跳到主要內容區

 

國立聯合大學校長室

Top

研究成果及著作

 個人任教期間,積極從事與高速撞擊及奈米薄膜壓痕特性與製程開發等相關領域之學術研究。截至目前為止,共計發表了SCI國際學術期刊論文185篇,會議論文165篇及其他著作20篇;另有22篇國際學術研討會邀請演講,論文被引用數達2565餘次。

A. 期刊論文

  1. S. H. Wang, W. Y. Hsiao, C. Y. Chen, Y. L. Yang, J. R. Yang, W. S. Lee, C. C. Chen, and P. K. Chiu, (2021), “The microstructural characterization and mechanical properties of duplex and super austenitic stainless steels after high-speed impact deformation,” Journal of Materials Engineering and Performance, https://doi.org/10.1007/s11665-021-06063-x. (SCI)
  2. W. S. Lee, and W. Chu (2021), “Nanoindentation behavior of as-deposited and annealed SiO2/GaAs Thin Films,” Journal of the Chinese Society of Mechanical Engineers, impressed. (SCI, Impact factor: 0.274)
  3. W. S. Lee, and C. Y. Chang (2020), “Nanoindentation behavior of as-deposited and annealed CuO/GaAs Thin Films,” Journal of the Chinese Society of Mechanical Engineers, Vol. 41, no. 2, pp. 107-120. (SCI, Impact factor: 0.274)
  4. S. P. Tsai, Y. T. Tsai, Y. W. Chen, P. J. Chen, P. H. Chiu, C. Y. Chen, W. S. Lee, J. W. Yeh, J. R. Yang (2019), “High-entropy CoCrFeMnNi alloy subjected to high-strain-rate compressive deformation,” Materials Characterization, Vol. 147, pp. 193-198. (SCI, Impact factor: 2.21)
  5. W. S. Lee, and C. W. Huang (2019), “High temperature deformation behavior and dislocation substructure of impacted Inconel 625 alloy , Journal of the Chinese Society of Mechanical Engineers, Vol. 40, no. 4, pp. 393-399. (SCI)
  6. C. H. Hsueh, M. J. Liao, S. H. Wang, Y. T. Tsai, J. R. Yang, R. Wu, W. S. Lee (2018), “Size effect and strain induced double twin by nanoindentation in DSS weld metal of vibration-assisted GTAW,” Materials Chemistry and Physics, Vol. 219, pp. 40-50. (SCI, Impact factor: 2.21)
  7. W. S. Lee, and C. C. Lo (2018), “Effect of annealing on nanoindentation behavior and compounds formation of Ti/GaAs Thin Film, Journal of the Chinese Society of Mechanical Engineers, Vol. 39, no. 1, pp. 1-9. (SCI, Impact factor: 0.274)
  8. W. S. Lee*, and C. W. Chou (2017) “Temperature-dependent variation in dynamic deformation behaviour and dislocation substructure in AZ80 magnesium,” Materials Science and Technology, Vol. 33, No. 18, pp. 2253-2264.  (SCI, Impact factor: 0.794)
  9. W. S. Lee, and P. T. Liang (2017), “Correlation Between Mechanical Properties and Microstructure of Impacted 7075-T6 Aluminium Alloy, Journal of the Chinese Society of Mechanical Engineers, Vol. 38, no. 3, pp. 211-219. (SCI, Impact factor: 0.274)
  10. W. S. Lee* and C. H. Kao (2016) “Hot deformation behaviour and microstructural evolution of biomedical Ti-13Nb-13Zr alloy in high strain rate range,” Materials Science and Engineering A, Vol. 677, pp. 230-239. (SCI, Impact factor: 2.647)
  11. W. S. Lee* and C.R. Lin (2016) “Deformation behavior and microstructural evolution of 7075-T6 aluminum alloy at cryogenic temperatures,” Cryogenics, impressed. (SCI, Impact factor: 1.119)
  12. W. S. Lee* and Y. C. Huang (2016) “Mechanical properties and dislocation substructure of 6061-T6 aluminum alloy impacted at cryogenic temperatures,” Materials Transactions, Vol. 57, No.3, pp. 344-350. (SCI, Impact factor: 0.787)
