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1)  Magnetic relaxor ferroelectric materials
磁性弛豫铁电材料
1.
Magnetic relaxor ferroelectric materials (MRF) are compounds in which the relaxor ferroelectricity and ferromagnetic (antiferromagnetic) order coexist simultaneously in certain temperature range.
磁性弛豫铁电材料是指在一定温度范围内同时具有弛豫铁电性和铁磁(反铁磁)序的材料。
2)  Lead-based ferroelectric relaxor
含铅弛豫铁电材料
3)  Lead-based Relaxor Ferroelectrics
铅基弛豫铁电材料
4)  ferroelectric relaxation
铁电弛豫
1.
Abnormal ferroelectric relaxation in the electron-irradiated copolymers of vinylidenefluoride and trifluoroethylene
电子辐照的P(VDF/TrFE)共聚物的铁电弛豫异常现象
5)  relaxor ferroelectrics
弛豫铁电体
1.
Structure and relaxation of relaxor ferroelectrics;
弛豫铁电体的弛豫性结构研究
2.
This paper outlines and reviews the theory and its progress in order disorder transformation for relaxor ferroelectrics , and also prospects the future of the theory briefl
简要介绍了弛豫铁电体的有序-无序转变理论的发展过程及新进展,并对该理论进行了评述。
3.
The activation energy \%Q \%of four typical relaxor ferroelectrics: disordered (\%S=0 35)\%Pb(Sc\-\{0 5\}Ta\-\{0 5\})O\-3 (PST) single crystal, disordered (\%S\%=0 40)PST ceramic, 0 85Pb(Zn\-\{1/3\}Nb\-\{2/3\})O\-3\|0 15BaTiO\-3(PZN\|BT) ceramic,and 0 93Pb(Mg.
从德拜弛豫理论出发 ,通过介电温度谱得到弛豫时间温度谱 ,由此计算弛豫铁电体的弛豫激活能Q和指数前因子τ0 。
6)  relaxor ferroelectric
弛豫铁电体
1.
Based on the crystal structures of NBT and the theories of the B-site-complex relaxor ferroelectrics,this paper also probes into the relaxor mechanism of the A-site-complex relaxor ferroelectrics,especially Na_(0.
5))TiO_3,NBT)是一种典型的 A 位复合钙钛矿结构弛豫铁电体,具有复杂的相变序列,介电温度峰呈现明显的弛豫性。
2.
Novel relaxor ferroelectric crystal (1-x)PbZn_ 1/3 Nb_ 2/3 O_ 3-x PbTiO_ 3 (PZNT)is a solid solution which is formed between relaxor ferroelectric crystal PbZn_ 1/3 Nb_ 2/3 O_ 3 (PZN) and general ferroelectric crystal PbTiO_ 3 (PT) in the range 0≤x≤0.
(1-x)PbZn1/3Nb2/3O3-xPbTi O3(PZNT)晶体是弛豫铁电体PbZn1/3Nb2/3O3(PZN)与普通铁电体PbTi O3(PT)在0≤x≤0。
3.
The dielectric response of PMN-PZN-PT relaxor ferroelectric ceramics was measured under various external fields.
结果表明:直流偏压场与交流测试场对弛豫铁电体的作用相反,增大偏压场导致介电常数的降低,而增大测试场则使介电常数升高。
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性质:物质和磁场相互作用的性质。按照相互作用的不同,分成顺磁性、反磁性、铁磁性、反铁磁性等几种类型。与物质的电子结构、有无不成对电子、磁子间相互作用、晶体结构等物质和磁场相互作用的性质。按照相互作用的不同,分成顺磁性、反磁性、铁磁性、反铁磁性等几种类型。与物质的电子结构、有无不成对电子、磁子间相互作用、晶体结构等有关。有关。

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