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Role of Irradiation Embrittlement in RPV Lifetime Assessment

机译:辐照脆性在RPV寿命评估中的作用

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Integrity and lifetime of reactor pressure vessels are practically determined by their material resistance against fast/non-ductile failure and consequently by their radiation damage resulting in irradiation embrittlement and hardening. Mechanism of irradiation embrittlement of RPV materials depends on selected materials and operation conditions but their values depend in a large extent on reactor design, i.e. on neutron flux/fluence depending on RPV wall. Generally, new RPV design allows smaller neutron fluences but absolute value of irradiation embrittlement still depends on a choice of RPV material. Even though radiation damage (especially irradiation embrittlement) is important for RPV behavior, integrity and lifetime depends, in principle, on final value of applied fracture mechanics parameter - transition temperature. Thus, its initial value as well as its shift due to irradiation embrittlement is of interest but only the embrittlement can be affected during operation.
机译:反应器压力容器的完整性和寿命实际上是通过它们的材料抗性免受快速/非延展性衰竭的决定,因此通过它们的辐射损伤导致照射脆化和硬化。 RPV材料的照射脆性机制取决于所选材料和操作条件,但它们的值在很大程度上取决于反应器设计,即取决于RPV壁的中子通量/流量。通常,新的RPV设计允许较小的中子流量,但辐照脆化的绝对值仍然取决于RPV材料的选择。尽管辐射损坏(特别是照射脆化)对于RPV行为很重要,但原则上,完整性和寿命就取决于所施加的断裂力学参数转变温度的最终值。因此,其初始值以及由于照射脆化因辐射而具有感兴趣的初始值,但仅在运行期间可能影响脆化。

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