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首页> 外文期刊>Materials transactions >Influence of Zn Content on Grain Boundary Precipitates on Stress Corrosion Cracking of Al-Zn-Mg Alloys under Environments Containing Chloride Solutions
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Influence of Zn Content on Grain Boundary Precipitates on Stress Corrosion Cracking of Al-Zn-Mg Alloys under Environments Containing Chloride Solutions

机译:Zn含量对含氯溶液环境下抗氧化物合金应力腐蚀裂纹的影响

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摘要

A commercial AA7075 (Zn: 5.4 mass%) and experimental Al-Zn-Mg alloys with 8.5 or 10.5 mass% of Zn were used to investigate the influence of Zn in the alloys on the composition of grain boundary precipitates and the susceptibility to the stress corrosion cracking (SCC) of the alloys in NaCl solutions. The stress-strain curves of the alloys under the slow strain rate test (SSRT) demonstrated that the susceptibility of the Al-Zn-Mg alloys to SCC increased as the Zn content increased from 5.4 to 8.5 mass% in the alloys. The susceptibility of the Al-10.5Zn-Mg alloy to SCC was not evaluated because of its brittleness. A coarse mainly Zn-containing precipitate was observed at the grain boundary only in the Al-8.5Zn-Mg alloy by STEM/EDS analysis. Calculated Al-Zn-Mg-Cu-Cr phase diagram predicts that MgZn2 is appeared in the Al-8.5Zn-Mg alloy but not in the Al-5.4Zn-Mg alloy. Anodic polarization measurements of the alloys demonstrated that the dissolution current density increased and the pitting corrosion potential decreased as the Zn content in the alloys increased. The generation of active grain boundary precipitates, such as the mainly Zn-containing precipitates, appears to lead to a higher susceptibility to SCC in Al-Zn-Mg alloys.
机译:使用具有8.5或10.5质量%Zn的商业AA7075(Zn:5.4质量%)和实验性Al-Zn-Mg合金用于研究Zn在晶界组成上的合金中的影响及对应力的易感性NaCl溶液中合金的腐蚀裂化(SCC)。在慢菌速率试验(SSRT)下合金的应力 - 应变曲线证明,随着Zn含量从合金中的5.4%增加到8.5质量%,Al-Zn-Mg合金对SCC的敏感性增加。由于其脆性,不评估Al-10.5Zn-Mg合金对SCC的敏感性。通过茎/ EDS分析在Al-8.5Zn-Mg合金中仅在晶界处观察到含含锌的沉淀物。计算出的Al-Zn-Mg-Cu-Cr相图预测,MgZN2出现在Al-8.5Zn-Mg合金中但不在Al-5.4Zn-Mg合金中。合金的阳极偏振测量表明,随着合金中的Zn含量增加,溶解电流密度增加并且蚀腐蚀电位降低。活性晶界沉淀物的产生,例如主要含Zn的沉淀物,似乎导致在Al-Zn-Mg合金中对SCC的易感性较高。

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