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36篇 您的检索式:作者名="Zhou Baojun"
    题名 作者 年代 出处 被引量
1显示文摘Qian Baojun Qin Jian Zhou Zhenlong 1989Textile Asia1989,,4:1
2Osteoprotegerin/RANK/RANKL axis and atrial remodeling in mitral valvular patients with atrial fibrillation显示文摘Hailong Cao Qingguo Li Mingna Li R?e OD Zhong Wu Qing Zhou Bin Cao Baojun Chen Yijiang Chen Dongjin Wang 2013International Journal of Cardiology2013,,3:1
3Microstructural evolution of Fe-32% Ni alloy during large strain multi-axial forging 显示文摘Han Baojun Xu Zhou 2007Mater Sci Eng A2007,447,12:1
4Grain refinement under multi-axial forging in Fe-32%Ni alloy显示文摘Han Baojun Xu Zhou 2008J Alloy Compd2008,457,12:1
5Martensitic transformation behavior of large strain deformed Fe-32%Ni alloy显示文摘Han Baojun Xu Zhou 2006Mater Sci Eng A2006,431,12:1
6Proton radiography of magnetic fields generated with an open-ended coil driven by high power laser pulses显示文摘Recently generation of strong magnetic(B)fields has been demonstrated in capacitor coils heated by high power laser pulses[S.Fujioka et al.,Sci.Rep.3,1170(2013)].This paper will present a direct measurement of B field generated with an open-ended coil target driven by a nanosecond laser pulse using ultrafast proton radiography.The radiographs are analyzed with particle-tracing simulations.The B field at the coil center is inferred to be ~50 T at an irradiance of ~5×10^(14) W·cm^(-2).The B field generation is attributed to the background cold electron flow pointing to the laser focal spot,where a target potential is induced due to the escape of energetic electrons.Guoqian Liao Yutong Li Baojun Zhu Yanfei Li Fang Li Mengchao Li Xuan Wang Zhe Zhang Shukai He Weiwu Wang Feng Lu Faqiang Zhang Lei Yang Kainan Zhou Na Xie Wei Hong Yuqiu Gu Zongqing Zhao Baohan Zhang Jie Zhang 2016Matter and Radiation at Extremes2016,1,4:1
7Martensite microstructure transformed from ultra-fine grained Fe-32%Ni alloy austenite显示文摘Han Baojun Xu Zhou 2008Mater Sci Eng A2008,487,12:1
8Reservoir-forming conditions and key exploration & development techniques for Xushen gas field in Northeast China显示文摘Exploration and development of volcanic gas reservoirs is a world-class problem,and less experience can be learned at home and abroad.Through study of reservoir-forming conditions of Xushen gas field,four sets of hydrocarbon source rocks,mainly mudstone and coal seam of Shahezi Formation,are identified in this gas field;its cap rocks are mudstone in Member 2 of Denglouku Formation,and Member 1 and Member 2 of Quantou Formation.By simulating reservoir-forming history,four filling periods of the Xushen gas field are determined,and the most favorable exploration targets are crater areas with structural highs,large thickness and good physical properties.On the basis of diagenetic mechanism study,the criteria of sequence series,lithology identification and reservoir types of gas reservoirs have been established;the volcanic rock bodies have been carefully depicted and the distribution laws of effective reservoirs of gas pools have been figured out.Based on evaluating reservoir-permeability characteristics of reservoirs,the gas well productivity characteristics(mainly type II,III and IV wells)have been identified,and the optimum design technology for volcanic gas reservoir development has been developed.The gas reservoirs in all blocks of Xushen gas field are classified into three types:singlebody gas reservoir model,disconnected multi-body gas reservoir model and interconnected multi-body gas reservoir model.Stimulation technologies,including multi-layer fracturing of vertical well,staged fracturing of open-hole horizontal well and volume fracturing,have been developed.According to gas well production performance,pressure change,well-controlled reserves and spatial distribution of volcanic bodies,combined with numerical simulation and prediction of gas reservoirs,the evaluation method of residual potential of volcanic gas reservoirs has been formed.Key technologies for effective exploration and development of complex volcanic gas reservoirs have been established and perfected,and bring good development effect.The research results can provide guidance and reference for exploration and development of similar gas reservoirs.Fenglan Wang Yongzhuo Wang Xuemin Zhou Changhai Yin Ping Shu Baojun Cao Yingkang Zhu 2019Petroleum Research2019,4,2:1
