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Single-patch surfaces for tool shape design and finite element analysis of hot extrusion

机译:用于热挤压的刀具形状设计和有限元分析的单面曲面

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摘要

In this paper, a new mathematical representation of single-patch surfaces is reported. With this representation, complex tool shapes of metal forming can be described with a single surface patch which is prescribed by the boundary of the die at its entry and exit. For non-linearly converging die-surfaces, the die shapes can be effectively altered by changing the coefficients of the tangential boundary conditions. Using the obtained die-surfaces, the finite element analysis of the extrusion of hot metals from a round billet to a hexagon workpiece was carried out. A comparison of the extrusion forces and the grain sizes for the formed parts was made for the linearly and non-linearly converging dies. It was found that the non-linearly converging dies could reduce the deformation resistance remarkably, and produce more uniform grains than those using the linearly converging dies.
机译:在本文中,报道了一种新的单面曲面的数学表示形式。通过这种表示,可以用单个表面补丁来描述金属成形的复杂工具形状,该单个表面补丁由模具在其入口和出口处的边界规定。对于非线性会聚的模具表面,可以通过更改切向边界条件的系数来有效地更改模具形状。使用获得的模具表面,对铁水从圆坯到六角形工件的挤压进行了有限元分析。比较了线性和非线性会聚模具的挤压力和成型零件的晶粒尺寸。发现与使用线性会聚模具的模具相比,非线性会聚模具可显着降低变形阻力,并且产生更均匀的晶粒。

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