# ENGINEERING METHOD FOR THE THERMAL MECHANICAL EROSION OF C/C COMPOSITE WITH THE MESOSCALE ABLATION MODEL

> Title: ENGINEERING METHOD FOR THE THERMAL MECHANICAL EROSION OF C/C COMPOSITE WITH THE MESOSCALE ABLATION MODEL Page Range: p.181-186 Author(s): Deng Daiying; Yu Jijun; Yan Xiangqiao; Huang Fei; LuoXiaoguang File size: Download the pdf (subscribers only) Buy the pdf (non-subscribers) Journal: Polymers...

Canonical URL: https://polymerjournals.com/engineering-method-for-the-thermal-mechanical-erosion-of-c-c-composite-with-the-mesoscale-ablation-model/
Published: 2014-02-01T00:00:00+00:00
Categories: Polymers and Polymer Composites

**Title: ENGINEERING METHOD FOR THE THERMAL MECHANICAL EROSION OF C/C COMPOSITE WITH THE MESOSCALE ABLATION MODEL**
 Page Range: p.181-186
 Author(s): Deng Daiying; Yu Jijun; Yan Xiangqiao; Huang Fei; LuoXiaoguang
 File size:
 ![](http://dload.gif) [Download the pdf](http://journals.asp?Page=111&JournalDownload=ON&JournalType=ppc&JournalIssue=ppc22-2&JournalID=102101&JIP=) (subscribers only)
 ![](http://handbuy.gif) Buy the pdf (non-subscribers)
 Journal: Polymers and Polymer Composites
 Issue Year: ppc
 Volume: 22
 Issue No: No. 2

**Abstract**
 A physical model to simulate the mesoscale morphology evolution of carbon fibre is established to characterize the thermal mechanical erosion behaviour of C/C composite in high temperature and high pressure gas flow. The process of mechanical erosion of single carbon fibre is calculated by the DSMC method. The fracture criteria and mesoscale mechanical erosion model of carbon fibre are developed by theory of mechanics of materials. Finally, an engineering method for prediction of mesoscale mechanical erosion is formulated, and the predictions agree well with the experiment results. 11 Refs.

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