Fatigue Monitoring of a Dented Piping Specimen Using Infrared Thermography

V. Paiva, G. Gonzáles, R. D. Vieira, J. Maneschy, R. B. Vieira, J. Freire
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引用次数: 2

Abstract

The present paper combines the fatigue properties rapid assessment approach using uniaxial test specimens proposed by Risitano and co-workers with the nondestructive testing (NDT) inspection approach proposed by Sakagami and co-workers to monitor the onset of fatigue in a reduced scale pipeline test specimen that was previously dented and subsequently subjected to cyclic pressure loading. In addition to the use of the conventional infrared (IR) thermographic method, the present paper uses a self-reference lock-in IR thermography method based on Thermoelastic Stress Analysis (TSA) and its deviation from traditional applications due to the presence of fatigue damage and plastic strains. The paper concludes showing that is possible to predict and monitor and detect fatigue initiation and damage using IR and TSA techniques applied to the thin wall pipe loaded under cyclic hydrostatic pressure.
用红外热成像技术监测凹痕管道试样的疲劳
本论文将Risitano及其同事提出的使用单轴试件的疲劳特性快速评估方法与Sakagami及其同事提出的无损检测(NDT)检查方法相结合,以监测先前凹凹并随后承受循环压力加载的缩小尺寸管道试件的疲劳发作。除了使用传统的红外(IR)热成像方法外,本文还使用了基于热弹性应力分析(TSA)的自参考锁定红外热成像方法,由于疲劳损伤和塑性应变的存在,该方法与传统应用的偏差。本文的结论表明,将红外和TSA技术应用于循环静水压力作用下薄壁管的疲劳起裂和损伤预测、监测和检测是可行的。
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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