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原位轉化Cf/Al2O3陶瓷基復合材料的沖蝕磨損

Erosive wear of in-situ transformed carbon fiber toughened alumina ceramic composites

  • 摘要: 采用真空熱壓燒結技術制備原位轉化Cf/Al2O3復合材料,并在改裝后的MSH型腐蝕磨損試驗機上研究復合材料在不同沖蝕角度和速度下的漿體沖蝕磨損性能.通過對試樣沖蝕表面的形貌觀察和分析,探討復合材料的沖蝕磨損機理以及纖維增韌對磨損過程的影響.試驗結果表明:在大角度和較高速度的沖蝕條件下Cf/Al2O3表現出較好的耐磨損性能,其磨損機理主要為脆性材料受到反復沖擊,表面產生脆性剝落.增韌纖維對沖蝕磨損性能的影響主要體現在材料產生裂紋后對基體的橋連作用和對沖擊功的吸收,抑制裂紋擴展,減少材料損失.

     

    Abstract: An in-situ transformed carbon fiber toughened alumina ceramic matrix composite was prepared by vacuum hot pressure sintering technology, and the slurry erosion wear behaviour of the composite was tested at different impact angles and velocities on a modified MSH tester. The wear mechanism of the composite and the toughening effect of carbon fiber in the wear process were also analyzed by observing its erosion surface morphology. The results show that Cf/Al2O exhibits a better wear resistance under the conditions of a larger impact angle and a higher impact velocity. The slurry erosion wear mechanism of Cf/Al2O3 is brittle spalling when the surface is repeatedly impacted. The effect of carbon fiber on the erosive wear is bridging the matrix and absorbing the impact energy after cracking. It can inhibit cracks from extending and reduce the loss of the composite.

     

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