首页> 外文会议>8th Biennial Conference on Engineering Systems Design and Analysis 2006 vol.4 >FEM SIMULATION OF THE WHOLE CIRCLE OF ALUMINUM HOT EXTRUSION USING CIRCULAR DIES WITH DIFFERENT EXTRUSION ANGLE
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FEM SIMULATION OF THE WHOLE CIRCLE OF ALUMINUM HOT EXTRUSION USING CIRCULAR DIES WITH DIFFERENT EXTRUSION ANGLE

机译:使用不同挤压角度的圆形模具对铝热挤压整个循环过程的有限元模拟

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One of the most typical forming processes used for the production of long, straight semi-finished products in the form of various section geometries is extrusion. Hot extrusion is a thermo-mechanical process whish involves complicated interactions between process parameters, tooling and deforming material /1,2/. In the present paper, FEM simulation is performed in the aluminum extrusion using circular dies with different geometries in order to extract quantitative simulating results regarding various forming parameters. Most specifically the parameters that are investigated are the die design-geometry, the process parameters (i.e. ram speed, container temperature, billet temperature) and the product quality (i.e. extruded shape, surface condition). The finite element modeling is based on 3D simulation tools using the DEFORM 3D software /3-5/. The used work piece is the aluminum AA6061 in cylindrical form with a diameter of 14 mm. The used material for the extrusion die is the hot work steel AISI H13. The geometry of the die is circular with a variation in die angle. The container and the billet temperature will vary from 450 to 550 degrees, and the mandrel (ram) speed will be at the range of 2 mm/sec. On the basis of simulating results such as pressure distribution on the extrusion die, effective stresses on the billet and product quality, new and improve die geometry will be introduced.rnAlthough the simulation problem is an axisymmetric one the authors decide to proceed with 3D FEM simulation in order to examine and verify the 3D simulating results. This paper is the first part of a further research project in which morerncomplicated die geometries will be used as simulating and experimental specimens. In addition to simulating results, experimental results will be presented in the next few months.
机译:用于生产各种截面几何形状的长而直的半成品的最典型的成型工艺之一是挤压。热挤压是一种热机械过程,它涉及过程参数,工具和变形材料/ 1,2 /之间的复杂相互作用。在本文中,使用具有不同几何形状的圆形模具在铝型材挤压中进行有限元模拟,以提取关于各种成形参数的定量模拟结果。最具体地,所研究的参数是模具设计几何形状,工艺参数(即冲头速度,容器温度,坯料温度)和产品质量(即挤压形状,表面状况)。有限元建模基于使用DEFORM 3D软件/ 3-5 /的3D仿真工具。所使用的工件是圆柱形的直径为14 mm的铝AA6061。挤出模头使用的材料是热作钢AISI H13。模具的几何形状是圆形的,模具角度有所变化。容器和钢坯温度将在450到550度之间变化,并且心轴(ram)速度将在2毫米/秒的范围内。在模拟结果的基础上,例如挤压模具上的压力分布,对坯料的有效应力和产品质量,将介绍新的和改进的模具几何形状。rn尽管模拟问题是轴对称的,但作者还是决定继续进行3D FEM模拟为了检查和验证3D模拟结果。本文是进一步研究项目的第一部分,该研究将更复杂的模具几何体用作模拟和实验标本。除了模拟结果外,未来几个月还将提供实验结果。

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