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Texture design for microwave dielectric (Ca0.7Nd0.3)0.87TiO3 ceramics through reactive-templated grain growth

机译:通过反应模板生长的微波介电(Ca0.7Nd0.3)0.87TiO3陶瓷的织构设计

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摘要

Plate-like Ca3Ti2O7 (CT) and Nd2Ti2O7 (NT) particles were synthesized in molten salts and used as reactive templates for the preparation of highly textured (Ca0.7Nd0.3)0.87TiO3 bulk ceramics (CNT) with preferred pseudocubic 〈100〉 and 〈110〉 orientations, respectively. During flux growth CT and NT particles developed facets parallel to the pseudocubic {100} and {110} planes, respectively, in a perovskite unit cell, since those planes correspond to the interlayers of the layered perovskite-type crystal structures. Complementary reactants for the CNT stoichiometry were wet-mixed with the reactive templates and the slurries were tape-cast. Then stacked tapes were heat-treated for dense single-phase CNT ceramics with a distorted and A-site deficient regular perovskite-type structure. The CNT ceramics prepared with CT and NT reactive templates exhibited strong pseudocubic 100- and 110-family x-ray diffraction peaks, respectively, with other peaks drastically suppressed when non-perovskite sources were used as complementary reactants. The textured ceramics possess unique microstructures; as either parallel or obliquely stacked block structures with a pseudocubic {100} plane faceted. The pseudocubic {100}-and {110}-textured CNT ceramics exhibited ∼10 and ∼20% higher products of the dielectric quality factor and frequency, Q · f, respectively, than conventional ceramic sintered at the same temperature. When Q · f is compared based on the same grain size, the {100}-textured CNT exhibited 27% higher values than non-textured while relative permittivity and temperature coefficient of resonant frequency were of similar values. Simple geometrical relationships between electric field and penetrated pseudocubic {hk0}-type grain boundaries must lead to the reduced scattering and dielectric loss.
机译:在熔融盐中合成了片状Ca3Ti2O7(CT)和Nd2Ti2O7(NT)颗粒,并将其用作反应模板,以制备具有较好伪立方<100>和〈110〉方向。在磁通量增长期间,CT和NT粒子在钙钛矿晶胞中分别平行于假立方{100}和{110}平面发展出小平面,因为这些平面对应于层状钙钛矿型晶体结构的中间层。将用于CNT化学计量的互补反应物与反应模板进行湿法混合,然后将浆液流延成型。然后对堆叠的带材进行热处理,以处理具有扭曲和A位置缺陷的规则钙钛矿型结构的致密单相CNT陶瓷。用CT和NT反应模板制备的CNT陶瓷分别表现出很强的伪立方100和110族x射线衍射峰,当使用非钙钛矿源作为互补反应物时,其他峰被大大抑制。纹理陶瓷具有独特的微观结构。可以是具有假立体{100}平面的平行或倾斜堆叠的块结构。伪立方{100}和{110}结构的CNT陶瓷的介电品质因数和频率Q·f分别比在相同温度下烧结的常规陶瓷高出约10%和约20%。当基于相同的晶粒尺寸比较Q·f时,{100}织构的CNT的值比未织构的CNT高27%,而相对介电常数和谐振频率的温度系数具有相似的值。电场和穿透的伪立方{hk0}型晶界之间的简单几何关系必须导致散射和介电损耗的降低。

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