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首页> 外文期刊>Journal of intelligent material systems and structures >Pyroelectric energy conversion using Ba_(0.85)Sr_(0.15)Zr_(0.1)1Ti_(0.9)O_3 ceramics and its cement-based composites
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Pyroelectric energy conversion using Ba_(0.85)Sr_(0.15)Zr_(0.1)1Ti_(0.9)O_3 ceramics and its cement-based composites

机译:Ba_(0.85)Sr_(0.15)Zr_(0.1)1Ti_(0.9)O_3陶瓷及其水泥基复合材料的热电能量转换

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In this article, we focus on cement-binded Ba0.85Sr0.15Zr0.1Ti0.9O3 ceramics for pyroelectric applications. It was prepared with the Ba0.85Sr0.15Zr0.1Ti0.9O3-to-cement ratios of 85%:15% and 80%:20% by weight. In order to improve the effectiveness of thermal-to-electric energy conversion, the synchronized switch harvesting on inductor technique is experimentally tested on cement composites. Our experimental findings reveal that this concept based on synchronized switch harvesting on inductor can significantly increase the amount of power extracted from pyroelectric materials. Furthermore, the optimized power across 15% and 20% cement composites were found to be 7.2 and 6 nW, respectively, in series synchronized switch harvesting on inductor and 8.5 and 7 nW, respectively, in parallel synchronized switch harvesting on inductor. These values are significantly higher when compared with non-switched circuit for pyroelectric applications. Although, from the obtained results for the prepared composites, the power output is less when compared with pure Ba0.85Sr0.15Zr0.1Ti0.9O3, they have some advantages: these composites can be made without any sintering process and are compatible for structural applications.
机译:在本文中,我们重点研究用于热电应用的水泥结合的Ba0.85Sr0.15Zr0.1Ti0.9O3陶瓷。制备的Ba0.85Sr0.15Zr0.1Ti0.9O3与水泥的重量比为85%:15%和80%:20%。为了提高热电转换的效率,对水泥复合材料进行了感应器同步开关收集技术的实验测试。我们的实验结果表明,基于电感上同步开关收集的这一概念可以显着增加从热释电材料中提取的功率。此外,发现在电感器上的串联同步开关收获分别在15%和20%水泥复合材料上的最佳功率分别为7.2和6 nW,在电感器上的并联同步开关收获分别为8.5和7 nW。与用于热电应用的非开关电路相比,这些值明显更高。尽管从制备的复合材料获得的结果来看,与纯Ba0.85Sr0.15Zr0.1Ti0.9O3相比,其输出功率较小,但它们具有一些优势:这些复合材料无需任何烧结工艺即可制备,并且与结构应用兼容。

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