首页> 外文会议>ASME conference on smart materials, adaptive structures and intelligent systems;SMASIS2009 >STRAIN BEHAVIORS OF MANGANESE-DOPED (Bi_(0.5)Na_(0.5))TiO_3-BaTiO_3-(Bi_(0.5)K_(0.5))TiO_3 LEAD-FREE FERROELECTRIC CERAMICS
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STRAIN BEHAVIORS OF MANGANESE-DOPED (Bi_(0.5)Na_(0.5))TiO_3-BaTiO_3-(Bi_(0.5)K_(0.5))TiO_3 LEAD-FREE FERROELECTRIC CERAMICS

机译:锰掺杂的(Bi_(0.5)Na_(0.5))TiO_3-BaTiO_3-(Bi_(0.5)K_(0.5))TiO_3无铅铁电陶瓷的应变行为

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The strain hystereses of lead-free a(Bi_(0.5)Na_(0.5))TiO_3-ABaTiO_3-c(Bi_(0.5)K_(0.5))TiO_3 (abbrev. as BNBK 100a/100b/100c) ferroelectric compositions inside and outside the morphotropic phase boundary (MPB) are investigated. It is found that BNBK 85.4/2.6/12, a composition well within the MPB, possesses notable actuating properties such as an induced electrostrain of about 0.14% and an apparent d_(33) of 295 pCN~(-1). BNBK 85.4/2.6/12 is further doped with various amounts of manganese (Mn) to improve its sinterability and ferroelectric characteristics. Intricate hysteresis behaviors are observed upon Mn doping. The total induced electrostrain of BNBK 85.4/2.6/12 in the 33-directon decreases dramatically from 0.14 to 0.05% when 0.2 mol% of Mn is introduced into the composition. It then recovers sharply as the Mn doping amount is increased progressively to 0.5 and then to 1.0 mol%. However, when the doping amount is further increased above 1.0 mol%, a significant decrease in electrostrain is observed again. The hysteresis data indicate that an electrostrain above 0.1% can be maintained when the Mn doping amount is in between 0.5-1.5 mol%. Once outside this doping range, the induced electrostrain is considerably smaller. By examining the evolution of crystalline phase composition with Mn doping, the mole content of rhombohedral phase is shown to be a critical factor in deciding the straining behaviors of the Mn-doped BNBK 85.4/2.6/12 ceramics. To each increasing step in Mn doping level, there is a marked similarity in the evolutions of the induced electrostrain and rhombohedral phase content.
机译:内部和外部无铅a(Bi_(0.5)Na_(0.5))TiO_3-ABaTiO_3-c(Bi_(0.5)K_(0.5))TiO_3(缩写为BNBK 100a / 100b / 100c)铁电组合物的应变磁滞研究了相变相界(MPB)。已经发现,BNBK 85.4 / 2.6 / 12(一种在MPB内良好的组合物)具有显着的驱动特性,例如感应电应变约为0.14%,表观d_(33)为295 pCN〜(-1)。 BNBK 85.4 / 2.6 / 12进一步掺杂了各种含量的锰(Mn),以改善其烧结性和铁电特性。锰掺杂时观察到复杂的磁滞行为。当将0.2mol%的Mn引入组合物中时,在33-方向上的BNBK 85.4 / 2.6 / 12的总诱导电应变从0.14急剧降低至0.05%。然后随着Mn掺杂量逐渐增加至0.5和然后至1.0mol%,其急剧恢复。然而,当掺​​杂量进一步增加到1.0mol%以上时,再次观察到电应变的显着降低。磁滞数据表明,当Mn的掺杂量在0.5-1.5mol%之间时,可以保持高于0.1%的电应变。一旦超出该掺杂范围,则感应的电应变会大大减小。通过检查Mn掺杂结晶相组成的演变,菱形面相的摩尔含量被证明是决定Mn掺杂的BNBK 85.4 / 2.6 / 12陶瓷应变行为的关键因素。对于Mn掺杂水平的每个增加步骤,诱导的电应变和菱面体相含量的变化都具有明显的相似性。

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