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| 1 | Recent advances on environmental corrosion behavior and mechanism of high-entropy alloys显示文摘In the past decade, the sudden rise of high-entropy alloys(HEAs) has become a research hotspot in the domain of metal materials. HEAs break through the design concept of traditional single-principal element alloys, and the four core effects, especially the high entropy and cocktail effects, make HEAs exhibit much better corrosion resistance than traditional corrosion-resistant metal materials, e.g., stainless steels, copper-nickel alloys, and high-nickel alloys. Currently, the corrosion resistance of HEAs causes great concern in the field of corrosion research. This article reviews the corrosion behavior and mechanism of HEAs in various aqueous solutions, revealing the correlation among the composition, microstructure and corrosion resistance of HEAs, and elaborates the influence of heat treatment, anodizing treatment and preparation methods on the corrosion behavior of HEAs. This knowledge will benefit the on-demand design of corrosion-resistant HEAs, which is an important trend of future development. Finally, perspectives regarding the corrosion research of HEAs are outlined to guide future studies. | Yu Fu Jun Li Hong Luo Cuiwei Du Xiaogang Li | 2021 | Journal of Materials Science & Technology2021,,21: | 18 |
| 2 | Relationship between electrochemical characteristics and SCC of X70 pipeline steel in an acidic soil simulated solution显示文摘Stress corrosion cracking (SCC) of X70 pipeline steel in simulated solution of the acidic soil in Yingtan in China was investigated using slow strain rate test (SSRT), SEM and potentiodynamic polarization technique. Experiment results indicate that X70 steel is highly susceptible to SCC as applied potential reduces, which is manifested in loss of toughness and brittle fracture. Constant polarization current can detect the occurrence of SCC. The lower the polarization current is the sooner stress corrosion cracking occurs. The SCC mechanisms are different at varying potentials. When potential is higher than open circuit potential, anodic process controls SCC, whereas when potential is far lower than open circuit potential, cathodic process controls SCC, and between these two potential regions, a combined electrochemical process controls the SCC. Stress or strain has a synergistic effect with electrochemical reactions to accelerate the cathodic hydrogen evolution process, which makes the X70 pipeline steel to be more susceptible to SCC. | Zhiyong LIU Xiaogang LI Yingrui ZHANG Cuiwei DU Guoli ZHA | 2009 | Acta Metallurgica Sinica(English Letters)2009,22,1: | 13 |
| 3 | Effect of molybdenum content on the microstructure and corrosion behavior of FeCoCrNiMox high-entropy alloys显示文摘The effect of Mo content on the microstructure revolution and corrosion behavior of cast FeCoCrNiMox high-entropy alloys in chloride environments were investigated.Results indicate that FeCoCrNi and FeCoCrNiMo0.1 alloys are in single FCC solid solution.The precipitates form in FeCoCrNiMo0.3 and increase in FeCoCrNiMo0.6 alloys.Pitting occurs on FeCoCrNi and FeCoCrNiMo0.1 alloys while FeCoCrNiMo0.3 and FeCoCrNiMo0.6 alloys suffer from preferential localized corrosion at the regions depleted in Cr and Mo.The higher Cr2O3/Cr(OH)3 ratio and the incorporation of Mo oxides make the passive film more protective and the corrosion resistance of the FeCoCrNiMo0.1 alloy is thus enhanced.The correlation between microstructure and corrosion behavior and the corresponding corrosion mechanism were clarified. | Chunduo Dai Tianliang Zhao Cuiwei Du Zhiyong Liu Dawei Zhang | 2020 | Journal of Materials Science & Technology2020,42,11: | 13 |
