期刊文献+

Al_2O_3颗粒对LiTaO_3压电陶瓷增强增韧机制的探讨 被引量:3

Discussing on Effect of Al_2O_3 Particles on Reinforcing and Toughening Mechanism of LiTaO_3 Matrix Piezoelectric Ceramic Composite
下载PDF
导出
摘要 采用氮气保护热压烧结工艺制备Al2O3/LiTaO3(简称ALT)陶瓷基复合材料,研究了Al2O3颗粒对LiTaO3压电陶瓷增强增韧的机制。结果表明,ALT陶瓷复合材料的相对密度比烧结纯LiTaO3陶瓷的高得多,且其各项力学性能均有明显的提高;Al2O3的加入起到烧结助剂的作用;Al2O3第二相加入后对LiTaO3压电陶瓷起到弥散强化作用,其增韧机理为ALT复合材料中残余应力场和裂纹偏转增韧。 Al2O3(p)/LiTaO3 (denoted as ALT) ceramic composite was prepared by hot pressed. The effect of Al2O3 particles on reinforcing and toughening mechanism of LiTaO3 matrix piezoelectric ceramic composite were investigated. The results show that the relative density and mechanical properties of ALT ceramic composite are much higher than that of pure LiTaO3 ceramic, which indicates that the addition of Al2O3 acts sintering aids. The flexural strength of LiTaO3 matrix ceramic composite is improved by dispersion strengthening of Al2O3 particles, and the toughness of the ALT composites increases with the addition of Al2O3 particles, because of the function of the residual stress field and crack deflection.
出处 《热加工工艺》 CSCD 北大核心 2009年第22期72-74,78,共4页 Hot Working Technology
基金 上海市重点学科建设项目(J51402) 上海市高校培养优秀青年教师科研专项基金(gjd08016)
关键词 LITAO3 AL2O3P 增韧机理 陶瓷复合材料 LiTaO3 A1203(p) toughening mechanism ceramic composite
  • 相关文献

参考文献10

二级参考文献18

  • 1张玉娟,张玉驰,孙晓峰,管恒荣,胡壮麒,沈嘉年.热障涂层的发展现状[J].材料保护,2004,37(6):26-29. 被引量:21
  • 2孙红亮,朱德贵.原位合成TiB_2-TiC_x复相陶瓷的显微组织[J].陶瓷学报,2005,26(3):158-163. 被引量:4
  • 3[1]Xu Yuhuan(许煜寰) et al. Ferroelectric and Piezoelectric Materials(铁电与压电材料)[M]. Beijing: Science Press, 1978:241
  • 4[2]Shimada S, Kodaira K, Matsushita T. J Mater Sci[J], 1984, 19:1385
  • 5[4]Liu Yangai(刘艳改). Microstructure, Properties and Toughening Mechanisms of Al2O3 Matrix Composite Dispersed with LiTaO3 Piezoelectric Ceramic Particles[D]. Harbin:Harbin Institute of Technology, 2002
  • 6[5]Zhong Weilie(钟维烈). Physics ofFerroelectrics(铁电体物理学)[M]. Beijing: Science Press, 1998:269
  • 7[6]Zhang Fuxue(张福学), Sun Kang(孙慷). Piezoelectrics(压电学) [M]. Beijing: National Defense and Industry Press, 1984:1
  • 8[7]Lines M E, Glass A M. Translated by Zhong Weilie(钟维烈),Rectified by Wang Huafu(王华馥). Principles and Applications of Ferroelectrics and Related Materials[M]. Version:Science Press, 1989:96
  • 9Richard H J Hannik,Patrick M Kelly,Barry C Muddle. Transformation Toughening in Zirconia-Containing Ceramics[J]. J.Am.Ceram.Soc., 2000,83(3): 461-487.
  • 10Masatomo Yashima,Masato Kakihana,Masahiro Yoshimura. Metastable-stable phase diagrams in the zirconia-containing systems utilized in solid-oxide fuel cell application[J].Solid State Ionics,1996,86-88:1131-1149.

共引文献34

同被引文献21

  • 1来亭荣,凌健荣,陆正兰,朱国强,庄红娟,Swain M.V..高性能陶瓷断裂韧性的SEPB评价技术[J].无机材料学报,1993,8(3):347-354. 被引量:11
  • 2刘学建,黄智勇,向长淑,潘裕柏,黄莉萍.反应烧结工艺制备碳纳米管/氮化硅陶瓷基复合材料[J].硅酸盐学报,2006,34(2):133-136. 被引量:9
  • 3李冬云,杨辉,乔冠军,金志浩.弱层成分对SiC/BN层状陶瓷阻力行为的影响[J].复合材料学报,2006,23(2):110-114. 被引量:8
  • 4沈军,张法明,孙剑飞.陶瓷/碳纳米管复合材料的制备、性能及韧化机理[J].材料科学与工艺,2006,14(2):165-170. 被引量:8
  • 5Tian C Y, liu N, Lu M H. Effect of WC on microstructure and mechanical properties of silicon nitride nano-composites [J]. Journal of Materials Processing Technology,2008,205: 411-418.
  • 6Wang Z L, Poneharal P, Heer W A. Measuring physical and mechanical properties of individual carbon nanotubes by in situ TEM[J]. Journal of Physics and Chemistry of Solids ,2000,61: 1025-1030.
  • 7Siegel R W, Changs S K, Ash B J. Mechanical behavior of polymer and ceramic matrix nanoeomposites[J]. Scripta Materialia, 2001,44:1472-1475.
  • 8An J W, Lim D S. Effect of carbon nano-tube additions on the microstructur- of hot-pressed alumina [J]. Journal of Ceramic Processing Research, 2003,3(3): 201-204.
  • 9Zhan G D, Kuntz J D, Garay J E. Electrical properties of nanoceramics reinforced with ropes of single walled carbon nanotubes [J]. Applied Physics Letters,2003,83(6) :1228- 1230.
  • 10Balazsi C S, Konya Z, Weber F, et al. Preparation and characterization of carbon nanombe reinforced silicon nitride composites [J]. Materials Science & Engineering,2003,C23: 1133-1137.

引证文献3

二级引证文献8

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部