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Influence of Die Geometry on Drawing Force in Cold Drawing of Steel Tubes using Numerical Simulation

机译:用数值模拟将模具几何对钢管冷绘绘制力的影响

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In Zeleziarne Podbrezova, cold drawing process is the final process in production of precision seamless steel tubes. This particular technology utilizes multiple drawing sequences and intermediate annealing. From the physical point of view, it is nothing just the optimal use of plastic deformation during cold forming that grants the final tube dimensions. The drawing process itself is significantly affected by physical and metallurgical properties of the tube, the tool geometry, the lubrication, and the sequence of operations. This paper deals with the relationship between the tool geometry and the drawing force. The FEM-based numerical model of the process was prepared in DEFORM 3D in order to optimize the geometry of the die; eight die geometries were investigated in total. The numerical simulation itself considered a hot rolled hollow at 032 mm × 4 mm, cold drawn into 025 mm× 4 mm using die drawing (sinking) sequences only. Calculated drawing force showed that the change of the run-in angle of the die led to a decrease of the drawing force.
机译:在Zeleziarne波德布雷佐瓦,冷拉伸过程是在生产精密无缝钢管的最终处理。这种特殊的技术利用多个绘图序列和中间退火。从物理上看,它是没有什么只是冷成形,授予最终管尺寸中最佳利用塑性变形。绘图处理本身是由管中,工具的几何形状,润滑,并且操作的序列的物理和冶金特性显著影响。本文从刀具几何形状和拉拔力之间的关系交易。在DEFORM 3D制备以优化模具的几何形状的过程的基于FEM的数值模型; 8件模具的几何形状,共进行了调查。数值模拟本身认为是一种热轧在032毫米中空×4毫米,使用模拉丝(下沉)仅冷序列吸入025毫米×4毫米。计算拉拔力表明,磨合导致拉拔力的降低芯片的角度的变化。

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