首页> 外文会议>International conference on environmental remediation and radioactive waste management;ICEM2010 >FULL-SCALE TEST OF OVERPACK CLOSURE TECHNIQUES FOR HLW REPOSITORY OPERATION - WELDING METHODS AND UT SYSTEMS FOR LONG-TERM STRUCTURAL INTEGRITY OF WELD JOINTS -
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FULL-SCALE TEST OF OVERPACK CLOSURE TECHNIQUES FOR HLW REPOSITORY OPERATION - WELDING METHODS AND UT SYSTEMS FOR LONG-TERM STRUCTURAL INTEGRITY OF WELD JOINTS -

机译:HLW仓库操作的超封闭技术的全面试验-焊接接头长期结构完整性的焊接方法和UT系统-

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Overpack, a high-level radioactive waste package for Japan's geological- disposal program, is required for preventing sealed vitrified waste from contact with groundwater for at least 1,000 years. The weld joint between the body and lid must also meet this requirement. Certain welding methods were examined for applicability through full-scale welding tests using various welding depths up to 190 mm and two different lid structures. Results show that generation of welding flaws must be considered unavoidable. Therefore, ultrasonic testing (UT) must be conducted on the assumption that weld flaws will be present. Such UT systems must be designed for natural defects.Several types of UT must be evaluated for detection and size estimation capability at depths ranging from the surface to the bottom of the weld joint. Certain UT methods were examined for their ability to detect natural defects that were created on the surface of and inside a 190-mm thick carbon steel specimen. Probability of detection (POD) of each UT method was calculated by comparing the results of UT and destructive examination. In consideration of the preferred range of scanning depth for each UT method, a concept that combines UT methods was proposed as a practical UT system for the overpack weld joint.
机译:为了防止密封的玻璃化废物与地下水接触至少1000年,需要使用Overpack(一种用于日本地质处置计划的高级放射性废物包装)。阀体和盖子之间的焊接接头也必须满足此要求。通过使用最大190 mm的各种焊接深度和两种不同的盖结构的全面焊接测试,对某些焊接方法的适用性进行了检查。结果表明,必须考虑避免产生焊接缺陷。因此,必须在假定存在焊接缺陷的前提下进行超声波测试(UT)。此类UT系统必须针对自然缺陷而设计。 在从焊接接头的表面到底部的深度范围内,必须对几种类型的UT进行检测和尺寸估算能力的评估。检查了某些UT方法检测190毫米厚碳钢样本表面和内部产生的自然缺陷的能力。通过比较UT和破坏性检查的结果来计算每种UT方法的检测概率(POD)。考虑到每种UT方法的最佳扫描深度范围,提出了一种将UT方法组合起来的概念,作为用于外包装焊缝的实用UT系统。

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