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Microstructure development and texture evolution of aluminum multi-port extrusion tube during the porthole die extrusion

机译:孔孔模具挤出过程中铝多端口挤压管的微观结构发展及纹理演化

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Aluminum multi-port extrusion tube is processed by the porthole die extrusion and the internal tube walls are welded through the solid state metallurgical bonding. In order to observe the development of grains and their orientations under severe plastic deformation and solid state welding, the extrusion butt together with the die is quenched immediately after extrusion to preserve the grain structure in the processing. The forming histories of selected material points are obtained by analyzing the optical microscopy graph. The evolution of the microstructure along the forming path is characterized by electro bacicscattered diffraction. It is found that geometrical dynamic recrystallization happens in the process. Grains are elongated, scattered at the transition zone and shear intensive zone, and then pinched off when they are pushed out from the die orifice. The shear-type orientations are predominant at the surface layer on the longitudinal section of the tube web and have penetrated into the intermediate layer. The rolling-type orientations are formed at the central layer. Texture gradient through the thickness of the tube web is observed. And cube orientated grains are found at the seam weld region. (C) 2016 Elsevier Inc. All rights reserved.
机译:铝制多端口挤出管由舷窗模具挤出处理,内管壁通过固态冶金粘合焊接。为了观察谷物在严重的塑性变形和固态焊接下的谷物和定向的发展,在挤出后立即淬火挤出杆,以保持加工中的晶粒结构。通过分析光学显微镜图获得所选材料点的形成历史。沿着成形路径的微观结构的演化的特征在于电杆菌衍射。发现在过程中发生了几何动态重结晶。晶粒伸长,散落在过渡区和剪切密集区域,然后在从模孔推出时夹紧。剪切型取向在管幅的纵向截面上的表面层处是主要的,并且已经穿透到中间层中。滚动型取向形成在中心层。通过管网的厚度观察到纹理梯度。在接缝焊接区域找到和立方体取向晶粒。 (c)2016年Elsevier Inc.保留所有权利。

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