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Featured researches published by Huabing Li.


Bioelectrochemistry | 2017

Accelerated corrosion of 2205 duplex stainless steel caused by marine aerobic Pseudomonas aeruginosa biofilm.

Dake Xu; Jin Xia; Enze Zhou; Dawei Zhang; Huabing Li; Chunguang Yang; Qi Li; Hai Lin; Xiaogang Li; Ke Yang

Microbiologically influenced corrosion (MIC) of 2205 duplex stainless steel (DSS) in the presence of Pseudomonas aeruginosa was investigated through electrochemical and surface analyses. The electrochemical results showed that P. aeruginosa significantly reduced the corrosion resistance of 2205 DSS. Confocal laser scanning microscopy (CLSM) images showed that the depths of the largest pits on 2205 DSS with and without P. aeruginosa were 14.0 and 4.9μm, respectively, indicating that the pitting corrosion was accelerated by P. aeruginosa. X-ray photoelectron spectroscopy (XPS) results revealed that CrO3 and CrN formed on the 2205 DSS surface in the presence of P. aeruginosa.


Scientific Reports | 2016

Microbiologically Influenced Corrosion of 2707 Hyper-Duplex Stainless Steel by Marine Pseudomonas aeruginosa Biofilm

Huabing Li; Enze Zhou; Dawei Zhang; Dake Xu; Jin Xia; Chunguang Yang; Hao Feng; Zhouhua Jiang; Xiaogang Li; Tingyue Gu; Ke Yang

Microbiologically Influenced Corrosion (MIC) is a serious problem in many industries because it causes huge economic losses. Due to its excellent resistance to chemical corrosion, 2707 hyper duplex stainless steel (2707 HDSS) has been used in the marine environment. However, its resistance to MIC was not experimentally proven. In this study, the MIC behavior of 2707 HDSS caused by the marine aerobe Pseudomonas aeruginosa was investigated. Electrochemical analyses demonstrated a positive shift in the corrosion potential and an increase in the corrosion current density in the presence of the P. aeruginosa biofilm in the 2216E medium. X-ray photoelectron spectroscopy (XPS) analysis results showed a decrease in Cr content on the coupon surface beneath the biofilm. The pit imaging analysis showed that the P. aeruginosa biofilm caused a largest pit depth of 0.69 μm in 14 days of incubation. Although this was quite small, it indicated that 2707 HDSS was not completely immune to MIC by the P. aeruginosa biofilm.


PLOS ONE | 2015

Extracellular Electron Transfer Is a Bottleneck in the Microbiologically Influenced Corrosion of C1018 Carbon Steel by the Biofilm of Sulfate-Reducing Bacterium Desulfovibrio vulgaris

Huabing Li; Dake Xu; Yingchao Li; Hao Feng; Zhiyong Liu; Xiaogang Li; Tingyue Gu; Ke Yang

Carbon steels are widely used in the oil and gas industry from downhole tubing to transport trunk lines. Microbes form biofilms, some of which cause the so-called microbiologically influenced corrosion (MIC) of carbon steels. MIC by sulfate reducing bacteria (SRB) is often a leading cause in MIC failures. Electrogenic SRB sessile cells harvest extracellular electrons from elemental iron oxidation for energy production in their metabolism. A previous study suggested that electron mediators riboflavin and flavin adenine dinucleotide (FAD) both accelerated the MIC of 304 stainless steel by the Desulfovibrio vulgaris biofilm that is a corrosive SRB biofilm. Compared with stainless steels, carbon steels are usually far more prone to SRB attacks because SRB biofilms form much denser biofilms on carbon steel surfaces with a sessile cell density that is two orders of magnitude higher. In this work, C1018 carbon steel coupons were used in tests of MIC by D. vulgaris with and without an electron mediator. Experimental weight loss and pit depth data conclusively confirmed that both riboflavin and FAD were able to accelerate D. vulgaris attack against the carbon steel considerably. It has important implications in MIC failure analysis and MIC mitigation in the oil and gas industry.


