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2Zn 3Ti 4O 12 composites for LTCC applications]]>

机译:<![CDATA [CDATA [调查BLMT玻璃/ LI 2 ZN 3 TI 4 O 12 用于LTCC应用的复合材料]]>

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AbstractA series of novel low temperature co-fired ceramics were fabricated in x BLMT-(100-x) Li2Zn3Ti4O12(2.5?≤?x?≤?80?wt%) composites sintered at 900?°C. The sintering mechanism, phase composition, microstructure and dielectric properties of the composites were investigated. The results showed that the sintering mechanism of composites with <20?wt% BLMT glass could be attributed to non-reactive liquid-phase sintering and LaBO3phase was crystallized from glass beside Li2Zn3Ti4O12phase, while composites with ≥20?wt% glass were controlled by the coexistence of viscous sintering and reactive liquid-phase sintering, BLMT glass crystallized forming LaBO3, MgLaB5O10and a small amount of rutile phase, nevertheless, more rutile phase was formed by reacting between glass and ceramic. As BLMT glass was increased, LaBO3, MgLaB5O10and rutile phase gradually dominated the material and Li2Zn3Ti4O12phase decreased. Meanwhile, the dielectric constant (εr) and quality factor (Q×f) demonstrated gradually decrease, whereas the temperature coefficient of resonant frequency (τf) presented a trend of fall first then rise. Typically, the composite with 60?wt% glass displayed excellent dielectric properties with εr?=?14, Q?×?f?=?23,000?GHz, and τf?=??3.56?ppm/°C. The corresponding fitting equations of εr, Q×f and τfon the BLMT glass content were obtained by the Origin software, which indicated that the dielectric properties of BLMT/Li2Zn3Ti4O12composites could be precisely adjusted by adding the suitable content of glass. Therefore, the sintering process, phase composition and dielectric properties of BLMT/Li2Zn3Ti4O12composites can be controlled by varying the content of Li2Zn3Ti4O12ceramic and B2O3-La2O3-MgO-TiO2glass.Highlights?A LTCC material is fabricated in x BLM
机译:<![CDATA [ 抽象 一系列新颖的低温共烧陶瓷的是在X BLMT-(100-x)的制造锂< CE:INF LOC = “POST”> 2 3 4 0 12 (?????2.5≤X≤80重量%)复合材料在900烧结?°C。复合材料的烧结机理,相组成,微观结构和介电性能进行了研究。结果表明,复合材料具有<20%(重量)BLMT玻璃可以归因于非反应性液相烧结和LABO 3 相结晶从玻璃李旁 2 3 4 0 12 相,而具有≥20重量%的玻璃复合材料是由粘性烧结和反应液相烧结的共存控制? ,BLMT玻璃结晶形成LABO 3 ,MgLaB 5 0 10 和,不过,更金红石相是由玻璃和陶瓷之间反应而形成的金红石相的量小。作为BLMT玻璃增加,LABO 3 ,MgLaB 5 0 10 和金红石相逐渐为主的材料和Li 2 3 < / CE:INF>钛 4 0 12 阶段降低。同时,介电常数(ε - [R )和品质因数(Q × F)逐渐证明降低,而温度谐振频率的系数(τ˚F)呈现下降的趋势,第一然后上升。 ?通常,具有60重量%的玻璃复合材料显示具有优良的介电性能ε - [R ???????= 14,Q×F = 23000千兆赫,和τ˚F?= ?? 3.56 PPM /℃。的相应的方程拟合ε - [R ,Q × f和τ˚F 上是由Origin软件,这表明得到的BLMT玻璃内容BLMT / Li的介电性能 2 3 4 0 12 复合材料可以通过增加玻璃的合适内容被精确地调节。因此,BLMT / Li的烧结过程中,相组成和介电性能 2 3 4 0 12 复合材料可通过改变锂 2 3 4 0 12 陶瓷和B 2 0 3 < / CE:INF> -La 2 0 3 -MgO-TIO 2 玻璃 亮点 甲LTCC材料在X BLM制造

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