Materials Map

Discover the materials research landscape. Find experts, partners, networks.

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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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in Cooperation with on an Cooperation-Score of 37%

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Publications (32/32 displayed)

  • 2024Feasibility Study of Solid-State Recycling through Direct Hot Rolling of AA5754 Aluminum Chips for Automotive Applications1citations
  • 2024Life cycle assessment (LCA) of a novel solid-state recycling process for aluminum alloy AA6063 chips via direct hot rolling1citations
  • 2024Innovative Solid-State Recycling of Aluminum Alloy AA6063 Chips Through Direct Hot Rolling Processcitations
  • 2024Effect of post heat treatment on microstructure and mechanical properties of hot-rolled AA2017 aluminum alloy2citations
  • 2024Effect of Temperature and Strain on Bonding of Similar AA3105 Aluminum Alloys by the Roll Bonding Process1citations
  • 2021Assessment of drilling-induced delamination and tool wear in carbon fibre reinforced laminates13citations
  • 2021Bonding of similar AA3105 aluminum alloy by Accumulative Roll Bonding process6citations
  • 2019High temperature deformation of IN718 superalloy: use of basic creep modelling in the study of Nickel and single-phase Ni-based superalloys8citations
  • 2019Flow curve prediction of ZAM100 magnesium alloy sheets using artificial neural network-based models5citations
  • 2018Effect of cold rolling on the mechanical properties and formability of FSWed sheets in AA5754-H11417citations
  • 2018Effect of the Rolling Temperature on Hot Formability of ZAM100 Magnesium Alloy6citations
  • 2018In-process Control of Rotational Speed in Friction Stir Welding of Sheet Blanks with Variable Mechanical Properties5citations
  • 2017Mechanical properties of cold rolled friction stir welded sheets in AA5754 aluminium alloycitations
  • 2017Tool wear and hole quality in drilling of CFRP/AA7075 stacks with DLC and nanocomposite TiAlN coated tools71citations
  • 2016Microstructural and constitutive analysis in process modeling of hot working: the case of a Mg-Zn-Mn alloy8citations
  • 2016Investigation on process parameters affecting blanking of AISI 1006 low carbon steel1citations
  • 2015Characterization of hot deformation of CW602N brass1citations
  • 2015The search for reliable inputs in modelling hot working operations: a model describing the flow behavior of metals at high temperature applied to CW602N brasscitations
  • 2014A New Constitutive Model Describing the Plastic Flow of Metals: Application to the AA6082 Aluminum Alloy4citations
  • 2014High temperature processing of brass: Constitutive analysis of hot working of Cu-Zn alloys16citations
  • 2014A new constitutive model for the plastic flow of metals at elevated temperatures36citations
  • 2014Hot workability in process modeling of a bearing steel by using combined constitutive equations and dynamic material model44citations
  • 2013High temperature deformation and microstructural instability in AZ31 magnesium alloy38citations
  • 2013Prediction Models of the final properties of steel rods obtained by thermomechanical rolling processcitations
  • 2013Grain evolution analysis and experimental validation in the extrusion of 6XXX alloys by use of a lagrangian FE code60citations
  • 2012High temperature mechanical properties of an aluminum alloy containing Zn and Mg12citations
  • 2012High Temperature Creep and Superplasticity in a Mg–Zn–Zr Alloy13citations
  • 2011Analysis of the effect of friction stir welding on the minimum creep rate of an Mg–3% Al–1% Zn alloy10citations
  • 2010Influence of data conversion methods from torsion tests on the Garofalo equation parameters for a high nitrogen steel10citations
  • 2009Microstructure-related equations for the constitutive analysys of creep in magnesium alloys13citations
  • 2007Analysis of high-temperature deformation and microstructure of an AZ31 magnesium alloy115citations
  • 2004HOT WORKING AND MULTIPASS DEFORMATION OF A 41CR4 STEELcitations