International Journal of Minerals Metallurgy and Materials | 2013

Corrosion behavior of ferritic stainless steel with 15wt% chromium for the automobile exhaust system

Huabing Li; Zhouhua Jiang; Hao Feng; Hongchun Zhu; Bin-han Sun; Zhen Li

The effect of chloride ion concentration, pH value, and grain size on the pitting corrosion resistance of a new ferritic stainless steel with 15wt% Cr was investigated using the anodic polarization method. The semiconducting properties of passive films with different chloride ion concentrations were performed using capacitance measurement and Mott-Schottky analysis methods. The aging precipitation and intergranular corrosion behavior were evaluated at 400–900°C. It is found that the pitting potential decreases when the grain size increases. With the increase in chloride ion concentration, the doping density and the flat-bland potential increase but the thickness of the space charge layer decreases. The pitting corrosion resistance increases rapidly with the decrease in pH value. Precipitants is identified as Nb(C,N) and NbC, rather than Cr-carbide. The intergranular corrosion is attributed to the synergistic effects of Nb(C,N) and NbC precipitates and Cr segregation adjacent to the precipitates.


Ironmaking & Steelmaking | 2015

Optimisation of electromagnetic field and flow field in round billet continuous casting mould with electromagnetic stirring

Xin Geng; X. Li; F. B. Liu; Huabing Li; Zhouhua Jiang

A three-dimensional mathematical model of mould electromagnetic stirring (M-EMS) was established. Based on Maxwells equations, the continuity equation and the momentum equation, the distribution characteristics of electromagnetic and flow fields with M-EMS were numerically simulated by the finite element software ANSYS and the finite volume software CFX. The influence of M-EMS on electromagnetic and flow fields was examined, and the process parameters of M-EMS were optimised by industrial plant trials. By the model verification, there was a good agreement between the calculated results and the measured data. The results indicate that the tangential electromagnetic force increases with the increasing current intensity, and increases at first and then decreases with the increasing current frequency. The tangential velocity increases with the increasing current intensity and current frequency (2–6 Hz). According to statistical results of the centre equiaxial crystal proportion and the macroscopic defects of round billet for different process parameters in industrial plant trials, the optimal process parameters of the M-EMS are as follows: the current intensity is 400 A, and the current frequency is 2 Hz.


Liquid Crystals | 2009

The kinetics of photo-polymerisation in the fabrication of polymer-dispersed liquid crystals doped with nano-graphite

J. H. Wang; Bao-Yan Zhang; W. Z. Qu; Huishu Chu; Huabing Li

It is known that the electro-optical behaviour of polymer-dispersed liquid crystals depends on the separation of the polymer and liquid crystal phases. The morphology of the liquid crystal domains depends on the nature of the chemical and physical processes occurring during domain formation. This work discusses the two-phase morphology found in an acrylate-based system that develops during polymerisation-induced phase separation. The effect of the dopant nano-graphite on the polymerisation and electro-optical properties are discussed. UV/VIS and time-resolved Fourier transform infrared spectroscopy is used for monitoring the polymerisation of the polymer-dispersed liquid crystals. The electro-optical properties of the polymer-dispersed liquid crystal films are measured using a polarimeter (PerkinElmer Model 341). The morphology of the liquid crystal droplets in the polymer matrix is probed by polarising optical microscopy and Fourier transform infrared spectroscopy images. The threshold voltage of the polymer-dispersed liquid crystals is dramatically decreased because of the increased conductivity of the polymer matrix on doping by nano-graphite.


