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爆炸压实ZrB_2-SiC超高温陶瓷的密度与组织
引用本文:王和平,梁一鸣,刘时强,李金平,周玉锋.爆炸压实ZrB_2-SiC超高温陶瓷的密度与组织[J].材料科学与工艺,2011,19(5):50-53.
作者姓名:王和平  梁一鸣  刘时强  李金平  周玉锋
作者单位:中国兵器工业五二研究所烟台分所;中国人民解放军93413部队飞行一大队;哈尔滨工业大学复合材料与结构研究所;哈尔滨工业大学复合材料与结构研究所;哈尔滨工业大学复合材料与结构研究所
基金项目:特种环境复合材料技术国防科技重点实验室开放基金资助项目(HIT.KLOF.2009034)
摘    要:为了研究炸药对ZrB2-SiC超高温陶瓷密度与组织的影响,采用爆炸压实工艺制备了SiC纳米颗粒和SiC晶须分别增韧的两类ZrB2基超高温陶瓷复合材料.研究发现:选择低速的硝酸铵或高速的黑索今时,两类ZrB2-SiC爆炸压实坯密度都比较低,而选择混合炸药时致密效果较好;采用225 g黑索今与75 g硝酸铵的混合炸药时,Z...

关 键 词:爆炸压实  超高温陶瓷  ZrB2-SiC  纳米SiC  SiC晶须

Densities and microstructure of ultrahigh temperature ceramics ZrB2-SiC prepared by explosive compaction
WANG He-ping,LIANG Yi-ming,LIU Shi-qiang,LI Jing-ping and ZHOU Yu-feng.Densities and microstructure of ultrahigh temperature ceramics ZrB2-SiC prepared by explosive compaction[J].Materials Science and Technology,2011,19(5):50-53.
Authors:WANG He-ping  LIANG Yi-ming  LIU Shi-qiang  LI Jing-ping and ZHOU Yu-feng
Affiliation:Yantai Branch,No.52 Institute,Ministry of Ordnance Industry of PRC,Yantai 264003,China;The First Flight Group of 93413 Troops,Yongji 044500,China;Center for Composite Materials, Harbin Institute of Technology,Harbin 150080,China;Center for Composite Materials, Harbin Institute of Technology,Harbin 150080,China;Center for Composite Materials, Harbin Institute of Technology,Harbin 150080,China
Abstract:To study the effect of explosive on densities and microstructure of ultrahigh temperature ceramics ZrB2-SiC,two kinds of ZrB2 matrix toughened by SiC whisker or SiC nanoparticles were prepared by explosive compaction.When low speed explosive Ammonium or high speed RDX was chosen,the densities of ZrB2-SiC ceramics were lower.While,when the hybrid explosive of Ammonium and RDX was chosen,their densities were higher.If the hybrid explosive of 225 g RDX and 75 g Ammonium was used,the maximum value of the densities of ZrB2-SiCw ultrahigh temperature ceramics was 95.25%,and that of ZrB2-SiCnm was 96.12%.The SiC nanoparticles or SiC whisker can be uniformly dispersed in the micrometer ZrB2 matrix after mixing.Compared with ZrB2-SiCw,the microstructure of ZrB2-SiCnm is finer,more uniform and perfect without phase segregation.
Keywords:explosive compaction  ultrahigh temperature ceramics  ZrB2-SiC  SiC nanoparctiles  SiC whisker
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