首页> 外文期刊>ISIJ international >Dynamic Continuous Cooling Transformation Behavior of A Novel Cu-bearing Pipeline Steel
【24h】

Dynamic Continuous Cooling Transformation Behavior of A Novel Cu-bearing Pipeline Steel

机译:新型含铜管线钢的动态连续冷却转变行为

获取原文
       

摘要

Study on continuous cooling transformation (CCT) behavior is an essential issue before thermo-mechanical processing for a new steel. In this study, dynamic CCT characteristics and microstructural evolution of a novel Cu-bearing pipeline steel with different Cu content (1.06%, 1.46% and 2.00%) were investigated by means of a combined method of dilatometry and metallography. The microstructure developed at a cooling rate range of 0.05 to 30°C/s consisted of pearlite, polygonal ferrite, quasi-polygonal ferrite and acicular ferrite. More Cu addition could lower the transformation temperature for austenite to ferrite and lead to an increase in the driving force for the acicular ferrite transformation, resulting in a full acicular ferrite for 2.0 Cu steel at cooling rate above 2°C/s. The precipitation behavior of Cu-rich phase during continuous cooling showed that Cu precipitation could occur in the acicular ferrite, which made a hardness peak on the hardness vs cooling rate curve of 2.0Cu steel at the cooling rate of 2°C/s. However, no Cu precipitate was detected in the acicular ferrite at higher cooling rate for 2.0 Cu steel. Higher supersaturation of Cu in austenite and a short incubation period of Cu-rich phase precipitation were assumed to allow the Cu precipitation to occur in the auto-aging after acicular ferrite transformation.
机译:在对新钢进行热机械加工之前,研究连续冷却转变(CCT)行为是必不可少的问题。本研究采用膨胀法和金相学相结合的方法,研究了含铜量分别为1.06%,1.46%和2.00%的新型含铜管线钢的动态CCT特性和组织演变。冷却速率在0.05至30°C / s范围内形成的显微​​组织由珠光体,多边形铁素体,准多边形铁素体和针状铁素体组成。添加更多的铜会降低奥氏体转变为铁素体的转变温度,并导致针状铁素体转变的驱动力增加,从而在冷却速率高于2°C / s的情况下导致2.0 Cu钢的针状铁素体完全析出。连续冷却过程中富Cu相的析出行为表明,在针状铁素体中可能发生Cu析出,这在2.0Cu / min的冷却速率下在2.0Cu钢的硬度vs冷却速率曲线上出现了一个硬度峰值。 s。然而,对于2.0 Cu钢,在较高冷却速率下,在针状铁素体中未检测到Cu沉淀。假定奥氏体中较高的Cu过饱和度和较短的富Cu相析出潜伏期,可使针状铁素体转变后的自动时效过程中发生Cu析出。

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