Materials | 2017

Relationship between Microstructure and Corrosion Behavior of Martensitic High Nitrogen Stainless Steel 30Cr15Mo1N at Different Austenitizing Temperatures

Zhouhua Jiang; Hao Feng; Huabing Li; Hongchun Zhu; Shucai Zhang; Binbin Zhang; Yu Han; Tao Zhang; Dake Xu

The relationship between microstructure and corrosion behavior of martensitic high nitrogen stainless steel 30Cr15Mo1N at different austenitizing temperatures was investigated by microscopy observation, electrochemical measurement, X-ray photoelectron spectroscopy analysis and immersion testing. The results indicated that finer Cr-rich M2N dispersed more homogeneously than coarse M23C6, and the fractions of M23C6 and M2N both decreased with increasing austenitizing temperature. The Cr-depleted zone around M23C6 was wider and its minimum Cr concentration was lower than M2N. The metastable pits initiated preferentially around coarse M23C6 which induced severer Cr-depletion, and the pit growth followed the power law. The increasing of austenitizing temperature induced fewer metastable pit initiation sites, more uniform element distribution and higher contents of Cr, Mo and N in the matrix. In addition, the passive film thickened and Cr2O3, Cr3+ and CrN enriched with increasing austenitizing temperature, which enhanced the stability of the passive film and repassivation ability of pits. Therefore, as austenitizing temperature increased, the metastable and stable pitting potentials increased and pit growth rate decreased, revealing less susceptible metastable pit initiation, larger repassivation tendency and higher corrosion resistance. The determining factor of pitting potentials could be divided into three stages: dissolution of M23C6 (below 1000 °C), dissolution of M2N (from 1000 to 1050 °C) and existence of a few undissolved precipitates and non-metallic inclusions (above 1050 °C).


Acta Metallurgica Sinica (english Letters) | 2016

Influence of Austenitizing Temperature on the Microstructure and Corrosion Resistance of 55Cr18Mo1VN High-Nitrogen Plastic Mould Steel

Huabing Li; Weichao Jiao; Hao Feng; Zhouhua Jiang; Cui-Dong Ren

The influence of austenitizing temperature on the microstructure and corrosion resistance of 55Cr18Mo1VN high-nitrogen plastic mould steel was investigated. The microstructure, elemental distribution and Cr-depleted zone of different heat-treated samples were investigated by X-ray diffraction, electron probe microanalyzer analysis, and transmission electron microscopy. The corrosion resistance was evaluated using electrochemical measurements, and the analysis of passive film was carried out by X-ray photoelectron spectroscopy. The results indicated that the volume fraction of precipitates decreased, and the homogeneity of elements was improved with increasing austenitizing temperature. The degree of Cr-depleted zone around coarse M23C6 was severer than that around M2N, and pitting corrosion initiated preferentially around M23C6. The corrosion resistance of the samples increased with the austenitizing temperature. With the increase in austenitizing temperature, the passive film was thickened and


Metallurgical and Materials Transactions B-process Metallurgy and Materials Processing Science | 2017

Effects of Nitrogen Segregation and Solubility on the Formation of Nitrogen Gas Pores in 21.5Cr-1.5Ni Duplex Stainless Steel

Hongchun Zhu; Zhouhua Jiang; Huabing Li; Hao Feng; Shucai Zhang; Guo-Hai Liu; Jun-Hui Zhu; Peng-Bo Wang; Binbin Zhang; Guangwei Fan; Guoping Li


Scientific Reports | 2017

A combined experimental and first-principle study on the oxidation mechanism of super austenitic stainless steel S32654 at 900 °C

Nan Dong; Caili Zhang; Huabing Li; Binbin Zhang; Peide Han

{\text{Cr}}\left( {\text{III}} \right)_{{{\text{Cr}}_{2} {\text{O}}_{3} }}

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Hao Feng

Northeastern University

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Shucai Zhang

Northeastern University

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Binbin Zhang

Northeastern University

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Hongchun Zhu

Northeastern University

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Dake Xu

Northeastern University

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Peide Han

Taiyuan University of Technology

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Jun-Hui Zhu

Northeastern University

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Ke Yang

Chinese Academy of Sciences

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Peng-Bo Wang

Northeastern University

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