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Engineering and Technology

D-Index
35
Citations
7052
World Ranking
8893
National Ranking
567

Overview

Lorenzo Iannucci is affiliated with Imperial College London in the United Kingdom. Their research is situated primarily within the field of Engineering, with a focus on multiple specialized subfields including Mechanics of Materials, Automotive Engineering, Electrical and Electronic Engineering, Civil and Structural Engineering, and Polymers and Plastics.

Their scientific contributions cover a range of topics related to material behavior and advanced engineering technologies, particularly:

  • Mechanical Behavior of Composites
  • Advanced Battery Technologies Research
  • Advancements in Battery Materials
  • Electric Vehicles and Infrastructure
  • Structural Response to Dynamic Loads
  • Composite Structure Analysis and Optimization
  • Electric and Hybrid Vehicle Technologies

They have coauthored multiple studies with frequent collaborators, including Clemente Capasso, Ottorino Veneri, S.I.B. Syed Abdullah, Emile S. Greenhalgh, and Stanislao Patalano.

The publication record features papers in several venues, notably:

  • Composite Structures (2 publications)
  • Engineering Fracture Mechanics (2 publications)
  • SAE Technical Papers on CD-ROM/SAE Technical Paper Series (2 publications)
  • The Aeronautical Journal (2 publications)
  • SSRN Electronic Journal (2 publications)

Representative recent papers by Lorenzo Iannucci include:

  • "Homogenisation of micromechanical modelling results for the evaluation of macroscopic material properties of brittle ceramics," 2022, International Journal of Mechanical Sciences
  • "Design approach for electric vehicle battery packs based on experimentally tested multi-domain models," 2023, Journal of Energy Storage
  • "A representative volume element model for ultra-high-molecular-weight-polyethylene composites," 2021, Composite Structures
  • "The impact performance of Vectran/Epoxy composite laminates with a novel non-crimp fabric architecture," 2021, Composite Structures
  • "Flexural behaviour of 3D-printed carbon fibre composites: Experimental and virtual tests - application to composite adaptive structure," 2022, Composites Part C Open Access

Best Publications

  • Fracture toughness of the tensile and compressive fibre failure modes in laminated composites

    S.T. Pinho;P. Robinson;L. Iannucci

  • Prediction of in situ strengths and matrix cracking in composites under transverse tension and in-plane shear

    Pedro P. Camanho;Carlos G. Dávila;Silvestre T. Pinho;Lorenzo Iannucci

  • Physically based failure models and criteria for laminated fibre-reinforced composites with emphasis on fibre kinking. Part II: FE implementation

    S.T. Pinho;L. Iannucci;P. Robinson

  • A progressive failure model for composite laminates subjected to low velocity impact damage

    M. V. Donadon;L. Iannucci;B. G. Falzon;J. M. Hodgkinson

  • Failure Models and Criteria for Frp Under In-Plane or Three-Dimensional Stress States Including Shear Non-Linearity

    Silvestre T. Pinho;C. G. Davila;P. P. Camanho;L. Iannucci

  • A peridynamic material model for the analysis of dynamic crack propagation in orthotropic media

    M. Ghajari;L. Iannucci;P. Curtis

  • Formulation and implementation of decohesion elements in an explicit finite element code

    S.T. Pinho;L. Iannucci;P. Robinson

  • Measurement of the in situ ply fracture toughness associated with mode I fibre tensile failure in FRP. Part I: Data reduction

    M.J. Laffan;S.T. Pinho;P. Robinson;L. Iannucci

  • An energy based damage mechanics approach to modelling impact onto woven composite materials-Part I: Numerical models

    L. Iannucci;M.L. Willows

  • Progressive failure modelling of woven carbon composite under impact

    L. Iannucci

  • Fractographic observations on Dyneema® composites under ballistic impact

    E.S. Greenhalgh;V.M. Bloodworth;L. Iannucci;D. Pope

  • Measurement of the in situ ply fracture toughness associated with mode I fibre tensile failure in FRP. Part II: Size and lay-up effects

    M.J. Laffan;S.T. Pinho;P. Robinson;L. Iannucci

  • An energy based damage model for thin laminated composites

    L. Iannucci;J. Ankersen

  • A progressive failure model for mesh-size-independent FE analysis of composite laminates subject to low-velocity impact damage

    L. Raimondo;L. Iannucci;P. Robinson;P.T. Curtis

  • Shock absorption performance of a motorbike helmet with honeycomb reinforced liner

    Gaetano D. Caserta;Lorenzo Iannucci;Ugo Galvanetto;Ugo Galvanetto

  • Effect of fibre orientation on the low velocity impact response of thin Dyneema® composite laminates

    Mark K. Hazzard;Stephen Hallett;Paul T. Curtis;Lorenzo Iannucci

  • Measurement of the fracture toughness associated with the longitudinal fibre compressive failure mode of laminated composites

    M.J. Laffan;S.T. Pinho;P. Robinson;L. Iannucci

  • Dynamic delamination modelling using interface elements

    L. Iannucci

  • A 3-D micromechanical model for predicting the elastic behaviour of woven laminates

    Mauricio V. Donadon;Brian G. Falzon;Lorenzo Iannucci;John M. Hodgkinson

  • A failure model for the analysis of thin woven glass composite structures under impact loadings

    L Iannucci;Robert Dechaene;M Willows;Joris Degrieck

Frequent Co-Authors

Paul Robinson
Paul Robinson Imperial College London
Silvestre T. Pinho
Silvestre T. Pinho Imperial College London
Brian Falzon
Brian Falzon RMIT University
Ugo Galvanetto
Ugo Galvanetto University of Padua
Adrian P. Sutton
Adrian P. Sutton Imperial College London
Aldo R. Boccaccini
Aldo R. Boccaccini University of Erlangen-Nuremberg
Richard S. Trask
Richard S. Trask University of Bristol
Edgar D. Zanotto
Edgar D. Zanotto Federal University of São Carlos
Joris Degrieck
Joris Degrieck Ghent University
Pedro P. Camanho
Pedro P. Camanho University of Porto

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