首页> 外文会议>International Conference on Advanced Technologies in Manufacturing and Materials Engineering >Effect of Microstructure on the Instantaneous Springback and Time-dependent Springback of DP600 Dual Phase Steel
【24h】

Effect of Microstructure on the Instantaneous Springback and Time-dependent Springback of DP600 Dual Phase Steel

机译:微观结构对DP600双相钢瞬时回弹和时间依赖性回弹的影响

获取原文

摘要

Springback subject to tensile test of dual phase steel DP600 with different phase volume fractions has been observed and investigated in this study. Finite element simulations using representative volume element (RVE) generated from the real microstructure are carried out. It's revealed after tensile test unloading that the instantaneous springback values (l_(is)) of DP600 increases with the martensite volume fraction increasing, and the proportion ψ of the time-dependent springback value (l_(tds)) in total springback (l_(tds)+l_(is)) increases with martensite volume fraction decreasing. In FE simulation of the RVEs, the effective plastic stress (EPS)σ_(e) is extracted to represent the residual stress and the higher l_(is) with more martensite volume fraction corresponds to larger variation Δσ_(eM) of martensite phase in RVE during instantaneous springback period, which agrees with the present accepted law that the instantaneous springback is the residual stress-driven elastic recovery. After unloading finishing, the time-dependent springback proportion Ψ increases with the proportion v of EPS of ferrite phase (σ_(eF)) in total of RVE (σ_(eRVE)) increasing, which verifies the influence of the residual stress in "softer phase" on the time-dependent springback.
机译:在本研究中观察并研究了对双相钢DP600的双相钢DP600的拉伸试验的回弹。执行从真实微结构产生的代表体元素(RVE)的有限元模拟。在拉伸试验卸载后揭示了DP600的瞬时回弹值(L_(IS))随着Martensite体积分数的增加而增加,并且在总回弹中的时间依赖回弹值(L_(TDS))的比例ψ(L_( TDS)+ L_(IS))随着马氏体体积分数的增加而增加。在r瓦的FE模拟中,提取有效的塑性应力(EPS)σ_(e)以表示残余应力,并且具有更多马氏体体积分数的较高的L_(是)对应于RPE中马氏体相的较大变化ΔΣ_(EM)在瞬时回弹时段,这同意本公认的法律,即瞬时回弹是残余应力驱动的弹性恢复。卸载完成后,时间依赖的回弹比例ψ随着rve的总共(σ_(ef))的比例v(σ_(σ_(ef))增加,这验证了“更柔软”中的残余应力的影响阶段“在时间依赖的回弹。

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