  13. Y. T. Tsai, C. R. Lin, W. S. Lee*, C. Y. Huang, J. R. Yang (2016) “Mechanical behaviour and microstructural evolution of nanostructured bainite under high-strain rate deformation by Hopkinson Bar” Scripta Materialia, Vol. 115, pp. 46-51. (SCI, Impact factor:3.15)
  14. W. S. Lee, and C. H. Hu (2016), “Dynamic Flow behaviour and microstructural evolution of pure titanium during hot deformation, Journal of the Chinese Society of Mechanical Engineers, Vol. 37, no. 5, pp. 407-416. (SCI, Impact factor: 0.274)
  15. W. S. Lee, and P. T. Liang (2016), “Constitutive modelling of impact flow behavior of 7075-T6 aluminum alloy, Journal of the Chinese Society of Mechanical Engineers, Vol. 37, no. 6, pp. 547-554. (SCI, Impact factor: 0.274)
  16. W. S. Lee* and M. C. Hsu (2015) “Load dependence of nanoindentation behavior of phase transformation of annealed single-crystal silicon,” Materials Transactions, Vol. 56, No.5, pp.726-732. (SCI, Impact factor: 0.787)
  17. W. S. Lee*, and M. H. Liu (2015) “Effects of directional grain structure and strain rate on impact properties and dislocation substructure of 6061-T6 aluminum alloy,Key Engineering Materials, Vol. 626, pp. 50-56. (EI)
  18. W. S. Lee* and M. C. Hsu (2014) “Mechanical properties and dislocation substructure of Inconel 690 alloy impacted at cryogenic temperatures,” Materials Transactions, Vol. 55, No.11, pp.1689-1697. (SCI, Impact factor: 0.787)
  19. W. S. Lee* and H. C. Kao (2014) “High temperature deformation behavior of Haynes 188 alloy subjected to high strain rate loading,” Materials Science and Engineering A, Vol. 594, pp. 292-301. (SCI, Impact factor: 2.108)
  20. W. S. Lee* and C. W. Chen (2014) “Impact deformation behaviour and dislocation substructure of Ti-6Al-7Nb biomedical alloy,” Applied Mechanics and Materials, Vol. 566, pp. 292-297. (SCI, Impact factor: 1.106)
  21. W. S. Lee* and Z. C. Tang (2014) “Relationship between mechanical properties and microstructural response of 6061-T6 aluminum alloy impacted at elevated temperatures,” Materials and Design, Vol. 58, pp. 116-124. (SCI, Impact factor: 2.913)
  22. W. S. Lee*, and M. H. Liu (2014) “Effects of directional grain structure on impact properties and dislocation substructure of 6061-T6 aluminum alloy,Materials Science and Technology, Vol. 30, No. 14, pp. 1719-1727.  (SCI, Impact factor: 0.794)
  23. W. S. Lee* and C. W. Chen (2013) “High temperature impact properties and dislocation substructure of Ti-6Al-7Nb biomedical alloy,” Materials Science and Engineering A, Vol. 576, pp. 91-100. (SCI, Impact factor: 2.101)
  24. W. S. Lee, and C. W. Chen (2013) “Dynamic mechanical properties and microstructure of Ti-6Al-7Nb biomedical alloy as function of strain rate,Materials Science and Technology, Vol. 29, No. 9, pp. 1055-1064.  (SCI, Impact factor: 0.794)
  25. W. S. Lee, and Z. C. Tang (2013), “High temperature impact reformation and dislocation substructure of 6061-T6 aluminum alloy, Journal of the Chinese Society of Mechanical Engineers, Vol. 34, no. 4, pp. 263-270. (SCI, Impact factor: 0.274)
