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Effect of SiC location on the ablation of C/C-SiC composites in two heat fluxes
  • 期刊名称:Jounal of Materals Science & Technology
  • 时间:2015
  • 页码:345-354
  • 分类:TB332[一般工业技术—材料科学与工程]
  • 作者机构:State Key Laboratory of Solidification Processing,Northwestern Polytechnical University
  • 相关基金:supported by the National Natural Science Foundation of China under Grant No.51402238 and 51221001;the Fundamental Research Foundation of Northwestern Polytechnical University under Grant No.GBKY1021;the Research Fund of State Key Laboratory of Solidification Processing(NWPU),China(Grant No.25-TZ-2009);the'111'Project under Grant No.B08040
  • 相关项目:航空航天用超高温复合材料制备与服役的物理化学过程
中文摘要:

How layer-segregated distribution of SiC affects the ablation of C/C-SiC composites was studied in the present work.A certain amount of SiC particles was deposited at the non-woven(C/C—SiC-1) and web(C/C-SiC-2) layer of 2D needle-punched carbon fibre fabric reinforced pyrocarbon composites,respectively.Ablation under oxyacetylene torch demonstrated that the two composites have similar ablation rates in heat flux of 2.38 MW/m2whereas ablation rates of C/C-SiC-2 were much higher than those of C/C—SiC-1 when heat flux was 4.18 MW/m2.SiO2covered partially the defective surface of both composites in the lower heat flux.The different SiC locations induced distinct defects and then led to the two composites’ dissimilar ablation rates in the higher heat flux.

英文摘要:

How layer-segregated distribution of SiC affects the ablation of C/C-SiC composites was studied in the present work.A certain amount of SiC particles was deposited at the non-woven(C/C—SiC-1) and web(C/C-SiC-2) layer of 2D needle-punched carbon fibre fabric reinforced pyrocarbon composites,respectively.Ablation under oxyacetylene torch demonstrated that the two composites have similar ablation rates in heat flux of 2.38 MW/m2whereas ablation rates of C/C-SiC-2 were much higher than those of C/C—SiC-1 when heat flux was 4.18 MW/m2.SiO2covered partially the defective surface of both composites in the lower heat flux.The different SiC locations induced distinct defects and then led to the two composites’ dissimilar ablation rates in the higher heat flux.

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