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首页> 外文期刊>Japanese journal of applied physics >Improved Process for Hydrothermal Lead-Free Piezoelectric Powders and Performances of Sintered (K_(0.48)Na_(0.52))NbO_3 Ceramics
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Improved Process for Hydrothermal Lead-Free Piezoelectric Powders and Performances of Sintered (K_(0.48)Na_(0.52))NbO_3 Ceramics

机译:水热无铅压电粉末的改进工艺及烧结(K_(0.48)Na_(0.52))NbO_3陶瓷的性能

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摘要

In this study, we report some improvements in a hydrothermal method for lead-free piezoelectric powders and the performance of the sintered (K_(0.48)Na_(0.52))NbO_3 ceramics. To increase the obtained powder weight per source solution volume, the hydrothermal reaction conditions were modified. This improvement is important for mass production; however, it resulted in a larger particle size dispersion. Therefore, we examined to introduced the ball milling process that is useful for dense (K_(0.48)Na_(0.52))NbO_3 ceramics. When a large amount of powder was obtained, it took a long time to eliminate the residual alkaline ions in the hydrothermal powders by a washing process. Therefore, a neutralization was conducted in the powder washing process. Using this powder, a solid solution of (K,Na)NbO_3 ceramics was synthesized. The relative density was successfully increased. Concerning the electrical properties, the relative permittivity was improved, and the piezoelectric constant d_(33) was also increased from 114 to 130 pC/N.
机译:在这项研究中,我们报告了无铅压电粉末的水热法和烧结(K_(0.48)Na_(0.52))NbO_3陶瓷性能的一些改进。为了增加每原料溶液体积获得的粉末重量,修改了水热反应条件。这种改进对于批量生产很重要;然而,这导致较大的粒度分散。因此,我们研究介绍了球磨工艺,该工艺可用于致密(K_(0.48)Na_(0.52))NbO_3陶瓷。当获得大量粉末时,要花费很长时间才能通过洗涤过程消除水热粉末中的残留碱性离子。因此,在粉末洗涤过程中进行中和。使用该粉末,合成了(K,Na)NbO_3陶瓷的固溶体。相对密度成功增加。关于电性能,相对介电常数得到改善,并且压电常数d_(33)也从114pC / N增加。

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  • 来源
    《Japanese journal of applied physics》 |2011年第7issue2期|p.07HC01.1-07HC01.5|共5页
  • 作者单位

    Graduate School of Frontier Sciences, The University of Tokyo, Kashiwa, Chiba 277-8563, Japan;

    Mechatronics and Dynamics, University of Paderborn, Fuerstenallee 11, 33102 Paderborn, Germany;

    Graduate School of Frontier Sciences, The University of Tokyo, Kashiwa, Chiba 277-8563, Japan;

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