|
|
|
题名
|
作者
|
年代
|
出处
|
被引量
|
| 1 | Development and industrial application of ultra-fast cooling technology显示文摘A new-generation TMCP(NG-TMCP) with ultra fast cooling(UFC) as core technique was suggested instead of the conventional TMCP in which some problems are to be solved.And the ultra fast cooling technology has been successfully applied to the plate rolling production in Shouqin Metal Materials Co.Ltd.Industrial trials are reported for the production of X70 pipeline steels(about 70000 t) under UFC conditions.Pipeline steels with reasonably good properties have been produced on an industrial scale.UFC can improve the temperature uniformity,the mechanical properties and the plate profile of X70 pipeline steel.The performance features of the trial plates can meet the standard of X70 pipeline steel.Spot test results have shown that the qualification rate of shape control,the performance and charpy impact properties for the trial plates are 95%,97% and 98%,respectively.The impact values of X70 pipeline steel at UFC mode exceed the standard requirements of X80 pipeline steel.The productivity is enhanced because cutting quantity of head and tail of the plate is reduced.The enhancement of control accuracy of the red back temperatures is favorable for industrial production of X70 pipeline steel.The reduced production of the steel-making has been industrially achieved,since a new composition was designed by reducing the vanadium content to less than 0.045 wt.%. | TIAN Yong TANG Shuai WANG BingXing WANG ZhaoDong WANG GuoDong | 2012 | Science China(Technological Sciences)2012,55,6: | 9 |
| 2 | AQR is a novel type 2 diabetes-associated gene that regulates signaling pathways critical for glucose metabolism显示文摘Type 2 diabetes mellitus(T2 DM) is a common metabolic disease influenced by both genetic and environmental factors. In this study, we performed an in-house genotyping and meta-analysis study using three independent GWAS datasets of T2 DM and found that rs3743121, located 1 kb downstream of AQR,was a novel susceptibility SNP associated with T2 DM. The risk allele C of rs3743121 was correlated with the increased expression of AQR in white blood cells, similar to that observed in T2 DM models. The knockdown of AQR in HepG2 facilitated the glucose uptake, decreased the expression level of PCK2,increased the phosphorylation of GSK-3β, and restored the insulin sensitivity. Furthermore, the suppression of AQR inhibited the mTOR pathway and the protein ubiquitination process. Our study suggests that AQR is a novel type 2 diabetes-associated gene that regulates signaling pathways critical for glucose metabolism. | Chun Song Han Yan Hanming Wang Yan Zhang Huiqing Cao Yiqi Wan Lingbao Kong Shenghan Chen Hong Xu Bingxing Pan Jin Zhang Guohuang Fan Hongbo Xin Zicai Liang Weiping Jia Xiao-Li Tian | 2018 | Journal of Genetics and Genomics2018,45,2: | 1 |
| 3 | Energy Conversion Stage Design of Solar Water Pump in a Nanofiltration System显示文摘 | Jin Chuanlin Wang Bingxing Jiang Dongliu Jiang Wei | 2011 | Energy Procedia2011,,12: | 1 |
| 4 | A highly ac- tive carbon-supported PdSn catalyst for formic acid elec-trooxidation显示文摘 | Tu Dandan Wu Bing Wang Bingxing | 2011 | AppliedCatalysisB:Environmental2011,103,12: | 1 |
| 5 | Inference under progressively type II right-censored sampling for certain lifetime distributions显示文摘 | Wang Bingxing Yu Keming Jones MC | 2010 | Technometrics2010,52,4: | 1 |
| 6 | The Propagation Model and Analysis of Worms Together with Anti-worms显示文摘 | Wang Bailing Fang Bingxing Yun Xiaochun | 2004 | WSEAS Transactions on Information Science and Applications2004,4,1: | 1 |
| 7 | A highly active carbon- supported PdSn catalyst for formic acid electrooxidation显示文摘 | Tu Dandan Wu Bing Wang Bingxing | 2011 | Appl Catal B Environ2011,103,12: | 1 |
| 8 | Unraveling the reaction mechanism of low dose Mn dopant in Ni(OH)_(2) supercapacitor electrode显示文摘Mn doping is deemed as a promising strategy to improve the electrochemical performance of the a-Ni(OH)_(2)battery-type supercapacitor electrode.However,the internal structure evolution,the pathways and the dynamics of the proton/intercalated anion migration,as well as the functioning mechanism of Mn dopant to stabilize the layered structure during cycles remain unclear.Here,we unveil that irreversible oxidization of Mn^(3+)at the initial CV cycles,which will remain as Mn^(4+)in the NiO_(2)slabs after the first oxidization to effectively suppress the phase transformation fromα-Ni(OH)_(2)/γ-NiOOH toβ-Ni(OH)_(2)/β-NiOOH and further maintain the structural integrity of electrode.With a synergistic combination of theoretical calculations and various structural probes including XRD and^(2)H MAS solid state NMR,we decode the structure evolution and dynamics in the initial CV(cyclic voltammetry)cycles,including the absorption/desorption of hydrogen containing species,migration of intercalated anions/water molecules and the change of interlayer space.This present work elucidates a close relationship between doping chemistry and structural reliability,paving a novel way of reengineering supercapacitor electrode materials. | Zhiguo Zhang Hua Huo Zhenjiang Yu Lizhi Xiang Bingxing Xie Chunyu Du Jiajun Wang Geping Yin | 2021 | Journal of Energy Chemistry2021,30,10: | 0 |
| 9 | Effect of Nanoparticle Type and Surfactant on Heat Transfer Enhancement in Spray Cooling显示文摘In this study,the heat transfer characteristics of nanofluids used in spray cooling systems were examined.Three nanofluids,i.e.,Cu,CuO,and Al2 O3,respectively,with volume fractions ranging from 0.1%to0.5%,as well as different volume fractions of a surfactant Tween 20,were used.In addition,their contact angles were measured to examine the heat-transfer characteristics.Under the same experimental conditions,with the increase in the volume fraction of the Cu nanoparticles from 0.1%to 0.5%,the maximum heat flux qmax increased from 3.36 MW/m2 to 3.48 MW/m2 from the impinging central point to r=30 mm(r is the distance from the impingement point),and the corresponding temperature of qmax increased from 400℃to 420℃.Results revealed that with increasing Tween 20 concentrations,the contact angle decreased because of the decrease in the surface tension of nanofluids and improvement of the wetting ability,and the corresponding qmax increased from 3.48 MW/m2 to 3.94 MW/m2 at the impact central point. | WANG Bingxing LIU Zhixue ZHANG Bo XIA Yue WANG Zhaodong WANG Guodong | 2020 | Journal of Thermal Science2020,29,3: | 0 |