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Development of a portable device for measuring the corrosion rates of metals based on electrochemical noise signals

机译:基于电化学噪声信号测量金属腐蚀速率的便携式装置的开发

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This work deals with the design of a portable device for measuring and monitoring corrosion variables. The measured variables are the electrochemical potential (EP) and electrochemical current (EC). Using these signals the localization index (LI) and the corrosion rate (CR) can be estimated. Since electrochemical potential (EP) and electrochemical current (EC) are weak signals, an electronic circuit was designed and developed for measuring these two variables. The electronic circuit includes a signal amplifier, a physical filter, and an Analog to Digital Converter (ADC). To estimate the IL and CR the statistical method and Neural Network method were used and compared. The device advantages are its low-cost of construction, its portability and the possibility to analyze the corrosion variables in different materials. Experimental tests carried out using 6061-T6 aluminum shown the effectiveness of the proposed device and methods and the versatility of the portable device.
机译:这项工作涉及设计用于测量和监控腐蚀变量的便携式设备。 测量的变量是电化学电位(EP)和电化学电流(EC)。 使用这些信号可以估计定位索引(Li)和腐蚀速率(CR)。 由于电化学电位(EP)和电化学电流(EC)是弱信号,因此设计并开发了一种电子电路,用于测量这两个变量。 电子电路包括信号放大器,物理滤波器和模数转换器(ADC)。 为了估计IL和CR,使用统计方法和神经网络方法并进行比较。 该器件的优点是其低成本的结构,其可移植性和分析不同材料腐蚀变量的可能性。 使用6061-T6铝进行的实验测试示出了所提出的装置和方法的有效性以及便携式装置的多功能性。

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