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Process and die design for rod extrusion of y iron

机译:y型铁棒挤压工艺及模具设计

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摘要

This study is related to materials modeling and die and process design of rod extrusion of y iron. Strain dependent rate power law is used for materials modeling whose coefficients are arrived at through genetic algorithm (GA). Die profile of the rod extrusion process is optimized to produce products of desirable microstructure at maximum production speed and minimum left out material in the die. The design problem is formulated as a nonlinear programming problem which is solved using GA. Selection of the processing parameters is carried out using dynamic materials modeling (DMM). Using this approach rod extrusion process of y iron is successfully designed. FE simulation on the optimum profile is also attempted to study deformation behaviour and load requirement.
机译:该研究与γ铁棒材挤压的材料造型,模具及工艺设计有关。应变相关速率幂定律用于材料建模,其系数是通过遗传算法(GA)得出的。棒材挤出工艺的模具轮廓经过优化,可以以最大的生产速度和最少的模具残留材料生产出具有所需微观结构的产品。将设计问题表述为使用GA求解的非线性规划问题。使用动态材料建模(DMM)进行加工参数的选择。使用这种方法,成功设计了y棒的杆挤压工艺。还尝试在最佳轮廓上进行有限元仿真,以研究变形行为和载荷要求。

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