World's Best Scientists 2026 revealed!

D-Index & Metrics

Mechanical and Aerospace Engineering

D-Index
36
Citations
9808
World Ranking
2468
National Ranking
878

Research.com Recognitions

  • 2008 - Fellow of the American Society of Mechanical Engineers

Overview

Hugh A. Bruck is affiliated with the University of Maryland, College Park in the United States. Their research spans multiple aspects of engineering, with a focus on mechanical systems and materials. The main field of study is Engineering, particularly concentrated in subfields such as Mechanical Engineering, Mechanics of Materials, Aerospace Engineering, Biomedical Engineering, and Automotive Engineering.

The scientist's work covers a variety of research topics, including:

  • Heat Transfer and Optimization
  • Additive Manufacturing and 3D Printing Technologies
  • Fatigue and fracture mechanics
  • Technology and Data Analysis
  • Biomimetic flight and propulsion mechanisms
  • Heat Transfer and Boiling Studies
  • Additive Manufacturing Materials and Processes

Bruck has collaborated frequently with several coauthors, including Satyandra K. Gupta, Amir Shooshtari, Michael Ohadi, Zhengda Yao, and Luís Santos.

Publication venues where Bruck has contributed multiple studies include:

  • International Communications in Heat and Mass Transfer
  • The International Journal of Advanced Manufacturing Technology
  • Journal of Sandwich Structures & Materials
  • Biomimetics
  • Experimental Mechanics

Recent papers authored or coauthored by Hugh A. Bruck encompass various advanced topics in engineering and materials science. Notable works include:

  • Predicting failure modes of 3D-printed multi-material polymer sandwich structures from process parameters, 2021, Journal of Sandwich Structures & Materials
  • Automated process planning for conformal wire arc additive manufacturing, 2022, The International Journal of Advanced Manufacturing Technology
  • Improving contact resistance in metal-ceramic heat exchangers running liquid metal by additive manufacturing and ceramic tubes with electroplated films, 2021, The International Journal of Advanced Manufacturing Technology
  • Characterization and Modeling of Layer Jamming for Designing Engineering Materials with Programmable Elastic-Plastic Behavior, 2020, Experimental Mechanics
  • Predicting failure of cracked aluminum plates with one-sided composite patch, 2021, International Journal of Fracture

Hugh A. Bruck has also contributed to the publication of books, with four titles published by World Scientific. These books are titled Manufacturing in the Era of 4th Industrial Revolution and were published in 2020.

In 2008, Bruck received the distinction of Fellow of the American Society of Mechanical Engineers.

Best Publications

  • Digital image correlation using Newton-Raphson method of partial differential correction

    H. A. Bruck;S. R. McNeill;M. A. Sutton;W. H. Peters

  • Processing bulk natural wood into a high-performance structural material

    Jianwei Song;Chaoji Chen;Shuze Zhu;Mingwei Zhu

  • Quasi-static constitutive behavior of Zr41.25Ti13.75Ni10Cu12.5Be22.5 bulk amorphous alloys

    H.A. Bruck;T. Christman;A.J. Rosakis;W.L. Johnson

  • The dynamic compressive behavior of beryllium bearing bulk metallic glasses

    H. A. Bruck;A. J. Rosakis;W. L. Johnson

  • Full-field representation of discretely sampled surface deformation for displacement and strain analysis

    M. A. Sutton;J. L. Turner;H. A. Bruck;T. A. Chae

  • Electrical and rheological percolation in polystyrene/MWCNT nanocomposites

    Arun K. Kota;Bani H. Cipriano;Matthew K. Duesterberg;Alan L. Gershon

  • Conductivity enhancement of carbon nanotube and nanofiber-based polymer nanocomposites by melt annealing

    Bani H. Cipriano;Arun K. Kota;Alan L. Gershon;Conrad J. Laskowski

  • DIC Challenge: Developing Images and Guidelines for Evaluating Accuracy and Resolution of 2D Analyses

