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Development of Technology for Detachment of Calandria Tube Rolled Joint of Pressurised Heavy Water Reactors

机译:Calandria管脱落的技术开发加压重水反应器轧制接头

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Coolant channel assembly of PHWRs consisting mainly of pressure tube and calandria tube undergoes sag due to irradiation enhanced creep during its life time. Typical service life of the pressure tube is limited to about 15 full power years due to such ageing related degradation. On account of the degradation the pressure tube needs replacement more than twice during the licensed period of reactor operation. As the sag in the calandria tube is also excessive, it has to be replaced to facilitate installation of new and straight pressure tube during retubing and to avoid interference of sagged calandria tube with horizontal reactivity devices. The calandria tube and the tube sheet are joined by sandwich type rolled joints. For detaching the joint an improved technique has been developed that helps to detach the joint without affecting the groove geometry and integrity of the tube sheet. The system works on the principle of fast thermal cycle of heating and cooling of the insert and calandria tube in the rolled joint region while applying axial load to the calandria tube. Though rolled joint detachment by induction heating technique has been in use in CANDU reactors for removal of pressure tubes and calandria tubes, the present design incorporates a liquid nitrogen for faster cooling and simultaneous application of load with a gripping module for detachment and removal of calandria tube and the insert from the tube sheet of end shield in shorter time. This paper describes the methodology of rolled joint detachment, challenges involved in the design, features of the detachment system, findings of experimental trials and observations.
机译:由于在其寿命期间,由于辐射增强了蠕变,因此由压力管和Calandria管组成的Phwrs的冷却剂通道组装。由于这种衰老相关的降解,压力管的典型使用寿命限于约15个全功率年。由于降解,压力管在电抗器操作的许可期间需要更换超过两次。随着Calandria管中的凹陷也过度,必须更换,以便在加热过程中促进安装新的和直压管,并避免使用水平反应性器件的缝隙Calandria管的干扰。 Calandria管和管板通过夹层型轧辊接头连接。为了拆卸接合,已经开发了一种改进的技术,有助于拆下关节而不影响管板的凹槽几何形状和完整性。该系统采用快速热循环的原理,加热和冷却插入卷和Calandria管在轧制接口区域,同时向Calandria管施加轴向载荷。虽然通过感应加热技术轧制联合脱落已经在CANDU反应器中用于去除压力管和CALANDRIA管,但本设计包括液氮,以便更快地冷却,同时施加载荷与夹持模块用于分离和去除Calandria管并且在较短的时间内从管板的插入件。本文介绍了轧制联合拆卸的方法,设计的挑战,脱离系统的特征,实验试验和观察结果。

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