Development of an Apparatus for Chloride Induced Stress Corrosion Cracking Test Using Immersion Method With Constant Displacement Condition

Jae-Yoon Jeong, M. Lee, Yun‐Jae Kim, R. Sindelar, A. Duncan
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引用次数: 2

Abstract

This paper presents a new test method for assessing chloride induced stress corrosion cracking occurred in metal canisters used for storing spent nuclear fuels. The material applied to experiment is austenitic stainless steel, SS304 similarly used on manufacturing canisters and the experiment is carried out with immersing a compact tension specimen to chloride solution made up with artificial sea salt. Constant displacement condition using bolt tightening is applied to the test and a load is measured as a function of time using a load cell. Five specimens are used for the experiment at temperature of 50 °C for several months and stress intensity factor is calculated through the measured relaxed load and crack length on fractured surface of the specimen. Crack growth rate is presented in terms of test periods and consequently this apparatus suggests a method for evaluating structural integrity of chloride stress corrosion cracking.
恒位移浸没法氯致应力腐蚀开裂试验装置的研制
本文提出了一种新的评价核废料储存罐氯致应力腐蚀开裂的试验方法。实验材料为奥氏体不锈钢,SS304类似于制造罐的材料,将紧绷试样浸入由人造海盐组成的氯化物溶液中进行实验。使用螺栓紧固的恒定位移条件应用于试验,并使用称重传感器测量负载作为时间的函数。采用5个试件在50℃的温度下连续数月进行试验,通过实测的松弛载荷和试件断裂面上的裂纹长度计算应力强度因子。裂纹扩展速率以试验周期表示,因此该装置提供了一种评估氯化物应力腐蚀裂纹结构完整性的方法。
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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