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首页|期刊导航|无机材料学报|反应熔渗法制备Hf-Si基涂层-基体一体化改性C/C复合材料的微观结构及烧蚀性能

反应熔渗法制备Hf-Si基涂层-基体一体化改性C/C复合材料的微观结构及烧蚀性能

赵彤彤 代吉祥 苏成 师艳 沙建军

无机材料学报2026,Vol.41Issue(5):583-594,12.
无机材料学报2026,Vol.41Issue(5):583-594,12.DOI:10.15541/jim20250424

反应熔渗法制备Hf-Si基涂层-基体一体化改性C/C复合材料的微观结构及烧蚀性能

Microstructure and Ablation Resistance of C/C Composites Modified by Hf-Si-based Coating-matrix Integrated Structure Fabricated by Reactive Melt Infiltration

赵彤彤 1代吉祥 1苏成 1师艳 1沙建军2

作者信息

  • 1. 大连理工大学 力学与航空航天学院,大连 116024
  • 2. 大连理工大学 力学与航空航天学院,大连 116024||大连理工大学 工业装备结构分析优化与 CAE 软件全国重点实验室,大连 116024
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摘要

Abstract

To enhance the ablation resistance of C/C composites under ultra-high-temperature and long-duration conditions,a non-embedded reactive melt infiltration technique was employed to fabricate a Hf-Si-based coating-matrix integrated modified C/C composite.Microstructural analysis revealed that the coating and matrix primarily consist of HfC,SiC,and HfSi2,with strong interfacial bonding formed between them through chemical reactions.Within the materials,the matrix density and composition exhibited a gradient distribution along the infiltration direction.Specifically,regions proximal to the infiltration source were denser and rich in HfC-HfSi2 phases,whereas distal regions were more porous,with the matrix consisting mainly of SiC and Si-HfSi2 eutectic structure.The surface coating was continuous and dense,with a uniform thickness of approximately 120 µm.It featured a distinct bilayer architecture composed of an outer SiC layer and an inner HfC-HfSi2-SiC layer.An in-depth investigation of the reaction mechanism revealed that the HfC-SiC-HfSi2 coating-matrix integrated structure formed through a synergistic effect of melt infiltration-reaction and vapor permeation-deposition.The composite exhibited exceptional ablation resistance when exposed to an oxyacetylene flame.After ablation tests conducted at 2500℃for 60,180,600,and 3540 s,the linear ablation rates were-3.52,-1.35,-0.85,and 0.118 μm/s,respectively.This outstanding performance is attributed to the in-situ formation of a dual-layer oxide barrier.A dense,continuous HfO2 layer generated from the surface coating works in concert with a multiphase HfO2-SiO2-HfSiO4 oxide layer generated from substrate oxidation.Together,these layers effectively retard inward oxygen diffusion and suppress the oxidative ablation process.This work proposes a viable strategy for designing and fabricating high-performance integrated thermal protection structures.

关键词

反应熔渗法/超高温陶瓷/涂层-基体一体化/微观结构/抗烧蚀性能

Key words

reactive melt infiltration/ultra-high temperature ceramic/coating-matrix integration/microstructure/ablation resistance

分类

通用工业技术

引用本文复制引用

赵彤彤,代吉祥,苏成,师艳,沙建军..反应熔渗法制备Hf-Si基涂层-基体一体化改性C/C复合材料的微观结构及烧蚀性能[J].无机材料学报,2026,41(5):583-594,12.

基金项目

国防科技大学新型陶瓷纤维及其复合材料重点实验室(6142907230302) (6142907230302)

国家重点研发计划(2022YFB3707700)Science and Technology on Advanced Ceramic Fiber and Composites Laboratory,National University of Defence Technology(6142907230302) (2022YFB3707700)

National Key R&D Program of China(2022YFB3707700) (2022YFB3707700)

无机材料学报

1000-324X

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