Searched for: subject%3A%22healing%22
(1 - 3 of 3)
document
Suh, Minji (author), Lee, Dong Heon (author), Sloof, W.G. (author), Lee, Kee Sung (author)
In this study, the self-healing capacity of Titanium Aluminum Carbide (Ti<sub>2</sub>AlC, MAX phase) was investigated. Bulk coin samples were fabricated to evaluate the self-healing capacity at different temperatures (1000, 1200, and 1400°C). The extensive self-healing capacity of Ti<sub>2</sub>AlC was confirmed on larger quasiplastic damage ...
journal article 2024
document
Sung Lee, Kee (author), Ahn, Hyeonji (author), Won Lee, Gye (author), Sloof, W.G. (author)
Although the crack-healing capacity of Ti<sub>2</sub>AlC ceramics has been sufficiently studied, the ability of Ti<sub>2</sub>AlC to self-heal large-scale damage, such as foreign object damage (FOD), remains unknown. This paper investigates the self-healing ability of Ti<sub>2</sub>AlC ceramics with large-scale damage (∼1000 μm in diameter)....
journal article 2023
document
Boatemaa, L. (author), Bosch, Myrthe (author), Farle, A.M. (author), Bei, G. (author), van der Zwaag, S. (author), Sloof, W.G. (author)
In this work, the oxidation-induced crack healing of Al<sub>2</sub>O<sub>3</sub> containing 20 vol.% of Ti<sub>2</sub>AlC MAX phase inclusions as healing particles was studied. The oxidation kinetics of the Ti<sub>2</sub>AlC particles having an average diameter of about 10 μm was studied via thermogravimetry and/or differential thermal...
journal article 2018