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Evaluation of cobalt free coatings as hardfacing material candidates in sodium-cooled fast reactor and effect of oxygen in sodium on the tribological behaviour

机译:钴自由涂层的评价为钠冷却的快速反应器中的硬裂材料候选物和氧气在摩擦学行为中的作用

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摘要

The feedback produced by operating Sodium-cooled Fast Reactors (SFRs) has shown the importance of material tribological properties. Where galling or adhesive wear cannot be allowed, hardfacing alloys, known to be galling-resistant coatings, are usually applied on rubbing surfaces. The most used coating is the cobalt-base alloy named Stellite 6® because of its outstanding friction and wear behaviour. Nevertheless, cobalt is an element which activates in the reactor leading to complex management of safety during reactor maintenance and mainly decommissioning. As a consequence, a collaborative work between CEA, EDF and FRAMATOME has been launched for selecting promising cobalt-free hardfacing alloys for the 600 MWe Sodium-cooled Fast breeder reactor project named ASTRID. Several nickel-base alloys have been selected from literature review then deposited by Plasma Transferred Arc or Laser Cladding on 17Cr austenitic stainless steel 316L(N) according to RCC-MRx Code (AFCEN Code). Among the numerous properties required for qualifying their use as hardfacing alloys in SFR, good corrosion behaviour and good friction and wear behaviour in sodium are essential. First results on these properties are shown in this article. Firstly, the corrosion behaviour of all coatings was evaluated through exposure tests in purified sodium for 5000 h at 400 °C. All coatings showed an acceptable corrosion behaviour in sodium. Finally, the friction and wear properties of one alloy candidate, NiCrBSi alloy, were studied in sodium in a dedicated designed facility. The influence of the oxygen concentration in sodium on the friction and wear properties was evaluated.
机译:通过操作钠冷却的快速反应器(SFR)产生的反馈表明了材料摩擦学特性的重要性。在不能允许粘合或粘合剂磨损的情况下,通常在摩擦表面上施加耐磨合金,已知是耐磨涂层。由于其出色的摩擦和磨损行为,最常用的涂层是名为Stellite6®的钴基合金。尽管如此,钴是在反应器中激活的元素,导致反应器维护和主要退役期间复杂的安全管理。因此,已经启动了CEA,EDF和粉碎机之间的协作工作,用于选择为Astrid命名为Astrid的600 MWE钠冷却的快速饲养反应器项目的有前途的无钴性硬粘合合金。根据RCC-MRX码(AFCEN代码),已经选择了几种镍基合金,然后通过等离子体转移的电弧或激光包层沉积在17Cr奥氏体不锈钢316L(n)上沉积。在符合SFR中使用作为硬折叠合金的众多性质,良好的腐蚀行为和钠中的良好摩擦和磨损行为至关重要。本文中显示了这些属性的首先结果。首先,通过在400℃下纯化的钠的净化试验在400℃下进行5000小时,评价所有涂层的腐蚀行为。所有涂层均在钠中显示出可接受的腐蚀行为。最后,在专门设计的设施中,在钠中研究了一个合金候选物NiCRBSI合金的摩擦和磨损性质。评价氧气浓度对摩擦和磨损性能的影响。

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