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Optimization of Plunger Tip Shape Based on Damage Estimation Using Linear Cumulative Damage Law

机译:基于线性累积损伤定律的损伤估计的柱塞头形状优化

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Die casting is suitable for mass production and has the advantage of being able to yield complicated shapes accurately. One disadvantage of die casting for high-speed injection molding is the occurrence of blow holes. To avoid the occurrence of blow holes, the shape of a plunger tip with the curved surface is very effective in actual manufacturing facilities. However, this shape is very weak to wear-out Therefore, this plunger tip is very breakable. In this paper, an optimum shape of the plunger tip is calculated by utilizing the real-coded genetic algorithm incorporating a FEA and a CFD simulator with stress analysis and a linear cumulative damage law. As a result, the fatigue strength of the plunger tip is evaluated, and it is clarified that the optimum shape is superior in strength for reducing the amount of entrained air and preventing the occurrence of blow holes in die-cast products.
机译:压铸适合大规模生产,并且具有能够精确地产生复杂形状的优点。用于高速注射成型的压铸的一个缺点是出现气孔。为了避免出现气孔,在实际的生产设备中,带有弯曲表面的柱塞头的形状非常有效。但是,这种形状很难磨损,因此,该柱塞头非常易碎。在本文中,通过使用结合了FEA和CFD模拟器以及应力分析和线性累积损伤定律的实数编码遗传算法来计算柱塞头的最佳形状。结果,评估了柱塞头的疲劳强度,并且明确了,最佳形状的强度优异,从而减少了夹带的空气量并防止了压铸产品中出现气孔。

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