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Improve sensitization and corrosion resistance of an Al-Mg alloy by optimization of grain boundaries

机译:通过优化晶界提高Al-Mg合金的敏化性和耐腐蚀性

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摘要

The sensitization and subsequent intergranular corrosion of Al-5.3 wt.% Mg alloy has been shown to be an important factor in stress corrosion cracking of Al-Mg alloys. Understanding sensitization requires the review of grain boundary character on the precipitation process which can assist in developing and designing alloys with improved corrosion resistance. This study shows that the degree of precipitation in Al-Mg alloy is dependent on grain boundary misorientation angle, adjacent grain boundary planes and grain boundary types. The results show that the misorientation angle is the most important factor influencing precipitation in grain boundaries of the Al-Mg alloy. Low angle grain boundaries (≤15°) have better immunity to precipitation and grain boundary acid attack. High angle grain boundaries (>15°) are vulnerable to grain boundary acid attack. Grain boundaries with adjacent plane orientations near to {100} have potential for immunity to precipitation and grain boundary acid attack. This work shows that low Σ (Σ ≤ 29) coincident site lattice (CSL) grain boundaries have thinner β precipitates. Modified nitric acid mass loss test and polarization test demonstrated that the global corrosion resistance of sputtered Al-Mg alloy is enhanced. This may be attributed to the increased fractions of low Σ (Σ ≤ 29) CSL grain boundaries after sputtering.
机译:Al-5.3wt。%Mg合金的敏化和随后的晶间腐蚀已被证明是Al-Mg合金应力腐蚀开裂的重要因素。了解敏化度需要审查沉淀过程中的晶界特征,这有助于开发和设计具有改善的耐蚀性的合金。研究表明,Al-Mg合金中的析出程度取决于晶界错位角,相邻晶界平面和晶界类型。结果表明,取向差角是影响Al-Mg合金晶界析出的最重要因素。低角度晶界(≤15°)具有更好的抗沉淀和抗晶界酸侵蚀的能力。高角度晶界(> 15°)易受晶界酸侵蚀。具有邻近{100}的相邻平面取向的晶界具有抵抗沉淀和晶界酸侵蚀的能力。这项工作表明,低Σ(Σ≤29)重合点晶格(CSL)晶界具有更薄的β析出物。改进的硝酸质量损失试验和极化试验表明,溅射铝镁合金的整体耐蚀性得到提高。这可能归因于溅射后低Σ(Σ≤29)CSL晶界分数的增加。

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