首页> 外文期刊>Journal of Manufacturing Processes >Numerical modelling of electrohydraulic free-forming and die-forming of DP590 steel
【24h】

Numerical modelling of electrohydraulic free-forming and die-forming of DP590 steel

机译:DP590钢的电液压自由成形和压铸成形的数值模型

获取原文
获取原文并翻译 | 示例
           

摘要

Electrohydraulic forming (EHF) is a high energy rate forming process in which the strain rate in the sheet metal can vary from 5 × 10~2 to 10~5s~(-1) depending on various factors. Several mechanisms have been reported to cause an improvement in formability in EHF such as material deformation mechanisms, inertial effects and the dynamic impact of the sheet against the die. EHF is a complex high speed forming process and experimental work alone is not sufficient to properly understand this process. To understand the variation of some influential variables in EHF, electrohydraulic die-forming (EHDF) and free-forming (EHFF) of DP590 dual phase steel were simulated in ABAQUS/Explicit by considering the fluid/structure interactions. Three-dimensional finite element simulations were conducted by modelling the water with Eulerian elements with a view to investigating the effect of released energy on the sheet deformation profile history, strain distribution, loading path and damage accumulation type. The Johnson-Cook constitutive material model was used to predict the sheet behaviour and the parameters in this model were calibrated based on experimental test results available for DP590 at various strain rates. The Johnson-Cook phenomenological damage model was also used to predict the ductile failure (damage accumulation) in both EHDF and EHFF. Predicted final strain values and damage accumulation type showed good agreement with the experimental observations.
机译:电液压成形(EHF)是一种高能率成形工艺,其中金属板中的应变率可根据各种因素在5×10〜2到10〜5s〜(-1)之间变化。据报道,有几种机制可以改善EHF的可成形性,例如材料变形机制,惯性效应以及片材对模具的动态冲击。 EHF是一个复杂的高速成型过程,仅凭实验工作不足以正确理解此过程。为了了解EHF中一些影响变量的变化,在ABAQUS / Explicit中通过考虑流体/结构的相互作用来模拟DP590双相钢的电液压模具成形(EHDF)和自由成形(EHFF)。通过使用欧拉元素对水进行建模来进行三维有限元模拟,以研究释放的能量对板变形轮廓历史,应变分布,载荷路径和损伤累积类型的影响。使用Johnson-Cook本构材料模型来预测薄板行为,并基于在各种应变速率下可用于DP590的实验测试结果,对该模型中的参数进行校准。 Johnson-Cook现象学损伤模型还用于预测EHDF和EHFF的延性失效(损伤累积)。预测的最终应变值和损伤累积类型与实验观察结果吻合良好。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号