9Research of Optical Performance On Rare-Earth Optical Fiber显示文摘The rare-earth optical fiber is made of organic material and inorganic rare earth material.It can be used to absorb and transfer solar energy.When sunlight irradiates, it may absorb and transfer solar energy automatically; while at night or without sunlight it may give out light and play role of decoration.By utilizing high transmissivity of organic material and heat-resisting performance of inorganic material, we know the reorganization of material performance under the melting condition, and make empty core bear the high temperature of 150 ~200 ℃.When the light spreads in light guide, some light energy travels along the direction of light guide, and is introduced in the room directly.Another part of light energy is absorbed and stored by light guide, and can release light again after 8 ~ 12 h.Li Baojun Zhou Meng Yang Tao Zhou Yao Fu Li Li Tiansi YangShilong 2004Journal of Rare Earths2004,22,z1:1
10Solar Energy Cell with Rare Earth Film显示文摘The characteristic of the solar energy cell with the rare earth film according to theory of molecular structure was introduced.When sunlight shines, the molecules of the rare earth film can absorb energy of the photon and jump to the excited state from the basic state, and play a role in storing solar energy.When sunlight do not shine, the electron of the excited state returns to the basic state, the rare earth film can automatically give out light and shine to surface of the solar cell, which can make solar cell continuously generate electric current.The rare earth film can absorb direct,scattering sunlight, and increase density of solar energy to reach surface of the solar cell, and play focusing function.The rare earth film can bear 350 ~ 500 ℃, which make the solar cell be able to utilize the focusing function system.Because after luminescence of the rare earth film, it can release again the absorbed solar energy through 1 ~ 8 h, and play a role in storing solar energy; The solar cell with the rare-earth film can generate electricity during night and cloudy days, and remarkably increase efficiency of the solar cell.Li Baojun Yang Tao Zhou Yao Zhou Meng Fu Xiliang Fu Li 2004Journal of Rare Earths2004,22,z1:1
11Mesh Pa- rameterization Based on One -step Inverse Forming 显示文摘LI Baojun ZHANG Xiangkui ZHOU Ping 2010Computer Aided Design2010,42,7:1
12Grain refinement under multi-axial forging in Fe–32%Ni alloy显示文摘Baojun Han Zhou Xu 2007Journal of Alloys and Compounds2007,,1:1
13Cardiac-specific haploinsufficiency of β-catenin attenuates cardiac hypertrophy but enhances fetal gene expression in response to aortic constriction显示文摘Jiaxiang Qu Jibin Zhou Xian Ping Yi Baojun Dong Hanqiao Zheng Lisa M. Miller Xuejun Wang Michael D. Schneider Faqian Li 2007Journal of Molecular and Cellular Cardiology2007,,3:1
14Effects of M-nisoldipine on Contraction and 45Ca Influx in Isolated rat Aorta显示文摘Zhou Baojun Li Yunshan Fu Shaoxuan 1994ACTA Pharmacological Sinica1994,15,4:1
15Grain refinement mechanism of Fe-Ni alloys during muhiaxial forging 显示文摘Han Baojun Xu Zhou 2006Mater Sci Tech2006,22,11:1
16Microstructural evolution of Fe-32%Ni alloy during large strain multi-axial forging显示文摘Han Baojun Xu Zhou 2007Mater Sci Eng A2007,447,12:1
17Microstructural evolution of Fe 32%Ni alloy during large strain multi-axial forging显示文摘Han Baojun Xu Zhou 2007Materials Science and Engineering2007,447,:1
18Grain refinement under multi-axial forging in Fe-32%Ni alloy显示文摘Han Baojun Xu Zhou 2008J Alloy Comp2008,457,12:1
19Effects of M-nisoldipine on contraction and 45Ca influx in isolated rat aorta显示文摘ZHOU Baojun LI Yunshan FU Shaoxuan 1992Biochem1992,156,2:1
20Cardiac-specific haploinsufficiency of β-catenin attenuates cardiac hypertrophy but enhances fetal gene expression in response to aortic constriction显示文摘Jiaxiang Qu Jibin Zhou Xian Ping Yi Baojun Dong Hanqiao Zheng Lisa M. Miller Xuejun Wang Michael D. Schneider Faqian Li 2007Journal of Molecular and Cellular Cardiology2007,,3:1
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