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Welded joints behaviour in high-temperature reactors

Welded joints behaviour in high-temperature reactors
高温反应堆中的焊接接头行为
批准号:
2296297
负责人:
金额:
$0.0万
依托单位:
依托单位国家:
英国
项目类别:
Studentship
财政年份:
2019
资助国家:
英国
项目状态:
已结题
起止时间:
2019 至 --

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中文摘要
翻译
焊接接头是反应堆结构中最关键的安全位置之一。它们在运行数十年后往往容易损坏,可以被认为是英国先进气冷反应堆的寿命限制因素之一。这是因为焊接涉及的复杂性,包括残余应力、变化的微观结构和复杂的几何形状。该项目的目的是通过先进的实验技术,如数字图像相关和同步辐射X射线衍射,以确定在焊接接头的界面处产生的应力集中的临界性。实验工作预计将补充有限元模拟,以评估在焊接界面处累积的蠕变损伤的严重程度。关键的是,关键的结果预计将包括在完整性评估程序,工程师使用日常评估反应堆组件的服务的适合性。我们的学生奖学金为未来的职业发展提供了一个很好的平台,我们的校友在核工业公司有顶级的工作。这项工作将在布里斯托大学一个新的现代化的设备齐全的高温力学测试设施中进行,与EDF能源的专家和固体力学研究小组(SMRG)的其他研究人员合作。SMRG也是英国主要设施的常规用户,如钻石光源和ISIS中子和μ子源。
英文摘要
Welded joints are one of most safety critical locations in a reactor structure. They are often prone to damage after decades of operation and can be considered to be one of the life-limiting factors in the UK's advanced gas cooled reactors. This is because of the complexities involved in a weld including the residuals stress, varying microstructure and their complicated geometry. The aim of this project is to identify the criticality of the stress concentration created at the interface of a welded joint through advanced experimental techniques such as Digital Image Correlation and synchrotron X-ray diffraction. The experimental work is expected to be complemented by finite element simulations to assess the severity of the creep damage accumulated at the weld interface. Critically, the key results are expected to be included in the integrity assessment procedures the engineers use day to day to evaluate the fitness for service of reactor components. The studentships offer an excellent platform for future career opportunities our alumni have top level jobs at nuclear industry companies.The work will be carried out in a newly modernised well-equipped high temperature mechanical testing facility at University of Bristol in collaboration with experts at EDF Energy and other researchers in The Solid Mechanics Research Group (SMRG). SMRG is also a regular user of UK major facilities such and Diamond Light Source and ISIS Neutron and Muon Source.
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