Szczegóły publikacji
Opis bibliograficzny
The role of wettability in liquid-assisted processing of ceramic-reinforced iron-based metal matrix composites / Ł. SZYMAŃSKI, J. SOBCZAK, N. Sobczak, K. Peddeti, E. OLEJNIK, A. Bigos, K. ŻAK, S. SOBULA, K. Biegun, B. Karakkunnumma // W: WFC 2024 [Dokument elektroniczny] : 75th World Foundry Congress : October 25-30, 2024, Deyang, China. — Wersja do Windows. — Dane tekstowe. — [China : Foundry Institution of Chinese Mechanical Engineering Society (FICMES)], [2024]. — S. 436–437. — Wymagania systemowe: Adobe Reader. — Tryb dostępu: https://www.75wfc.com/uploads/pdf/5/05-1186-436.pdf [2026-06-29]. — Bibliogr. s. 437, Abstr. — Ł. Szymański – dod. afiliacja: Institute of Metallurgy and Materials Science, Polish Academy of Sciences, Krakow, Poland ; E. Olejnik – dod. afiliacja: Innerco sp. z o. o., Krakow, Poland
Autorzy (10)
- AGHSzymański Łukasz
- AGHSobczak Jerzy Józef
- Sobczak Natalia
- Peddeti Kranthi
- AGHOlejnik Ewa
- Bigos Agnieszka
- AGHŻak Katarzyna
- AGHSobula Sebastian
- Biegun Katarzyna
- Karakkunnummal B.
Słowa kluczowe
Dane bibliometryczne
| ID BaDAP | 168592 |
|---|---|
| Data dodania do BaDAP | 2026-07-21 |
| Rok publikacji | 2024 |
| Typ publikacji | materiały konferencyjne (aut.) |
| Otwarty dostęp |
Abstract
The high-temperature wettability tests were conducted for various types of ceramics commonly used as reinforcements in fabrication of metal matrix composites (MMCs) by liquid-assisted processes. Significant differences during wettability tests in the course of kinetic curves were identified with regards to ex-situ and in-situ techniques used in manufacturing process of MMCs. Two different types of MMC castings were manufactured, i.e. reinforced by TiC particles (in-situ) and preforms made from oxide ceramics (ex-situ). Compared to monolithic alloys, the presence of the ceramic phases (TiC, Al2O3, ZrO2) in the both cases significantly improved its hardness (at least two-fold increase) and wear resistance (weight loss decrease at the level from 30 to 300%).