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Successful aqueous processing of a lead free 0.5Ba(Zr0.2Ti0.8)O-3-0.5(Ba0.7Ca0.3)TiO3 piezoelectric material composition

机译:成功进行无铅0.5Ba(Zr0.2Ti0.8)O-3-0.5(Ba0.7Ca0.3)TiO3压电材料组合物的水处理

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摘要

We report on the successful aqueous processing of a lead free piezoelectric 0.5Ba(Zr0.2Ti0.8)O-3-0.5( Ba0.7Ca0.3)TiO3 (BZT-BCT) composition with the final functional properties of the materials unaffected by the various processing steps involved. X-ray diffraction results show a single tetragonal perovskite crystalline phase for the as-received sintered BZT-BCT powder. The purity of the perovskite phase for BZT-BCT powder was found to be controlled even after ageing the material in water for 24 h as a successful surface treatment against hydrolysis. An aqueous suspension of surface treated BZT-BCT powder with 50 vol% solid loading was successfully transformed into micro-sized granules via a freeze granulation (FG) method. Various structural, electrical and mechanical properties of sintered BZT-BCT-FG and BZT-BCT-NG ceramics consolidated from freeze granulated and non-granulated (NG) powders, respectively, were measured. The dielectric constant (epsilon(r)) values of the BZT-BCT-FG sample were found to be higher, with lower dielectric loss (tan delta) values in comparison with those of a sample prepared from the BZT-BCT-NG powder at all temperatures and with all frequency ranges tested. Nanoindentation results revealed that the ability to oppose deformation was nearly 10-fold higher for BZT-BCT-FG (6.93 GPa) than for BZT-BCT-NG ceramics (543 MPa). The functional properties of BZT-BCT- FG samples confirmed the benefits of the aqueous processing approach in comparison with traditional dry pressing.
机译:我们报告了无铅压电0.5Ba(Zr0.2Ti0.8)O-3-0.5(Ba0.7Ca0.3)TiO3(BZT-BCT)组合物的成功水处理,其材料的最终功能特性不受涉及的各个处理步骤。 X射线衍射结果表明,原样的烧结BZT-BCT粉末具有单一的四方钙钛矿晶相。发现即使将材料在水中老化24小时,也能控制BZT-BCT粉末钙钛矿相的纯度,这是成功的抗水解表面处理方法。固体载量为50%(体积)的表面处理过的BZT-BCT粉末的水悬浮液已通过冷冻制粒(FG)方法成功转化为微细颗粒。测量了分别由冷冻造粒和非造粒(NG)粉末固结的BZT-BCT-FG和BZT-BCT-NG烧结陶瓷的各种结构,电气和机械性能。与由BZT-BCT-NG粉末制备的样品相比,BZT-BCT-FG样品的介电常数(ε)值较高,而介电损耗(tan delta)值较低。所有温度和所有频率范围的测试。纳米压痕结果表明,BZT-BCT-FG(6.93 GPa)的抗变形能力比BZT-BCT-NG陶瓷(543 MPa)高近10倍。 BZT-BCT-FG样品的功能特性证实了与传统干压相比水处理方法的优势。

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