首页> 外文期刊>International Journal for Numerical Methods in Engineering >Shape optimization of flow guides in three-dimensional extrusion processes by an approximation scheme based on state variable linearization
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Shape optimization of flow guides in three-dimensional extrusion processes by an approximation scheme based on state variable linearization

机译:基于状态变量线性化的近似方案,对三维挤压工艺中的导流板进行形状优化

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摘要

A new scheme of shape optimization is applied to the design of a flow guide in flat-die extrusion processes. In general, tremendous time is inevitably required for the optimization of large-scale three-dimensional extrusion processes. This is because the finite element analysis requires large computation time owing to the complexity of the die geometry and flow behaviour. The proposed scheme effectively reduces the Computation time for the optimization process by approximating the objective function. This is achieved by introducing a transformed equation of the state variables. The scheme is then applied to the practical extrusion processes to produce 'I', 'H' and 'L' sections. The objective of the optimization is to make a balanced flow of the material in the exit region. Control points of a Bezier curve describing the outline of the flow guide are regarded as the design variables. Through application to large-scale problems, the effectiveness and usefulness of the proposed scheme is demonstrated. Copyright (c) 2005 John Wiley & Sons, Ltd.
机译:一种新的形状优化方案已应用于平模挤压工艺中的导流板设计。通常,对于大规模的三维挤压工艺的优化,不可避免地需要大量的时间。这是因为由于模具几何形状和流动行为的复杂性,有限元分析需要大量的计算时间。通过近似目标函数,该方案有效地减少了优化过程的计算时间。这可以通过引入状态变量的变换方程来实现。然后将该方案应用于实际的挤出工艺以生产“ I”,“ H”和“ L”型材。优化的目的是使物料在出口区域平衡流动。描述流路轮廓的贝塞尔曲线的控制点被视为设计变量。通过应用于大规模问题,证明了所提方案的有效性和实用性。版权所有(c)2005 John Wiley&Sons,Ltd.

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