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石榴石型无机固态电解质中离子电导率与气孔率之间的经验衰减关系
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作者 郭志豪 李新海 +5 位作者 王志兴 郭华军 彭文杰 胡启阳 颜果春 王接喜 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2022年第10期3362-3373,共12页
离子电导率是无机固态电解质的一个非常重要的性能指标。为了探究气孔率与离子电导率之间的关系,通过固相法制备一系列不同气孔率的Li_(6.4)Ga_(0.2)La_(3)Zr_(2)O_(12)石榴石型无机固态电解质。基于量化的数据并借助数学模型和量纲分... 离子电导率是无机固态电解质的一个非常重要的性能指标。为了探究气孔率与离子电导率之间的关系,通过固相法制备一系列不同气孔率的Li_(6.4)Ga_(0.2)La_(3)Zr_(2)O_(12)石榴石型无机固态电解质。基于量化的数据并借助数学模型和量纲分析方法,提出气孔率与离子电导率之间的经验衰减关系并对其进行讨论。结果表明,开气孔率以指数效力方式造成离子电导率衰减,其指前因子遵循阿伦尼乌斯定律且激活能为0.23 eV,平均衰减常数为2.62%。闭气孔率以线性效力方式造成离子电导率衰减,斜率和截距也遵循Arrhenius定律,其激活能分别为0.24 eV和0.27 eV。另外,总气孔率与开气孔率之间存在线性依赖关系,且不同的烧结制度导致不同截距和斜率的线性特征。 展开更多
关键词 石榴石型无机固态电解质 离子电导率 气孔率 经验衰减关系
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Receiver Power Allocation and Transmitter Power Control Analysis for Multiple-Receiver Wireless Power Transfer Systems
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作者 zhi-hao guo Shi-Er Dong 《Journal of Electronic Science and Technology》 CAS CSCD 2019年第4期291-299,共9页
As different power has its own receivers,this paper analyzes and designs a multiple-receiver wireless power transfer(WPT)system systematically.The equivalent circuit model of the system is established to analyze the k... As different power has its own receivers,this paper analyzes and designs a multiple-receiver wireless power transfer(WPT)system systematically.The equivalent circuit model of the system is established to analyze the key parameters including transmitter power,receiver power,transmission efficiency,and each receiver power allocation.A control circuit is proposed to achieve the maximum transmission efficiency and transmitter power control and arbitrary receiver power allocation ratios for different receivers.Through the proposed control circuit,receivers with different loads can allocate appropriate power according to its power demand,the transmitter power and system efficiency do not vary with the change of the number of receivers.Finally,this control circuit is validated using a 130-kHz WPT system with three receivers whose power received is 3:10:12,and the overall system efficiency can reach as high as 55.5%. 展开更多
关键词 Multiple-receiver receiver power allocation transmitter power control wireless power transfer(WPT).
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