  26. W. S. Lee, C.F. Lin, T. H. Chen and W. Z. Luo (2012), “High temperature deformation and fracture behavior of 316L stainless steel under high strain rate loading,” Journal of Nuclear Materials, Vol. 420, pp. 226-234 (SCI, Impact factor: 1.279)
  27. W. S. Lee, T. H. Chen, C. F Lin and Z. Y. Li (2012) “Effects of Strain Rate and Temperature on Shear Properties and Fracture Characteristics of 316L Stainless Steel,” Materials Transactions, JIM, Vol. 53, No.3, pp.469-476. (SCI, Impact factor: 0.787)
  28. W. S. Lee, T. Y. Chan, (2012) “Microstructural Evolution and Mechanical Properties under High Strain Rate Testing of W-3.99Ni-1.71Fe Sintered by a Two-Stage Sintering Process,” Materials Transactions, JIM, Vol. 53, No.7, pp. 1318-1323. (SCI, Impact factor: 0.787)
  29. W. S. Lee, T. H. Chen C. F Lin and W. Z. Luo (2012) Impact Response and Microstructural Evolution of 316L Stainless Steel under Ambient and Elevated Temperature Conditions,” Metallurgical and Materials Transactions A, pp. 3998-4005 (SCI, Impact factor: 1.545)   
  30. W. S. Lee*, C.F. Lin, T.H. Chen and H.W. Chen (2012) “Dynamic Shear Properties of Inconel 718 over wide temperature range,” Materials Transactions, JIM, Vol. 53, No.10, pp. 1758-1764. (SCI, Impact factor, 0.787)
  31. W. S. Lee*, C.F. Lin, T.H. Chen and H.W. Chen (2011) “Dynamic mechanical behaviour and dislocation substructure evolution of Inconel 718 over wide temperature range,” Materials Science and Engineering A, 2011, Vol. 528, pp. 6279-6286. (SCI, Impact factor: 2.101)
  32. W. S. Lee, T. H. Chen, C. F. Lin and J. M. Chen (2011), “Nanoindentation Behaviour and Annealed Microstructural Evolution of Ni/Si Thin Film,” Materials Transactions, JIM, Vol. 52, No.7, pp.1374-1380. (SCI, Impact factor: 0.787)
  33. W. S. Lee, T. H. Chen, C. F. Lin and C. L. Wu (2011), “Microstructural Evolution of Nanoindented Ag/Si Thin-Film under Different Annealing Temperatures,” Materials Transactions, JIM, Vol. 52, No.10, pp.1868-1875. (SCI, Impact factor: 0.787)
  34. W. S. Lee, T. H. Chen C. F. Lin, and W. Z. Luo (2011), “Dynamic Mechanical Response of Biomedical 316L Stainless Steel as Function of Strain Rate and Temperature,” Bioinorganic Chemistry and Applications Vol. 2011, Article ID 173782. (SCI, Impact factor: 0.949)
  35. W. S. Lee*, C.F. Lin, T.H. Chen and H.W. Chen (2011) “Dynamic impact response of Inconel 718 alloy under low and high temperatures,” Materials Transactions, JIM, Vol. 52, No.9, pp.1734-1740. (SCI, Impact factor: 0.787)
  36. W. S. Lee, T. H. Chen, C. F Lin and M.S. Chen (2010) “Impact deformation behaviour and dislocation substructure of Al-Sc alloy” Journal of Alloys and Compounds Vol. 493, n1-2, pp. 580-589. (SCI, Impact factor: 2.135)
  37. W. S. Lee, C. F Lin, T. H. Chen and M. C. Young (2010) “High Temperature microstructural evolution of 304L SS as functions of prestrain and strain rate” Materials Science and Engineering A,. Vol. 527, pp. 3127-3137 (SCI, Impact factor: 1.901)
  38. H. C. Hsu, Y. C. Lin, S. H. Wang,  F. H. Kao, W. C. Lee, J. R. Yang, P. W. Hsu, H. W. Yen, W. S. Lee (2010) “Inducement of bainite and carbide transformation from retained austenite based on a high strain rate” Scripta Materialia, Vol. 62, pp. 372-375, (SCI, Impact factor: 2.949)
