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首页> 外文期刊>Materials Characterization >Microstructure evolution of a SIMA processed AZ91D magnesium alloy based on repetitive upsetting-extrusion (RUE) process
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Microstructure evolution of a SIMA processed AZ91D magnesium alloy based on repetitive upsetting-extrusion (RUE) process

机译:基于重复镦粗挤出(RUE)工艺的SIMA加工AZ91D镁合金的微观结构演化

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Repetitive upsetting-extrusion (RUE) was introduced into the strain induced melt activation (SIMA) process. The semi-solid feedstock of AZ91D magnesium alloy with superior thixotropic features was successfully prepared by the modified SIMA process. Prior to partial remelting, the process involving the application of RUE pre-deformation to as-cast alloy was conducted. Consequently, a severely strained structure consisting of fine alpha-Mg grains and highly fragmented beta-Mg17Al12 particles was obtained. During the subsequent isothermal treatment between the solidus and the liquidus, the microstructure evolution of the RUE processed alloys subjected to various deformation cycles and temperatures was investigated at the temperature range of 550-580 degrees C for various durations. The results indicated that the RUE-based SIMA process was a valid route for preparing high-quality thixotropic materials, and the isothermally treated microstructure consisted of fine solid globules surrounded by uniform liquid films. The microstructure evolution model for the modified SIMA process was proposed with reference to the micrograph examination. And the mechanisms responsible for the spheroidization and coarsening of the globular structure were discussed in detail. Further study on effective parameters clarified that the thixotropic features of semi-solid slurry were affected by the parameters of RUE process as well as the isothermal treatment process. And the desirable globular structure, featured by fine, homogeneous and well globularized solid grains and continuous liquid films, was obtained by three-cycle RUE process at 285 degrees C followed by isothermal treatment at 560 C for 15 min. (C) 2016 Elsevier Inc. All rights reserved.
机译:将重复的镦锻 - 挤出(RUE)引入菌株诱导的熔体活化(SIMA)过程中。通过改性的SIMA工艺成功地制备了具有优异触变性特征的AZ91D镁合金的半固固体原料。在部分重熔之前,进行了涉及将Rue预变形应用于铸造合金的方法。因此,获得了由细α-Mg晶粒和高碎裂的β-Mg17A112颗粒组成的严重应变结构。在固体和液体之间的随后等温处理期间,在550-580℃的温度范围内研究了经受各种变形循环和温度的戒指加工合金的微观结构演化。结果表明,基于RUE的SIMA方法是制备高质量触变性材料的有效途径,并且等温处理的微观结构由由均匀的液体膜包围的细固体球菌组成。提出了用于显微照片检查改进的SIMA工艺的微观结构演化模型。详细讨论了负责球状化和粗化的机制。进一步研究有效参数澄清了半固体浆料的触变特征受Rue工艺参数以及等温处理过程的影响。通过精细,均匀且良好的球状固体晶粒和连续液体膜特征的所需球状结构通过三循环级法在285摄氏度下进行,然后在560℃下进行15分钟。 (c)2016年Elsevier Inc.保留所有权利。

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