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Dynamic in-situ investigation of the texture and strain state within a plastically deformed solid AlMg3 torsion sample using high energy synchrotron radiation

机译:使用高能同步辐射辐射塑性变形固体ALMG3扭转样品内纹理和应变状态的动态原位研究

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A solid torsion sample made from non-age hardenable single-phase Al alloy AlMg3 is continuously deformed until failure. The low speed deformation with free ends is carried out at room temperature. For the first time, the dynamic in-situ development of the local texture and strain state within the sample are observed by means of a novel strain and texture scanning technique. The technique is based on the combination of a microfocussed high energy synchrotron beam, a conical slit system and a large area X-ray detector. The experimental results clearly show the deformation dependent evolution of axial forces (the so-called Swift effect). The texture development exhibits a change from the initial 111/100 fibre texture to the dominance of ideal torsion texture orientations.
机译:由非年龄硬化单相Al合金Almg3制成的固体扭转样品连续变形直至发生故障。具有自由端的低速变形在室温下进行。首次,通过一种新的应变和纹理扫描技术观察样品内局部纹理和应变状态的动态原位发展。该技术基于微耦合高能量同步梁,锥形狭缝系统和大面积X射线检测器的组合。实验结果清楚地表明了轴向力的变形依赖性演化(所谓的Swift效应)。纹理开发表现出初始111/100纤维纹理的变化,以理想扭转纹理方向的主导地位。

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