Modeling and Optimization of Fixture for Handling Compliant Sheet Metal Parts

D. Ceglarek, H. F. Li, Y. Tang
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引用次数: 3

Abstract

Material handling of compliant parts is one of the most critical and underresearched problems in the sheet metal stamping industry. The fundamental shortcoming of currently studied material handling systems for sheet metal stamping is the lack of analysis of its impact on part dimensional quality and production throughput. This paper addresses this problem by development of a generic methodology for modeling and optimization of part holding end-effector fixture layout in order to minimize part dimensional deformation during handling operations. The methodology extends the design of “N-2-1” fixturing layout by adding part movability conditions. It considers part CAD model, handling direction and motion kinematic parameters to determine the best end effector layout. This methodology is realized by integrating FEM part and loading modeling with the optimization algorithm. It can be implemented into the design stage of a stamping line so that the trial and error process, which is current industrial practice, can be greatly shortened and the production throughput increased. Experimental results verify the proposed part holding end-effector layout methodology.
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柔性钣金件加工夹具的建模与优化
柔性零件的材料处理是钣金冲压工业中最关键和研究不足的问题之一。目前研究的钣金冲压物料搬运系统的根本缺点是缺乏对零件尺寸质量和生产吞吐量影响的分析。本文通过开发一种通用方法来解决这一问题,该方法用于零件保持末端执行器夹具布局的建模和优化,以便在处理操作期间最大限度地减少零件尺寸变形。该方法通过增加零件可动性条件,扩展了“N-2-1”夹具布局的设计。考虑零件CAD模型、搬运方向和运动运动学参数,确定最佳末端执行器布局。该方法通过将零件和载荷有限元建模与优化算法相结合来实现。它可以实施到冲压生产线的设计阶段,从而大大缩短了目前工业实践中的试错过程,并提高了生产吞吐量。实验结果验证了所提出的零件保持末端执行器布局方法。
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