首页> 外文期刊>ISIJ international >Effect of Strain Rate on the Hydrogen Embrittlement Property of Ultra High-strength Low Alloy TRIP-aided Steel
【24h】

Effect of Strain Rate on the Hydrogen Embrittlement Property of Ultra High-strength Low Alloy TRIP-aided Steel

机译:应变速率对超高强度低合金TRIP辅助钢的氢脆性能的影响

获取原文
           

摘要

The effect of strain rate on the hydrogen embrittlement property of an ultra high-strength TRIP-aided bainitic ferrite (TBF) steel with bainitic ferrite matrix was investigated to clarify the correlation between the transformation behavior of retained austenite and the hydrogen embrittlement fracture behavior of the TBF steel. Tensile tests were carried out at the strain rates between 5.56 × 10~(?6) and 2.78 × 10~(?2)/s without and with hydrogen charging. Hydrogen analysis after tensile tests was conducted by using thermal desorption spectroscopy (TDS). Fracture strain decreased with decreasing the strain rate due to the hydrogen absorption to the TBF steel although fracture strain without hydrogen charging slightly increased with decreasing the strain rate. However, it was observed that transformation behavior of retained austenite was hardly changed by the hydrogen absorption and the change in the strain rate. When tensile test was carried out to the TBF steel at the slow strain rate with hydrogen charging, fracture surface of quasi cleavage fracture containing flat facet, which was fractured transformed martensite, was obtained and the crack perpendicular to the tensile direction was observed near transformed martensite. It was considered that the decrease in the resistance to hydrogen embrittlement of the TBF steel tensile tested at the slow strain rate was attributed to the initiation of flat facet and the hydrogen concentration at the crack tip due to the hydrogen diffusion from transformed martensite during tensile testing at slow strain rate.
机译:研究了应变速率对具有贝氏体铁素体基体的超高强度TRIP辅助贝氏体铁素体(TBF)钢的氢脆性能的影响,以阐明残余奥氏体的相变行为与氢脆性的相关性TBF钢。在不加氢的条件下,在5.56×10〜(?6)/2.78×10~(?2)/ s的应变速率下进行拉伸试验。拉伸试验后的氢气分析是通过使用热脱附光谱法(TDS)进行的。尽管由于没有氢充填的断裂应变随着应变率的降低而略有增加,但由于氢吸收到TBF钢中,断裂应变随着应变率的降低而降低。但是,观察到残留奥氏体的相变行为几乎不因氢的吸收和应变率的变化而变化。在带氢的低应变速率下对TBF钢进行拉伸试验时,获得了含有扁平面的准解理断裂的断裂面,该断裂面为相变马氏体断裂,并且在相变马氏体附近观察到了垂直于拉伸方向的裂纹。 。认为在慢应变速率下拉伸的TBF钢的抗氢脆性降低是由于在拉伸试验中由于马氏体中氢的扩散而导致了平面的产生和裂纹尖端的氢浓度在低应变率下。

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