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Miklós Berczeli

John von Neumann University

Izsáki street 10

Kecskemét, 6000

Hungary

SCHOLARLY PAPERS

5

DOWNLOADS

138

TOTAL CITATIONS

5

Scholarly Papers (5)

1.

Edx and Xps Analysis of Adhesive Joined Femtosecond Laser Structured High Strength Steel

Number of pages: 40 Posted: 25 Oct 2024
John von Neumann University, John von Neumann University, University of Szeged and John von Neumann University
Downloads 35 (1,263,436)

Abstract:

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surface, adhesive, femtosecond laser, high strength steel, EDX, XPS

2.

Optimizing Adhesion in Aluminum Alloys: A Cross-Disciplinary Approach to Surface Treatment and Bond Strength

Number of pages: 51 Posted: 21 Mar 2024
Ferenc Tajti, Miklós Berczeli and Zoltan Weltsch
John von Neumann University, John von Neumann University and Széchenyi István University
Downloads 31 (1,318,317)
Citation 1

Abstract:

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surface treatment, wettability, surface roughness, aluminium, adhesion

3.

Changing the High Strength Steel Surface Properties with Femtosecond Laser Beam

Number of pages: 39 Posted: 10 Jul 2023
John von Neumann University, John von Neumann University, John von Neumann University and Széchenyi István University
Downloads 27 (1,359,097)
Citation 4

Abstract:

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Wetting, surface treatment, laser, DP600

4.

Relationship between the Developed Interfacial Area Ratio and the Adhesion of the Bonded Joint

Number of pages: 20 Posted: 06 Mar 2025
Benjamin Márk Körömi, Zoltan Weltsch and Miklós Berczeli
John von Neumann University, Széchenyi István University and John von Neumann University
Downloads 24 (1,411,822)

Abstract:

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DP600 High-Strength Steel, Surface Micro-Structuring, Developed Interfacial Area Ratio, Sdr%, Adhesive, Adhesion

5.

Synergistic Advances in High-Strength Steel Joining Using Femtosecond Laser Surface Modification and Epoxy Adhesive

Number of pages: 47 Posted: 21 Mar 2024
Ferenc Tajti and Miklós Berczeli
John von Neumann University and John von Neumann University
Downloads 21 (1,436,435)

Abstract:

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surface treatment, hydrophilicity, adhesion, high strength steel, failure modes