Highl'/> Upper bound analysis of a shape-dependent criterion for closing central rectangular defects during hot rolling
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Upper bound analysis of a shape-dependent criterion for closing central rectangular defects during hot rolling

机译:形状相关准则的热轧过程中闭合中心矩形缺陷的上限分析

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HighlightsA shape-dependent closure criterion for closing central defects during hot plate rolling is proposed.The decrease in initial plate thickness or the increases in relative reduction and in roller radius are in favor of defect closure.A defect tends to be closed well if the actual shape factor reaches or exceeds the corresponding critical shape factor.A flatter defect with larger value of aspect ratio can be closed much easier.AbstractA triangular velocity field for central defect closure is proposed in this paper. With the proposed velocity field, the minimum upper bound power is calculated. Then, the stress state coefficient as a function of defect thicknessδand aspect ratioηis obtained by the upper bound theorem. By applying the limit condition of the stress state coefficient with respect to defect size and letting the defect size be zero, the analytical solution of critical shape factor depending on aspect ratio solely is derived from a quadratic equation. Ultimately, a shape-dependent criterion for closing rectangular defects during hot rolling is established by relating the derived critical shape factor to the actual one. It is shown that as the aspect ratio increases, the critical defect size decreases and the applied energy required for closing central defects increases. The increases in relative reduction and roller radius or the decrease in initial plate thickness are in favor of defect closure. Validation of the present result with available simulation result and a current rolling schedule shows that the present analytical criterion matches well with the simulation result and can be used for optimizing rolling parameters to close central defects. Experimental research in laboratory shows that a defect can be closed well if the actual shape factor reaches or exceeds the corresponding critical shape factor.
机译: 突出显示 提出了一种形状相关的闭合准则,用于在热轧过程中闭合中心缺陷。 初始板厚的减少或相对压下和压下的增加滚子半径有利于闭合缺陷。 如果实际形状系数达到或超过相应的临界形状事实,缺陷往往会被很好地闭合或。 纵横比值较大的扁平缺陷可以更容易解决。 摘要 本文提出了用于封闭中心缺陷的三角形速度场。利用建议的速度场,可以计算出最小上限功率。然后,通过上限定理获得应力状态系数与缺陷厚度δ和长宽比η的关系。通过应用相对于缺陷尺寸的应力状态系数的极限条件并使缺陷尺寸为零,可以仅从二次方程中得出仅取决于长宽比的临界形状因子的解析解。最终,通过将导出的临界形状因数与实际形状因数相关联,建立了一种在热轧过程中闭合矩形缺陷的形状依存性标准。结果表明,随着长宽比的增加,关键缺陷的尺寸会减小,闭合中心缺陷所需的施加能量也会增加。相对减小和辊半径的增加或初始板厚度的减小有利于缺陷封闭。用可用的仿真结果和当前的轧制时间表对当前结果进行验证,表明当前的分析标准与仿真结果非常吻合,可用于优化轧制参数以消除中心缺陷。实验室实验表明,如果实际形状因子达到或超过相应的临界形状因子,则可以很好地封闭缺陷。

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