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Estimation of the Intrinsic Power Efficiency in Magnetoelectric Laminates Using Temperature Measurements

机译:利用温度测量估算磁电层压板的固有功率效率

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摘要

Magnetoelectric (ME) power efficiency is a more important property than the ME voltage or the current coefficients for power conversion applications. This paper introduces an analytical model that describes the relation between the external magnetic field and the power efficiency in layered ME composites. It is a two-phase model. The first fragment establishes the expression between the magnetic field strength and the temperature increase within an operating period. It uses a magneto-elasto-electric equivalent circuit model that was developed by Dong et al. Following previous investigations; the main loss source is the mechanical power dissipation. The second fragment links the power efficiency and the temperature increase in a heat-balanced system. This method is generally used by researchers in the piezoelectric field. The analytical model and the experimental data shows that the decrease of the power efficiency in a laminated composite is between 5% and 10% for a power density of 10 W/in (0.61 W/cm ) to 30 W/in (1.83 W/cm ). The failure mechanism/process of ME composites under high power density can be estimated/monitored by the proposed method for ME composites in practical applications.
机译:对于功率转换应用,磁电(ME)功率效率比ME电压或电流系数更重要。本文介绍了一个分析模型,该模型描述了层状ME复合材料中外部磁场与功率效率之间的关系。它是一个两阶段模型。第一个片段确定了在一个操作周期内磁场强度和温度升高之间的关系。它使用了由Dong等人开发的磁-电-电等效电路模型。经过先前的调查;主要的损耗来源是机械功耗。第二部分将热平衡系统中的功率效率和温度升高联系起来。压电领域的研究人员通常使用此方法。分析模型和实验数据表明,对于功率密度为10 W / in(0.61 W / cm)至30 W / in(1.83 W / in)的层压复合材料,功率效率的降低在5%和10%之间。厘米 )。通过在实际应用中提出的ME复合材料的方法,可以估计/监测高功率密度下ME复合材料的破坏机理/过程。

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