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Reversal bending fatigue test system for investigating vibration integrity of spent nuclear fuel during transportation

机译:反向弯曲疲劳测试系统,用于研究运输过程中乏核燃料的振动完整性

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Transportation packages for spent nuclear fuel (SNF) must meet safety requirements under normal and accident conditions as specified by federal regulations. During transportation, SNF experiences unique conditions and challenges to cladding integrity due to the vibrational and impact loading during road or rail shipment. Oak Ridge National Laboratory (ORNL) has been developing testing capabilities that can be used to improve the understanding of the impacts on SNF integrity due to vibration loading, especially for high burn-up SNF in normal transportation operation conditions. This information can be used to meet the nuclear industry and U.S. Nuclear Regulatory Commission needs in the area of safety and security of SNF storage and transportation operations. The ORNL developed test system can perform reversal bending fatigue testing to evaluate both the static and dynamic mechanical response of SNF rods under simulated loads. The testing apparatus is also designed to meet the challenges of hot cell operation, including remote installation and detachment of the SNF test specimen, in situ test specimen deformation measurement, and implementation of a driving system suitable for use in a hot cell. The system contains a U frame set-up equipped with uniquely designed grip rigs to protect the SNF rod sample and to ensure valid test results, and uses three specially designed linear variable differential transformers to obtain the in situ curvature measurement. A variety of surrogate test rods have been used to develop and calibrate the test system as well as in performing a series of systematic cyclic fatigue tests. The surrogate rods include stainless steel (SS) cladding, SS cladding with cast epoxy and SS cladding with alumina pellet inserts simulating fuel pellets. Testing to date has shown that the interface bonding between the SS cladding and the alumina pellets has a significant impact on the bending response of the test rods as well as their fatigue strength. The failure behaviours observed from tested surrogate rods provide a fundamental understanding of the underlying failure mechanisms of the SNF surrogate rod under vibration, which has not been achieved previously. The newly developed device is scheduled to be installed in the hot cell in summer 2013 to test high burn-up SNF.
机译:乏核燃料(SNF)的运输包装必须符合联邦法规规定的正常和事故条件下的安全要求。在运输过程中,由于公路或铁路运输过程中的振动和冲击载荷,SNF面临独特的条件和对覆层完整性的挑战。橡树岭国家实验室(ORNL)一直在开发测试功能,这些功能可用于增进对振动载荷对SNF完整性的影响的理解,尤其是对于正常运输操作条件下的高燃耗SNF。此信息可用于满足SNF储存和运输运营的安全性领域中的核工业和美国核监管委员会的需求。 ORNL开发的测试系统可以执行反向弯曲疲劳测试,以评估SNF杆在模拟载荷下的静态和动态机械响应。该测试设备还设计用于应对热室操作的挑战,包括远程安装和拆卸SNF测试样品,原位测试样品变形测量以及适用于热室的驱动系统的实现。该系统包括一个U形架,配备独特设计的夹具,以保护SNF杆样品并确保有效的测试结果,并使用三个专门设计的线性可变差动变压器来进行现场曲率测量。各种替代测试棒已用于开发和校准测试系统,以及用于执行一系列系统的循环疲劳测试。替代棒包括不锈钢(SS)包层,带有浇铸环氧树脂的SS包层和带有模拟燃料颗粒的氧化铝颗粒插入物的SS包层。迄今为止的测试表明,SS包层和氧化铝颗粒之间的界面粘合对测试棒的弯曲响应及其疲劳强度有重大影响。从测试的替代棒观察到的失效行为为SNF替代棒在振动下的潜在失效机理提供了基本的了解,这是以前无法实现的。新开发的设备计划于2013年夏季安装在热室中,以测试高燃耗SNF。

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