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首页> 外文期刊>Journal of Materials Engineering and Performance >Influence of Local Inhomogeneity of Thermomechanical Treatment Conditions on Microstructure Evolution in Aluminum Alloys
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Influence of Local Inhomogeneity of Thermomechanical Treatment Conditions on Microstructure Evolution in Aluminum Alloys

机译:热机械治疗条件局部不均匀性对铝合金微观结构演化的影响

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The influence of local inhomogeneity of the stress-strain condition on structure and texture evolution during thermomechanical treatment of aluminum alloysis studied in this work. For this purpose, laboratory rolling and plane strain tests that simulated roughing mill thermomechanical modes were performed. For all processes, the local inhomogeneity of structure evolution was estimated. For this purpose, x-ray texture analysis, EBSD and optical microscopy were used. Additionally, the calculations which allow to evaluate local inhomogeneity of stress-strain conditions for the each process were performed. The experimental results were compared with mathematical simulation output. They indicated structure and texture evolution inhomogeneities, especially during the plane strain and industrial rolling processes. In the plane strain test, typical local deformation zones occurred with different resulting grain size and texture effects than those observed in both rolling processes. This difference was mainly associated with different stress states, strain intensity and strain rate distribution throughout the deformation zone. This studydemonstrated that the inhomogeneity of these parameters has a strong impact on structure and texture evolution in the first stage of thermomechanical treatment. In the center layer, laboratory rolling could adequately generate the structure and texture effects observed during rolling of ingots in a commercial mill. Plane strain tests can generate useful results only in the case of adequate choice of samplegeometry.
机译:局部不均匀性应力 - 应变条件对本作研究铝合金热机械处理过程和纹理演化的影响。为此目的,进行模拟粗轧机热机械模式的实验室轧制和平面应变试验。对于所有过程,估计结构进化的局部不均匀性。为此目的,使用X射线纹理分析,EBSD和光学显微镜。另外,进行了允许评估每个过程的应力 - 应变条件的局部不均匀性的计算。将实验结果与数学模拟输出进行比较。它们表明了结构和纹理演化不均匀,特别是在平面应变和工业轧制工艺期间。在平面应变试验中,典型的局部变形区域发生不同的晶粒尺寸和纹理效果,而不是两种轧制过程中观察到的纹理效果。这种差异主要与整个变形区的不同应力状态,应变强度和应变速率分布相关。这项研究说明,这些参数的不均匀性对热机械治疗第一阶段的结构和质地演变具有很强的影响。在中心层,实验室滚动可以充分产生在商业厂中轧制期间观察到的结构和纹理效果。 Plane strain tests can generate useful results only in the case of adequate choice of samplegeometry.

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