Conception automatique et optimisation des surfaces additionnelles pour le procédé d’emboutissage

K. Debray, Ming Dong, Y. Guo
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Abstract

In the forming process of a thin sheet part such as the automobile bodies or the components of electric household appliances, some surfaces should be added to the desired part in order to hold the part and to avoid the defects such as the rupture, wrinkling and surface scratching. These addendum surfaces are mainly composed of protection walls and blank holder surfaces. The main aim of this study is to propose a methodology and the corresponding numerical tools for the automatic design and optimization of the addendum surfaces in the sheet forming process. The automatic design of addendum surfaces is based on the creation of the curves of profile and surfaces of COONS. These surfaces are then meshed automatically and the simulation of the stamping problem is solved with the Inverse Approach. Finally, the geometrical parameters necessary for the creation of surfaces are optimized in order to satisfy the mechanical criteria for the process of stamping. These parametric tools of design-simulation-optimization make it possible to quickly lead to optimal addendum surfaces.
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冲压工艺附加表面的自动设计和优化
在汽车车身或家用电器部件等薄板件的成形过程中,为了保持零件,避免出现破裂、起皱和表面划伤等缺陷,应在所需零件上增加一些表面。这些零件表面主要由保护壁和压边面组成。本研究的主要目的是提出一种方法和相应的数值工具,用于板料成形过程中补顶曲面的自动设计和优化。齿顶曲面的自动设计是建立在轮廓曲线和曲面的基础上的。然后对这些曲面进行自动网格划分,并采用逆方法求解冲压问题的仿真。最后,为了满足冲压过程的机械标准,优化了创建表面所需的几何参数。这些设计-仿真-优化的参数化工具使快速得到最优的齿顶曲面成为可能。
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Mecanique & Industries
Mecanique & Industries 工程技术-工程:机械
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