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32篇 您的检索式:作者名="T.X."
    题名 作者 年代 出处 被引量
1AN IN SITU SURFACE COMPOSITE AND GRADIENT MATERIAL OF Al-Si ALLOY PRODUCED BY ELECTROMAGNETIC FORCE显示文摘Because of the different conductivities between the primary phase (low electric conduc tivity) and the metal melt, electromagnetic force scarcely acts on the primary phase. Thus, an electromagnetic repulsive force applied by the metal melt exerts on the pri mary phase when the movement of the melt in the direction of electromagnetic force is limited. As a result, the repulsive force exerts on the primary phase to push them to move in the direction opposite to that of the electromagnetic force when the metal melt with primary phase solidifies under an electromagnetic force field. Based on this, a new method for production of in situ surface composite and gradient material by electromagnetic force is proposed. An in situ primary Si reinforced surface composite of Al-15wt%Si alloy and gradient material of Al-l9wt%Si alloy were produced by this method. The microhardness of the primary Si is HV1320. The reinforced phase size is in the range from 40μm to 100μm. The wear resistance of Al-Si alloy gradient material can be more greatly increased than that of their matrix material.Z.M. Xu, T.X. Li, Z.L. Zhu and Y.H. Zhou School of Materials Science and Engineering, Shanghai Jiao Tong University, Shanghai 200030, China 2001Acta Metallurgica Sinica(English Letters)2001,14,5:3
2A STEEL MATRIX WEAR RESISTANT COMPOSITE REINFORCED BY IN-SITU GRANULAR EUTECTICS显示文摘A new steel matrix wear resistant composite reinforced by in situ granular eutectics can be obtained by modifying with a Si-Ce-Ti compound in the steel melt. The result indicates that the in situ granular eutectic is a pseudo-eutectic of austenite and (Fe,Mn)3C, which is formed between austenite dendrites during solidification due to the segregation of C and Mn impelled by modifying elements. The quantity of in situ granular eutectic reaches up to 8%-12% and its grain size is in the range from 10um to 20um. The austenite steel matrix wear resistant composite reinforced by in situ granular eutectic (abbreviated AGE composite) and austenite-bainite steel mains wear resistant composite reinforced by in situ granular eutectic (abbreviated ABGE composite) are obtained in the as-cast state and by air hardening, respectively. The wear resistance of the AGE and ABGE composites can be more greatly increased than that of their matrix steels under low and medium impact working condition.Z.M. Xu, T.X. Li and J.G. Li (School of Materials Science and Engineering, Shanghai Jiao Tong University, Shanghai 200030, China) 2001Acta Metallurgica Sinica(English Letters)2001,14,2:3
3The present and future of residential refrigeration, power generation and energy storage显示文摘R.Z. Wang X. Yu T.S. Ge T.X. Li 2012Applied Thermal Engineering2012,,:2
4Identification and quantification of 13 components in Angelica sinensis (Danggui) by gas chromatography–mass spectrometry coupled with pressurized liquid extraction显示文摘S.C. Lao S.P. Li Kelvin K.W. Kan P. Li J.B. Wan Y.T. Wang Tina T.X. Dong Karl W.K. Tsim 2004Analytica Chimica Acta2004,,2:1
5Study on the heat transfer and sorption characteristics of a consolidated composite sorbent for solar-powered thermochemical cooling systems显示文摘T.X. Li R.Z. Wang L.W. Wang J.K. Kiplagat 2009Solar Energy2009,,9:1
6Factors contributing to the efficacy of concurrent–adjuvant chemotherapy for locoregionally advanced nasopharyngeal carcinoma: Combined analyses of NPC-9901 and NPC-9902 Trials显示文摘Anne W.M. Lee Stewart Y. Tung Roger K.C. Ngan Rick Chappell Daniel T.T. Chua T.X. Lu Lillian Siu Terence Tan L.K. Chan W.T. Ng T.W. Leung Y.T. Fu Gordon K.H. Au C. Zhao Brian O’Sullivan E.H. Tan W.H. Lau 2010European Journal of Cancer2010,,5:1
7Biopolymer chitosan/montmorillonite nanocomposites: Preparation and characterization显示文摘S.F. Wang L. Shen Y.J. Tong L. Chen I.Y. Phang P.Q. Lim T.X. Liu 2005Polymer Degradation and Stability2005,,1:1
8Trillin, a steroidal saponin isolated from the rhizomes of Dioscorea nipponica , exerts protective effects against hyperlipidemia and oxidative stress显示文摘Tiejie Wang Roy C.Y. Choi Jun Li Cathy W.C. Bi Wei Ran Xiaohui Chen Tina T.X. Dong Kaishun Bi Karl W.K. Tsim 2011Journal of Ethnopharmacology2011,,1:1
9Cu fractions, mobility and bioavailability in soil-wheat system after Cu-enriched livestock manure applications显示文摘T.X. Guan H.B. He X.D. Zhang Z. Bai 2010Chemosphere2010,,2:1
10Enhanced reductive dechlorination of DDT in an anaerobic system of dissimilatory iron-reducing bacteria and iron oxide显示文摘F.B. Li X.M. Li S.G. Zhou L. Zhuang F. Cao D.Y. Huang W. Xu T.X. Liu C.H. Feng 2009Environmental Pollution2009,,5:1
11查看详情显示文摘Hu Y.C Shen L Yang H Wang M. Liu T.X. Liang T.and Zhang J 0,,4:1
12Woodceramics Prepared from Wood Powder/Phenolated Wood Composite显示文摘B.Y. Zhao T. Hirose T. Okabe D. Zhang T.X. Fan K.A. Hu 2002Journal of Porous Materials2002,,3:1
13Toughening high performance ultrahigh molecular weight polyethylene using multiwalled carbon nanotubes显示文摘S.L. Ruan P. Gao X.G. Yang T.X. Yu 2003Polymer2003,,19:1
14Surveillance of nitrite level in cubilose: Evaluation of removal method and proposed origin of contamination显示文摘Gallant K.L. Chan Kevin Y. Zhu David J.Y. Chou Ava J.Y. Guo Tina T.X. Dong Karl W.K. Tsim 2013Food Control2013,,2:1
15A new target-oriented methodology of decreasing the regeneration temperature of solid–gas thermochemical sorption refrigeration system driven by low-grade thermal energy显示文摘T.X. Li R.Z. Wang J.K. Kiplagat H. Chen L.W. Wang 2011International Journal of Heat and Mass Transfer2011,,21:1
16Experimental study and comparison of thermochemical resorption refrigeration cycle and adsorption refrigeration cycle显示文摘T.X. Li R.Z. Wang J.K. Kiplagat H. Chen 2010Chemical Engineering Science2010,,14:1
17Crushing of thin-walled spheres and sphere arrays显示文摘H.H. Ruan Z.Y. Gao T.X. Yu 2005International Journal of Mechanical Sciences2005,,2:1
18Adiabatic oxidation study on the propensity of pulverised coals to spontaneous combustion显示文摘T.X. Ren J.S. Edwards D. Clarke 1999Fuel1999,,14:1
19Comprehensive effective-medium analysis for the transmission properties of combined metamaterials显示文摘N.T. Tung T.X. Hoai V.D. Lam Y.P. Lee 2010Computational Materials Science2010,,4:1
20Effect of plasma material on intense laser-driven beam electrons in solid foils显示文摘C.T. Zhou T.X. Cai W.Y. Zhang X.T. He 2012Laser and Particle Beams2012,,1:1
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