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Effect of secondary phase on the electromagnetic shielding effectiveness of magnesium alloy

机译:二次相对镁合金电磁屏蔽效能的影响

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摘要

The microstructure, electrical conductivity, and electromagnetic interference (EMI) shielding effectiveness (SE) of Mg-xZn and Mg-xSn (x = 3,5) alloys prepared under different rolling and heat treatment conditions were systematically investigated to understand the effect of secondary-phase orientation on the electromagnetic-shielding property of magnesium alloys. Alloys were rolled to form basal textures and then subjected to different durations of solid-solution treatment and aging to induce the precipitation of secondary-phase particles along a specific direction. Experimental results indicated that in Mg-Zn and Mg-Sn alloys, secondary phases precipitated along directions perpendicular and parallel to the basal plane, respectively. When the direction of the incident electromagnetic wave is perpendicular to the basal plane, precipitates in Mg-Sn alloy parallel to the basal plane improve SE. The increment in SE is mainly attributed to the improvement in the reflection and multiple reflection losses of incident electromagnetic waves, which are caused by increasing the amounts of precipitates with specific orientations. Mg-5Sn alloy subjected to 16 h of solution treatment at 480 °C and 60 h of artificial aging at 170 °C for 60 h exhibited the maximum value of 107–89 dB and maximum increment in SE of 13 dB at 1200 MHz.
机译:系统研究了在不同轧制和热处理条件下制备的Mg-xZn和Mg-xSn(x = 3,5)合金的微观结构,电导率和电磁干扰(EMI)屏蔽效能(SE),以了解二次轧制的效果相取向对镁合金电磁屏蔽性能的影响。轧制合金以形成基础织构,然后进行不同时间的固溶处理和时效处理,以诱导沿特定方向析出第二相颗粒。实验结果表明,在Mg-Zn和Mg-Sn合金中,第二相分别沿垂直于和平行于基面的方向析出。当入射电磁波的方向垂直于基面时,平行于基面的Mg-Sn合金中的析出物会提高SE。 SE的增加主要归因于入射电磁波的反射损失和多次反射损失的改善,这是由于增加了特定方向上的析出物数量而引起的。 Mg-5Sn合金在480 C固溶处理16 h,在170 C进行60 agingh人工时效60 h时,其最大值达到107-89 dB,在1200 MHz时SE的最大增加量为13 dB。

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