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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Non-isothermal deformation behavior and FE simulation of ultrahigh strength BR1500HS steel in hot stamping process
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Non-isothermal deformation behavior and FE simulation of ultrahigh strength BR1500HS steel in hot stamping process

机译:超高强度BR1500HS钢热冲压过程的非等温变形行为及有限元模拟

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摘要

In the current work, the effects of initial deformation temperature and strain rate on flow behavior and microstructure of boron-alloyed steel after non-isothermal deformation were investigated. Based on the stress-strain curve obtained in the non-isothermal tensile experiment with a Gleeble 3500 system, finite element software was used to carry out the thermal mechanical coupled simulation of hot stamping process, which was further validated by hot stamping experiment of a V-channel part. The results indicate that the forming force was higher than that of the isothermal deformation. It was also observed that the initial stamping temperature should be above 750 A degrees C, and the holding and quenching time should be up to 15 s in hot stamping process according to finite element (FE) simulation. Finally, the results obtained from hot stamping experiments are in good consistency with the simulation; thus, it reveals that the FE modeling of non-isothermal hot stamping process is reliable.
机译:在目前的工作中,研究了初始变形温度和应变速率对非等温变形后硼合金钢的流动行为和显微组织的影响。根据在Gleeble 3500系统的非等温拉伸实验中获得的应力-应变曲线,使用有限元软件进行热冲压过程的热力耦合模拟,并通过V的热冲压实验进一步验证了这一点。 -通道部分。结果表明,成形力高于等温变形。还观察到,根据有限元(FE)模拟,在热冲压过程中,初始冲压温度应高于750 A摄氏度,保持和淬火时间应长达15 s。最后,热冲压实验的结果与仿真结果吻合良好。因此,表明非等温热冲压过程的有限元建模是可靠的。

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