Materials Map

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The Materials Map is an open tool for improving networking and interdisciplinary exchange within materials research. It enables cross-database search for cooperation and network partners and discovering of the research landscape.

The dashboard provides detailed information about the selected scientist, e.g. publications. The dashboard can be filtered and shows the relationship to co-authors in different diagrams. In addition, a link is provided to find contact information.

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The Materials Map is still under development. In its current state, it is only based on one single data source and, thus, incomplete and contains duplicates. We are working on incorporating new open data sources like ORCID to improve the quality and the timeliness of our data. We will update Materials Map as soon as possible and kindly ask for your patience.

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Auricchio, Ferdinando

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Publications (58/58 displayed)

  • 2025Numerical investigation of fluid–structure interaction in a pilot-operated microfluidic valve5citations
  • 2024Advanced Materials for Energy Harvesting and Soft Robotics: Emerging Frontiers to Enhance Piezoelectric Performance and Functionality11citations
  • 2024Advanced Materials for Energy Harvesting and Soft Robotics: Emerging Frontiers to Enhance Piezoelectric Performance and Functionality.citations
  • 2024Exploiting the Coupling Variation of 3-D-Printed Cavity Filters for Complex Dielectric Permittivity Sensing3citations
  • 2024Design of multi-material structures using material jetting technology: Topology optimisation, numerical analysis and experiments5citations
  • 2024Spark Plasma Sintering of Complex Metal and Ceramic Structures Produced by Material Extrusion5citations
  • 2024Data‐informed uncertainty quantification for laser‐based powder bed fusion additive manufacturing1citations
  • 2023Elaboration and development of a realistic 3D printed model for training in ultrasound-guided placement of peripheral central venous catheter in children2citations
  • 2022Particle measurements of metal additive manufacturing to assess working occupational exposures: a comparative analysis of selective laser melting, laser metal deposition and hybrid laser metal deposition4citations
  • 2021An immersed boundary approach for residual stress evaluation in selective laser melting processes39citations
  • 2021Shape fidelity and sterility assessment of 3D printed polycaprolactone and hydroxyapatite scaffolds8citations
  • 2019Finite element analysis of additive manufacturing based on fused deposition modeling: Distortions prediction and comparison with experimental data121citations
  • 2019The mechanical strength of Ti-6Al-4V columns with regular octet microstructure manufactured by electron beam melting17citations
  • 2019Integrated shape memory alloy devices toward a high-performance glazed curtain wall seismic retrofit11citations
  • 2018A time integration algorithm for a 3D constitutive model for SMAs including permanent inelasticity and degradation effects9citations
  • 2018Temperature-memory effect in 3D printed photopolymers with broad glass transition4citations
  • 20183D printing of reinforced concrete elements: Technology and design approach322citations
  • 2017Computational Analysis of Advanced Shape-Memory Alloy Devices Through a Robust Modeling Framework6citations
  • 2017Explicit finite element implementation of a shape memory alloy constitutive model and associated analysescitations
  • 2016A three-dimensional phenomenological constitutive model for porous shape memory alloys including plasticity effects22citations
  • 2016Characterization of 3D-printed dielectric substrates with different infill for microwave applications32citations
  • 2016A three-dimensional finite-strain phenomenological model for shape-memory polymers: Formulation, numerical simulations, and comparison with experimental data66citations
  • 2016A shakedown analysis of high cycle fatigue of shape memory alloys37citations