  39. W. S. Lee, C.F Lin, T. H. Chen and M. C. Young (2010) “Effects of Pre-strain on High Temperature Impact Properties of 304L Stainless Steel” Journal of Materials Research, Vol. 25, No. 4, pp. 754-763 (SCI, Impact factor: 1.667)
  40. W. S. Lee, T. H. Chen and Ging-Ting Lu (2010) “Adiabatic shearing behaviour of unweldable Al-Sc alloy under extremely high shear loadingMaterials Science and Technology, Vol. 26, No. 6, pp. 720-725.  (SCI, Impact factor: 0.794)
  41. W. S. Lee, T. H. Chen and S. L. Chang (2010) “Load effects on nanoindentation behaviour and microstructural evolution of single-crystal silicon”  Materials Transactions, JIM, Vol. 51, No. 7, pp. 1173-1177 (SCI, Impact factor: 0.795)
  42. W. S. Lee, T. H. Chen and Ging-Ting Lu (2010) “Adiabatic shearing localisation in high strain rate deformation of Al-Sc alloyMaterials Transactions, JIM, Vol. 51, No. 7, pp. 1216-1221. (SCI, Impact factor: 0.795)
  43. W. S. Lee, T. H. Chen and Sian-Cing Huang (2010) “Impact deformation behaviour of Ti-6Al-4V alloy in the low-temperature regime”  Journal of Nuclear Materials, Vol. 402, pp. 1-7 (SCI, Impact factor: 1.933)
  44. W. S. Lee, T. H. Chen, C. F. Lin and N. W. Lee (2010) “High Strain Rate Shear Deformation and Fracture Behaviour of Biomedical Titanium AlloyMaterials Science and Technology, Vol. 26, No. 9, pp. 1079-1087.  (SCI, Impact factor: 0.794)
  45. W. S. Lee, T.H. Chen, C.F. Lin and J.M. Chen (2010) “Phase transformation of Ni/Si thin films induced by nanoindentation and annealing” Applied Physics A-Materials Science & Processing, Vol. 100, pp. 1089-1096.  (SCI, Impact factor: 1.595)
  46. S. H. Wang, C. S. Huang, W. S. Lee, T. H. Chen, C. C. Wu, (2009) “Impact Deformation Behavior of Duplex and Superaustenitic Stainless Steels Welds by Split Hopkinson Pressure Bar” Metals and Materials International, Vol. 15, n16, pp. 1007-1015. (SCI, Impact Factor: 1.09)
  47. W. S. Lee, T. H. Chen, (2009), “The Strain Rate and Temperature effects on the Dynamic Properties of High-Strength Weldable Aluminum-Scandium (Al-Sc) Alloy,” Journal of Materials Research, Vol. 24, no1, pp. 198-211. (SCI, Impact factor: 1.667)
  48. W. S. Lee, T. H. Chen, (2009), Comparative Study of Dynamic Impact Properties and Microstructures of Weldable and Unweldable Aluminum-Scandium (Al-Sc) Alloys,” Materials Science and Technology, Vol. 25, no. 6, pp. 711-725. (SCI, Impact factor: 0.794)
  49. S. T. Chiou, H. L. Tsai, W. S. Lee, (2009) “Impact mechanical response and microstructural evolution of Ti alloy under various temperatures,” Journal of Materials Processing Technology, Vol. 209, no 5, pp. 2282-2294.   (SCI, Impact factor: 1.420)
  50. W. S. Lee, T.Y. Liu and T. H. Chen (2009), “Nanoindentation behaviour and microstructural evolution of Au/Cr/Si thin films,” Materials Transactions, JIM, Vol. 50, No. 7, pp. 1768-1777 (SCI,  Impact factor: 0.795)
  51. W. S. Lee, C. Y. Liu and T. H. Chen (2009)Adiabatic Shear Localization of Different Steels at High Strain RatesJournal de Physique IV France, Vol. 137, pp.1117-1123 (SCI, