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首页> 外文期刊>International Journal of Material Forming >Plastic instabilities analysis during T-shaped tubes hydro-forming process
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Plastic instabilities analysis during T-shaped tubes hydro-forming process

机译:T型管液压成型过程中的塑性不稳定性分析

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摘要

During T-shaped or Y-shaped tubes hydroforming the tube wall is flatten on the external die. This “in die” forming involves an important compressive stress along the outer normal direction directly related to the inflating pressure. In this particular case plastic instabilities and damage evolution are strongly dependent on the sign of hydrostatic stress. Hydroforming simulations of T-shaped and Y-shaped thick tubes are performed using an elastoplastic model implemented in Forge-2005 (fully implicit Finite Element Method code). A three dimensional analysis is ran using tetrahedral solid elements. An augmented Modified Maximum Force Criterion coupled to an undamage behavior law is expressed in the sheet tangent plan basis. This criterion is compared to a fully coupled Lemaitre damage model. Due to low triaxiality state, damage only growth in specifical regions. This study highlights the interest of continuum damage modeling for the formability and the final part load carrying capacity prediction for “in die” hydroforming.
机译:在T形或Y形管的液压成型过程中,管壁在外模上变平。这种“模内”成型涉及沿外法线方向的重要压缩应力,该应力直接与充气压力相关。在这种特殊情况下,塑料的不稳定性和损伤的发展在很大程度上取决于静水压力的迹象。使用Forge-2005中实现的弹塑性模型(完全隐式有限元方法代码)对T形和Y形厚管进行液压成形模拟。使用四面体固体元素进行三维分析。在图纸切线计划的基础上表达了与无损行为定律相结合的增强修正最大力准则。将该标准与完全耦合的Lemaitre损坏模型进行比较。由于低三轴状态,仅损害特定区域的生长。这项研究强调了连续损伤模型对可成形性和“模内”液压成形的最终零件承载能力预测的兴趣。

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