  • 2016Theoretical and numerical modeling of dense and porous shape memory alloys accounting for coupling effects of plasticity and transformation27citations
  • 2015An Efficient Finite Element Framework to Assess Flexibility Performances of SMA Self-Expandable Carotid Artery Stents3citations
  • 2015A phenomenological model for the magneto-mechanical response of single-crystal Magnetic Shape Memory Alloys12citations
  • 2015A phenomenological model for the magneto-mechanical response of single-crystal magnetic shape memory alloys12citations
  • 2015Modeling Permanent Deformations of Superelastic and Shape Memory Materials6citations
  • 2015Micromechanical analysis of porous SMA15citations
  • 2015A computational approach for the lifetime prediction of cardiovascular balloon-expandable stents25citations
  • 2014Theoretical and numerical modeling of shape memory alloys accounting for multiple phase transformations and martensite reorientation129citations
  • 2014Fatigue of 316L stainless steel notched18citations
  • 2014Fatigue of 316L stainless steel notched μm-size components18citations
  • 2014Response of porous SMA: A micromechanical study8citations
  • 2013Statistical finite element analysis of the buckling behavior of honeycomb structures87citations
  • 2012Refined shape memory alloys model taking into account martensite reorientationcitations
  • 2011On the robustness and efficiency of integration algorithms for a 3D finite strain phenomenological SMA constitutive model32citations
  • 2011Performance evaluation of shape-memory-alloy superelastic behavior to control a stay cable in cable-stayed bridges57citations
  • 2011A finite strain kinematic hardening constitutive model based on Hencky strain: general framework, solution algorithm and application to shape memory alloys119citations
  • 2011An improved, fully symmetric, finite-strain phenomenological constitutive model for shape memory alloys33citations
  • 2011Innovative Superelastic Isolation Device41citations
  • 2010A 3-D phenomenological constitutive model for shape memory alloys under multiaxial loadings210citations
  • 2010Failure Analysis using eXtended Finite Element Method: an introduction to the methodology and simple application to beam problemscitations
  • 2010On the constitutive modeling and numerical implementation of shape memory alloys under multiaxial loadings - Part II: numerical implementation and simulationscitations
  • 2010On the constitutive modeling and numerical implementation of shape memory alloys under multiaxial loadings - Part I: constitutivemodel development at small and finite strainscitations
  • 2010An efficient, non-regularized solution algorithm for a finite strain shape memory alloy constitutive modelcitations
  • 2010A 3D finite strain phenomenological constitutive model for shape memory alloys considering martensite reorientation34citations
  • 2009A macroscopic 1D model for shape memory alloys including asymmetric behaviors and transformation-dependent elastic properties89citations
  • 2008Rate-dependent thermo-mechanical modelling of superelastic shape-memory alloys for seismic applications56citations
  • 2008Shape Memory Alloys: Material Modeling and Device Finite Element Simulations6citations
  • 2007A Phenomenological One-dimensional Model Describing Stress-induced Solid Phase Transformation with Permanent Inelasticity12citations
  • 2007A 1D rate-dependent viscous constitutive model for superelastic shape-memory alloys: formulation and comparison with experimental data22citations
  • 2007Seismic assessment of concentrically-braced steel frames with shape memory alloy bracescitations
  • 2007A Three-dimensional Model Describing Stress-induced Solid Phase Transformation with Permanent Inelasticity218citations
  • 2007A Phenomenological 3D Model Describing Stress-induced Solid Phase Transformations with Permanent Inelasticity14citations
  • 2005Computational studies of shape memory alloy behavior in biomedical applications69citations
  • 2004A three-dimensional model describing stress-temperature induced solid phase transformations: solution algorithm and boundary value problems217citations
  • 2004A three-dimensional model describing stress-temperature induced solid phase transformations: thermomechanical coupling and hybrid composite applications87citations

