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Modeling of the stamping process of box-type forging

机译:箱式锻造冲压过程的建模

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A new mathematical model for manufacturing rectangular of box-type forgings is proposed. Along the outer contour of the forging there are walls with thickness comparable to the thickness of the bottom part of the forging. To calculate the power parameters of the technological process under study, the authors use the theory of flow in a relatively thin plastic layer as described by A. A. Ilyushin. A thickness-averaged two-dimensional mathematical model of the plastic layer spreading process is described by nonlinear partial differential equations of the first order with respect to the contact pressure and the flow velocity components. For a metal that is in a flat deformed state, the condition of complete plasticity is assumed, under which the tangent stresses in the layer are small in comparison with normal stresses and they can be ignored, and two normal stresses in the cross section can be considered equal in the first approximation. The third normal stress is equal to the contact pressure of the layer on the tool. In this case, it is sufficient to set a single boundary condition on the border of the regions.
机译:提出了一种用于制造箱式锻件矩形的新数学模型。沿着锻造的外轮廓,存在厚度与锻造的底部的厚度相当的壁。为了计算研究中的技术过程的功率参数,作者使用相对薄的塑料层的流动理论,如A.A.Alyushin所述。通过相对于接触压力和流速分量的第一阶的非线性偏微分方程描述塑料层扩散过程的厚度平均二维数学模型。对于处于扁平变形状态的金属,假设完全可塑性的条件,其中层中的切线应力与正常应力相比,它们可以忽略,并且横截面中的两个正常应力可以是在第一个近似下被认为是相等的。第三正常应力等于工具上的层的接触压力。在这种情况下,在区域的边界上设置单个边界条件就足够了。

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