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The Effect of Doping and Composition on the Dielectric Properties and Sintering of a Lead Magnesium Niobate-Lead Titanate-Based Ceramic Dielectric Composite

机译:掺杂和组合物对铌酸盐铅钛岩型陶瓷介电复合材料介电性能和烧结的影响

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A series of lead magnesium niobate-lead titanate ((1-x)Pb(Mg{sub}(1/3)Nb{sub}(2/3))O{sub}3-xPbTiO{sub}3) relaxor ferroelectrics (PMN-PT) are being used in the composite design of a stable high temperature high permittivity ceramic dielectric. However, pure PMN has a dielectric maximum no lower than -10°C. To extend this range to lower temperatures niobium was replaced with tantalum. The tantalum-based component (PMTa-PT) is more refractory and does not sinter as easily as the PMN-PT components of the dielectric composite. The effect of lead oxide and lithium oxide as sintering aids was explored. Both dopants enhanced the sinterability of the tantalum-based component, while the lead oxide reduced its permittivity. At compositions above 0.70PMN-0.30PT, PMN-PT becomes less relaxor-like limiting the design of the stable dielectric to 140°C. To extend this range to higher temperatures a composite approach was taken. A series of four compositions between 0.63 to 0.65 PMN-PT was fabricated. Trilayer composites were made from these compositions with 0.70PMN-0.30PT. By varying the thickness of the composite layers an optimal configuration for the high-temperature component of the composite dielectric was determined which extended the dielectric stable temperature range of the composite dielectric to 185°C.
机译:一系列铅镁铌酸铅钛酸铅((1-x)Pb(mg {sub}(1/3)Nb {sub}(2/3))O {sub} 3-xpbtio {sub} 3)松弛剂铁电(PMN-PT)用于稳定的高温高介电常数陶瓷电介质的复合设计。但是,纯PMN的介电最大值不低于-10°C。为了将该范围扩展到较低的温度,铌被钽代替。钽基组分(PMTA-PTA)更耐火,并且不作为介电复合材料的PMN-PT组分容易地烧结。探索了氧化铅和氧化锂作为烧结助剂的影响。两种掺杂剂增强了钽基组分的烧结性,而氧化铅降低了其介电常数。在0.70pmn-0.30pt以上的组合物中,PMN-PT变得更少的松弛剂,限制稳定电介质至140℃的设计。为了将该范围扩展到更高的温度,采取了复合方法。制备了一系列的四种组合物在0.63至0.65pmn-pt之间。三叶层复合材料由这些组合物制成0.70pmn-0.30pt。通过改变复合层的厚度,确定复合电介质的高温分量的最佳配置,其将复合电介质至185℃的介电稳定温度范围延伸。

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