    P L. Reu;Evelyne Toussaint;E Jones;H Bruck

  • A one-dimensional model for designing functionally graded materials to manage stress waves

    Hugh A. Bruck

  • Robo Raven: A Flapping-Wing Air Vehicle with Highly Compliant and Independently Controlled Wings

    Unknown

  • Measurement of Thrust and Lift Forces Associated With Drag of Compliant Flapping Wing for Micro Air Vehicles Using a New Test Stand Design

    D. Mueller;H. A. Bruck;S. K. Gupta

  • A robotic cell for performing sheet lamination-based additive manufacturing

    Prahar M. Bhatt;Ariyan M. Kabir;Max Peralta;Hugh A. Bruck

  • Development and characterization of high performance solid propellants containing nano-sized energetic ingredients

    J.R. Luman;B. Wehrman;K.K. Kuo;R.A. Yetter

  • A printed, recyclable, ultra-strong, and ultra-tough graphite structural material

    Yubing Zhou;Chaoji Chen;Shuze Zhu;Chao Sui

  • The role of mechanics in biological and biologically inspired materials

    H. A. Bruck;J. J. Evans;M. L. Peterson

  • Experimental investigations of three-dimensional effects near a crack tip using computer vision

    M. A. Sutton;J. L. Turner;Y. J. Chao;H. A. Bruck

  • Manufacturing of multi-material compliant mechanisms using multi-material molding

    Regina M. Gouker;Satyandra K. Gupta;Hugh A. Bruck;Tobias Holzschuh

  • A new method for detecting fatigue crack initiation in aluminum alloy using acoustic emission waveform information entropy

    Unknown

  • POINTWISE DIGITAL IMAGE CORRELATION USING GENETIC ALGORITHMS

    H. Jin;H.A. Bruck

  • Evaluating microstructural and damage effects in rule-of-mixtures predictions of the mechanical properties of Ni-Al2O3 composites

    H. A. Bruck;B. H. Rabin

  • Pressureless sintering of particle-reinforced metal–ceramic composites for functionally graded materials: Part I. Porosity reduction models

    Michael L. Pines;Hugh A. Bruck

  • Residual Strains in an Al2O3‐Ni Joint Bonded with a Composite Interlayer: Experimental Measurements and FEM Analyses

    Barry H. Rabin;Richard L. Williamson;Hugh A. Bruck;Xun-Li Wang

  • Design and fabrication of miniature compliant hinges for multi-material compliant mechanisms

    Wojciech Bejgerowski;John W. Gerdes;Satyandra K. Gupta;Hugh A. Bruck

  • Training mechanical engineering students to utilize biological inspiration during product development

    Hugh A Bruck;Alan L Gershon;Ira Golden;Satyandra K Gupta

  • Mechanics of composite sandwich structures with bioinspired core

    Sandip Haldar;Hugh A. Bruck

  • Modeling the evolution of stress due to differential shrinkage in powder-processed functionally graded metal-ceramic composites during pressureless sintering

    Yasser M. Shabana;Hugh A. Bruck;Michael L. Pines;Jonathan G. Kruft

  • Microscale characterization of granular deformation near a crack tip

    Helena Jin;Wei-Yang Lu;Sandip Haldar;Hugh A. Bruck

Frequent Co-Authors

Satyandra K. Gupta
Satyandra K. Gupta University of Southern California
Elisabeth Smela
Elisabeth Smela University of Maryland, College Park
Miao Yu
Miao Yu University at Buffalo, State University of New York
Michael A. Sutton
Michael A. Sutton University of South Carolina
Ares J. Rosakis
Ares J. Rosakis California Institute of Technology
Srinivasa R. Raghavan
Srinivasa R. Raghavan University of Maryland, College Park
Xun-Li Wang
Xun-Li Wang City University of Hong Kong
William L. Johnson
William L. Johnson California Institute of Technology
David R. Clarke
David R. Clarke Harvard University
Leslie Banks-Sills
Leslie Banks-Sills Tel Aviv University

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