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Chart of shared publication
Aissa-Berraies, Ahmed
1 / 1 shared
Van Brummelen, E. Harald
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Persano, Luana
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Su, Yewang
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Natarajan, Thiyagarajan
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Pan, Min
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Bowen, Chris
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Wang, Xudong
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Matino, Francesca
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Camposeo, Andrea
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Karnarayan, Sohini
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Massoni, Enrico
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Co-Authors (by relevance)

  • Aissa-Berraies, Ahmed
  • Van Brummelen, E. Harald
  • Persano, Luana
  • Su, Yewang
  • Natarajan, Thiyagarajan
  • Pan, Min
  • Pisignano, Dario
  • Bowen, Chris
  • Wang, Xudong
  • Matino, Francesca
  • Camposeo, Andrea
  • Wang, Ruoxing
  • Karnarayan, Sohini
  • Scalet, Giulia
  • Li, Qinlan
  • Kar-Narayan, Sohini
  • Marconi, Stefania
  • Delmonte, Nicolo
  • Allain, Benjamin
  • Silvestri, Lorenzo
  • Bozzi, Maurizio
  • Alaimo, Gianluca
  • Carraturo, Massimo
  • Panettieri, Enrico
  • Montemurro, Marco
  • Catapano, Anita
  • Brucculeri, Riccardo
  • Airoldi, Lorenzo
  • Anselmi-Tamburini, Umberto
  • Rossi, Silvia
  • Vigani, Barbara
  • Baldini, Primo
  • Morganti, Simone
  • Chiappetta, Mihaela
  • Reali, Alessandro
  • Piazzola, Chiara
  • Tamellini, Lorenzo
  • Negrello, Erika
  • Parigi, Gian Battista
  • Negrini, Mattia
  • Raffaele, Alessandro
  • Valeria, Mauri
  • Avolio, Luigi
  • Pietrabissa, Andrea
  • Pernetti, Roberta
  • Imbriani, Marcello
  • Tamborini, Daniele
  • Grignani, Elena
  • Previtali, Barbara
  • Fiorentino, Maria Lorena
  • Oddone, Enrico
  • Rank, Ernst
  • Kollmannsberger, Stefan
  • Sorrenti, Milena
  • Conti, Michele
  • Scocozza, Franca
  • Scatto, Marco
  • Catenacci, Laura
  • Sakaj, Mirena
  • Ferrari, Cinzia
  • Riello, Pietro
  • Cansolino, Laura
  • Cattenone, Alberto
  • Vigliotti, Andrea
  • Di Caprio, Francesco
  • Ferrigno, Angela
  • Borrelli, Rosario
  • Occhiuzzi, Antonio
  • Sisinni, Jessica
  • Casagrande, Lorenzo
  • Bonati, Antonio
  • Peigney, Michaël
  • Pandini, Stefano
  • Inverardi, Nicoletta
  • Bignotti, Fabio
  • Mercuri, Valentina
  • Asprone, Domenico
  • Menna, Costantino
  • Hartl, Darren J.
  • Ferraro, Mauro
  • Boatti, Elisa
  • Naghdabadi, R.
  • Ashrafi, M. J.
  • Arghavani, Jamal
  • Perregrini, Luca
  • Massoni, Enrico
  • Constantinescu, Andrei
  • Sohrabpour, S.
  • Stefanelli, Ulisse Maria
  • L., Bessoud A.
  • Bessoud, Anne-Laure
  • Stefanelli, Ulisse
  • Urbano, Marco Fabrizio
  • Sepe, Vincenzo
  • Marfia, Sonia
  • Sacco, Elio
  • Bonetti, Elena
  • Ubertini, F.
  • Marfia, S.
  • Prota, A.
  • Asprone, D.
  • Menna, C.
  • Scalet, G.
  • Arghavani, J.
  • Mekki, O. Ben
  • Attanasi, G.
  • Jamal, Arghavani
  • Ahmed, Awais
  • Fugazza, D.
  • Desroches, R.
  • Mccormick, J.
  • Dubini, G.
  • Schievano, S.
  • Massarotti, P.
  • Petrini, L.
  • Migliavacca, F.
  • Petrini, Lorenza
OrganizationsLocationPeople

document

Failure Analysis using eXtended Finite Element Method: an introduction to the methodology and simple application to beam problems

  • Auricchio, Ferdinando
  • Ahmed, Awais
Abstract

This paper implements the extended finite element (XFEM) methodology to perform the failure analysis, which is essential to model and predict the post peak behavior of structures, especially as regard to seismic demands, where an efficient structural performance requires the structural components to behave in-elastically. XFEM is a local partition of unity (PoU) based method, where the key idea is to paste together special functions into the finite element approximation space to capture the desired features in the solution. Special functions may be discontinuous, their derivatives can be discontinuous or they can be chosen to incorporate a known characteristic of the solution. Accordingly, in the paper we first present some basics on the methodology, specifically focusing on crack propagation problems. The concept of enriching the field using PoU is then demonstrated using simple 1D numerical examples. The performance of the methodology is elaborated by means of characteristic bench mark problems in failure analysis followed by problems of interest to structural engineering such as evolving cracks in beams, crack emanating from voids etc. Finally, an analysis of beam with multiple interacting cracks is also presented.

Topics
  • impedance spectroscopy
  • crack
  • void