超声脉冲回波法对腐蚀程度的远程估计

N.M. Nawfi, N. Sarusan, S. Piyathilake, V. Sivahar, R. Munasinghe
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引用次数: 3

摘要

尽管工程结构的设计是为了达到非常耐用的潜力,能够承受不利环境条件造成的退化,但结构中的故障仍然发生;主要是由于腐蚀。尽管有许多传统的方法来评估腐蚀程度,但大多数方法都是破坏性的。尽管在非破坏性地估计腐蚀程度方面做出了重大努力,但还没有建立可靠的方法,特别是对于隐藏或不可接近的腐蚀。此外,现有的方法,无论是破坏性的还是非破坏性的,都只关注表面腐蚀(不锈钢的晶间腐蚀[IGC]除外),完全忽略了超出表面腐蚀极限形成的腐蚀坑。因此,本研究将这些腐蚀坑纳入腐蚀程度的估算中。在本研究中,选定的钢样品在加速腐蚀条件下,然后进行超声波检测。利用超声探伤仪测量了超声纵波速度与横波速度比和衰减系数。这些测量是在除去表面的腐蚀产物后进行的。同时进行了SEM分析和常规失重测量。给出了腐蚀程度与超声参数之间的相关关系。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Remote Estimation of Degree of Corrosion Using Ultrasonic Pulse Echo Methods
Even though the engineering structures are designed to achieve the potential to be very durable and capable of withstanding the degradation caused by adverse environmental conditions, failures in the structures do still happen; predominantly due to corrosion. Even though there are many conventional methods to evaluate the degree of corrosion, most of them are destructive. Though there are significant efforts made to estimate the degree of corrosion nondestructively, reliable methods are yet to be established especially, for hidden or inaccessible corrosion. Moreover, the available methods, whether destructive or nondestructive, focus only on the surface corrosion (except in the cases of intergranular corrosion [IGC] of stainless steel) completely ignoring the corrosion pits that form beyond the limits of surface corrosion. Hence, this study includes these corrosion pits in estimating the degree of corrosion. In this study, selected steel samples were subjected to accelerated corrosion conditions and then tested ultrasonically. Ultrasonic longitudinal wave velocity to shear wave velocity ratio and the attenuation coefficient were measured using Ultrasonic Flaw Detector. These measurements were done even after removing the corrosion products from the surface. SEM analysis and the conventional weight loss measurements were also carried out. The correlations obtained between the degree of corrosion and ultrasonic parameters are presented.
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