Literature DB >> 34279318

Interface Design in Lightweight SiC/TiSi2 Composites Fabricated by Reactive Infiltration Process: Interaction Phenomena between Liquid Si-Rich Si-Ti Alloys and Glassy Carbon.

Donatella Giuranno1, Sofia Gambaro1, Grzegorz Bruzda2, Rafal Nowak2, Wojciech Polkowski2, Natalia Sobczak2,3, Simona Delsante1,4, Rada Novakovic1.   

Abstract

To properly design and optimize liquid-assisted processes, such as reactive infiltration for fabricating lightweight and corrosion resistant SiC/TiSi2 composites, the extensive knowledge about the interfacial phenomena taking place when liquid Si-rich Si-Ti alloys are in contact with glassy carbon (GC) is of primary importance. To this end, the wettability of GC by two different Si-rich Si-Ti alloys was investigated for the first time by both the sessile and pendant drop methods at T = 1450 °C. The results obtained, in terms of contact angle values, spreading kinetics, reactivity, and developed interface microstructures, were compared with experimental observations previously obtained for the liquid Si-rich Si-Ti eutectics processed under the same operating conditions. As the main outcome, a different Si content did not seem to affect the final contact angle values. Contrarily, the final developed microstructure at the interface and the spreading kinetics were observed as weakly dependent on the composition. From a practical point of view, Si-Ti alloy compositions with a Si content falling in the simple eutectic region of the Si-Ti phase diagram might be potentially used as infiltrating materials of C- and SiC-based composites.

Entities:  

Keywords:  CMCs; MMCs; Ti-silicides; aerospace; wetting at high temperature

Year:  2021        PMID: 34279318     DOI: 10.3390/ma14133746

Source DB:  PubMed          Journal:  Materials (Basel)        ISSN: 1996-1944            Impact factor:   3.623


  1 in total

1.  Interfacial and Transport Phenomena between Liquid Metal and Solid Structural Materials.

Authors:  Donatella Giuranno; Wojciech Polkowski
Journal:  Materials (Basel)       Date:  2022-10-02       Impact factor: 3.748

  1 in total

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