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The Effect of Rod-Shaped Long-Period Stacking Ordered Phases Evolution on Corrosion Behavior of Mg95.33Zn2Y2.67 Alloy

机译:棒状长周期堆积有序相演变对Mg95.33Zn2Y2.67合金腐蚀行为的影响

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摘要

The morphology evolution of long-period stacking ordered (LPSO) phases on corrosion behavior of Mg95.33Zn2Y2.67 alloy is investigated systematically during as-cast, pre-extrusion heat-treated, as-extruded and post-extrusion heat-treated conditions. The second phases in the as-cast alloy are only LPSO phases with a few Y particles. The pre-extrusion heat treatment changed LPSO phases from blocks into a rudimentary rod shape with lamellar structure, subsequently into fine fragments by extrusion, and then into a regular rod shape with lamellar structure followed by post-extrusion heat treatment. Immersion tests and electrochemical measurements in 3.5 wt % NaCl solution reveal that the post-extrusion heat-treated alloy has the best corrosion resistance with the lowest corrosion rate. This is attributed to the rod-shaped LPSO phases, which could hinder corrosion proceeding, and result in corrosion orientated along the direction of rods and forming relatively dense long-strip corrosion products. Our findings demonstrate that the improved corrosion resistance of magnesium alloys with LPSO phases can be tailored effectively by the proceeding technology and post-heat treatment.
机译:研究了铸态,挤压前热处理,挤压后和挤压后热处理条件下长周期堆积有序相(LPSO)对Mg95.33Zn2Y2.67合金腐蚀行为的形态演变。铸态合金中的第二相只是具有少量Y颗粒的LPSO相。挤压前热处理将LPSO相从嵌段转变为具有层状结构的基本棒状,随后通过挤压转变成细小碎片,然后变为具有层状结构的规则棒状,然后进行挤压后热处理。在3.5 wt%的NaCl溶液中进行浸入测试和电化学测量表明,挤压后热处理的合金具有最佳的耐腐蚀性和最低的腐蚀速率。这归因于棒状的LPSO相,这会阻碍腐蚀的进行,并导致腐蚀沿着棒的方向定向并形成相对致密的长条腐蚀产物。我们的发现表明,可以通过后续技术和后热处理有效地定制具有LPSO相的镁合金的改进的耐腐蚀性。

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