用于地热应用的热处理马氏体不锈钢1.4542的腐蚀和疲劳

A. Pfennig, A. Kranzmann
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引用次数: 3

摘要

在捕集和储存技术(CCS)以及地热能源生产中,钢材需要承受腐蚀性环境,如:热、压力、含水层盐度和二氧化碳分压。1.4542有不寻常的腐蚀现象,但在腐蚀环境中仍有足够的耐腐蚀性。为了更好地了解其行为,将热处理后的1.4542样品和X20Cr13和X46Cr13样品放在德国北部盆地的人工盐水中,温度为T=60°C。在水饱和超临界co2和co2饱和的合成含水层环境中,施加环境压力以及p=100 bar,持续700 h ~ 8000 h。通过推拉试验对30个试件进行疲劳试验,试验强度为150 ~ 500 MPa(正弦动态试验载荷,R=-1;谐振频率~ 30 Hz)。feo3和FeOOH也是经过动态腐蚀试验的腐蚀产物。马氏体组织在地热环境中具有良好的耐蚀性。s - n曲线没有典型的疲劳强度,有限寿命下可能的疲劳强度斜率非常陡。尽管在断口表面和横截面上含有夹杂物的试样达到了较低的循环次数,但可能的影响物,如al夹杂物,与早期破裂不相关。应用电位证明,极大地提高了疲劳寿命。文章DOI: https://dx.doi.org/10.20319/mijst.2019.51.138158本作品遵循知识共享署名-非商业4.0国际许可协议。要查看本许可协议的副本,请访问http://creativecommons.org/licenses/by-nc/4.0/或致函美国山景城CA 94042邮政信箱1866号创用cc。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
CORROSION AND FATIGUE OF HEAT TREATED MARTENSITIC STAINLESS STEEL 1.4542 USED FOR GEOTHERMAL APPLICATIONS
During capture and storage technology (CCS) as well as in geothermal energy production steels need to withstand the corrosive environment such as: heat, pressure, salinity of the aquifer and CO 2 -partial pressure. 1.4542 shows unusual corrosion phenomena, but is still sufficiently resistant in corrosive environments. To better understand its behaviour differently heat treated coupons of 1.4542 and for comparison X20Cr13 and X46Cr13 were kept in the artificial brine of the Northern German Basin at T=60 °C. Ambient pressure as well as p=100 bar for 700 h - 8000 h in water saturated supercritical CO 2 and CO 2 -saturated synthetic aquifer environment was applied. Fatigue tests were performed via push-pull tests with a series of 30 specimens from 150 MPa to 500 MPa (sinusoidal dynamic test loads, R=-1; resonant frequency ~ 30 Hz). FeCO 3 and FeOOH are corrosion products also after dynamic corrosion tests. Martensitic microstructure offers good corrosion resistance in geothermal environment. The S-N-curve showing no typical fatigue strength and very steep slopes of possible fatigue strength for finite life. Possible influencing artefacts, such as Al-inclusions could not be correlated to early rupture despite specimens containing inclusions at the fracture surface and cross section reached lower number of cycles. Applied potential proofed to enhance fatigue life tremendously. Article DOI: https://dx.doi.org/10.20319/mijst.2019.51.138158 This work is licensed under the Creative Commons Attribution-Non-commercial 4.0 International License. To view a copy of this license, visit http://creativecommons.org/licenses/by-nc/4.0/ or send a letter to Creative Commons, PO Box 1866, Mountain View, CA 94042, USA.
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