首页> 外文会议>International Conference on Advanced Manufacture; 20051128-1202; Taipei(CT) >Finite Element Analysis of the Hydro-mechanical Punching Process
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Finite Element Analysis of the Hydro-mechanical Punching Process

机译:液压机械冲孔过程的有限元分析

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This paper investigates the characteristics of a hydro-mechanical punching process. The hydro-mechanical punching process is divided into two stages: the first stage is the mechanical half piercing in which an upper punch goes down before the initial crack is occurred; the second stage is the hydro punching in which a lower punch goes up until the final fracture is occurred. Ductile fracture criteria such as the Cockcroft et al., Brozzo et al. and Oyane et al. are adopted to predict the fracture of a sheet material. The index value of ductile fracture criteria is calculated with a user material subroutine, VUMAT in the ABAQUS Explicit. The hydrostatic pressure retards the initiation of a crack in the upper region of the blank and induces another crack in the lower region of the blank during the punching process. The final fracture zone is placed at the middle surface of the blank to the thickness direction. The result demonstrates that the hydro-mechanical punching process makes a finer shearing surface than the conventional one as hydrostatic pressure increases.
机译:本文研究了液压机械冲压工艺的特点。液压机械冲压过程分为两个阶段:第一阶段是机械半穿孔,在该过程中,上冲头在出现初始裂纹之前就下降了;第二阶段是水力打孔,其中下一个打孔器上升直到发生最终断裂。韧性断裂标准,例如Cockcroft等人,Brozzo等人。和Oyane等。被用来预测片材的断裂。延性断裂标准的指数值是使用ABAQUS Explicit中的用户材料子例程VUMAT计算的。在冲压过程中,静水压力阻止了坯件上部区域中裂纹的产生,并在坯件下部区域中引起了另一裂纹。最终的断裂区域位于坯料的沿厚度方向的中间表面。结果表明,随着流体静压力的增加,液压机械冲孔工艺比传统的冲孔工艺具有更好的剪切表面。

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