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Study on the Naphthenic Acid Erosion-Corrosion Behaviors and Prevention Methods of Carbon Steel
Wu, Xinqiang,Kim, In Sup,Zheng, Yugui,Ke, Wei 한국부식방식학회 2002 Corrosion Science and Technology Vol.31 No.6
The naphthenic acid erosion-corrosion (NAEC) behaviors of carbon steel, pack-aluminized carbon steel, and carbon steel covered by the high velocity oxygen-fuel (HVOF) thermal sprayed AISI 316L stainless steel coating, were investigated in laboratory and oil refinery. The results revealed that the NAEC rate of carbon steel increases markedly with increase of the velocity of flow, especially in high temperature range. The reasons may be ascribed to the enhanced mass transfer and the accelerated surface reaction as well as the rapid spallation of corrosion products from the metal surface. Both the aluminized carbon steel and the carbon steel covered by the HVOF coating show better resistance against the NAEC relative to the carbon steel due to the higher microhardness and corrosion resistance of their surface-layers. It is recommended the HVOF coating to be applied for NAEC prevention of the components in oil refineries in view of present experimental results.
( Xinqiang Zhu ),( Gang Zhou ),( Peng Ni ),( Xuetong Jiang ),( Hailong Huang ),( Jianqiang Wu ),( Xiaohong Shi ),( Xiaoling Jiang ),( Jianing Liu ) 대한소화기학회 2021 Gut and Liver Vol.15 No.2
Background/Aims: Colorectal cancer (CRC) patients often exhibit peritoneal metastasis, which negatively impacts their prognosis. CD31 and D2-40 have recently been suggested to be predictors of breast cancer prognosis, but their role in colorectal peritoneal metastasis (CRPM) remains unknown. Methods: The expression profiles of CD31 and D2-40 were analyzed in CRC patients with or without CRPM and in CRC cell lines with increasing metastatic potential. Overexpression and short hairpin RNA knockdown assays were performed in CRC cells, and the effects of these alterations on epithelial-mesenchymal transition (EMT) in vitro, growth of xenograft tumors in vivo, and peritoneal metastasis potential in a mouse model of CRPM were examined. Results: The expressions of CD31 and D2-40 were upregulated in CRC tumor tissues and was elevated further in tumor tissues from patients with CRPM. CD31 and D2-40 expression levels exhibited increasing trends parallel to the EMT potential of CRC cells. CD31 and D2-40 are essential for CRC cell EMT in vitro as well as for xenograft tumor growth and peritoneal metastasis in vivo. Conclusions: CD31 and D2-40 contribute to CRPM by promoting EMT and may serve as prognostic markers and therapeutic targets for CRC, particularly in patients with peritoneal metastasis. (Gut Liver 2021;15:273-283)
Zhang, Ziyu,Tan, Jibo,Wu, Xinqiang,Han, En-Hou,Ke, Wei Korean Nuclear Society 2021 Nuclear Engineering and Technology Vol.53 No.9
Corrosion fatigue crack growth (FCG) behavior of 316LN stainless steel was investigated in high-temperature pressurized water at different temperatures, load ratios (R = K<sub>max</sub>/K<sub>min</sub>) and rise times (t<sub>R</sub>). The environmental assisted effect on FCG rate was observed when both the R and t<sub>R</sub> exceeded their critical values. The FCG rate showed a linear relation with stress intensity factor range (ΔK) in double logarithmic coordinate. The environmental assisted effect on FCG rate depended on the ΔK and quantitative relations were proposed. Possible mechanisms of environmental assisted FCG rate under different testing conditions are also discussed.
Xue Baoquan,Tan Jibo,Wu Xinqiang,Zhang Ziyu,Wang Xiang 한국원자력학회 2024 Nuclear Engineering and Technology Vol.56 No.5
Fatigue strength of the structural materials of lead-cooled fast reactors (LFRs) and accelerator-driven systems (ADS) may be degraded in liquid metal (Lead or lead-bismuth eutectic (LBE)) environments. The fatigue crack growth (FCG) data of structural materials in liquid LBE are necessary for damage tolerance design, safety assessment and life management of key equipment. A novel monitoring system for fatigue crack length was designed on the compliance method and the monitor technology of crack opening displacement (COD) of CT specimens by the linear variable differential transformers (LVDT) system. It can be used to predict the crack length by monitoring the COD of CT specimens in harsh high-temperature liquid LBE using a LVDT system. The prediction accuracy of this system was verified by FCG experiments in room temperature air and liquid LBE at 150, 250 and 350 ◦C. The first results obtained in the FCG test for T91 steel in liquid LBE at 350 ◦C are presented.
Environmental fatigue correction factor model for domestic nuclear-grade low-alloy steel
Gao, Jun,Liu, Chang,Tan, Jibo,Zhang, Ziyu,Wu, Xinqiang,Han, En-Hou,Shen, Rui,Wang, Bingxi,Ke, Wei Korean Nuclear Society 2021 Nuclear Engineering and Technology Vol.53 No.8
Low cycle fatigue behaviors of SA508-3 low-alloy steel were investigated in room-temperature air, high-temperature air and in light water reactor (LWR) water environments. The fatigue mean curve and design curve for the low-alloy steel are developed based on the fatigue data in room-temperature and high-temperature air. The environmental fatigue model for low-alloy steel is developed by the environmental fatigue correction factor (F<sub>en</sub>) methodology based on the fatigue data in LWR water environments with the consideration of effects of strain rate, temperature, and dissolved oxygen concentration on the fatigue life.