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A closed-loop type algorithm for determination of variable blank holder force trajectory and its application to square cup deep drawing

机译:一种确定变压边力轨迹的闭环型算法及其在方杯深拉深中的应用

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摘要

In deep drawing, a low blank holder force (BHF) can cause wrinkling, while a high BHF can lead to tearing. Thus, it is important to determine the appropriate BHF to be utilized in the forming process. In this study, a variable blank holder force (VBHF) approach to deep drawing is employed, and a simple closed-loop type algorithm is developed to obtain the VBHF trajectory. The proposed algorithm is divided into two phases. The objective of the first phase is to check wrinkling and tearing. In this phase, a low BHF, which is the cause of wrinkling, is used as the initial BHF; it is then increased to prevent wrinkling. The algorithm is terminated when tearing occurs. In a numerical simulation, the distance between the die and the blank holder is used to measure wrinkling. On the other hand, the thickness of the blank is used to determine the tearing. Next, in the second phase, the deviations in thickness are examined. Wrinkles are also checked in the second phase. By iterating the above two phases, the VBHF trajectory can be obtained. One of the advantages of the VBHF is that it reduces the forming energy. The validity of the proposed algorithm is examined through both a numerical simulation and experiment. © 2010 Springer-Verlag London Limited.
机译:在深冲中,较低的压边力(BHF)会引起起皱,而较高的BHF会导致撕裂。因此,重要的是确定在成形过程中要使用的适当的BHF。在这项研究中,采用可变的坯料夹持力(VBHF)进行深冲,并开发了一种简单的闭环型算法来获得VBHF轨迹。所提出的算法分为两个阶段。第一阶段的目的是检查皱纹和撕裂。在这个阶段,起皱的原因是低的BHF被用作初始的BHF。然后增加它以防止皱纹。当发生撕裂时,算法终止。在数值模拟中,模具和毛坯夹持器之间的距离用于测量起皱。另一方面,毛坯的厚度用于确定撕裂度。接下来,在第二阶段中,检查厚度偏差。在第二阶段也检查皱纹。通过重复以上两个阶段,可以获得VBHF轨迹。 VBHF的优点之一是它减少了成型能量。通过数值模拟和实验研究了所提算法的有效性。 ©2010 Springer-Verlag伦敦有限公司。

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