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Application of a Special Profile Deforming Tool for Intensification of the Extrusion Process in Radial Matrixes

机译:特殊型材变形工具在径向矩阵中加强挤出过程的应用

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Calculated analysis of the extraction of axisymmetric hollow products from low carbon steel using a special profile deforming tool were carried out by the Finite Element Method. An elastic-plastic model of the workpiece metal was used. Coulomb friction, hardening, deformation rate and thermal effect during cold forming are considered. A special profile of the tool is a wavy surface, which is formed by the intersection of tori with the same diameter of the section, located with a certain step. Special profile of the Matrix and the clamp provided a decrease in the effect of friction on the drawing force. The special profile punch creates a pulling force behind the wall of the deformed?workpiece?in the gap between the matrix and the punch due to the filling of cavities with metal on its side-surface. Unloading of the bottom of the workpiece occurs by the amount of pulling force. The smoothing of the protrusions on the inner surface of the deformed workpiece is carried out during the reverse movement of the punch of a special profile and removing the product. The use of a special profile tool has reduced the number of draw transitions for low-carbon steel products by half.? At the same time, it was possible to draw with thinning the wall, which provided a decrease in the wall thickness variations. Possibility of extraction by a punch with a radius of rounding, which is two times less in comparison with the extraction of a traditional tool. This eliminates the additional operation of calibrating products after drawing. For the considered options for drawing with different gaps between the die and the punch, the dependences of the drawing forces, the forces on the clamps and the forces of removing products from the punches are established. The stress-strain state of the workpieces and the temperature of the deformed metal were revealed. Particular attention is paid to axial tensile stresses, which are the main reason for the separation of the bottom of the product. The shape and dimensions of the products after drawing are determined.
机译:通过有限元法进行了使用特殊型材变形工具从低碳钢提取轴对称中空产物的提取分析。使用工件金属的弹性塑料模型。考虑了冷成形期间的库仑摩擦,硬化,变形率和热效果。该工具的特殊轮廓是波浪表面,其由具有相同截面直径的Tori形成,该部分具有一定步骤。矩阵的特殊轮廓和夹具提供了摩擦对拉伸力的影响。特殊型材打孔在变形的墙壁后面产生拉力,在其侧面上具有金属的空腔填充,在基质和冲头之间的间隙中。卸载工件的底部发生在拉力的量。在特殊型材的冲床的反向运动期间执行在变形工件的内表面上的突起在变形工件的内表面上进行平滑,并去除产品。使用特殊型材工具的使用减少了低碳钢产品的绘制过渡的数量一半。同时,可以用稀疏壁绘制,这提供了壁厚变化的减小。与圆角半径的冲头提取的可能性,与传统工具的提取相比,圆角的圆角较小。这消除了绘图后校准产品的额外操作。对于在模具和冲头之间用不同间隙绘制不同间隙的考虑选项,建立了拉伸力的依赖性,夹具上的力和从冲头中除去产品的力。揭示了工件的应力 - 应变状态和变形金属的温度。特别注意轴向拉伸应力,这是分离产品底部的主要原因。确定绘图后的产品的形状和尺寸。

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