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Semisolid Microstructural Evolution of Equal Channel Angular Extruded Mg-AI Alloy During Partial Remelting

机译:等通道角挤压Mg-Al合金部分重熔过程中的半固态组织演变

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Using equal channel angular extrusion (ECAE) process, which combine the advantages of grain refinement and induced strain, for preparing semisolid billets is a relatively new Strain Induced Melt Activation(SIMA)method. This paper investigates the remelting and semisolid isothermal holding behavior of Mg-9A1 alloy after ECAE processing at 350°C. It has been found that 2 passes ECAE-ed billets are qualified for obtaining spherical grains after remelting and isothermal holding treatment. Increasing the ECAE process from 2 passes to 8 passes has no further significant effects on the size and roundness of the solid particles at the semisolid state. The effects of temperature and isothermal holding time on microstructural evolution have also been investigated. In addition, the solid solution treatment before the ECAE processing affected greatly on microstructural evolution of the alloy during ECAE processing and thus the following remelting and isothermal holding behavior. The Mg_(17)Al_(12) precipitates were uniformly decomposed from the saturated solid solution in the solutionized samples during ECAE processing. The coalescence of grains together with the self-blocking effect generated more entrapped liquid in the solutionized sample at semisolid state. Moreover, the solid particles of solutionized samples have bigger size and grow faster, which are detrimental to SSM processability.
机译:结合晶粒细化和诱发应变的优点的等通道角挤压(ECAE)工艺制备半固态坯料是一种相对较新的应变诱导熔体活化(SIMA)方法。本文研究了ECAE在350°C处理后Mg-9A1合金的重熔和半固态等温保持行为。已经发现,经过2次通过ECAE加工的坯料有资格在重熔和等温保持处理后获得球形晶粒。将ECAE过程从2遍增加到8遍对半固态下的固体颗粒的大小和圆度没有进一步的显着影响。还研究了温度和恒温时间对微观组织演变的影响。此外,在ECAE加工之前进行固溶处理对ECAE加工期间合金的微观结构演变有很大影响,并因此影响随后的重熔和等温保持行为。在ECAE处理过程中,Mg_(17)Al_(12)沉淀物从固溶样品中的饱和固溶体中均匀分解。颗粒的聚结和自粘效应在半固态状态下在固溶样品中产生了更多的残留液体。此外,固溶样品的固体颗粒尺寸较大且生长较快,这不利于SSM的可加工性。

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