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首页> 外文期刊>Science and technology of nuclear installation >Thermomechanical Model and Bursting Tests to Evaluate the Risk of Swelling and Bursting of Modified 9Cr-1Mo Steel Steam Generator Tubes during a Sodium-Water Reaction Accident
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Thermomechanical Model and Bursting Tests to Evaluate the Risk of Swelling and Bursting of Modified 9Cr-1Mo Steel Steam Generator Tubes during a Sodium-Water Reaction Accident

机译:热力学模型和爆破试验,以评估钠水反应事故中改性9Cr-1Mo钢蒸汽发生管膨胀和爆裂的风险

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The MECTUB code was developed to evaluate the risk of swelling and bursting of Steam Generator (SG) tubes. This code deals with the physic of intermediate steam-water leaks into sodium which induce a Sodium-Water Reaction (SWR). It is based on a one-dimensional calculation to describe the thermomechanical behavior of tubes under a high internal pressure and a fast external overheating. The mechanical model of MECTUB is strongly correlated with the kind of the material of the SG tubes. It has been developed and validated by using experiments performed on the alloy 800. A change to tubes made of Modified 9Cr-1Mo steel requires more knowledge of Modified 9Cr-1Mo steel behavior which influences the bursting time at high temperatures (up to 1200°C). Studies have been initiated to adapt the mechanical model and to qualify it for this material. The first part of this paper focuses on the mechanical law modelling (elasticity, plasticity, and creep) for Modified 9Cr-1Mo steel and on overheating thermal data. In a second part, the results of bursting tests performed on Modified 9Cr-1Mo tubes in the SQUAT facility of CEA are used to validate the mechanical model of MECTUB for the Modified 9Cr-1Mo material.
机译:开发MECTUB代码是为了评估蒸汽发生器(SG)管膨胀和爆裂的风险。该代码处理中间蒸汽泄漏到钠中的物理现象,后者会引起钠水反应(SWR)。它基于一维计算来描述在高内部压力和快速外部过热情况下管的热机械行为。 MECTUB的力学模型与SG管的材料种类密切相关。它是通过对800合金进行的实验开发和验证的。对由改性9Cr-1Mo钢制成的管进行的更改需要对改性9Cr-1Mo钢的行为有更多了解,这会影响高温(最高1200°C)的破裂时间)。已经开始进行研究,以适应机械模型并使之适合这种材料。本文的第一部分着重于改性9Cr-1Mo钢的力学定律建模(弹性,塑性和蠕变)以及过热数据。在第二部分中,在CEA的SQUAT设施中对9Cr-1Mo改性管进行爆破测试的结果用于验证MECTUB的9Cr-1Mo改性材料的力学模型。

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