Increasing the Piezoactivity of Manufactured Composite Piezoceramic Transformers by Combining the Processes of Soldering and Polarization

IF 0.5 Q4 ENGINEERING, ELECTRICAL & ELECTRONIC Electrical Control and Communication Engineering Pub Date : 2021-06-01 DOI:10.2478/ecce-2021-0009
Yurii Paerand, O. Zakhozhai
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Abstract

Abstract The article is devoted to solving the problem of ensuring high piezoactivity of composite piezoceramic transformers, in which the component parts are connected by soldering. The existing connection features have been analysed for the elements of composite piezoceramic transformers and the results have shown that during soldering the piezoceramic elements are exposed to thermal shock leading to depolarization of piezoceramics and deterioration of its piezoelectric properties. Diminution of temperature depolarizing effect is possible using low-temperature solders with a high tin content. However, in this case, the diffusion process of the electrode material of the piezoelectric element into the solder increases and the mechanical connection strength decreases. To eliminate these negative phenomena and solve the problem, a new method has been developed for connecting elements of composite piezoceramic transformers by soldering, where a polarizing voltage is applied to the composite piezoceramic transformer when heating and cooling, which prevents depolarization of the domain structure of piezoceramic elements. At the same time, high temperature ensures that polarization is carried out at lower values of the electric tension, and a more mobile domain structure after polarization has a lower level of coercive forces and, accordingly, a greater stability of parameters ov er time. Experimental verification has shown that the relative resonance gap increases by 6 % with a decrease in the dispersion of this value by 12 %, which indicates an increase in piezoactivity and stability of the characteristics of composite piezoceramic transformers manufactured using the solution above.
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结合焊接和极化工艺提高复合压电陶瓷变压器的压电活性
摘要本文致力于解决复合压电陶瓷变压器的高压电活性问题,其中的组成部分是通过焊接连接的。分析了复合压电陶瓷变压器元件的现有连接特征,结果表明,在焊接过程中,压电陶瓷元件受到热冲击,导致压电陶瓷的去极化和压电性能的恶化。使用具有高锡含量的低温焊料可以减小温度去极化效应。然而,在这种情况下,压电元件的电极材料向焊料中的扩散过程增加,并且机械连接强度降低。为了消除这些负面现象并解决这个问题,已经开发了一种通过焊接连接复合压电陶瓷变压器元件的新方法,其中在加热和冷却时向复合压电瓷变压器施加极化电压,这防止了压电陶瓷元件的畴结构的去极化。同时,高温确保了在较低的电张力值下进行极化,极化后更具流动性的畴结构具有较低的矫顽力水平,因此,参数随时间的变化具有更大的稳定性。实验验证表明,相对谐振间隙增加了6%,该值的色散减少了12%,这表明使用上述解决方案制造的复合压电陶瓷变压器的压电活性和特性稳定性增加。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Electrical Control and Communication Engineering
Electrical Control and Communication Engineering ENGINEERING, ELECTRICAL & ELECTRONIC-
自引率
14.30%
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0
审稿时长
12 weeks
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