Silicon oxycarbide (SiOC) glasses in the form of thin, dense, and crack-free samples were fabricated according to the polymer pyrolysis route starting from cross-linked polysiloxane. The amount of free carbon in the final SiOC materials was varied in the range 18-60 vol%. The mechanical properties of the SiOC glasses were measured by nanoindentaion technique and revealed that both the Young's modulus and the hardness decrease with increase in the free carbon content and follow a simple rule of mixtures model.
Influence of free carbon on the Young's modulus and hardness of polymer-derived silicon oxycarbide glasses / Sorarù, Gian Domenico; Kundanati, Lakshminath; Santhosh, Balanand; Pugno, Nicola. - In: JOURNAL OF THE AMERICAN CERAMIC SOCIETY. - ISSN 0002-7820. - 102:3(2019), pp. 907-913. [10.1111/jace.16131]
Influence of free carbon on the Young's modulus and hardness of polymer-derived silicon oxycarbide glasses
Sorarù, Gian Domenico;Kundanati, Lakshminath;Santhosh, Balanand;Pugno, Nicola
2019-01-01
Abstract
Silicon oxycarbide (SiOC) glasses in the form of thin, dense, and crack-free samples were fabricated according to the polymer pyrolysis route starting from cross-linked polysiloxane. The amount of free carbon in the final SiOC materials was varied in the range 18-60 vol%. The mechanical properties of the SiOC glasses were measured by nanoindentaion technique and revealed that both the Young's modulus and the hardness decrease with increase in the free carbon content and follow a simple rule of mixtures model.| File | Dimensione | Formato | |
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Journal of the American Ceramic Society - 2018 - Sorarù - Influence of free carbon on the Young s modulus and hardness of.pdf
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