Publications

This page gathers journal articles, conference papers, and technical presentations related to friction stir welding, incremental forming, SPH, and nonlinear manufacturing simulation.

The structure is organized by topic. Inside each topic, publications are grouped by year from newest to oldest.

Explicit FEM

2026

2025

2023

2019

  • Development of Explicit Models for Friction Stir Spot Welding: Evaluation of Tool Geometry

    2019 · L. Buglioni, J.M. Piccini, H.G. Svoboda · Mecánica Computacional, Vol. 37, pp. 1303-1312

    FSSWExplicit FEMTool Geometry

SPH

2024

2022

  • Development of SPH Computational Tools for Large Deformation Processes

    2022 · L. Buglioni, H.G. Svoboda · Tecno INTI 2022

    SPHLarge DeformationSolver Development

2020

  • Development of SPH Tools Oriented to Thermal Problems

    2020 · L. Buglioni, A. Miranda, L.N. Tufaro, H.G. Svoboda · CADI / CAEDI / CLADI, Universidad de Buenos Aires

    SPHThermal ModelingOpen Tools

Incremental Forming

2025

  • Effects of machine compliance on forming accuracy and forces in SPIF of AISI 430

    2025 · A. Simoncelli, L. Buglioni, D. Martinez Krahmer, A.J. Sanchez Egea · The International Journal of Advanced Manufacturing Technology · Published June 7, 2025

    Metal FormingSPIFIncremental FormingFEMStainless Steel
  • Sustainability Index-Based Characterization of Al 3003 Part in Die-Press versus Incremental Sheet Forming

    2025 · A. Simoncelli, G. Campana, L. De Bernardez, L. Buglioni, A. Sanchez Egea, M. Gadaleta, D. Martinez Krahmer · ResearchGate preprint, September 2025

    Metal FormingISFIncremental FormingSustainabilityAluminum Alloys

FSW

2021

  • Effect of welding parameters on heat generation mechanisms in friction stir welding of AA5083 aluminium alloy

    2021 · L.N. Tufaro, L. Buglioni, H.G. Svoboda · Material Science & Engineering International Journal, Vol. 5, No. 4, pp. 124-132

    FSWThermal ModelingAluminum Alloys

2020

  • Friction Stir Spot Welding Process Analysis: Numerical Model and Comparison with Experimental Conditions

    2020 · L. Buglioni, J.M. Piccini, H.G. Svoboda

    Metal FormingFSSWValidationFEM

2019

  • Development of CFD Models for Friction Stir Welding: Influence on Heat Generation and Boundary Conditions

    2019 · L. Buglioni, J.M. Piccini, H.G. Svoboda · Mecánica Computacional, Vol. 37, pp. 1003-1012

    CFDFSWHeat Generation
  • Development of CFD Models for Friction Stir Welding: Influence of Heat Generation and Boundary Conditions

    2019 · L. Buglioni, L.N. Tufaro, H.G. Svoboda · ENIEF 2019, Santa Fe, Argentina

    Metal FormingCFDFSWHeat Generation

2017

  • CFD Model of Friction Stir Welding

    2017 · L. Buglioni, L.N. Tufaro, H.G. Svoboda · JIM 2017, INTI, Buenos Aires, Argentina

    Metal FormingCFDFSWAluminum Alloys

2016

  • Residual Stress Analysis in Friction Stir Welded AA7075-T651 Joints

    2016 · L.N. Tufaro, L. Buglioni, H.G. Svoboda · XLII CONSOLDA, Sao Paulo, Brazil

    Metal FormingFSWResidual StressAluminum Alloys
  • Evaluation of Thermal Cycles in Friction Stir Welding According to Different Numerical Approaches

    2016 · L. Buglioni, L.N. Tufaro, H.G. Svoboda · XLII CONSOLDA, Sao Paulo, Brazil

    Metal FormingFSWThermal ModelingNumerical Methods
  • Thermal Numerical Models for Friction Stir Welding

    2016 · V Congreso Nacional de Ingenieria Mecanica, Santiago del Estero, Argentina

    Metal FormingFSWThermal ModelingFEM
  • Numerical Models for Friction Stir Spot Welding

    2016 · V Congreso Nacional de Ingenieria Mecanica, Santiago del Estero, Argentina

    Metal FormingFSSWNumerical ModelingManufacturing

2015

  • Thermal cycles and residual stresses in FSW of aluminum alloys: experimental measurements and numerical models

    2015 · L. Buglioni, L.N. Tufaro, H.G. Svoboda · Procedia Materials Science, Vol. 9, pp. 87-96

    FSWResidual StressExperimental Validation
  • CFD Numerical Model Development for Friction Stir Welding of Aluminum Alloys

    2015 · L. Buglioni, L.N. Tufaro, H.G. Svoboda · CILAMCE 2015, Rio de Janeiro, Brazil

    Metal FormingCFDFSWAluminum Alloys
  • CFD Numerical Model for Friction Stir Welding in AA5083 Aluminum Alloy

    2015 · L. Buglioni, L.N. Tufaro, H.G. Svoboda · CONSOLDA 2015, Salvador, Brazil

    Metal FormingCFDFSWAA5083
  • Numerical Models and Experimental Measurements of Thermal Cycles and Residual Stresses in FSW

    2015 · L. Buglioni, L.N. Tufaro, H.G. Svoboda · Tecno INTI 2015

    Metal FormingFSWResidual StressValidation
  • Development of CFD Numerical Models for FSW Applications

    2015 · L. Buglioni, L.N. Tufaro, H.G. Svoboda · Tecno INTI 2015

    Metal FormingCFDFSWSolver Development
  • Development of Open FEM and CFD Tools for Welding Applications

    2015 · L. Buglioni, L.N. Tufaro, H.G. Svoboda · Tecno INTI 2015

    Open SourceFEMCFD

2014

  • Thermal Cycle and Residual Stress in Friction Stir Welded Aluminum Alloys: Experimental Measurements and Numerical Models

    2014 · SAM CONAMET / IBEROMAT / MATERIA 2014, Santa Fe, Argentina

    Metal FormingFSWResidual StressExperimental Validation
  • Study of Thermal Cycles During FSW Using Experimental Measurements and Linear and Nonlinear Numerical Models

    2014 · XL CONSOLDA, Sao Paulo, Brazil

    Metal FormingFSWFEMThermal Cycles
  • Experimental Analysis of Energy Balance in Friction Stir Welding of Aluminum Alloys

    2014 · XL CONSOLDA, Sao Paulo, Brazil

    Metal FormingFSWExperimental ValidationEnergy Balance

Implicit FEM

Reserved for future quasi-static and nonlinear implicit FEM publications.