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Effect of minor Ge addition on microstructure and localized corrosion behavior of Al-Zn-Mg alloy sheet

机译:轻微Ge添加对Al-Zn-Mg合金板微观结构和局部腐蚀行为的影响

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The effect of minor Ge addition on microstructure and localized corrosion behavior of Al-Zn-Mg alloy sheet was investigated. Ge leads to the formation of Mg2Ge phase, which can stimulate recrystallization nucleus, and a higher density of smaller Al3Zr dispersoids, which can inhibit recrystallization effectively. Consequently, a lower recrystallization fraction and smaller recrystallized grains are obtained in the Ge-added sheet. Ge reduces the density of eta' strengthening precipitates in the interior of grains but increase the length and spacing of eta precipitates at grain boundaries. The corrosion potential is similar for Mg2Ge phase and the matrix, and therefore Mg2Ge phase and the matrix around it do not dissolve during immersion in NaCl solution. Corrosion immersion test and electrochemical test results show that Ge can improve exfoliation corrosion resistance. The reason has been discussed based on the modification of microstructure caused by Ge addition.
机译:研究了次次Ge添加对Al-Zn-Mg合金板微观结构和局部腐蚀行为的影响。 GE导致形成Mg2Ge阶段,其可以刺激重结晶核,更高密度的较小的Al3zr分散体,其可以有效地抑制重结晶。 因此,在GE添加的片材中获得较低的重结晶级分和较小的再结晶晶粒。 GE降低了ETA强化沉淀物在谷物内部的沉淀物的密度,但增加了ETA沉淀物在晶界的长度和间距。 腐蚀电位对于Mg2Ge相和基质类似,因此Mg2Ge相和周围的基质在浸入NaCl溶液中不会溶解。 腐蚀浸渍试验和电化学测试结果表明,GE可以提高剥离耐腐蚀性。 已经基于GE添加引起的微观结构的修改来讨论的原因。

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