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首页> 外文期刊>Universal Journal of Materials Science >Effect of Manganese Addition on 94NBT-6BT Lead Free Multilayer Ceramics
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Effect of Manganese Addition on 94NBT-6BT Lead Free Multilayer Ceramics

机译:锰添加对94NBT-6BT无铅多层陶瓷的影响

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摘要

In this study, lead-free 94Bi_(0,5)Na_(0,5)TiO_(3)-6BaTiO_(3) (94NBT-6BT) ceramics were fabricated by solid-state synthesis method at ambient atmosphere. Glassy phase and rounded particles in 94NBT-6BT was observed with increasing Mn content. The effects of doping manganese on the ferroelectric properties of 94NBT-6BT bulk ceramics were evaluated. From the XRD results of the calcined powders, peaks were slightly changed to higher 2 theta value while increasing manganese ratio. Multivalence additive Mn ions act as acceptor dopant in 94NBT-6BT structure at ambient atmosphere. Samples were sintered from 1075 °C to 1175 °C for 2 hours to obtain highest piezoelectric values. SEM results show that glassy phase and rounded particles in 94NBT-6BT was observed with increasing Mn content so, bulk density was enhanced up to 1125C. From the results, 0.3 wt% manganese doped 94NBT-6BT samples have highest electromechanical coupling factor about 0.23, mechanical coupling factor (Qm) 150 and d_(33) 110 pC/N respectively. Further work, 94NBT-6BT and Mn-doped 94NBT-6BT multilayer actuators were manufactured by water-based tape casting technique. The active area was 49 mm~(2) MLA and was fabricated by using Ag-Pd internal electrode without Pd-Bi reaction at the electrode-ceramic interface. Hysterisis loop measurements of manufactured lead free actuators were done by using Aixacct CMA module. Remnant polarization values of Mn-doped 94NBT-6BT MLA for a layer were higher than 6 μC/cm~(2).
机译:在该研究中,通过在环境气氛下通过固态合成方法制造无铅94bi_(0,5)Na_(0,5)TiO_(3)-6batiO_(3)(94nbt-6bt)陶瓷。通过增加Mn含量观察到94nbT-6BT中的玻璃相和圆形颗粒。评价掺杂锰对94NBT-6BT批陶瓷铁电性能的影响。根据煅烧粉末的XRD结果,峰值略微变为较高的2个θ值,同时增加锰比。多价添加MN离子在环境气氛下充当94nbt-6BT结构中的受体掺杂剂。将样品从1075℃烧结至1175℃,得到最高压电值的2小时。 SEM结果表明,随着Mn含量的增加,观察到94nbt-6BT中的玻璃相和圆形颗粒,因此,增强堆积密度高达1125℃。从结果,0.3wt%锰掺杂的94nbt-6bt样品分别具有最高的机电耦合因子约0.23,机械耦合因子(QM)150和D_(33)110pc / n。进一步的工作,通过水基胶带铸造技术制造了94nbt-6bt和Mn掺杂的94nbt-6bt多层致动器。活性面积为49mm〜(2)MLA,通过在电极 - 陶瓷界面处使用的Ag-Pd内部电极制造而没有PD-BI反应制造。通过使用AIXACCT CMA模块完成制造的无铅致动器的Hysterisis环路测量。用于层的Mn掺杂的94nbt-6bt MLA的残余偏振值高于6μC/ cm〜(2)。

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