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首页> 外文期刊>Materials Letters >Inhibiting effect of Benzotriazole on the stress corrosion cracking of Cu-27%Ni cupronickel and Cu-30%Zn brass in Mattsson's solution
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Inhibiting effect of Benzotriazole on the stress corrosion cracking of Cu-27%Ni cupronickel and Cu-30%Zn brass in Mattsson's solution

机译:苯并三唑对Mattsson溶液中Cu-27%Ni Cupronickel和Cu-30%Zn黄铜应力腐蚀开裂的影响

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The performance of Benzotriazole (BTA) as a stress corrosion cracking (SCC) inhibitor is investigated for Cu-30Zn and Cu-27Ni alloys in Mattsson & rsquo;s solution using electrochemical techniques and slow strain rate test (SSRT). With the addition of BTA, the polarization resistance increases for both alloys. Electrochemical impedance measurements show that BTA can form a protective film on the surface of the Cu-27Ni alloy and shifts the corrosion potential to nobler states. BTA also improves the corrosion resistance of the Cu-30Zn alloy by controlling the cathodic reaction rate and charge transfer resistance. SSRT results reveal that the presence of BTA decreases the susceptibility to SCC for both alloys; this improvement is more significant for Cu-27Ni alloy. Fractographic analysis after SSRT confirms that crack propagation regime is controlled by the BTA concentration. For Cu-27Ni alloy, fracture type changes from intergranular brittle to ductile as the protectiveness of BTA increases. Besides, BTA recovers the ductility by decreasing crack tip dissolution and growth as fewer cracks are observed around the necked area of fractured Cu-30Zn alloy tensile sample.(c) 2021 Elsevier B.V. All rights reserved.
机译:在Mattsson&Rsquo的Cu-30zn和Cu-27Ni合金中研究了苯并三唑(BTA)作为应力腐蚀裂解(SCC)抑制剂的性能。使用电化学技术和慢菌速率测试(SSRT)。随着BTA的添加,两种合金的偏振电阻增加。电化学阻抗测量结果表明,BTA可以在Cu-27Ni合金的表面上形成保护膜,并将腐蚀电位转移到更高贵的状态。 BTA还通过控制阴极反应速率和电荷转移阻力来提高Cu-30Zn合金的耐腐蚀性。 SSRT结果表明,BTA的存在降低了对两个合金的SCC的易感性;这种改进对于Cu-27Ni合金更为显着。 SSRT后的形式分析确认裂纹传播制度由BTA浓度控制。对于Cu-27Ni合金,随着BTA的保护性增加,骨折型从晶状体脆性变为延展性。此外,BTA通过降低裂纹尖端溶解和生长来恢复延展性,并且在裂缝Cu-30zn合金拉伸样品的颈部区域围绕颈部区域观察到裂缝的生长。(c)2021 Elsevier B.v.保留所有权利。

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