Computer simulation and experimental verification of a metal forming process

K. Chandy, N. Chandra
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Abstract

A description is given of a physical model designed to simulate pressure-forming operations, and the results from computational models and actual samples are used to validate the use of this physical model. Results from both the computational and physical models, coupled with experimental evidence from actual specimens, indicate that the free deforming profiles of a thin superplastic sheet is spherical. A state of biaxial stress exists at the pole in both physical and actual specimens. The clamping pressure due to the clamps creates a plane strain state in the rubber model. However, the clamps are unable to prevent displacement of the material laterally in actual specimens; this may be due to the bending and shearing action caused when the sheet is bent over the die radius. The drawing action is also responsible for a thickening of the sheet near the die edges. The present physical setup is unable to account for such bending ad shearing stresses.<>
金属成形过程的计算机模拟与实验验证
介绍了一种模拟压力成形过程的物理模型,并用计算模型和实际样品的结果验证了该物理模型的有效性。计算模型和物理模型的结果以及实际试样的实验证据表明,超塑性薄板的自由变形轮廓是球形的。在物理和实际试样中,极点处均存在双轴应力状态。由于夹具的夹紧压力在橡胶模型中产生平面应变状态。然而,在实际样品中,夹具无法防止材料的侧向位移;这可能是由于当板材在模具半径上弯曲时引起的弯曲和剪切作用。拉伸动作也负责在靠近模具边缘的薄板加厚。目前的物理设置无法解释这种弯曲和剪切应力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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