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首页> 外文期刊>材料と環境 >The Stress Corrosion Cracking Susceptibility of Aluminum Brass in Dilute Nitrite Solutions
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The Stress Corrosion Cracking Susceptibility of Aluminum Brass in Dilute Nitrite Solutions

机译:铝黄铜稀释亚硝酸盐溶液中的应力腐蚀裂纹易感性

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The stress corrosion cracking (SCC) susceptibility of copper alloys in dilute NaNO_2 has been investigated using slow strain rate test (SSRT), constant load test and electrochemical measurement The SCC susceptibility examination in ammonia environment was also performed. As a result, aluminum brass showed high SCC susceptibility in low concentration of NaNO_2 about 100 ppm. The addition of the ammonium ion, which was reported to enhance SCC susceptibility, revealed to reduce the SCC susceptibility. The cause of increase in SCC susceptibility was attributed to the characteristics of nitrite ion. Addition of benzotriazole (BTA), which is widely used to reduce general corrosion, was studied to find the effectiveness of BTA as an inhibitor of SCC in NaNO_2 solutions. The formation of protective film, which controls an anode reaction, was attributed to the inhibition of the SCC.
机译:使用慢菌速率试验(SSRT)研究了稀纳米铜合金中铜合金的应力腐蚀裂纹(SCC)易感性,恒定载荷试验和电化学测量也进行了SCC敏感性检查。 结果,铝黄铜显示出高浓度的纳米α2约100ppm的高SCC敏感性。 据报道,添加铵离子以增强SCC敏感性,以降低SCC易感性。 SCC易感性增加的原因归因于亚硝酸盐离子的特征。 研究了苯并三唑(BTA),广泛用于减少一般腐蚀,以发现BTA作为纳米溶液中SCC抑制剂的有效性。 控制阳极反应的保护膜的形成归因于SCC的抑制。

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