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Abstract
This work addresses a central challenge in Al–Cu compound casting: native copper oxides, which inhibit wetting and metallurgical bonding. A laser-based deoxidation strategy (ns-pulsed, 1064 nm) performed under oxygen-free, XHV-equivalent glovebox conditions, and quantifying subsequent oxide regrowth during realistic short-term handling, is demonstrated. Surface roughness was tuned via pulse/line overlap (0% vs. 70%) and characterized using confocal microscopy and power spectral density analysis. X-ray photoelectron spectroscopy reveals that laser processing under XHV-equivalent conditions produces copper surfaces that are more than 98% oxide-free and remain predominantly metallic for at least 720 h, whereas exposure to ambient air rapidly leads to the formation of a Cu2O/Cu(OH)2 surface layer within 24 h. Subsequent post-treatment heating promotes the transformation Cu (Formula presented.) O (Formula presented.) CuO, in accordance with established low-temperature oxidation pathways. Casting under XHV-equivalent conditions yields fully bonded Al–Cu interfaces with the expected Al2Cu, AlCu, and Al4Cu9 intermetallic layers. Intermetallic compound (IMC) morphology is more strongly governed by processing parameters (temperature, expected melt-to-solid ratio, and thermal history) than by minor short-term oxide regrowth. Overall, laser deoxidation under XHV-equivalent conditions emerges as a pretreatment that improves wetting, enables controllable IMC formation, and preserves high interfacial thermal conductivity in Al–Cu composite castings.
| Originalsprache | Englisch |
|---|---|
| Aufsatznummer | e202502800 |
| Fachzeitschrift | Advanced engineering materials |
| Jahrgang | 28 |
| Ausgabenummer | 12 |
| DOIs | |
| Publikationsstatus | Veröffentlicht - 18 Juni 2026 |
ASJC Scopus Sachgebiete
- Allgemeine Materialwissenschaften
- Physik der kondensierten Materie
Projekte
- 2 Laufend
-
Sonderforschungsbereich 1368/2, Teilprojekt A06: Flussmittelfreies Laserstrahllöten durch lokale Desoxidation
Overmeyer, L. (Projektleiter*in (Principal Investigator)) & Nothdurft, S. (Projektleiter*in (Principal Investigator))
1 Jan. 2024 → 31 Dez. 2027
Projekt: Forschung
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Sonderforschungsbereich 1368/2, Teilprojekt A01: Eigenschaften und lokale Mikrostruktur oxidschichtfrei erzeugter Verbundgussbauteile
Klose, C. (Projektleiter*in (Principal Investigator)) & Maier, H. J. (Projektleiter*in (Principal Investigator))
1 Jan. 2024 → 31 Dez. 2027
Projekt: Forschung
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