Places of action

Chart of shared publication
Loi, Gabriela
1 / 11 shared
Carta, Mauro
5 / 8 shared
Buonadonna, Pasquale
5 / 9 shared
Aymerich, Francesco
2 / 30 shared
El Mohtadi, Rayane
2 / 3 shared
Ben Khalifa, Noomane
3 / 28 shared
Mele, Alessandro
1 / 1 shared
Bertolino, Filippo
1 / 5 shared
Morea, Donato
1 / 1 shared
Aydi, Leila
1 / 1 shared
Donati, Lorenzo
2 / 27 shared
Reggiani, Barbara
1 / 23 shared
Ciccarelli, D.
2 / 5 shared
Paoletti, C.
1 / 8 shared
Spigarelli, S.
1 / 22 shared
Ghat, M.
1 / 1 shared
Simoncini, Michela
5 / 13 shared
Greco, Luciano
2 / 2 shared
Pieralisi, Massimiliano
2 / 2 shared
Forcellese, Archimede
6 / 15 shared
Casalino, Giuseppe
1 / 22 shared
Dorazio, Alessio
2 / 3 shared
Ciccarelli, Daniele
1 / 3 shared
Simoncini, M.
1 / 10 shared
Greco, L.
1 / 2 shared
Pieralisi, M.
1 / 2 shared
Nardinocchi, Alessia
1 / 2 shared
Spigarelli, Stefano
15 / 21 shared
Jager, Ales
1 / 1 shared
Gartnerova, Viera
1 / 1 shared
Panaccio, Lorenzo
1 / 1 shared
Di Ilio, Antoniomaria
1 / 1 shared
Gabrielli, Filippo
3 / 5 shared
Dannibale, Antonello
1 / 1 shared
Cabibbo, Marcello
4 / 16 shared
El Mohtadi, S.
2 / 2 shared
Ruano, O. A.
1 / 13 shared
Valle, J. A. Del
1 / 2 shared
Pegorin, F.
1 / 1 shared
Lainati, A.
1 / 2 shared
Segatori, Antonio
1 / 5 shared
Tomesani, Luca
1 / 20 shared
Leo, P.
1 / 12 shared
Cerri, E.
1 / 27 shared
Gariboldi, E.
1 / 6 shared
Lecis, N.
1 / 21 shared
Regev, M.
2 / 2 shared
Quercetti, G.
1 / 1 shared
Castellanos, J.
1 / 7 shared
Carsi, M.
1 / 2 shared
Oa, Ruano
1 / 2 shared
Rieiro, I.
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Kaneko, J.
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Jager, A.
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Evangelista, Enrico
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Gartnerova, V.
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Masimi, M.
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Evangelista, E.
1 / 3 shared
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Co-Authors (by relevance)

  • Loi, Gabriela
  • Carta, Mauro
  • Buonadonna, Pasquale
  • Aymerich, Francesco
  • El Mohtadi, Rayane
  • Ben Khalifa, Noomane
  • Mele, Alessandro
  • Bertolino, Filippo
  • Morea, Donato
  • Aydi, Leila
  • Donati, Lorenzo
  • Reggiani, Barbara
  • Ciccarelli, D.
  • Paoletti, C.
  • Spigarelli, S.
  • Ghat, M.
  • Simoncini, Michela
  • Greco, Luciano
  • Pieralisi, Massimiliano
  • Forcellese, Archimede
  • Casalino, Giuseppe
  • Dorazio, Alessio
  • Ciccarelli, Daniele
  • Simoncini, M.
  • Greco, L.
  • Pieralisi, M.
  • Nardinocchi, Alessia
  • Spigarelli, Stefano
  • Jager, Ales
  • Gartnerova, Viera
  • Panaccio, Lorenzo
  • Di Ilio, Antoniomaria
  • Gabrielli, Filippo
  • Dannibale, Antonello
  • Cabibbo, Marcello
  • El Mohtadi, S.
  • Ruano, O. A.
  • Valle, J. A. Del
  • Pegorin, F.
  • Lainati, A.
  • Segatori, Antonio
  • Tomesani, Luca
  • Leo, P.
  • Cerri, E.
  • Gariboldi, E.
  • Lecis, N.
  • Regev, M.
  • Quercetti, G.
  • Castellanos, J.
  • Carsi, M.
  • Oa, Ruano
  • Rieiro, I.
  • Kaneko, J.
  • Jager, A.
  • Evangelista, Enrico
  • Gartnerova, V.
  • Masimi, M.
  • Evangelista, E.
OrganizationsLocationPeople

document

Bonding of similar AA3105 aluminum alloy by Accumulative Roll Bonding process

  • El Mehtedi, Mohamad
Abstract

<jats:p>Accumulative roll-bonding (ARB) is a novel plastic straining process aimed at bonding of similar and dissimilar metal combinations. Moreover, it is used recently to produce ultrafine grain materials and metal matrix reinforced composites to enhance mechanical, electrical, and corrosion resistance properties. This work presents an experimental study of roll bonding and accumulative roll bonding of similar AA3105 aluminum alloy at 300°C with a final thickness of 1.2 mm, focusing especially on bond strength evaluation and layers continuities. Tensile tests and three-points bending were performed to mechanical characterize the produced sheets in the various steps and based on the number of the cycles. The maximum strength was reached after 3 ARB cycles. After 4 cycles, the bonding interfaces have a uniform distribution through the sheet thickness, it is possible to distinguish only the interface formed in the last pass in the fracture surface, and no significant enhancement in strength was observed. Starting from 2 ARB cycles, micro-cracks were observed at the outer surface for bending angles greater than 90 deg, and at 180 deg all ARBed samples except A1 were failed.</jats:p>

Topics
  • impedance spectroscopy
  • surface
  • polymer
  • grain
  • corrosion
  • aluminium
  • crack
  • strength
  • composite
  • positron annihilation lifetime spectroscopy
  • Photoacoustic spectroscopy