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Hareesh V. Tippur

Hareesh V. Tippur

D-Index & Metrics

Mechanical and Aerospace Engineering

D-Index
41
Citations
5174
World Ranking
1962
National Ranking
732

Research.com Recognitions

  • 2004 - Fellow of the American Society of Mechanical Engineers

Overview

Hareesh V. Tippur is affiliated with Auburn University in the United States. Their research primarily spans the fields of Engineering and Materials Science, with a specific focus on Mechanics of Materials, Mechanical Engineering, Computer Vision and Pattern Recognition, Automotive Engineering, and Biomedical Engineering.

The scientist's work covers multiple specialized topics including optical measurement and interference techniques, additive manufacturing materials and processes, additive manufacturing and 3D printing technologies, advanced surface polishing techniques, high-velocity impact and material behavior, ultrasonics and acoustic wave propagation, and material properties and processing.

Selected recent papers illustrate the range of their research contributions:

  • Ti-6Al-4V powder reuse in laser powder bed fusion (L-PBF): The effect on porosity, microstructure, and mechanical behavior, 2022, International Journal of Fatigue
  • Superior crack initiation and growth characteristics of cellulose nanopapers, 2020, Cellulose
  • Dynamic fracture behavior of additively manufactured Scalmalloy®: Effects of build orientation, heat-treatment and loading-rate, 2021, Materials Science and Engineering A
  • Measurement of mixed-mode fracture characteristics of an epoxy-based adhesive using a hybrid digital image correlation (DIC) and finite elements (FE) approach, 2021, Optics and Lasers in Engineering
  • Fracture behavior of additively printed ABS: Effects of print architecture and loading rate, 2020, International Journal of Solids and Structures

Tippur has frequent co-authorships with several researchers, including S. Dondeti, John P. Isaac, Nima Shamsaei, Seung-Jong Lee, and Chengyun Miao.

Their work has been published repeatedly in certain venues, displaying a pattern of focused research dissemination. These venues include Experimental Mechanics, Cellulose, International Journal of Solids and Structures, Additive Manufacturing, and Engineering Fracture Mechanics.

Hareesh V. Tippur was awarded the Fellow of the American Society of Mechanical Engineers distinction in 2004.

Best Publications

  • A coherent gradient sensor for crack tip deformation measurements: analysis and experimental results

    Hareesh V. Tippur;Sridhar Krishnaswamy;Ares J. Rosakis

  • COMPOSITIONALLY GRADED MATERIALS WITH CRACKS NORMAL TO THE ELASTIC GRADIENT

    C.-E. Rousseau;H.V. Tippur

  • A functionally graded particulate composite: Preparation, measurements and failure analysis

    R.J. Butcher;C.-E. Rousseau;H.V. Tippur

  • Measurement of transient deformations using digital image correlation method and high-speed photography: application to dynamic fracture

    Madhu S. Kirugulige;Hareesh V. Tippur;Thomas S. Denney

  • Optical mapping of crack tip deformations using the methods of transmission and reflection coherent gradient sensing - A study of crack tip K-dominance

    Hareesh V. Tippur;Sridhar Krishnaswamy;Ares J. Rosakis

  • Numerical analysis of crack-tip fields in functionally graded materials with a crack normal to the elastic gradient

    Prabhakar R. Marur;Hareesh V. Tippur

  • Quasi-static and dynamic crack growth along bimaterial interfaces: A note on crack-tip field measurements using coherent gradient sensing

    H. V. Tippur;A. J. Rosakis

  • Processing, compression response and finite element modeling of syntactic foam based interpenetrating phase composite (IPC)

    Rahul Jhaver;Hareesh Tippur

  • Poptube approach for ultrafast carbon nanotube growth

    Zhen Liu;Jialai Wang;Vinod Kushvaha;Selcuk Poyraz

  • Dynamic fracture of compositionally graded materials with cracks along the elastic gradient: experiments and analysis

    C.-E. Rousseau;H.V. Tippur

  • Quasi-static and dynamic fracture behavior of particulate polymer composites: A study of nano- vs. micro-size filler and loading-rate effects

    Kailash C. Jajam;Hareesh V. Tippur

  • Dynamic fracture parameters and constraint effects in functionally graded syntactic epoxy foams

    Medhat A. El-Hadek;Hareesh V. Tippur

  • Role of particle size and filler–matrix adhesion on dynamic fracture of glass-filled epoxy. I. Macromeasurements

    R. Kitey;H.V. Tippur

  • Experimental Study of Dynamic Crack Growth in Unidirectional Graphite/Epoxy Composites using Digital Image Correlation Method and High-speed Photography

    Dongyeon Lee;Hareesh Tippur;Madhu Kirugulige;Phillip Bogert

  • Dynamic fracture behavior of model sandwich structures with functionally graded core : a feasibility study

    M.S Kirugulige;R. Kitey;H.V. Tippur

  • Measurement of Fracture Parameters for a Mixed-Mode Crack Driven by Stress Waves using Image Correlation Technique and High-Speed Digital Photography

    M. S. Kirugulige;H. V. Tippur

  • Mixed-Mode Dynamic Crack Growth in Functionally Graded Glass-Filled Epoxy

    M. S. Kirugulige;H. V. Tippur

  • Full-field digital gradient sensing method for evaluating stress gradients in transparent solids

    Chandru Periasamy;Hareesh V. Tippur

  • Evaluation of mechanical properties of functionally graded materials

    PR Marur;HV Tippur

  • Influence of elastic gradient profiles on dynamically loaded functionally graded materials: cracks along the gradient

    C.-E. Rousseau;H.V. Tippur

Frequent Co-Authors

Ares J. Rosakis
Ares J. Rosakis California Institute of Technology
Xinyu Zhang
Xinyu Zhang Auburn University
Mahesh Hosur
Mahesh Hosur Tuskegee University
Fu-Pen Chiang
Fu-Pen Chiang Stony Brook University
Arun Shukla
Arun Shukla University of Rhode Island
Shaik Jeelani
Shaik Jeelani Tuskegee University
Lei Huang
Lei Huang Sichuan University

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