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Study of Formability Limit Based on Ductile Damage Criteria of Incremental Sheet Forming of Titanium Grade 2 Sheet

机译:基于钛等级2张增量板形成的基于延性损伤标准的可成型性限制研究

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Incremental sheet forming (ISF) process is an alternative and advanced sheet metal forming technique, well-known due to its flexible and die-less method of forming compared to other traditional forming methods. It is a modern concept-based sheet forming technique adaptive to develop both simple and complicated shapes/components successfully. The clamped metal sheet undergoes small incremental deformations via layer by layer line movement of ball point type hemispherical tool with the help of numerically controlled (NC) user pre-defined definite too/path. Numerical simulation is an effective method to study the forming process and predict the formability limit in ISF. In this paper, ductile damage failure criteria has been used to investigate the forming limit diagram (FLD) of commercially pure Titanium grade 2 (CP-Ti Gr 2) sheet through finite element simulation in ABAQUS® software. Truncated conical shape geometry with three different incremental step depth (△z) at constant wall angle has been formed. Simulation results of the FLD have been validated and compared with the experimental data from the literature. Finite element analysis (FEA) for predicting the sheet thickness variation along the forming depth and process forming forces also have been carried out. Higher step depth resulted in better formability of the titanium sheet with less sheet thickness reduction. Forming forces (Fz) with smaller step depth showed good results as compared to other two step depths.
机译:增量板形成(ISF)工艺是一种替代和先进的金属板形成技术,众所周知,由于其与其他传统成形方法相比其柔性和凹陷的形成方法。它是一种现代基于概念的薄片形成技术,适用于成功开发简单和复杂的形状/组件。夹紧的金属板通过数值控制(NC)用户预定定义的明确/路径,通过滚珠点型半球形工具的层线移动通过层进行小的增量变形。数值模拟是研究成形过程的有效方法,并预测ISF中的成形性极限。本文通过ABAQUS®软件中的有限元模拟,已经使用延性损伤故障标准来研究商业纯钛级2(CP-TI GR 2)片的成型极限图(FLD)。已经形成截断的圆锥形状几何,具有三种不同的增量步进深度(△Z),已经形成为恒定壁角。 FLD的仿真结果已被验证并与文献中的实验数据进行了验证。还已经进行了用于预测沿形成深度和工艺形成力的纸张厚度变化的有限元分析(FEA)。较高的步进期导致钛板的可成形性更好,厚度减小较少。与其他两个步进深度相比,具有较小步进深度的形成力(FZ)显示出良好的结果。

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