English  |  正體中文  |  简体中文  |  Total items :0  
Visitors :  52101311    Online Users :  845
Project Commissioned by the Ministry of Education
Project Executed by National Taiwan University Library
 
臺灣學術機構典藏系統 (Taiwan Academic Institutional Repository, TAIR)
About TAIR

Browse By

News

Copyright

Related Links

"y h lai"

Return to Browse by Author
Sorting by Title Sort by Date

Showing items 11-20 of 35  (4 Page(s) Totally)
<< < 1 2 3 4 > >>
View [10|25|50] records per page

Institution Date Title Author
國立中山大學 2009 Phase-separated microstructures and shear-banding behavior in a designed Zr-based glass-forming alloy X.H. Du;J.C. Huang;H.M. Chen;H.S. Chou;Y.H. Lai;K.C. Hsieh;J.S.C. Jang;and P.K. Liaw
國立中山大學 2009 Homogeneous deformation of Au-based metallic glass micropillars in compression at elevated temperatures S.X. Song;Y.H. Lai;J.C. Huang;T.G. Nieh
國立中山大學 2008 Bulk and microscale compressive behavior of a Zr-based metallic glass Y.H. Lai;C.J. Lee;Y.T. Cheng;H.M. Chen;H.S. Chou;X.H. Du;C.I. Chang;J.C. Huang;S.R. Jain;J.S.C. Jang;T.G. Nieh
國立中山大學 2008 Specimen size effects in Zr, Mg and Au based glassy micro-pillars C.J. Lee;Y.H. Lai;C.I. Chang;T.H. Sung;J.C. Huang;T.G. Nieh
國立中山大學 2007 Thermomechanical Properties of Nanosilica Reinforced PEEK Composites Y.H. Lai;M.C. Kuo;J.C. Huang;M. Chen
國立中山大學 2007 On the PEEK Composites Reinforced by Surface-Modified Nano-Silica Y.H. Lai;M.C. Kuo;J.C. Huang;M. Chen
國立中山大學 2007 Two-Glassy-Phase Bulk Metallic Glass with Remarkable Plasticity X.H. Du;J.C. Huang;K.C. Hsieh;J.S.C. Jang;P.K. Liaw;Y.H. Lai;H.M. Chen
國立中山大學 2007 Thermomechanical Properties of Nanosilica Reinforced PEEK Composites Y.H. Lai;M.C. Kuo;J.C. Huang;M. Chen
國立中山大學 2007 Two-Glassy-Phase Bulk Metallic Glass with Remarkable Plasticity X.H. Du;J.C. Huang;K.C. Hsieh;J.S.C. Jang;P.K. Liaw; Y.H. Lai; H.M. Chen
國立中山大學 2007 On the PEEK Composites Reinforced by Surface-Modified Nano-Silica Y.H. Lai;M.C. Kuo;J.C. Huang;M. Chen

Showing items 11-20 of 35  (4 Page(s) Totally)
<< < 1 2 3 4 > >>
View [10|25|50] records per page