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一套基于六面顶高压装置的静水压高频介电测试系统

A High Frequency Hydrostatic Pressure Dielectricity Measuring System Based on Cubic Anvil Apparatus

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【作者】 陆中战晓红曹大呼张良莹姚熹

【Author】 LU Zhong1,ZHAN Xiao-Hong1,CAO Da-Hu1,ZHANG Liang-Ying2,YAO Xi2 (1.Material Science and Engineering Department,Jiangsu Polytechnic University,Changzhou 213164,China;2.Functional Materials Research Laboratory,Tongji University,Shanghai 200000,China)

【机构】 江苏工业学院材料科学与工程系同济大学功能材料研究所同济大学功能材料研究所 江苏常州213164江苏常州213164上海200000

【摘要】 以一套6×14400 kN六面顶高压装置和一台Agilent 4294A精密阻抗分析仪为主体,建立了一套静水压高频介电实时测试系统。通过固体传压介质预成型方法,解决了液体测试腔在固体传压介质中的密封以及包括4根微同轴电缆在内的多根测量导线引出密封边问题,将常压下通用的四同轴阻抗谱测试技术引入了高压研究。液体测试腔容积可达(13×15)mm3,可同时容纳10 mm×10 mm样品、高频测试夹具、温度与压力传感器、加热装置,以及包括4根外径为1.6 mm、特性阻抗为50Ω微同轴电缆在内的16根引线,进行室温至300℃、常压至3 GPa静水压力、测试频率40 Hz~5 MHz范围材料的四线阻抗谱测量,实验误差小于3%。利用这套装置观察了室温下,BaTiO3单晶在约2.6 GPa静水压力下的压致铁电-顺电相变。

【Abstract】 By a self-made system based on a cubic anvil high-pressure apparatus and an Agilent 4294A accurate impedance analyzer,real time high frequency dielectricity measurement under hydrostatic pressure is realized by the standard four-wire method widely used in ambient pressure dielectric research.The sealing of liquid cell in solid pressure-transmission medium and multi signal lines out through gaskets including four micro-coaxial cables is achieved by the pre-formation of pyrophyllite cube together with gaskets.The testing fixture,10 mm×10 mm sample,pressure-temperature sensors and as many as 16 signal wires including 4 micro-coaxial cables with an outer diameters of 1.6 mm respectively can be contained simultaneously in a liquid testing cell with a volume of(13×15)mm3.Four-wire impedance spectroscopy can be obtained by this system in a measurement range of room temperature to 300℃,ambient pressure to about 3 GPa hydrostatic pressure and testing frequency from 40 Hz to 5 MHz with an experiment error below 3%.The pressure induced ferroelectric-paraelectric phase transition of a BaTiO3 single crystal is observed using this setting up.

【关键词】 BaTiO3静水压四线阻抗谱
【Key words】 BaTiO3hydrostatic pressurefour-wire method
【基金】 江苏省青蓝工程资助项目;常州市工业攻关项目(CE2006095);江苏工业学院重大基金
  • 【文献出处】 高压物理学报 ,Chinese Journal of High Pressure Physics , 编辑部邮箱 ,2008年01期
  • 【分类号】O521.3
  • 【被引频次】3
  • 【下载频次】106
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