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原料粉体纯度对SiC陶瓷材料显微组织及烧结行为的影响

程诗淇 冯东 刘悦 丁国强 茹红强 罗旭东 游杰刚

材料与冶金学报2026,Vol.25Issue(1):53-59,7.
材料与冶金学报2026,Vol.25Issue(1):53-59,7.DOI:10.14186/j.cnki.1671-6620.2026.01.007

原料粉体纯度对SiC陶瓷材料显微组织及烧结行为的影响

Effect of raw material powder purity on microstructure and sintering behavior of SiC ceramics

程诗淇 1冯东 1刘悦 1丁国强 1茹红强 2罗旭东 1游杰刚3

作者信息

  • 1. 辽宁科技大学材料与冶金学院,辽宁鞍山 114051
  • 2. 东北大学材料科学与工程学院,沈阳 110819
  • 3. 辽宁科技学院冶金与材料工程学院,辽宁本溪 117004
  • 折叠

摘要

Abstract

In order to explore the effect of raw material powder purity on the microstructure evolution and sintering behavior of SiC ceramics,SiC ceramics were prepared by pressureless sintering with different purity SiC powders as raw materials and B4C and C as sintering aids.The sintering behavior of SiC powders with different purities,the microstructure,and the mechanical properties of ceramics were studied.The results show that improving the purity of SiC powder can reduce the sintering activation energy of the powder and decrease the emission of gases during the sintering process,which is beneficial for the sintering densification of SiC ceramics.Improving the purity of SiC powder can refine the grain size of SiC ceramics and enhance the uniformity of the microstructure.When the purity of the powder(mass fraction,the same below)reaches 98.80%,the average grain size of SiC ceramics is 5.2 μm.At this point,the relative density is 98.50%,flexural strength is(379±36)MPa,fracture toughness is(5.0±0.6)MPa·m1/2,and Vickers hardness of the ceramics is(26.4±0.6)GPa,respectively,which are 2%,57.2%,19.0%,and 16.3%higher than those of ceramics with a purity of 96.5%SiC powder.The improvement of the purity of SiC powder can reduce the internal pores of the material and refine the grains,which is the main reason for the improvement of the mechanical properties of SiC ceramics.

关键词

SiC粉体纯度/SiC陶瓷材料/无压烧结/显微组织

Key words

SiC powder purity/SiC ceramics/pressureless sintering/microstructure

引用本文复制引用

程诗淇,冯东,刘悦,丁国强,茹红强,罗旭东,游杰刚..原料粉体纯度对SiC陶瓷材料显微组织及烧结行为的影响[J].材料与冶金学报,2026,25(1):53-59,7.

基金项目

辽宁省科技计划联合计划项目(2025-BSLH-182) (2025-BSLH-182)

国家自然科学基金项目(U20A20239) (U20A20239)

辽宁科技大学大学生创新创业训练计划国家级资助项目(202510146038). (202510146038)

材料与冶金学报

1671-6620

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