| 4 | Properties of passive film formed on 316L/2205 stainless steel by Mott-Schottky theory and constant current polarization method显示文摘Semiconductor properties of the passive films formed on 316L and 2205 stainless steel were studied by Electrochemical Impedance Spectroscopy(EIS) in the high-temperature acetic acid.The results showed that the corrosion resistance of 2205 was higher than that of 316L,and the passive films formed on 316L and 2205 stainless steel showed p-type and n-type semiconductor behavior,respectively.Destruction and self-repairing of passive films were studied by using the constant current polarization method.The results showed that for 316L,the self-repairing process would occur when the destruction was lower than the critical extent or it would not do;for 2205,the self-repairing process only happened in a short time when the destruction was in the same extent as 316L. | CHENG XueQun LI XiaoGang DU CuiWei | 2009 | Chinese Science Bulletin2009,54,13: | 11 |
| 5 | Effect of deteriorated microstructures on stress corrosion cracking of X70 pipeline steel in acidic soil environment显示文摘In order to investigate stress corrosion cracking (SCC) of X70 pipeline steel and its weld joint area in acidic soil environ-ment in China, two simulating methods were used: one was to obtain bad microstructures in heat affected zone by annealing at 1300°C for 10 min and then, quenching in water; the other was to get different simulating solutions of acidic soil in Yingtan in south-east China. The SCC susceptibilities of X70 pipeline steel before and after quenching in the simulating solutions were analyzed using slow stain rate test (SSRT) and potentiodynamic polarization technique to investigate the SCC electrochemical mechanism of differ-ent microstructures further. The results show that SCC appears in the original microstructure and the quenched microstructure as the polarization potential decreases. Hydrogen revolution accelerates SCC of the two tested materials within the range of -850 mV to -1200 mV vs. SCE. Microstructural hardening and grain coarsening also increase SCC. The SCC mechanisms are different, anodic dissolution is the key of causing SCC as the polarization potential is higher than the null current potential, and hydrogen embrittle-ment will play a more important role to SCC as the polarization potential lower than the null current potential. | Zhiyong Liu Guoli Zhai Xiaogang Li Cuiwei Du | 2008 | Journal of University of Science and Technology Beijing2008,15,6: | 10 |
| 6 | Imbalance of Interleukin 18 and Interleukin 18 Binding Protein in Patients with Lupus Nephritis显示文摘评估 interleukin 的平衡地位 18 ( IL-18 )并且 interleukin 在在有豺狼座肾炎(行)和主要肾病的症候群( PNS )的病人的循环的 18 有约束力的蛋白质( IL-18BP ),在 IL-18 和 IL-18BP 的外部血 mononuclear 房间( PBMC )的血浆层次以及 mRNA 表示被 ELISA 和 RT-PCR 分别地测量。IL-18/IL-18BP 的比率也是计算的。当仅仅 IL-18BP 在 PNS 增加了时,当时,血浆 IL-18 和 IL-18BP 在行病人显著地增加了,它在行然而并非在 PNS 病人导致了 IL-18/IL-18BP 的提高的比率与正常控制相比。相反,增加了 IL-18 mRNA 的水平仅仅在行然而并非在 PNS 组被检测,尽管在在两个组的 PBMC 的 IL-18BP mRNA 表情在控制比那高。IL-18 和 IL-18BP 的不平衡可能涉及行,一条治疗学的途径基于是为行要发展的贵重物品的致病。细胞与分子的免疫学。2006; 3 (4 ): 303-306。 | Dong Liang Wenfeng Ma Cuiwei Yao Huafeng Liu Xiaowen Chen | 2006 | Cellular & Molecular Immunology2006,3,4: | 10 |
| 7 | Effect of pH Value on Stress Corrosion Cracking of X70 Pipeline Steel in Acidic Soil Environment显示文摘The effect of pH value on the stress corrosion cracking(SCC) of API X70 pipeline steel in simulated acidic soil solutions was investigated by using slow strain rate test,electrochemical polarization curves,electrochemical impedance spectroscopy,and scanning electron microscopy.pH plays an important role in the susceptibility and electrochemical mechanism of SCC.The pH higher than 5 has no significant effect on electrochemical processes.By contrast,the pH lower than 5 intensifies cathodic hydrogen evolution reactions,thus increasing the cathodic current and corrosion potential.Under different pH values,the SCC mechanism of X70 pipeline steel varies among anodic dissolution(AD),hydrogen embrittlement(HE),and the combination of AD and HE(AD + HE) with variations of applied potential.At-850 mV SCE,the SCC mechanism is HE if pH is less than 4 or AD + HE if pH value is more positive. | Zhiyong LIU Cuiwei DU Xin ZHANG Fuming WANG Xiaogang LI | 2013 | Acta Metallurgica Sinica(English Letters)2013,26,4: | 9 |
