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Experimental and numerical investigations of the plastic deformation during multi-pass asymmetric and symmetric rolling of high-strength aluminum alloys

机译:高强度铝合金多道次不对称和对称轧制过程中塑性变形的实验和数值研究

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For understanding the distribution of plastic deformation induced by asymmetric rolling (ASR), multi-pass ASR and symmetric rolling (SR) experiments combined with the finite element simulation were used for high-strength aluminum alloy in the present study. The influence of reduction per-pass on the shear / effective strain distributions were studied via different ASR processes. By measuring the shear angle (θ, the angle between the reference mark before and after rolling) of rolled sheets, redundant shear strain and equivalent strain were calculated. It is shown that with equal total thickness reduction for ASR and SR, ASR can induce much more shear deformation through the thickness. By calculating the evolution of redundant shear strain and total equivalent strain for different ASR routines, it indicates that small pass reduction could be much favorable to the strain accumulation than that of the large pass reduction under a same total reduction in ASR process. Also, the influence of shear stress on the strain distribution and the through-thickness strain distribution were studied and evaluated with FEM analyses.
机译:为了了解不对称轧制引起的塑性变形的分布,本研究采用高强度铝合金的多道次ASR和对称轧制(SR)实验与有限元模拟相结合的方法。通过不同的ASR工艺研究了每遍减量对剪切/有效应变分布的影响。通过测量轧制板的剪切角(θ,轧制前后的基准标记之间的角度),计算出多余的剪切应变和等效应变。结果表明,在ASR和SR的总厚度减小相等的情况下,ASR可以在厚度范围内引起更多的剪切变形。通过计算不同ASR程序的冗余剪切应变和总当量应变的演变,表明在相同的ASR工艺总压下相同的情况下,小通过比大通过减少比大通过减少更有利于应变累积。此外,研究了剪切应力对应变分布和全厚度应变分布的影响,并进行了有限元分析。

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