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NbC纳米析出相对低合金高强钢氢致开裂的影响研究
作者姓名:En-dian Fan  Shi-qi Zhang  Dong-han Xie  Qi-yue Zhao  Xiao-gang Li  Yun-hua Huang
作者单位:1)Institution for Advanced Materials and Technology, University of Science and Technology Beijing, Beijing 100083, China
基金项目:and the National Materials Corrosion and Protection Data Center;This work was financially supported by the National Key Research and Development Program of China ;the National Natural Science Foundation of China ;the National Basic Research Program of China
摘    要:We investigated the effect of nanosized NbC precipitates on hydrogen-induced cracking (HIC) of high-strength low-alloy steel by conducting slow-strain-rate tensile tests (SSRT) and performing continuous hydrogen charging and fracture analysis. The results reveal that the HIC resistance of Nb-bearing steel is obviously superior to that of Nb-free steel, with the fractured Nb-bearing steel in the SSRT exhibiting a smaller ratio of elongation reduction (Iδ). However, as the hydrogen traps induced by NbC precipitates approach hydrogen saturation, the effect of the precipitates on the HIC resistance attenuate. We speculate that the highly dispersed nanosized NbC precipitates act as irreversible hydrogen traps that hinder the accumulation of hydrogen at potential crack nucleation sites. In addition, much like Nb-free steel, the Nb-bearing steel exhibits both H-solution strengthening and the resistance to HIC.

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Effect of nanosized NbC precipitates on hydrogen-induced cracking of high-strength low-alloy steel
En-dian Fan,Shi-qi Zhang,Dong-han Xie,Qi-yue Zhao,Xiao-gang Li,Yun-hua Huang.Effect of nanosized NbC precipitates on hydrogen-induced cracking of high-strength low-alloy steel[J].International Journal of Minerals,Metallurgy and Materials,2021,28(2):249-256.
Authors:En-dian Fan  Shi-qi Zhang  Dong-han Xie  Qi-yue Zhao  Xiao-gang Li  Yun-hua Huang
Abstract:We investigated the effect of nanosized NbC precipitates on hydrogen-induced cracking (HIC) of high-strength low-alloy steel by conducting slow-strain-rate tensile tests (SSRT) and performing continuous hydrogen charging and fracture analysis. The results reveal that the HIC resistance of Nb-bearing steel is obviously superior to that of Nb-free steel, with the fractured Nb-bearing steel in the SSRT exhibiting a smaller ratio of elongation reduction (Iδ). However, as the hydrogen traps induced by NbC precipitates approach hydrogen saturation, the ef-fect of the precipitates on the HIC resistance attenuate. We speculate that the highly dispersed nanosized NbC precipitates act as irreversible hydrogen traps that hinder the accumulation of hydrogen at potential crack nucleation sites. In addition, much like Nb-free steel, the Nb-bear-ing steel exhibits both H-solution strengthening and the resistance to HIC.
Keywords:nanosized NbC precipitates  high-strength low-alloy steel  hydrogen-induced cracking  slow-strain-rate tensile  hydrogen charging
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