2001
DOI: 10.1016/s0008-6223(00)00276-1
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SiC/C multi-layered coating contributing to the antioxidation of C/C composites and the suppression of through-thickness cracks in the layer

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Cited by 44 publications
(10 citation statements)
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“…In our study, the thickness of the coating was about 20 µm in comparison to more than 100 µm coatings reported by other researchers [5][6][7]. Here we mainly try to demonstrate the effect of CNT-PyC and possibility to improve the coating system.…”
mentioning
confidence: 70%
“…In our study, the thickness of the coating was about 20 µm in comparison to more than 100 µm coatings reported by other researchers [5][6][7]. Here we mainly try to demonstrate the effect of CNT-PyC and possibility to improve the coating system.…”
mentioning
confidence: 70%
“…Aoki et al [68] built a FE model for the calculation of the energy release rate during the coating cracking, aiming at showing that SiC/C multilayered coatings successfully suppress through-thickness coating cracks. Furthermore, Chen [69] used a cohesive zone model embedded into a FE model to assess nucleation and propagation of delamination triggered by an indentation in a multilayer stack with relatively weak metal/ceramics interfaces.…”
Section: Formation and Propagation Of Cracks For Examplesmentioning
confidence: 99%
“…féktárcsa) súrló-dása során, az ezer fok feletti ismétlõdõ hõterhelésre gondolva. Megoldásként vagy magára a kompozit felü-letére visznek védõréteget, vagy magára a szénszálakra képeznek oxigénálló (általában SiC) bevonatot, illetve mindkét eljárást alkalmazzák egyszerre [4]. Jelen munká-ban a szénszálak SiC-os bevonásával foglalkozunk egy gyors, tranziens jellegû, magas hõmérsékletû hevítés alkalmazásával, ami újszerû az eddig ismert, órákban mér-hetõ hõkezelési technológiák mellett.…”
Section: Bevezetésunclassified