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Materials Science

D-Index
51
Citations
15809
World Ranking
9735
National Ranking
2351

Overview

Manyalibo J. Matthews is a researcher affiliated with Lawrence Livermore National Laboratory in the United States. Their work primarily focuses on engineering, with a substantial concentration in mechanical engineering and related subfields.

The scientist's research spans a range of interdisciplinary subfields including mechanical engineering, automotive engineering, computational mechanics, materials chemistry, and biomedical engineering. This multidisciplinary approach supports their investigation into complex engineering systems and processes.

The research topics Matthews frequently explores include:

  • Additive Manufacturing Materials and Processes
  • Additive Manufacturing and 3D Printing Technologies
  • Welding Techniques and Residual Stresses
  • Laser Material Processing Techniques
  • High Entropy Alloys Studies
  • Thermography and Photoacoustic Techniques
  • Titanium Alloys Microstructure and Properties

Among Matthews's recent publications are the following notable papers:

  • Controlling interdependent meso-nanosecond dynamics and defect generation in metal 3D printing, 2020, Science
  • Process optimization of complex geometries using feed forward control for laser powder bed fusion additive manufacturing, 2020, Additive manufacturing
  • Detecting keyhole pore defects and monitoring process signatures during laser powder bed fusion: A correlation between in situ pyrometry and ex situ X-ray radiography, 2020, Additive manufacturing
  • Analysis of laser-induced microcracking in tungsten under additive manufacturing conditions: Experiment and simulation, 2020, Acta Materialia
  • Towards developing multiscale-multiphysics models and their surrogates for digital twins of metal additive manufacturing, 2021, Additive manufacturing

They frequently publish in venues such as Additive manufacturing, Procedia CIRP, SSRN Electronic Journal, Materials & Design, and Scientific Reports.

Matthews collaborates regularly with several coauthors, including Gabe Guss, Nicholas P. Calta, Philip J. Depond, Aiden A. Martin, and Jean-Baptiste Forien, reflecting an extensive network within the additive manufacturing and engineering research community.

Best Publications

  • Additively manufactured hierarchical stainless steels with high strength and ductility

    Y. Morris Wang;Thomas Voisin;Joseph T. McKeown;Jianchao Ye

  • Origin of dispersive effects of the Raman D band in carbon materials

    M. J. Matthews;M. A. Pimenta;G. Dresselhaus;M. S. Dresselhaus

  • Denudation of metal powder layers in laser powder bed fusion processes

    Manyalibo J. Matthews;Gabe Guss;Saad A. Khairallah;Alexander M. Rubenchik

  • On the limitations of Volumetric Energy Density as a design parameter for Selective Laser Melting

    Umberto Scipioni Bertoli;Alexander J. Wolfer;Manyalibo J. Matthews;Jean-Pierre R. Delplanque

  • Dynamics of pore formation during laser powder bed fusion additive manufacturing.

    Aiden A. Martin;Nicholas P. Calta;Saad A. Khairallah;Jenny Wang

  • Raman and resonance Raman investigation of MoS 2 nanoparticles

    Gitti L. Frey;Reshef Tenne;Manyalibo J. Matthews;M. S. Dresselhaus

  • Metal vapor micro-jet controls material redistribution in laser powder bed fusion additive manufacturing

    Sonny Ly;Alexander M. Rubenchik;Saad A. Khairallah;Gabe Guss

  • In situ absorptivity measurements of metallic powders during laser powder-bed fusion additive manufacturing

    Johannes Trapp;Alexander M. Rubenchik;Gabe Guss;Manyalibo J. Matthews

  • In-situ characterization of laser-powder interaction and cooling rates through high-speed imaging of powder bed fusion additive manufacturing

    Umberto Scipioni Bertoli;Gabe Guss;Sheldon Wu;Manyalibo J. Matthews

  • Effect of laser power on defect, texture, and microstructure of a laser powder bed fusion processed 316L stainless steel

    Hahn Choo;Kin Ling Sham;John Bohling;Austin Ngo

  • Microstructural control in metal laser powder bed fusion additive manufacturing using laser beam shaping strategy

    Rongpei Shi;Saad A. Khairallah;Tien T. Roehling;Tae Wook Heo

  • Modulating laser intensity profile ellipticity for microstructural control during metal additive manufacturing

    Tien T. Roehling;Tien T. Roehling;Sheldon S.Q. Wu;Saad A. Khairallah;John D. Roehling

  • Energy Coupling Mechanisms and Scaling Behavior Associated with Laser Powder Bed Fusion Additive Manufacturing

    Jianchao Ye;Saad A. Khairallah;Alexander M. Rubenchik;Michael F. Crumb

  • In situ measurements of layer roughness during laser powder bed fusion additive manufacturing using low coherence scanning interferometry

    Philip J. DePond;Gabe Guss;Sonny Ly;Nicholas P. Calta

  • Additive Manufacturing Handbook : Product Development for the Defense Industry

    Manyalibo J. Matthews;Gabe Guss;Saad A. Khairallah;Alexander M. Rubenchik

  • Optical Properties of MS2 (M = Mo, W) Inorganic Fullerenelike and Nanotube Material Optical Absorption and Resonance Raman Measurements

    G. L. Frey;R. Tenne;M. J. Matthews;M. S. Dresselhaus

  • Ultrafast dynamics of laser-metal interactions in additive manufacturing alloys captured by in situ X-ray imaging

    Aiden A. Martin;Nicholas P. Calta;Joshua A. Hammons;Saad A. Khairallah

  • Laser peening: A tool for additive manufacturing post-processing

    Lloyd Hackel;Jon R. Rankin;Alexander Rubenchik;Wayne E. King

  • Resonant Raman Effect in Single-wall Carbon Nanotubes

    M. A. Pimenta;A. Marucci;S. D. M. Brown;M. J. Matthews

  • Machine-Learning-Based Monitoring of Laser Powder Bed Fusion

    Bodi Yuan;Gabriel M. Guss;Aaron C. Wilson;Stefan P. Hau-Riege

  • An instrument for in situ time-resolved X-ray imaging and diffraction of laser powder bed fusion additive manufacturing processes

    Nicholas P. Calta;Jenny Wang;Andrew M. Kiss;Aiden A. Martin

Frequent Co-Authors

Morinobu Endo
Morinobu Endo Shinshu University
Wayne E. King
Wayne E. King Lawrence Livermore National Laboratory
Salvador M. Aceves
Salvador M. Aceves Lawrence Livermore National Laboratory
Marcos A. Pimenta
Marcos A. Pimenta Universidade Federal de Minas Gerais
Michael F. Toney
Michael F. Toney University of Colorado Boulder
Julia W. P. Hsu
Julia W. P. Hsu The University of Texas at Dallas
Eric B. Duoss
Eric B. Duoss Lawrence Livermore National Laboratory
Hahn Choo
Hahn Choo University of Tennessee at Knoxville
Thomas F. Kuech
Thomas F. Kuech University of Wisconsin–Madison

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