TRIP钢变形后的氢脆

P. Váňová, J. Sojka, Mária Melicherová, K. Konečná, Taťána Radkovská
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引用次数: 0

摘要

这项工作的目的是获得有关氢在TRIP 780钢预变形样品中的影响的信息,以及在变形过程中,当保留的奥氏体转变为马氏体时。电解加氢发生在变形同时作用下和拉伸试验前。氢化处理后,TRIP钢的屈服强度提高,抗拉强度降低。断裂伸长率与预变形样品相比也显著下降了20%以上。形变诱发马氏体的出现是导致TRIP钢对氢脆敏感的重要原因。预变形量为5%时,试样的氢脆指数为78.1%,预变形量为10%时,氢脆指数进一步提高到86.2%。从这些结果中可以看出,随着变形百分比的增加,氢导致了TRIP钢的力学性能的退化,同时得到的结果表明,TRIP钢对氢脆的敏感性显著。本文还包括断口分析的结果,该结果也显示了典型的氢脆迹象,即准解理断裂和鱼眼断裂。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Hydrogen embrittlement of TRIP steel after previous deformation
The aim of the work was to obtain information about the effect of hydrogen in pre-deformed samples made of TRIP 780 steel and during deformation, when retained austenite transforms into martensite. Electrolytic hydrogenation took place both under the simultaneous action of deformation and before the tensile test itself. After hydrogenation, TRIP steel showed an increase in the yield strength and a decrease in the tensile strength. Elongation at fracture also decreased significantly by more than 20 % compared to samples that were only pre-deformed. The occurrence of deformation-induced martensite in the microstructure of TRIP steels significantly contribute to the susceptibility of these steels to hydrogen embrittlement. For samples with 5% predeformation, the value of the hydrogen embrittlement index was found to be 78.1 %, for samples with 10% predeformation it further increased to 86.2 %. From these results, hydrogen led to a degradation of mechanical properties with increasing percentage of deformation and at the same time the obtained results demonstrate a significant susceptibility of TRIP steels to hydrogen embrittlement. The article also contains results of a fractographic analysis, which also showed the occurrence of typical signs of hydrogen embrittlement, which are a quasi-cleavage fracture and fisheyes.
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