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1)  pyroelectric properties
热释电特性
1.
35 TiO 3 ceramic materials were prepared by sol gel processing and microwave sintering, and their dielectric properties and pyroelectric properties were studied and compared with the same componential material prepared by conventional processing.
对样品的介电特性和热释电特性进行了测试 ,分析了微波烧结工艺对材料电性能的影响 。
2)  pyroelectricity [英][,paiərəuilek'trisiti]  [美][,paɪroɪlɛk'trɪsɪti, -,ilɛk-]
热释电性
1.
The paper describes briefly the development history of the polymer with piezoelectricity and pyroelectricity, approaches the compositions, structures and piezoelectricity and pyroelectricity of the PVDF.
介绍了压电和热释电聚合物的发展简史 ,探讨了PVDF(聚偏氟乙烯 )的组成、结构及压电和热释电性能 。
2.
An investigation into piezoelectric ceramics which exhibit both pyroelectricity and the internal photoeffect has been made.
讨论了热释电效应与热电效应、外光电效应与内光电效应的基本概念 ,对兼有热释电性及内光电效应的压电陶瓷进行了研究 ;对用该压电陶瓷本身制成的陶瓷变压器与太阳电池的集成器件进行了设计和实验 。
3.
In addition,the change of water acidity is proportional to the temperature variation of above solution,which provided the direct evidence for the pyroelectricity of tourmaline.
结果表明,电气石单个微粒为单畴的铁电体,可视为电偶极子;利用电气石微粉可以使水的酸度呈弱碱性;电气石对水酸度的影响随温度的变化进一步佐证了电气石的热释电性,并探讨了电气石对水作用的可能机理。
3)  pyroelectric properties
热释电性
1.
The ferroelectric thin films had good crystallization behaviour,excellent dielectric and pyroelectric properties.
该类铁电薄膜具有良好的结晶特性、优异的介电和热释电性能。
2.
Tourmaline was widely used in environmental protection, Chemical industry and other areas due to it’s pyroelectric properties, spontaneous polarization, infrared radiation and anion producing characteristics, and has achieved good economic results.
电气石因其具有热释电性、压电性、自发极化性、红外辐射和负离子发生特性,被广泛应用在环保、化工等领域,并且取得了良好的经济效益。
4)  pyroelectric property
热释电性
5)  heat emission characteistics
热释放特性
6)  pyroelectric property
热释电性能
1.
The measurement of pyroelectric property is shown that the spontaneous polarization,pyroelectric coefficience and pyroelectric merit are large than that of pure TGS crystal.
热释电性能测试表明 ,晶体的自发极化、热释电系数和热释电优值大于纯态的TGS。
补充资料:晶体热释电效应
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性质:又称焦电效应。某些晶体由于结构上的不对称性,受温度变化引起某一结晶学方向上正负电荷重心的相对位移,改变自发极化状态,从而在该方向两边产生数量相等、符号相反的束缚电荷,即出现热释电效应。通常可分为两类:(1)具有自发极化,且自发极化不能为外电场转向的晶体,称为热释电晶体,如电气石、硫化钙、硒化钙、硫酸锂、氧化锌等;(2)自发极化可以为电场所转向的晶体,即铁电体,如硫酸三甘肽(TGS)、铌酸锂、钽酸锂、钛酸钡等。这些铁电晶体中的大多数可制成陶瓷(多晶体),经极化处理后,能从各向同性体转变成各向异性体,并具有剩余极化,能像单晶体—样,显现热释电效应。由于陶瓷易加工,易于改性:成本低,是很有前途的热释电材料。利用晶体或陶瓷的热释电效应,可以制造红外热释电探测器、红外热释电摄像管等,在军事领域等已获应用。

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