Invention Grant
- Patent Title: Method of producing thermally protected composite
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Application No.: US15568666Application Date: 2016-04-22
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Publication No.: US10759022B2Publication Date: 2020-09-01
- Inventor: Stefen Sens , Eden Kwok , Michael Dunbar Silcock , Aaron Brighton , Ashley James Denmead , Nathan Jones , Hugo Howse
- Applicant: CARBON REVOLUTION LIMITED
- Applicant Address: AU Waurn Ponds, Victoria
- Assignee: Carbon Revolution Limited
- Current Assignee: Carbon Revolution Limited
- Current Assignee Address: AU Waurn Ponds, Victoria
- Agency: Cesari and McKenna, LLP
- Priority: com.zzzhc.datahub.patent.etl.us.BibliographicData$PriorityClaim@365857aa
- International Application: PCT/AU2016/050294 WO 20160422
- International Announcement: WO2016/168899 WO 20161027
- Main IPC: B24C1/04
- IPC: B24C1/04 ; B60B5/02 ; B60R13/08 ; B24C1/06 ; B24C3/32 ; B24C11/00 ; C23C4/02 ; C23C4/18 ; C23C4/08 ; C23C4/10 ; C23C4/134 ; C23C28/00 ; B29C70/88 ; B32B5/26 ; B32B7/12 ; B32B1/00

Abstract:
A method of producing a composite component (10) having a thermal protection layer (24) including the steps of: providing a composite component (10) with a primary fibre material (12) and with a primer layer (16) of alternative fibre material overlying the primary fibre material (12) at an area of the composite component intended for high thermal exposure, said area defining a thermal exposure area (18); applying a metallic bonding layer (22) to the primer layer (16) of the thermal exposure area (18) to create a bonding surface at the thermal exposure area (18); and applying a ceramic thermal protection layer (24) to the bonding surface for insulating the thermal exposure area (18) and/or for reflecting external thermal energy, the thermal protection layer (24) having a higher melting point than the metallic bonding layer (22).
Public/Granted literature
- US20180147695A1 METHOD OF PRODUCING THERMALLY PROTECTED COMPOSITE Public/Granted day:2018-05-31
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