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Evaluation and optimisation of micro flexible rolling process parameters by orthogonal trial design

机译:正交试验设计的微柔性轧制工艺参数的评价与优化

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As the strip thickness is in the range of sub-millimetre in micro flexible rolling, springback ratio in thickness direction has a significant impact on product quality, which is influenced by various process parameters during forming process. This paper focuses on performing a numerical and experimental investigation to evaluate the effects of initial strip thickness, friction coefficient and rolling speed on the springback ratio in thickness direction during the micro flexible rolling process with reductions of 20 to 50% using orthogonal trial design, and wherein the three-level factors orthogonal array is chosen and nine representative orthogonal trials for each reduction have been implemented. With the significance of each process parameter for each reduction identified by variance analysis, an optimum proposal for each reduction to obtain the minimum springback ratio has been determined numerically, which is afterwards confirmed by experimental data. Moreover, a qualitative estimate of the influences of process parameters on the rolling force, as well as a quantitative analysis of the relationship between the length of thickness transition zone and the parameter level have also been carried out with reference to the obtained results.
机译:随着条带厚度在微柔性轧制中的亚毫米范围内,厚度方向上的回光比对产品质量产生显着影响,这在形成过程中受各种工艺参数的影响。本文侧重于执行数值和实验研究,以评估初始条带厚度,摩擦系数和滚动速度在微柔性轧制过程中厚度方向上的回弹比的影响,使用正交试验设计减少20至50%,其中选择了三级因子正交阵列,并实施了每次减少的九个代表性正交试验。在通过方差分析识别的每个减少的每个过程参数的重要性,每次减少获得最小回弹比的最佳提议已经在数值上确定,之后通过实验数据确认。此外,还参照所得到的结果,对所得到的结果进行了对轧制力对轧制力的影响以及对厚度过渡区长度与参数水平的关系的定量估计。

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