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Ablation behaviour of carbon fibre ultra-high temperature composites at oblique angles of attack

Ben Baker, Vinothini Venkatachalam, Luca Zoli, Antonio Vinci, Simone Failla, Diletta Sciti, Jon Binner

2021Materials & Design14 citationsDOIOpen Access PDF

Abstract

Oxyacetylene torch testing was performed at a range of angles of attack on Cf/ZrB2-SiC-Y2O3 composites, from 10° to 90°. The ablation behaviour was studied in-situ with thermography, and the post-ablation morphologies investigated optically and with elemental analysis. Significantly lower surface temperatures were observed at oblique angles of attack leading to less damage in terms of both oxidation extent and material removal. Rudimentary modelling of a gas stream impinging on a perfect surface showed that the angular variation also led to a significant drop in pressure at more oblique angles of attack, with a commensurate increase in shear stress. The surface oxide formed during testing seemed mainly to correspond to the temperature distribution and was apparently more susceptible to damage from higher impinging pressure than shear stress. This study elucidated some interesting aspects of a modified ablation test and showed some new parameter ranges which may be useful in targeted material screening.

Topics & Concepts

Materials scienceAblationComposite materialOblique caseShear (geology)ThermographyShear stressDrop (telecommunication)OpticsInfraredPhilosophyComputer scienceTelecommunicationsLinguisticsAerospace engineeringEngineeringPhysicsAdvanced ceramic materials synthesisAdvanced materials and compositesDiamond and Carbon-based Materials Research