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Stress Corrosion Cracking Behavior of Alloy 600 Coupled to Magnetite under High-Temperature Caustic Conditions

机译:高温苛性条件下耦合到磁铁矿的合金600的应力腐蚀开裂行为

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摘要

This study aims to investigate and explain the magnetite-accelerated stress corrosion cracking phenomenon of Alloy 600 under caustic conditions, based on the electrochemical behavior. After the SCC test that lasted for 300 h, no cracks were observed in any of the magnetite-free specimens, whereas cracks with a depth of 150 to 280 μm were generated in all the magnetite-deposited specimens. Furthermore, the electrochemical behavior of magnetite and Alloy 600 demonstrated that Alloy 600 behaved as an anode in the coupling system with magnetite. In this coupling system, the electrochemical potential of Alloy 600 can be shifted into the range potentially susceptible to stress corrosion cracking.
机译:本研究旨在基于电化学行为来研究和解释苛性病症下合金600的磁铁矿加速应力腐蚀裂纹现象。在持续300小时的SCC试验之后,在任何无磁铁矿样本中没有观察到裂缝,而在所有磁铁矿沉积的标本中产生深度为150至280μm的裂缝。此外,磁铁矿和合金600的电化学行为证明了合金600在具有磁铁矿的耦合系统中的阳极表现为阳极。在该耦合系统中,合金600的电化学电位可以转移到可能易受应力腐蚀裂纹的范围内。

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