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In-situ investigation of the deformation behaviour of the wrought Mg base alloy AZ31 using energy dispersive synchrotron diffraction

机译:能量色散同步加速器衍射对变形Mg基合金AZ31变形行为的原位研究

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The deformation behavior of the magnesium base alloy AZ3 I was studied by means of energy dispersive diffraction using high energy synchrotron radiation. The investigations were performed at the EDDI-beamline operated by the Hahn-Meitner-lnstitute at Bessy II, Berlin. In-situ stress analyses were carried out for samples subjected to purely elastic as well as elasto-plastic 4-point-bending. In addition reversely loaded states were investigated. The results impressively illustrate the potential of the energy dispersive diffraction analysis processed in transmission mode for residual stress analysis of challenging material states. Inhomogeneous loading and residual stress distributions with respect to the bending height of the prestressed bars were determined for the highly textured material state indicating different predominant deformation mechanisms during tensile loading and compressive loading, respectively. After load inversion also the predominant deformation mechanisms reverse.
机译:利用高能同步加速器辐射,通过能量色散衍射研究了镁基合金AZ3 I的变形行为。研究是在柏林Bessy II的Hahn-Meitner-Institute所经营的EDDI-Beamline上进行的。对经受纯弹性以及弹塑性四点弯曲的样品进行了原位应力分析。另外,研究了反向加载状态。结果令人印象深刻地说明了在透射模式下进行的能量色散衍射分析对于挑战性材料状态的残余应力分析的潜力。对于高度纹理化的材料状态,确定了相对于预应力钢筋弯曲高度的不均匀载荷和残余应力分布,分别表示了拉伸载荷和压缩载荷期间不同的主要变形机制。载荷反演后,主要的变形机制也会逆转。

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