| 8 | COVID-19 in cancer patients:risk,clinical features,and management显示文摘A novel coronavirus known as severe acute respiratory syndrome coronavirus 2(SARS-CoV-2)has spread across the world,prompting the World Health Organization to declare the coronavirus disease of 2019(COVID-19)a public health emergency of international concern.Cancer patients are regarded as a highly vulnerable population to SARS-CoV-2 infection and development of more severe COVID-19 symptoms,which is possibly due to the systemic immunosuppressive state caused directly by tumor growth and indirectly by effects of anticancer treatment.Currently,much effort has been directed toward studying the pathogenesis and treatment of COVID-19,but the risk profiles,prognoses,and treatment outcomes in cancer patients remain unclear.Based on the current literature,we summarize the risk profiles,clinical and biochemical characteristics,and therapy outcomes of COVID-19 infections in cancer patients.The challenges in the clinical care of cancer patients with COVID-19 are discussed.The goal of this review is to stimulate research to better understand the biological impact and prognoses of COVID-19 infections in cancer patients,thus facilitating improvement of the clinical management of these patients. | Cuiwei Liu Yanxia Zhao Derick Okwan-Duodu Reva Basho Xiaojiang Cui | 2020 | Cancer Biology & Medicine2020,17,3: | 8 |
| 9 | Field corrosion characterization of soil corrosion of X70 pipeline steel in a red clay soil显示文摘The corrosion behavior of X70 pipeline steel buried in red soil environment has been studied. The surface morphology and elemental distribution were determined by scanning electron microscopy(SEM),energy dispersive X-ray spectroscopy(EDS), and X-ray diffraction(XRD).The corrosion kinetics was evaluated by weight loss measurement. The results show that in red soil, the corrosion rate of X70 steel decreases with time, and follows the exponential decay law. General corrosion with non-uniform and localized pitting occurred on the steel surface. α-Fe OOH was the dominate products during corrosion in whole buried periods, and the corrosion products exhibited well protective properties. The potentiodynamic polarization tests revealed that icorrdecreased with time, indicating the improvement of corrosion resistance. The results of Electrochemical impendence spectroscopy(EIS) are consistent with potentiodynamic polarization tests. | Shengrong Wang Cuiwei Du Xiaogang Li Zhiyong Liu Min Zhu Dawei Zhang | 2015 | Progress in Natural Science:Materials International2015,25,3: | 7 |
| 10 | Biotechnological approaches in glucosinolate production显示文摘Glucosinolates(GLSs) are sulfur-rich, amino acid-derived defense compounds characteristic of the Brassicales order. In the past, GLSs were mostly known as anti-nutritional factors in fodder, biopesticides in agriculture, and flavors in condiments such as mustard. However, in recent times, GLSs have received increased attention as promoters of human health.This has spurred intensive research towards generating rich sources of health-promoting GLSs. We provide a comprehensive overview of the biotechnologica approaches applied to reach this goal. This includes optimization of GLS production and composition in native, GLS-producing plants, including hairy root and cell cultures thereof, as well as synthetic biology approaches in heterologous hosts, such as tobacco and the microbial organisms Escherichia coli and Saccharomyces cerevisiae. The progress using these different approaches is discussed. | Annette Petersen Cuiwei Wang Christoph Crocoll Barbara Ann Halkier | 2018 | Journal of Integrative Plant Biology2018,60,12: | 6 |
| 11 | Application of ICP-AES with Microwave Digestion to Detect Trace Elements in Oysters from Jiaozhou Bay,China显示文摘Using ICP-AES with microwave digestion, we determined the concentrations of 16 trace elements in oysters from six sampling points in Jiaozhou Bay.The distributions of the wholesome elements Zn, Fe and Mn, and heavy metals such as As,Cd,Hg and Pb were studied.The oysters collected are all rich in the wholesome trace elements,and the oysters from Licun River have the highest concentrations of the three wholesome trace elements.The concentrations of heavy metals in oysters from Licun River are the highest and those from Hongdao are the lowest. Compared with the domestic and foreign sea-areas,the heavy metal contents in the oysters from Jiaozhou Bay are less in amount than those from some developed countries, and more than those in Southeast China.This implies that the Jiaozhou Bay's oysters have been polluted by the environment to some extent. | ZHENG Kang YAN Cuiwei | 2011 | Journal of Ocean University of China2011,10,3: | 6 |
