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3Y-TZP陶瓷低温下相变与特殊的力学性能 被引量:7

Phase Transformation and Exceptional Mechanical Properties of 3Y-TZP at Cryogenic Temperature
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摘要 研究了氧化钇稳定氧化锆(Y-TZP)陶瓷在室温至77K间的抗弯强度与断裂韧性变化规律,发现与室温相比,强度和韧性皆有显著提高,且断裂韧性随温度下降的提高速率高于抗弯强度。通过X射线衍射定量相分析及扫描电镜观察,研究了低温下Y-TZP陶瓷断裂过程的相变规律,分析了低温增强应力诱导相变效应对低温下氧化锆陶瓷力学性能的影响,并揭示了一般陶瓷材料低温下可能发生的力学性能变化的规律。 Changes of flexural strength and fracture toughness of 3Y-TZP were investigated in the temperature range from room temperature to 77 K. It is found that both of the flexural strength and fracture toughness at 77 K are increased remarkably, compared with that at room temperature. The increasing rate of fracture toughness is higher than that of flexural strength as temperature decreasing. The phase transformation rule of 3Y-TZP ceramic during the fracture process at the cryogenic temperature was investigated by XRD and TEM results. The influence of stress induced phase transformation effect by cryogenic temperature enhancement on the mechanical properties of 3Y-TZP ceramic was analyzed. Finally the change rule of possible mechanical properties of the normal ceramic materials at cryogenic temperature was revealed.
出处 《稀有金属材料与工程》 SCIE EI CAS CSCD 北大核心 2009年第A02期157-160,共4页 Rare Metal Materials and Engineering
基金 国家自然科学基金委员会"面上项目"资助(50772049)
关键词 氧化锆 低温 力学性能 相变 Y-TZP cryogenic mechanical properties phase transformation
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参考文献11

  • 1Garvie R et al. Nature[J], 1975, 258:703.
  • 2Veiteh S et al. Mat Res Soc Symp Proc[C], 1987, 78:97.
  • 3Masashi Yoshimura et al. Scripta Materialia[J], 1999, 40(2): 171.
  • 4Porter D et al. J Am Ceram Soc[J], 1979, 62(5-6): 298.
  • 5郑秀华,钟家湘.成分和工艺对氧化锆陶瓷马氏体相变温度的影响[J].兵器材料科学与工程,1999,22(5):10-14. 被引量:2
  • 6靳喜海,董向红,阚艳梅.四方氧化锆相变增韧及其影响因素[J].陶瓷学报,1999,20(3):164-166. 被引量:13
  • 7Evans A G. Advances in Ceramics[J], 1984, 12:193.
  • 8Zhang Z et al. J Mater Sci Lett[J], 1995, 14:948.
  • 9Kosmac T et al. J Am Ceram Soc[J], 1981, 64(4): c72.
  • 10ShanHuibo(单慧波)etal.硅酸盐通报,1996,4:11-11.

二级参考文献1

  • 1Wang J,J Mater Sci,1992年,27卷,5348页

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同被引文献50

  • 1谢志鹏,薛伟江.低温下Y_2O_3含量和晶粒尺寸对氧化锆陶瓷力学性能及相变的影响[J].稀有金属材料与工程,2013,42(S1):256-259. 被引量:4
  • 2王秀,谢志鹏,李建保,黄勇.工程陶瓷注射成型的研究与发展[J].稀有金属材料与工程,2004,33(11):1121-1126. 被引量:12
  • 3介艳巧,张修银.牙科全瓷材料的裂纹扩展模式和影响因素[J].口腔颌面修复学杂志,2010,11(6):358-360. 被引量:1
  • 4EDIRISINNHE M J.Fabrication of engineering ceramicsby injection molding[J].Am Ceramic Soc Bull,1991,70(5):824-828.
  • 5TRUNEC M,CIHLAR J.Thermal debinding of injectionmoulded ceramics[J].Journal of the European CeramicsSociety,l997(17):203-209.
  • 6EDIRISINGHE M J.Injection molding of ceramics[J].Po-wder Metallurgy,2002,6(6):367-370.
  • 7PIOTTER V,HOLSTEIN N,PLEWA K,et al.Replication of micro components by different variants of injection molding[J].Microsystem Technologies,2004(10):547-551.
  • 8TAY B Y,LIU L,LOH N H,et al.Injection molding of 3D microstructures byμPIM[J].Microsystem Technolo-gies,2005(11):10-213.
  • 9BILLIET R.Net-Shape full density P/M parts by injec-tion molding[J].International Journal of Powder Metallru-gy and Powder Technology,1985(21):119-129.
  • 10中国模具设计大典编委会.中国模具设计大典[M].南昌:江西科学技术出版社,2003..

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