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Experimental and theoretical study on the hot forming limit of 22MnB5 steel

机译:22MnB5钢热成形极限的实验与理论研究

摘要

To reveal the effects of forming temperature and blank thickness on the formability of boron steel 22MnB5, which is represented by forming limit diagram, the hot forming limit experiments and B-pillar hot stamping simulations are conducted. Combined with air cooling test, the forming limit diagrams of boron steels with different blank thicknesses of 1.8, 1.6, and 1.4 mm and forming temperatures of 800, 700, and 600 C are established. The relationships between the formability and the crystal structure of steel, the forming limit diagram, and the effect of blank thickness and forming temperature on the formability of boron steel are extensively investigated. A model for prediction of hot forming limit of 22MnB5 steel before the occurrence of phase transformation induced by cooling based on Oh's ductile fracture criterion and Logan-Hosford yield criterion is derived and verified by experiments. The research thus provides an in-depth understanding of the formability of 22MnB5 steel for its process determination and process parameter configuration in industries.
机译:为了揭示成形温度和毛坯厚度对22MnB5硼钢成形性的影响(以成形极限图表示),进行了热成形极限实验和B柱热冲压模拟。结合空冷试验,建立了坯料厚度分别为1.8、1.6和1.4 mm以及成形温度为800、700和600 C的硼钢的成形极限图。广泛研究了钢的可成形性与晶体结构,成形极限图以及坯料厚度和成形温度对硼钢可成形性的影响。实验推导了基于Oh延性断裂准则和Logan-Hosford屈服准则的22MnB5钢在冷却引起相变发生之前的热成形极限预测模型。因此,该研究提供了对22MnB5钢的可成形性的深入了解,以用于工业中的工艺确定和工艺参数配置。

著录项

  • 作者

    Li FF; Fu MW; Lin JP; Wang XN;

  • 作者单位
  • 年度 2014
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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