| 12 | Distinct beneficial effect of Sn on the corrosion resistance of Cr-Mo low alloy steel显示文摘In this work,the beneficial effect of Sn addition on the corrosion resistance mechanism of Cr-Mo low alloy steel was studied.Results demonstrated that Sn improves the corrosion resistance of the steel matrix mainly by influencing the microstructural transformation.Sn addition and the synergistic effect of Sn,Cr,and Mo promote the formation of α-FeOOH,SnO_(2),SnO,Cr(OH)_(3),and molybdates,lead to the improved protection and stability of the rust layer.This synergistic effect also endows the inner rust layer with cation selectivity,preventing the further penetration of Cl-and inhibiting the localized corrosion of steel. | Meihui Sun Xiaojia Yang Cuiwei Du Zhiyong Liu Yong Li Yumin Wu Hongyu San Xiandong Su Xiaogang Li | 2021 | Journal of Materials Science & Technology2021,,22: | 6 |
| 13 | Effect of calcium ions on CO_2 corrosion of 3Cr low-alloy steel显示文摘The effect of calcium ions on the corrosion behavior of 3Cr low-alloy steel in CO 2 containing sodium chloride solution was investigated by immersion test and electrochemical measurements. It is found that with the addition of Ca 2+ to CO 2-containing solution,the crazing level of the corrosion scale on the specimen is much slighter than that of the specimen immersed in solution without Ca 2+ . The pitting on the surface of the specimens immersed in the solution with Ca 2+ is relatively small and distributes uniformly all over the surface. The significant change in the anodic polarization curve is attributed to the deposition of the CaCO 3 . CaCO 3 deposits on the specimen surface and gives a protection to the metal substrate. And with the anodic proceeding,the concentration of H + in the solution increases. The CaCO 3 deposition dissolves in the low pH solution and the protection effect disappears. | Zhijun JIA Cuiwei DU Zhiyong LIU Jin GAO Xiaogang LI | 2011 | Acta Metallurgica Sinica(English Letters)2011,24,5: | 4 |
| 14 | Molecular breeding of water lily: engineering cold stress tolerance into tropical water lily显示文摘Water lilies(order Nymphaeales)are rich in both economic and cultural values.They grow into aquatic herbs,and are divided into two ecological types:tropical and hardy.Although tropical water lilies have more ornamental and medicinal values compared to the hardy water lily,the study and utilization of tropical water lilies in both landscaping and pharmaceutical use is greatly hindered due to their limited planting area.Tropical water lilies cannot survive the winter in areas beyond 24.3°N latitude.Here,the transgenic pipeline through the pollen-tube pathway was generated for water lily for the first time.To improve cold stress tolerance of tropical water lilies,a gene encoding choline oxidase(CodA)driven by a cold stress-inducible promoter was transformed into a tropical water lily through the pollen-tube transformation.Six independent transgenic lines were tested for survival rate during two winter seasons from 2015 to 2017 in Hangzhou(30.3°N latitude).PCR and southern blot detection revealed that the CodA gene had been integrated into the genome.Reverse transcription PCR showed that CodA gene was induced after cold stress treatment,and further quantitative real-time PCR revealed different expressions among six 4 lines and line 3 had the highest expression.Multiple physiological experiments showed that after cold stress treatment,both the conductivity and malondialdehyde(MDA)levels from transgenic plants were significantly lower than those of non-transgenic plants,whereas the content of betaine and the activity of superoxide dismutase,catalase,and peroxidase were higher than those from non-transgenic plants.These results suggest that expression of exogenous CodA gene significantly improved the cold stress tolerance of tropical water lilies through a wide range of physiological alterations.Our results currently expanded a six-latitude cultivating area of the tropical water lilies.These results not only illuminate the bright future for water lily breeding but will also facilitate the functional genomic studies. | Cuiwei Yu Guirong Qiao Wenmin Qiu Dongbei Yu Shirong Zhou Yan Shen Guanchun Yu Jing Jiang Xiaojiao Han Mingying Liu Liangsheng Zhang Fei Chen Yuchu Chen Renying Zhuo | 2018 | Horticulture Research2018,5,1: | 4 |
