| 注册
首页|期刊导航|理化检验-物理分册|胎圈钢丝用SWRH72A钢的连续冷却转变曲线

胎圈钢丝用SWRH72A钢的连续冷却转变曲线

贺敬舒 康智清 李桂英 孙明玮

理化检验-物理分册2026,Vol.62Issue(4):21-26,6.
理化检验-物理分册2026,Vol.62Issue(4):21-26,6.DOI:10.11973/lhjy-wl250181

胎圈钢丝用SWRH72A钢的连续冷却转变曲线

The continuous cooling transformation curve of SWRH72A steel for bead wire

贺敬舒 1康智清 1李桂英 1孙明玮1

作者信息

  • 1. 青岛特殊钢铁有限公司 中特研究院青钢分院,青岛 266000
  • 折叠

摘要

Abstract

The continuous cooling transformation curves of SWRH72A steel at cooling rates of 1-40 ° C/s were determined using a thermal expansion phase change instrument.Optical microscopy and microhardness testing were employed to analyze the microstructure and Vickers hardness at different cooling rates.The results show that the critical phase transformation temperatures Ac1 and Ac3 of SWRH72A steel were 692.7 ℃ and 759 ℃,respectively.At cooling rates of 1-30 ℃/s,pearlite transformation predominates,resulting in a microstructure composed of sorbite,pearlite,and a small amount of ferrite.The content of ferrite and pearlite gradually decreased with increasing cooling rate,while the sorbite formation rate rised from 84.4%to 90.06%,and hardness increased from 306 HV to 376.8 HV.When the cooling rate exceeded 30 ℃/s,lamellar martensite was observed in the microstructure,with the overall composition consisted of sorbite and martensite,indicated simultaneous pearlite and martensite transformations.As the cooling rate accelerated,the martensite content increased progressively,and hardness rised from 409.8 HV to 426.4 HV.At the same initial cooling temperature,faster cooling rates led to lower phase transformation start and finish temperatures,as well as shorter time required to complete the microstructural transformation.

关键词

SWRH72A钢/连续冷却转变曲线/冷却速率/显微组织/维氏硬度

Key words

SWRH72A steel/continuous cooling transformation curve/cooling rate/microstructure/Vickers hardness

分类

通用工业技术

引用本文复制引用

贺敬舒,康智清,李桂英,孙明玮..胎圈钢丝用SWRH72A钢的连续冷却转变曲线[J].理化检验-物理分册,2026,62(4):21-26,6.

理化检验-物理分册

1001-4012

访问量0
|
下载量0
段落导航相关论文