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Leandro Tanure

RWTH Aachen University

Templergraben 55

52056 Aachen, 52056

Germany

SCHOLARLY PAPERS

3

DOWNLOADS

184

TOTAL CITATIONS

0

Scholarly Papers (3)

A Novel Concept for Self-Healing Metallic Structural Materials: Internal Soldering of Damage Using Low Melting Eutectics

Number of pages: 25 Posted: 13 Nov 2024
RWTH Aachen University, RWTH Aachen University, RWTH Aachen University, RWTH Aachen University, RWTH Aachen University, RWTH Aachen University, RWTH Aachen University - Materials Chemistry and Max Planck Institute for Iron Research
Downloads 54 (1,049,673)

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aluminium, tin, damage, self-healing, structural materials, thin films

A Novel Concept for Self-Healing Metallic Structural Materials: Internal Soldering of Damage Using Low Melting Eutectics

Number of pages: 24 Posted: 10 Jan 2025
Max Planck Institute for Iron Research, RWTH Aachen University, RWTH Aachen University, RWTH Aachen University, RWTH Aachen University, RWTH Aachen University, RWTH Aachen University, RWTH Aachen University - Materials Chemistry and RWTH Aachen University - Materials Chemistry
Downloads 40 (1,238,337)

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aluminium, tin, Damage, self-healing, structural materials, thin films

2.

High-Resolution Chemical and Structural Characterization of the Native Oxide Scale on a Mg-Based Alloy

Number of pages: 32 Posted: 26 Sep 2023
RWTH Aachen University, Max Planck Institute for Iron Research, Max Planck Institute for Sustainable Materials, Max Planck Institute for Sustainable Materials, RWTH Aachen University, RWTH Aachen University, RWTH Aachen University, Institute for Physical Metallurgy and Materials Physics, RWTH Aachen University, affiliation not provided to SSRN, affiliation not provided to SSRN, RWTH Aachen University, Max-Planck-Institut fuer Eisenforschung GmbH, RWTH Aachen University - Materials Chemistry and RWTH Aachen University - Materials Chemistry
Downloads 60 (970,490)

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Magnesium alloys, oxidation, Atom Probe Tomography, Transmission electron microscopy

3.

Wetting and Capillary Driven Crack Self-Healing in Metals Revealed Through Al/Sn/Al Thin Film Model Architectures

Number of pages: 14 Posted: 11 Aug 2025
RWTH Aachen University, RWTH Aachen University, RWTH Aachen University - Materials Chemistry, affiliation not provided to SSRN, RWTH Aachen University, Max Planck Institute for Iron Research and RWTH Aachen University - Materials Chemistry
Downloads 30 (1,345,526)

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aluminum-tin, damage, self-healing, wetting, capillary force, thin film model