| 15 | Corrosion Resistance of 316L Stainless Steel in Acetic Acid by EIS and Mott-Schottky显示文摘The properties of the passivation film formed on 316L stainless steel were studied by Electrochemical Impedance Spectroscopy(EIS),Mott-Schottky and Voltammetry measurements in high- temperature acetic acid.The results show that the passivation film formed on 316L stainless steel is stable in 60% acetic acid solution from 25℃to 85℃.As temperature increased,the polarization resistance decreased but the interface capacitance increased.There was hardly any relation between temperature and the intrinsic property semiconductor.The passivation film represents the p-semiconductor property in the potential interval of-0.5-0.1 V;represents the n-semiconductor property in the potential interval of 0.1-0.9 V;and represents the p-semiconductor property in the potential interval of 0.9-1.1 V.The voltammetry measurements show that the structure of the passivation film is stable when the temperature is lower than 55℃ and that its stability decreased when this temperature is exceeded. | CHENG Xuequn LI Xiaogang YANG Lixia DU Cuiwei | 2008 | Journal of Wuhan University of Technology(Materials Science)2008,23,4: | 4 |
| 16 | Learning a discriminative mid-level feature for action recognition显示文摘In this paper,we address the problem of recognizing human actions from videos.Most of the existing approaches employ low-level features(e.g.,local features and global features)to represent an action video.However,algorithms based on low-level features are not robust to complex environments such as cluttered background,camera movement and illumination change.Therefore,we propose a novel random forest learning framework to construct a discriminative and informative mid-level feature from low-level features of densely sampled 3D cuboids.Each cuboid is classified by the corresponding random forests with a novel fusion scheme,and the cuboid’s posterior probabilities of all categories are normalized to generate a histogram.After that,we obtain our mid-level feature by concatenating histograms of all the cuboids.Since a single low-level feature is not enough to capture the variations of human actions,multiple complementary low-level features(i.e.,optical flow and histogram of gradient 3D features)are employed to describe 3D cuboids.Moreover,temporal context between local cuboids is exploited as another type of low-level feature.The above three low-level features(i.e.,optical flow,histogram of gradient 3D features and temporal context)are effectively fused in the proposed learning framework.Finally,the mid-level feature is employed by a random forest classifier for robust action recognition.Experiments on the Weizmann,UCF sports,Ballet,and multi-view IXMAS datasets demonstrate that out mid-level feature learned from multiple low-level features can achieve a superior performance over state-of-the-art methods. | LIU CuiWei PEI MingTao WU XinXiao KONG Yu JIA YunDe | 2014 | Science China(Information Sciences)2014,57,5: | 3 |
| 17 | Microbiologically influenced corrosion of 304 stainless steel by halophilic archaea Natronorubrum tibetense显示文摘The corrosion behavior of 304 stainless steel(SS)in the presence of aerobic halophilic archaea Natronorubrum tibetense was investigated.After 14 days of immersion,no obvious pitting pit was observed on the SS surface in the sterile medium.By contrast,the SS exhibited serious pitting corrosion with the largest pit depth of 5.0μm in the inoculated medium after 14 days.The results of electrochemical tests showed that the barrier property of the passive film decreased faster in the inoculated medium.The X-ray photoelectron spectroscopy results indicated that the detrimental Fe2+and Cr6+increased in the passive film under the influence of archaea N.tibetense,which resulted in the accelerated deterioration of passive film and promoted the pitting corrosion.Combined with the energy starvation tests,the microbiologically influenced corrosion mechanism of 304 SS caused by halophilic archaea N.tibetense was discussed finally. | Hongchang Qian Lingwei Ma Dawei Zhang Ziyu Li Luyao Huang Yuntian Lou Cuiwei Du | 2020 | Journal of Materials Science & Technology2020,42,11: | 3 |
