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62篇 您的检索式:作者名="B.Y."
    题名 作者 年代 出处 被引量
1Improving Drought Tolerance of Rice by Designed QTL Pyramiding显示文摘Drought is the most important factor limiting rice yields in the rainfed areas of Asia. To overcome the problem, we developed a new strategy 'designed QTL pyramiding' to more effi ciently develop drought tolerant (DT)Z.K. Li D. Dwivedi Y.M. Gao T.Q. Zheng R. Lafitte J.L. Xu D. Mackill B.Y. Fu J.Domingo Y. Sun L.H. Zhu 2007分子植物育种2007,5,2:12
2Fatigue Property of Nano-grained Delaminated Low-carbon Steel Sheet显示文摘Tension-tension fatigue life tests on nano-grained delaminated low-carbon steel sheet under different fatigue loads are carried out to study the fatigue properties of the steel.The three-dimensional microstructures of the steel are observed by TEM.In addition,the morphology of the fatigue fracture of the specimen under different loads is observed by SEM.The results show that micro-cracks form on the weak interface of the nano-grained steel under low-stress conditions,which hinders the propagation of the main cracks and reduces the fatigue crack propagation rate,resulting in the extending fatigue life of the steel.X. Li T.F. Jing M.M. Lu R. Xu B.Y. Liang J.W. Zhang 2011Journal of Materials Science & Technology2011,27,4:3
3Experiment and modeling of mechanical properties on iron matrix composites reinforced by different types of ceramic particles显示文摘J. Li B.Y. Zong Y.M. Wang W.B. Zhuang 2010Materials Science & Engineering A2010,,29:2
4Niching particle swarm optimization with local search for multi-modal optimization显示文摘B.Y. Qu J.J. Liang P.N. Suganthan 2012Information Sciences2012,,:2
5MICROSTRUCTURE AND MECHANICAL PROPERTIES OF AZ91D EXTRUDED TUBE显示文摘微观结构和镁合金 AZ91D 的机械性质上的挤出比率的效果渗出在 430 ° C 的试管被学习了。在微观结构的进化和 AZ91D 的机械性质在挤出期间被学习以后,下列参数被获得:张力的力量到达了 306.9MPa 的高潮价值和延伸山峰价值 10.1% 在 7.125 的挤出比率,并且随到 7.45 的挤出比率的增加,收益力量与减少的张力的力量和延伸到达了 285.795MPa 的最高的价值。镁合金 AZ91D 的机械性质能被在再结晶附近调整挤出比率提高,这被结束。B.Y. Yu C.L. Bao H.W. Song Z. Liu H.P. Yu 2006Acta Metallurgica Sinica(English Letters)2006,19,3:2
6Preparation of ZrC nano-particles reinforced amorphous carbon composite coating by atmospheric pressure chemical vapor deposition显示文摘W. Sun X. Xiong B.Y. Huang G.D. Li H.B. Zhang P. Xiao Z.K. Chen X.L. Zheng 2009Applied Surface Science2009,,16:1
7Study of working fluid selection of organic Rankine cycle (ORC) for engine waste heat recovery显示文摘E.H. Wang H.G. Zhang B.Y. Fan M.G. Ouyang Y. Zhao Q.H. Mu 2011Energy2011,,5:1
8COMPUTER SIMULATION SYSTEM OF STRETCH REDUCING MILL显示文摘The principle of the stretch reducing process is analyzed and three models of pass design are established. The simulations are done about variables, such as, stress, strain, the stretches between the stands, the size parameters of the steel tube, and the roll force parameters. According to its product catalogs the system can automatically divide the pass series, formulate the rolling table, and simulate the basic technological parameters in the stretch reducing process. All modules are integrated based on the developing environment of VB6. The system can draw simulation curves and pass pictures. Three kinds of database including the material database, pass design database, and product database are devised using Microsoft Access, which can be directly edited, corrected, and searched.B.Y. Sun S.J. Yuan 2007Acta Metallurgica Sinica(English Letters)2007,20,6:1
9A Study on Distributions of Electromagnetic Force of the Dissimilar Metal Joining in MPW Using a FEM显示文摘Shim J.Y. Kang B.Y. Kim Ill Soo Kang M.J. Park D.H. Kim I.J 2010Advanced Materials Research2010,,83:1
10Design of an enhanced nonlinear PID controller显示文摘Y.X. Su Dong Sun B.Y. Duan 2005Mechatronics2005,,:1
11Injection molding of 3D microstructures by μPIM显示文摘B.Y. Tay L. Liu N.H. Loh S.B. Tor Y. Murakoshi R. Maeda 2005Microsystem Technologies (-)2005,,2:1
12Large-scale synthesis of ZnO nanowires using a low-temperature chemical route and their photoluminescence properties显示文摘B.Y. Geng T. Xie X.S. Peng Y. Lin X.Y. Yuan G.W. Meng L.D. Zhang 2003Applied Physics A Materials Science & Processing (-)2003,,3:1
13Injection molding of 3D microstructures by μPIM显示文摘B.Y. Tay L. Liu N.H. Loh S.B. Tor Y. Murakoshi R. Maeda 2005Microsystem Technologies (-)2005,,2:1
14Atomistic behavior of helium–vacancy clusters in aluminum显示文摘B.Y. Ao J.Y. Yang X.L. Wang W.Y. Hu 2005Journal of Nuclear Materials2005,,1:1
15SYNTHESIS AND SOLID STATE SINTERING OF W-Ni-Fe NANO-COMPOSITE POWDERS显示文摘The mixture of 90%W 7wt%Ni and 3wt%Fe elemental powders was milled in a planetary high-enerpy ball mill. The evolution of the structure during milling and the sintering behavior Of the milled powders were tested. The results showed that by mechanical alloying W(Ni, Fe) supersatumted solid solution with nano-meter size formed, which can enhance the sintering process. Ftilly dense alloy from the milled powders was obtained through solid state sintering. The tensile strength of the obtained alloy is over 900MPa which is comparuble to that of the alloy sintered by traditional liquid-phase sintering from un-milled powders of the same composition.Qu, X.H. Fan, J.L. Li, Y.M. Huang, B.Y. 2000Acta Metallurgica Sinica(English Letters)2000,13,3:1
16Prognostic significance of the total dose of cisplatin administered during concurrent chemoradiotherapy in patients with locoregionally advanced nasopharyngeal carcinoma显示文摘Herbert H. Loong Brigette B.Y. Ma Sing-Fai Leung Frankie Mo Edwin P. Hui Michael K. Kam Stephen L. Chan Brian K.H. Yu Anthony T.C. Chan 2012Radiotherapy and Oncology2012,,3:1
17A two-stage Stirling-type pulse tube cryocooler with a cold inertance tube显示文摘Z.H. Gan B.Y. Fan Y.Z. Wu L.M. Qiu X.J. Zhang G.B. Chen 2010Cryogenics2010,,6:1
18Effect of decomposition properties of titanium hydride on the foaming process and pore structures of Al alloy melt foam显示文摘D.H. Yang B.Y. Hur D.P. He S.R. Yang 2006Materials Science & Engineering A2006,,:1
19Forming of Micro Channels with Ultra Thin Metal Foils显示文摘B.Y. Joo S.I. Oh Y.K. Son 2004CIRP Annals - Manufacturing Technology2004,,1:1
20Numerical modelling of the gas flow through perforated plates显示文摘B.Y. Guo Q.F. Hou A.B. Yu L.F. Li J. Guo 2012Chemical Engineering Research and Design2012,,:1
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