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CONTINUUM-BASED DESIGN SENSITIVITY ANALYSIS AND OPTIMIZATION OF SPRINGBACK IN STAMPING PROCESS

机译:冲压过程中基于连续性的设计灵敏度分析与回弹优化

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摘要

The springback is a significant manufacturing defect in the stamping process. A serious impediment to the use of lighter-weight, higher-strength materials in manufacturing is the relative lack of understanding about how these materials respond to the complex forming process. The springback problem can be reduced by using appropriate designs of die, punch, and blank holder shape together with friction and blank holding force. That is, an optimum stamping process can be determined using a gradient-based optimization to minimize the springback. However, for an effective optimization of the stamping process, development of an efficient analytical design sensitivity analysis method is crucial. In this paper, a continuum-based shape and configuration design sensitivity analysis (DSA) method for the stamping process has been developed. The material derivative concept is used to develop the continuum-based design sensitivity. The design sensitivity equation is solved without iteration at each converged load step in the finite deformation elastoplastic nonlinear analysis with frictional contact, which makes the design sensitivity calculation very efficient. The accuracy and efficiency of the proposed method is illustrated by minimizing springback in an S-rail part, which is often used as an industrial benchmark to verify the numerical procedures employed for stamping processes.
机译:回弹是冲压过程中的重大制造缺陷。在制造过程中使用轻质,高强度材料的严重障碍是相对缺乏对这些材料如何响应复杂成型过程的理解。通过使用合适的模具,冲头和毛坯支架形状以及摩擦力和毛坯夹持力,可以减少回弹问题。即,可以使用基于梯度的优化来确定最佳的冲压过程,以使回弹最小化。但是,为了有效优化冲压过程,开发有效的分析设计灵敏度分析方法至关重要。在本文中,已开发出一种基于连续体的冲压过程形状和配置设计敏感性分析(DSA)方法。材料导数概念用于发展基于连续体的设计灵敏度。在具有摩擦接触的有限变形弹塑性非线性分析中,在每个会聚载荷步骤都无需迭代即可求解设计灵敏度方程,这使得设计灵敏度计算非常有效。通过使S形导轨部件中的回弹最小化来说明所提出方法的准确性和效率,该S形导轨部件常被用作工业基准以验证用于冲压过程的数值程序。

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