| 18 | SCC of X70 and Its Deteriorated Microstructure in Simulated Acid Soil Environment显示文摘In order to study the stress corrosion cracking (SCC) of X70 pipeline steel and its weld joint in acid soil environment of southeast of China, two simulating methods were used here. The one was to obtain the bad microstructures in heat affected zone by annealing at 1300°C for 10 min and air cooling to room temperature, the other was to get a series of simulating solutions of the acid soil environment. SCC susceptibilities of X70 pipeline steels before and after being normalized in the simulated solutions were studied by slow strain rate test (SSRT) and microstructural observation of fracture areas. Potentiodynamic polarization curves were used to study the electrochemical behaviour of different microstructures. SCC does occur to both the as-received material and normalized microstructure after heat treatment as the polarization potential decreased. Hydrogen embrittlement (HE) is indicated occurring to all tested materials at -850 mV (vs SCE) and -1200 mV(vs SCE). The SCC mechanisms are different within varying potential range. Anodic dissolution is the key cause as polarization potential higher than null current potential, and HE will play a more important role as polarization potential lower than the null current potential. | Zhiyong Liu Guoli Zhai Xiaogang Li Cuiwei Du | 2009 | Journal of Materials Science & Technology2009,25,2: | 2 |
| 19 | Role of Martensite Structural Characteristics on Corrosion Features in Ni-Advanced Dual-Phase Low-Alloy Steels显示文摘The relationship between the corrosion resistance and martensite structure of Ni-advanced dual-phase weathering steel was studied using transmission electron microscopy,scanning electron microscopy,electrochemical analysis,and atomic force microscopy.The investigations indicate that the final microstructure of the dual-phase weathering steel was composed of a large amount of low-carbon lath martensite distributed in the ferrite matrix.The potential of the martensite phase is higher than that of ferrite,which acts as a microcathode.As the martensite volume fraction in the Ni-advanced dual-phase weathering steel increased,the corrosion rate increased owing to the greater galvanic couple formed between the ferrite and martensite from the increasing ratio of the cathode area to the anode area.In addition,this work provides a method to obtain advanced weathering steel with improved mechanical properties and corrosion resistance. | Chao Hai Xuequn Cheng Cuiwei Du Xiaogang Li | 2021 | Acta Metallurgica Sinica(English Letters)2021,34,6: | 2 |
| 20 | Effect of cathodic potential on stress corrosion cracking behavior of 21Cr2NiMo steel in simulated seawater显示文摘This study aims at providing systematically insights to clarify the impact of cathodic polarization on the stress corrosion cracking(SCC)behavior of 21 Cr2 NiMo steel.Slow-strain-rate tensile tests demonstrated that 21 Cr2 NiMo steel is highly sensitive to hydrogen embrittlement at strong cathodic polarization.The lowest SCC susceptibility occurred at-775 mV vs.SCE,whereas the SCC susceptibility was remarkably higher at potentials below-950 mV vs.SCE.Scanning electron microscopy(SEM)and electron backscattered diffraction(EBSD)revealed that the cathodic potential decline caused a transition from transgranular to intergranular mode in the fracture path.The intergranular mode transformed from bainite boundaries separation to prior austenitic grain boundaries separation under stronger cathodic polarization.Furthermore,corrosion pits promoted the nucleation of SCC cracks.In conclusion,with the decrease in the applied potential,the SCC mechanism transformed from the combination of hydrogen embrittlement and anodic dissolution to typical hydrogen embrittlement. | Menghao Liu Zhiyong Liu Cuiwei Du Xiaoqin Zhan Chunduo Dai Yue Pan Xiaogang Li | 2022 | International Journal of Minerals,Metallurgy and Materials2022,29,2: | 2 |