    E. J. Garboczi;D. P. Bentz

  • Computation of linear elastic properties from microtomographic images: Methodology and agreement between theory and experiment

    Christoph H. Arns;Mark A. Knackstedt;W. Val Pinczewski;Edward J. Garboczi

  • Modeling the linear elastic properties of Portland cement paste

    C.-J. Haecker;E.J. Garboczi;J.W. Bullard;R.B. Bohn

  • Percolation and pore structure in mortars and concrete

    Douglas N. Winslow;Menashi D. Cohen;Dale P. Bentz;Kenneth A. Snyder

  • Porosity Measurements and Analysis for Metal Additive Manufacturing Process Control

    John A Slotwinski;Edward J Garboczi;Keith M Hebenstreit

  • Analytical formulas for interfacial transition zone properties

    Edward J. Garboczi;Dale P. Bentz

  • Computation of the linear elastic properties of random porous materials with a wide variety of microstructure

    A P. Roberts;A P. Roberts;Edward J. Garboczi

  • An algorithm for computing the effective linear elastic properties of heterogeneous materials: Three-dimensional results for composites with equal phase poisson ratios

    E. J. Garboczi;Anthony Roy Day

  • Modelling drying shrinkage in reconstructed porous materials: application to porous Vycor glass

    Dale P Bentz;Edward J Garboczi;Daniel A Quenard

Frequent Co-Authors

Dale P. Bentz
Dale P. Bentz National Institute of Standards and Technology
Thomas O. Mason
Thomas O. Mason Northwestern University
Jack F. Douglas
Jack F. Douglas National Institute of Standards and Technology
Surendra P. Shah
Surendra P. Shah Northwestern University
Erik Schlangen
Erik Schlangen Delft University of Technology
Narayanan Neithalath
Narayanan Neithalath Arizona State University
Gaurav Sant
Gaurav Sant University of California, Los Angeles
Mathieu Bauchy
Mathieu Bauchy University of California, Los Angeles
Eyad Masad
Eyad Masad Hamad bin Khalifa University

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