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Using Electrochemical Fatigue Sensor Systems to Identify Active Fatigue Crack Growth

机译:使用电化学疲劳传感器系统识别有源疲劳裂纹的生长

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For nearly a decade,the highway and railroad bridge industries have been utilizing a powerful asset management sensor technology called the Electrochemical Fatigue Sensor(EFS).The two primary systems that utilize this technology are FatigueWatch(a long-term monitoring system)and CrackChek(a short-term system with increased sensitivity.) Developed in the early 90's in conjunction with the US Air Force and the University of Pennsylvania,the EFS method determines: 1.The presence of a growing fatigue crack;2.The presence of microplasticity,the precursors to crack initiation and propagation;and 3.Qualitatively,the crack growth rate.By applying a small voltage(0.4 for steel)to an electrode/electrolyte system,the sensor detects new surface area within the inspection region,which oxidizes and changes the resistance of the cell and indicates crack growth.A two-sensor system is used to easily cancel out the elastic deformation,leaving an indication of only permanent deformation,that is,active crack growth.The technology is applicable to any metallic structure that undergoes cyclic or repetitive loading.Testing and monitoring the critical locations with the EFS provides owners with vital information used to avoid failure and in making cost effective asset management decisions.
机译:近十年来,公路和铁路桥行业一直利用强大的资产管理传感器技术,称为电化学疲劳传感器(EFS)。利用该技术的两个主要系统是FatigueWatch(长期监控系统)和裂缝(一种短期系统,具有较高的灵敏度。前体裂致启动和传播;和3.静态,将小电压(0.4钢)施加到电极/电解质系统,传感器检测检查区域内的新表面积,氧化和变化细胞的电阻并表示裂纹生长。使用两个传感器系统来容易地抵消弹性变形,留下只有永久变形的指示,即活性Cr ACK增长。该技术适用于任何经历循环或重复载荷的金属结构。与EFS的关键地点提供了与EF的关键位置提供了用于避免失败的重要信息,并在制定具有成本效益的资产管理决策中提供所有者。

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