期刊文献+

1700MPa级热成形钢的流变行为研究

Study on rheological behavior of 1700 MPa grade hot stamping steel
下载PDF
导出
摘要 本文以1 700 MPa级热成形钢为研究对象,进行了热变形模拟实验,研究了不同变形条件下的流变应力-应变曲线,分析了热变形过程中各参数对流变应力的影响,并在已有流变应力模型的基础上提出了本试验钢的流变应力数学模型.结果表明,流变应力均随变形温度的降低呈整体升高趋势;应变速率对流变应力的影响具有双重性;试验钢在热变形过程中的稳态流变应力数学模型和热变形方程分别为σ=22.117 98ln Z-1423.592 3和σ_p=22.117 98lnε+751.588×10~3/T-423.592 3.流变应力的峰值主要与应变速率和温度有关. Thermal deformation simulation of 1 700 MPa grade hot stamping steel was carried out. Flow stress-strain curve at different deformation conditions and effects of thermal deformation parameters on the flow stress were studied. Modified mathematical model of the test steel was established on the basis of the existing flow stress model. The result shows that,flow stress increases with the decrease of deformation temperature,while the effect of strain rate on flow stress is dual. The flow stress mathematical model and the hot deformation equation are σ = 22. 117 98 ln Z-1423. 592 3 and σ_p= 22. 117 98 ln ε + 751. 588 × 10~3/ T-423. 592 3,respectively. The maximum of flow stress mainly depends on the strain rate and the temperature.
作者 董瑞 王洪涛 李振亮 DONG Rui WANG Hong-tao LI Zhen-liang(Materials and Metallurgy School, Inner Mongolia University of Science and Technology Baotou 014010 China Special Steel Branch Company, Inner Mongolia Baotou Steel Union Co. , Ltd. Baotou 014010, China)
出处 《内蒙古科技大学学报》 CAS 2016年第4期403-408,共6页 Journal of Inner Mongolia University of Science and Technology
基金 内蒙古自然科学基金资助项目(2016BS0513) 内蒙古科技大学创新基金资助项目(2016QDL-B04)
关键词 热成形钢 应变速率 变形温度 热变形模型 hot stamping steel strain rate deformation temperature thermal deformation model
  • 相关文献

参考文献6

二级参考文献75

  • 1廖建国.日本钢铁生产新技术介绍[J].中国冶金,2004,14(12):36-38. 被引量:2
  • 2王轶农,李星逸,孟祥才,廖波.淬火温度和晶粒尺寸对27SiMnB钢淬透性的影响[J].金属热处理,1994,19(5):33-35. 被引量:4
  • 3孙淑华,吕知清,郭明伟,王振华,熊毅,傅万堂.锰和硅添加对重度冷轧及退火后珠光体钢显微组织的影响[J].材料热处理学报,2006,27(5):39-42. 被引量:3
  • 4冯志明,杨王玥.冷轧退火对共析珠光体钢组织球化超细化的影响[J].北京科技大学学报,2007,29(7):689-693. 被引量:4
  • 5CAI J, LIN J, DEAN T A. A novel process: hot stamping and cold die quenching [ C ]//Third International Symposium on Advanced Technology for Plasticity. Nanchang: [ s. n. ] , 2007.
  • 6KHAN S H, SAEED AHMED M, ALl F, et al. Investigation of high strength steel bending [ J ]. Engineering Failure Analysis, 2009, 16( 1 ) :128-135.
  • 7CHOI S H, CHIN K G. Prediction of spring-back behavior in high strength low carbon steel sheets [ J ]. Materials Processing Technology, 2006, 171 (3) :385-392.
  • 8MORI K, SAITO S, MAKI S. Warm and hot punching of ultra high strength steel sheet[ J]. CRIP Annals Manufacturing Technology, 2008, 57( 1 ) :321-324.
  • 9YANAGIMOTOL J, OYAMADA K. Springback of high-strength steel after hot and warm sheet formings[J]. CRIP Annals Manufacturing Technology, 2005, 54( 1 ) :213-216.
  • 10MERKLEIN M, LECHLER J. Investigation of the thermo-mechanical properties of hot stamping steels[J]. Materials Processing Technology, 2006,177 ( 1-3 ) :452- 455.

共引文献147

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部