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Influence of microstructure on the mechanical properties and hydrogen embrittlement characteristics of 1800MPa grade hot-stamped 22MnB5 steel

机译:微观结构对1800MPA级热冲压22MnB5钢的机械性能和氢脆特性的影响

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摘要

The influence of the microstructural characteristics on the mechanical and hydrogen embrittlement properties of 1800MPa grade hot-stamped 22MnB5 steel was experimentally investigated using samples processed under various hot-stamping conditions, i.e., different heating temperatures and strain levels. The tensile strength increased with increasing hot-stamping temperature up to approximately 920 degrees C and subsequently decreased owing to the increasing sizes of the lath martensite and prior austenite phases. Some degree of internal strain was introduced into the 22MnB5 steel specimen during hot stamping at 920 degrees C, which led to a slightly higher hardness although no clear microstructural change was observed. The severity of hydrogen embrittlement of the hot-stamped 22MnB5 steel samples was investigated after immersion in a NH4SCN solution, and the degree of hydrogen embrittlement was found to be directly associated with the amount of hydrogen that penetrated into the grain boundary and lath martensite boundary. The high-strength 22MnB5 steel with a very small lath martensite phase exhibited severe hydrogen embrittlement due to the large amount of hydrogen in the sample, and the high internal strain (or high dislocation density) could lead to accelerated hydrogen embrittlement. Severe hydrogen embrittlement occurred upon charging with more than approximately 0.8ppm hydrogen. Based on the obtained results, models are proposed for the hydrogen embrittlement characteristics of hot-stamped 22MnB5 steel.
机译:使用在各种热冲压条件下处理的样品,即不同的加热温度和应变水平,通过在实验研究1800MPa级热冲压22MnB5钢的机械和氢脆性能下的影响。拉伸强度随着热冲压温度的增加而增加,高达约920℃,随后由于Lath马氏体和先前奥氏体相的尺寸的增加而降低。在920℃的热冲压期间将一定程度的内部菌株引入22MnB5钢样品中,但是略高的硬度,尽管未观察到清晰的微观结构变化。在NH4SCN溶液中浸泡后研究了热冲压的22MnB5钢样品的氢脆的严重程度,发现氢气脆化程度与穿透到晶界和Lath马氏体边界的氢量直接相关。由于样品中的大量氢气,具有非常小的Lath马氏体相的高强度22mNB5钢具有严重的氢气脆化,并且高内部菌株(或高位脱位密度)可能导致加速氢脆。在充电时发生严重的氢脆,超过约0.8ppm氢气。基于所得的结果,提出了用于热冲压22mNB5钢的氢脆特性的模型。

著录项

  • 来源
    《Journal of Materials Science》 |2019年第6期|共13页
  • 作者

    Okayasu Mitsuhiro; Yang Lele;

  • 作者单位

    Okayama Univ Grad Sch Nat Sci &

    Technol Kita Ku 3-1-1 Tsushimanaka Okayama 7008530 Japan;

    Okayama Univ Grad Sch Nat Sci &

    Technol Kita Ku 3-1-1 Tsushimanaka Okayama 7008530 Japan;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学;
  • 关键词

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