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Consideration of buckling characteristics for optimal design of stiffened punch in the blanking process of lead frame

机译:在引线框架下料过程中考虑弯曲特性以优化加劲冲头的设计

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摘要

The recent technical trend of semiconductor, chip size and high performance package technology, requires the IC lead frame to be of more multi-leads and fine pitch, and the corresponding punch thickness has been narrow. The members with high slenderness ratio such as a lead frame punch can be broken suddenly due to buckling. It is the major aim of the present work to suggest a practical optimization procedure to design the punch with the optimal number and position of stiffeners considering the maximum buckling load of punch. The various cases of punches have been also analyzed using finite element method and theoretical model, and the results have been confirmed by buckling test. It is shown that the analytical and theoretical results are in good agreement with the experimental ones. Finally, a guideline to design the punch with stiffeners is proposed through analysis of cross-section of lead frame punch such as moment of inertia and eccentricity.
机译:近来半导体的技术趋势,芯片尺寸和高性能封装技术要求IC引线框架具有更多的多引线和精细的间距,并且相应的冲头厚度已经变窄。细长的比例高的部件(例如引线框冲头)可能会因弯曲而突然断裂。本工作的主要目的是提出一种实用的优化程序,以考虑到冲头的最大屈曲载荷来设计具有最佳数量的加劲肋的冲头。还使用有限元方法和理论模型分析了各种情况下的冲头,并通过屈曲试验证实了结果。结果表明,理论分析结果与实验结果吻合良好。最后,通过分析引线框架冲头的横截面,例如惯性矩和偏心距,提出了设计带有加劲肋的冲头的指南。

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