首页> 外文期刊>International Journal for Numerical Methods in Engineering >OPTIMAL DESIGN FOR NON-STEADY-STATE METAL FORMING PROCESSES - II. APPLICATION OF SHAPE OPTIMIZATION IN FORGING
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OPTIMAL DESIGN FOR NON-STEADY-STATE METAL FORMING PROCESSES - II. APPLICATION OF SHAPE OPTIMIZATION IN FORGING

机译:非稳态金属成形过程的优化设计-II。形状优化在锻造中的应用

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This paper is the second part of a two-part article about shape optimization of metal forming processes. This part is focused on numerical applications of the optimization method which has been described in the first paper. The main feature of this work is the analytical calculations of the derivatives of the objective function for a non-linear, non-steady-state problem with large deformations. The calculations are based on the differentiation of the discrete objective function and on the differentiation of the discrete equations of the forging problem. Our aim here is to show the feasibility and the efficiency of such a method with numerical examples. We recall the formulation and the resolution of the direct problem of hot axisymmetrical forging. Then, a first type of shape optimization problem is considered: the optimization of the shape of the initial part for a one-step forging operation. Two academic problems allow for checking the accuracy of the analytical derivatives, and for studying the convergence rate of the optimization procedure. Both constrained and unconstrained problems are considered. Afterwards, a second type of inverse problem of design is considered: the shape optimization of the preforming tool, for a two-step forging process. A satisfactory shape is obtained after few iterations of the optimization procedure.
机译:本文是由两部分组成的文章的第二部分,该文章涉及金属成形工艺的形状优化。这一部分着重于第一篇论文中描述的优化方法的数值应用。这项工作的主要特征是对大变形的非线性非稳态问题的目标函数导数进行解析计算。这些计算基于离散目标函数的微分和锻造问题离散方程的微分。我们的目的是通过数值示例来说明这种方法的可行性和效率。我们回顾了热轴对称锻造直接问题的提法和解决方法。然后,考虑第一类形状优化问题:针对一步锻造操作对初始零件的形状进行优化。两个学术问题允许检查解析导数的准确性,以及研究优化过程的收敛速度。约束问题和非约束问题都被考虑。然后,考虑设计的第二种反问题:针对两步锻造过程的预成型工具的形状优化。经过几次优化程序迭代后,可获得令人满意的形状。

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