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Overview of reactor pressure vessel cladding

机译:反应堆压力容器覆层概述

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摘要

Licence extension of NPPs requires a new safety analysis of the plant covering the extended operating life. One of the most important safety considerations is the integrity of the RPV (Reactor Pressure Vessels). The RPV material suffers several ageing-related effects during operating service: neutron (and gamma) irradiation embrittlement, thermal ageing, low-cycle fatigue, thermal fatigue and corrosion. Generally, the most severe effects are irradiation and the thermal embrittlement of the RPV belt near the fuel core zone, which is often referred to as the beltline. Nearly all operating RPVs are covered inside with a stainless steel layer called RPV cladding. The RPV cladding generally made by welding results in very rough grain size and its mechanical and thermal properties are different from the RPV base material, causing high residual stresses. The thickness of RPV cladding is 2-10 mm. Since the RPV cladding was previously considered only as an anticorrosive layer the mechanical properties and the role in the RPV integrity were not properly studied. In this review, the existing relevant informations on RPV cladding properties are summarised.
机译:核电厂许可证的延长要求对工厂进行新的安全分析,以涵盖延长的使用寿命。安全性最重要的考虑因素之一是RPV(反应堆压力容器)的完整性。 RPV材料在使用过程中会遭受多种与老化相关的影响:中子(和伽马)辐照脆化,热老化,低周疲劳,热疲劳和腐蚀。通常,最严重的影响是辐照和燃料核心区附近的RPV带的热脆化,通常被称为传送带。几乎所有运行的RPV都在内部覆盖有一层称为RPV覆层的不锈钢层。通常通过焊接制成的RPV覆层会产生非常粗糙的晶粒尺寸,并且其机械和热性能与RPV基材不同,从而导致较高的残余应力。 RPV覆层的厚度为2-10毫米。由于RPV覆层以前仅被视为防腐层,因此尚未对RPV完整性的机械性能和作用进行适当研究。在这篇综述中,总结了有关RPV覆层特性的现有相关信息。

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