首页> 外文会议>International Symposium on Fundamentals of Deformation and Annealing >Deformation Mechanisms in High-Al Bearing High-Mn TWIP Steels in Hot Compression and in Tension at Low Temperatures
【24h】

Deformation Mechanisms in High-Al Bearing High-Mn TWIP Steels in Hot Compression and in Tension at Low Temperatures

机译:低温下高压高Mn Twip钢的变形机制,低温下张力

获取原文

摘要

The hot deformation behaviour of two high-Mn (23-24 wt-%) TWIP steels containing 6 and 8 wt-% Al with the fully austenitic and duplex microstructures, respectively, has been investigated at temperatures of 900-1100°C. In addition, tensile properties were determined over the temperature range from -80 to 100°C. It was observed that in spite of the lower Al content, the austenitic steel possessed the hot deformation resistance about twice as high as that of the duplex steel. Whereas the flow stress curves of the austenitic steel exhibited work hardening followed by slight softening due to dynamic recrystallisation, the duplex steel showed the absence of work hardening and discontinuous yielding under similar conditions. Tensile tests at low temperatures revealed that the austenitic grade had a lower yield strength than that of the duplex grade, but much better ductility, the elongation increasing with decreasing temperature, contrary to that for the duplex steel. This can be attributed to the intense mechanical twinning in the austenitic steel, while in the duplex steel, twinning occurred in the ferrite only and the austenite showed dislocation glide.
机译:在900-1100℃的温度下,分别在900-1100℃的温度下研究了含有6和8wt-%Al的两个高Mn(23-24wt-%)Twip钢的热变形行为。另外,在-80至100℃的温度范围内测定拉伸性质。观察到,尽管Al含量下降,但是奥氏体钢具有大约两倍高的热变形电阻。虽然奥氏体钢的流量曲线表现出工作硬化,但由于动态重结晶引起的轻微软化,双相钢显示出在类似条件下没有工作硬化和不连续的屈服。低温下的拉伸试验显示,奥氏体级具有比双相等级的屈服强度低,但延展性更好,随着双相钢的伸长率随着温度的降低而增加。这可以归因于奥氏体钢中的强烈机械孪桃,而在双相钢中,孪生仅发生在铁氧体中,奥氏体显示错位。

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