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Application of the quartz crystal microbalance to measurement of the concentration of electrolyte in lead/acid batteries

机译:石英微天平在铅酸蓄电池中电解质浓度测量中的应用

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The density of the electrolyte in a lead/acid battery may change by 10 to 20% during the discharge/charge cycle and the value within this range can be used as an indication of the fraction of available energy stored in the battery. We describe the application of a quartz crystal microbalance to the determination of the density of sulfuric acid solutions over a range of temperatures and during the discharge of a typical lead/acid battery. The sensor response varies linearly with temperature, and in a quadratic manner with the density of the solution. Good agreement with the theoretically predicted behaviour of thickness shear mode oscillators immersed in liquids was observed. The sensor performed well in the laboratory experiments under artificial conditions. By contrast, initial studies using the sensor in a lead/acid battery operating under real conditions revealed that stray capacitances can influence the stability of the oscillator.
机译:铅/酸电池中的电解质密度在放电/充电周期中可能会发生10%到20%的变化,并且该范围内的值可用作电池中存储的可用能量比例的指示。我们描述了石英晶体微量天平在确定温度范围内以及典型铅/酸电池放电期间确定硫酸溶液密度的应用。传感器响应随温度线性变化,并且随溶液密度呈二次变化。观察到与浸入液体中的厚度剪切模式振荡器的理论预测行为良好的一致性。该传感器在人工条件下的实验室实验中表现良好。相比之下,使用传感器在实际条件下运行的铅/酸电池中进行的初步研究表明,杂散电容会影响振荡器的稳定性。

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