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Investigations On Crack Propagation Under Cyclical Isothermal And Thermo-mechanical Loadings For A Type 304-L Stainless Steel Used For Pressurized Water Reactor

机译:压水堆用304-L不锈钢在循环等温和热机械载荷下裂纹扩展的研究

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The integrity of structures exhibiting flaws in Pressurized Water Reactor (PWR) has to be assessed to meet safety criteria. This paper deals with crack-propagation under cyclic thermo-mechanical loadings, as encountered in class I austenitic pipes of PWR’s. To have a conservative and reliable assessment of the crack propagation due to the in-service loading, various codes and standards use simplified method. For example, the RSE-M Code introduces a plastic correction depending on the proportion of the mechanical loading. An improvement of the current method requires additional investigations. Moreover, components loaded with transient or thermal fluctuations are not really in loadcontrolled conditions. To this end, a device called PROFATH was designed. The specimen is a pre-cracked thick-walled tube undergoing a set of thermal cycles and loaded with a static mechanical force. During the first part of the thermal cycle, a high frequency induction coil heats the external wall of the tube. Then, the heating system stops and the specimen is cooled down by running water inside the tube. Finite element calculations show that only a region half-way along the tube should be heated to ensure adequate structural effect. In the heated zone, the machining of a sharp circumferential groove ensures the propagation of a unique crack. An electro-mechanical jack controls the level of the mechanical static load. Tests have been carried out, and these tests allow having an evaluation of the pertinence of the correction proposed by the RSE-M Code for a significant plasticity.
机译:必须评估在压水堆(PWR)中存在缺陷的结构的完整性,以满足安全标准。本文涉及循环热机械载荷下的裂纹扩展,正如PWR的I类奥氏体管道所遇到的那样。为了对使用中的载荷引起的裂纹扩展进行保守可靠的评估,各种规范和标准使用了简化方法。例如,RSE-M代码根据机械负载的比例进行塑性校正。当前方法的改进需要进一步的研究。此外,负载瞬态或热波动的组件并不是真正处于负载控制条件下。为此,设计了一种称为PROFATH的设备。样品是预破裂的厚壁管,经历了一系列热循环并承受了静态机械力。在热循环的第一部分中,高频感应线圈加热管的外壁。然后,加热系统停止,试管内的自来水将样品冷却。有限元计算表明,应仅加热沿管中途的区域以确保足够的结构效果。在加热区,对锋利的周向凹槽进行机加工可确保独特裂纹的扩展。机电千斤顶控制机械静载荷的水平。已经进行了测试,并且这些测试可以评估RSE-M规则提出的显着可塑性的校正的相关性。

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