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首页> 外文期刊>Advances in materials science and engineering >Corrosion Control of Alloy 690 by Shot Peening and Electropolishing under Simulated Primary Water Condition of PWRs
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Corrosion Control of Alloy 690 by Shot Peening and Electropolishing under Simulated Primary Water Condition of PWRs

机译:压水堆模拟一次水条件下喷丸强化和电抛光控制690合金的腐蚀

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This work clarifies the effect of surface modifications on the corrosion rate of Alloy 690, a nickel-based alloy for steam generator tubes, under the simulated test conditions of the primary water chemistry in nuclear power plants. The surface stress was modified by the shot peening and electropolishing methods. The shot peening treatment was applied using ceramic beads with different intensities by varying the air pressure and projection angle. The corrosion rate was evaluated by gravimetric analysis and the surface was analyzed by scanning electron microscopy (SEM). The corrosion rate of Alloy 690 was evaluated from the influence of the stress state on the metal surface. Based on the observation of the surface after the corrosion test, the oxide composition and its structure were affected by the surface modifications. The corrosion behavior of Alloy 690 was distinguished by the shot peening intensity on the surface, and additional electropolishing was effective at reducing the dissolution of nickel ions from the metal surface.
机译:这项工作阐明了在核电厂的主要水化学模拟条件下,表面改性对690合金(一种用于蒸汽发生器管的镍基合金)的腐蚀速率的影响。通过喷丸和电抛光方法改变了表面应力。通过改变气压和投影角度,使用强度不同的陶瓷珠进行喷丸处理。通过重量分析评价腐蚀速率,并通过扫描电子显微镜(SEM)分析表面。根据应力状态对金属表面的影响评估690合金的腐蚀速率。基于腐蚀试验后的表面观察,氧化物组成及其结构受表面改性的影响。 690合金的腐蚀行为以其表面的喷丸强化强度为特征,另外的电抛光可有效减少镍离子从金属表面的溶解。

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