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极性微晶玻璃的结构与热释电性能研究 被引量:1

Structure and Pyroelectricity of Polar Ba_(2-x)Sr_xTiSi_2O_8 Glass-Ceramics
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摘要 采用高温熔融方法制备了Ba2-xSrxTiSi2O8(简称BSTS)非铁电极性微晶玻璃。用XRD和SEM分析了其取向生长的结构特性。BSTS微晶玻璃使用温度高,不易老化,抗磁电干扰,同时具有较大的热释电电压及探测率优值因子,分别为0.27m2·C-1和10-5Pa-1/2,其非制冷热释电探测器探测率D (500,80,1)为1.5×107cm·Hz·W-1,适合于热释电探测器方面应用。 The glass of BaO-SrO-TiO_2-SiO_2 was prepared by high temperature melting method. Used high gradient temperature, the polar microcrystal Ba_(2-x)Sr_xTiSi_2O_8(BSTS) crystallized from the glass systems. The structure of oriented growth under gradient of temperature had been determined by XRD and SEM. Used at high temperature (up to 1000℃), BSTS glass-ceramics have no aging problem and also have interference immunity to electric or magnetic field up to 1.2T.The polar Ba_(2-x)Sr_xTiSi_2O_8 glass-ceramics have a larger pyroelectric constant.Response detector and vidicon of polar BSTS glass-ceramic were 0.27m^2C^(-1 )and 10^(-5 )Pa^(-1/2), respectively. The pyroelectric detection efficiency D~*(500,80,1) of polar BSTS glass-ceramic was 1.5×10~7cm·Hz·W^(-1). Obvioursly it is a promising material for high temperature pyroelectric detectors.
出处 《玻璃与搪瓷》 CAS 北大核心 2004年第6期11-13,23,共4页 Glass & Enamel
基金 江苏高校自然科学研究计划项目(NO.03KJB430068)
关键词 微晶玻璃 热释电 极性微晶 glass-ceramic pyroelectricity polar microcrystal
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  • 1Ting R.Y., Halliyal A., Bhalla A.S. New Materials for Hydrophones Applications Single Crystals and Polar Glass-Ceramics[J].Japn. J. Appl. Phys., 1985, (Suppl.24-2):982-983.
  • 2Markgraf S.A., Halliyal A., Bhalla A.S., et al. X-ray Structure Refinement and Pyroelectric Investigation of Ba2TiSi2O8[J].Ferroelectrics, 1985,(62):17-26.

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