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首页> 外文期刊>Diffusion and Defect Data. Solid State Data, Part B. Solid State Phenomena >Microstructure Evolution and Coarsening Mechanism of 7075 Semi-Solid Aluminum Alloy Pre-Deformed by ECAP Method
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Microstructure Evolution and Coarsening Mechanism of 7075 Semi-Solid Aluminum Alloy Pre-Deformed by ECAP Method

机译:ECAP法预变形7075半固态铝合金的组织演变及粗化机理

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摘要

To investigate the influence of refined grains on the microstructure of 7075 aluminum alloy in semi-solid state, a new strain induced melting activation (SIMA) method was put forward containing two main stages: pre-deformation with equal channel angular pressing (ECAP) method and isothermally holding in the semi-solid temperature range. The breaking up and growth mechanisms of the grains and kinetics of equiaxed grains coarsening during the semi-solid holding were investigated. The results showed that the average grain size after ECAP extrusion decreased significantly, e.g., microstructure with average globular diameter less than 5μm was achieved after four-pass ECAP extrusion. Obvious grain coarsening had been found during isothermal holding in the semi-solid state and the roundness of the grains increased with the increasing holding time. The proper microstructure of 66.8μm in diameter and 1.22 in shape factor was obtained under proper soaking condition (at 590°C for 15 min). Two coarsening mechanisms, namely, coalescence in lower liquid fraction and Ostwald ripening in higher liquid fraction contributed to the grain growth process.
机译:为了研究细化晶粒对7075铝合金半固态组织的影响,提出了一种新的应变诱导熔化活化(SIMA)方法,该方法包括两个主要阶段:等通道角挤压预变形(ECAP)方法。并且等温地保持在半固态温度范围内。研究了半固态固持过程中晶粒的破裂和长大的机理以及等轴晶粒的粗化动力学。结果表明,ECAP挤压后的平均晶粒尺寸显着降低,例如四次ECAP挤压后获得了平均球状直径小于5μm的显微组织。在半固态等温保持过程中发现明显的晶粒粗化,并且随着保持时间的增加,晶粒的圆度增加。在适当的浸泡条件下(在590°C下15分钟),可以获得直径为66.8μm且形状系数为1.22的适当显微组织。两种粗化机制,即较低液体分数的聚结和较高液体分数的奥斯特瓦尔德熟化促成了晶粒长大。

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