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Modelling of drawing and rolling of high carbon flat wires

机译:高碳扁线的绘图和滚动建模

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摘要

In order to meet customer requirements, it is necessary to develop new flat wires with a high tensile strength and a high width/thickness ratio. These products are manufactured from wire rod. The first step is to draw the wire until we have the required mechanical properties and required surface area of the section. After this, the wire is rolled from a round to a rectangular section. During the flat rolling process it can be reduced by more than 50%. Then the wire is exposed to a high level of stress during this process. Modelling allows us to predetermine this stress level, taking into account the final dimensions and the mechanical properties, thus optimising both rolling and drawing process. Forge2005 was used in order to simulate these processes. The aim of this study is to determine the value of residual stresses after drawing and so to optimise rolling. Indeed, the highest stress values are reached at this step of the process by changing the section of the wire from a round to a rectangular one. In order to evaluate the stress value accuracy for high strain levels, a behaviour law has been identified. This is a result of tensile tests carried out at each step of the drawing process. Finally, a multi-axial damage criterion was implemented using Forge2005. The optimisation of the rolling is directly linked to the minimisation of this criterion.
机译:为了满足客户要求,有必要开发具有高抗拉强度和高宽度/厚度比的新型扁平线。这些产品由线材制造。第一步是绘制电线,直到我们具有所需的机械性能和所需的部分表面积。在此之后,将线从圆形到矩形部分滚动。在扁平轧制过程中,它可以减少50%以上。然后在该过程中,电线暴露于高水平的应力。建模允许我们预先确定这种应力水平,考虑到最终尺寸和机械性能,从而优化轧制和拉伸过程。使用Forge2005以模拟这些过程。本研究的目的是确定拉伸后残留应力的值等,以优化轧制。实际上,通过将电线的截面从圆形到矩形的截面改变电线的截面来达到最高的应力值。为了评估高应变水平的应力值准确度,已经确定了行为法。这是在拉伸过程的每个步骤中进行的拉伸试验的结果。最后,使用Forge2005实现了多轴损伤标准。轧制的优化与该标准的最小化直接相关。

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