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Ultrasonic Inspection of Reactor Pressure Vessel from Outside Surface, Qualification and Assessment of Inspection at LOVIISA NPP

机译:超声波检查反应堆压力容器从外表面,鉴定鉴定和检验评估

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Welds are one of the main objects in inservice inspections of reactor pressure vessel (RPV). Circumferential core region weld is most critical for RPV integrity and therefore complementary ultrasonic inspection from the outside surface is found necessary. In reactor pressure vessel inspection, there are some factors that have an effect on the ultrasonic inspection. It is important to know the temperature of outside vessel wall during inspection. Temperature changes the angles of incidence and affects on the detection capability of defects. The state of cladding is important also for detection of the defects at the interface between cladding and base material. The basic inspection techniques and the measurement of transducer contact will be discussed in this overview. It is very important to have similar noise level in the validation block as in the cladding of the component. By this way, the best verification of the technique for real situation will be achieved. The crack detection is depending on orientation, skew and tilt angle of the crack. The optimisation for detection of smaller defects requires certain angle of incidence. Noise from the cladding can enlarge the size of detectable defect. These factors are handled in the qualification of ultrasonic inspection of pressure vessel at Loviisa NPP performed from the outside surface.
机译:焊缝是反应器压力容器(RPV)的Inservice检查中的主要物体之一。对于RPV完整性,周向芯区域焊缝最关键,因此发现来自外表面的互动超声波检查。在反应堆压力容器检查中,存在一些对超声波检查产生影响的因素。在检查期间了解外部血管壁的温度非常重要。温度会改变发病率的角度,并影响缺陷的检测能力。包层的状态也很重要,用于检测包层和基材之间的界面处的缺陷。本概述将讨论基本检验技术和换能器触点的测量。在验证块中具有与组件的包层中的验证块中具有相似的噪声级别非常重要。通过这种方式,将实现对实际情况的最佳验证。裂缝检测取决于裂缝的方向,歪斜和倾斜角度。检测较小缺陷的优化需要某些发射角度。熔覆噪音可以扩大可检测缺陷的尺寸。这些因素在从外表面上的Loviisa NPP的超声波检查的超声波检查的资格中处理。

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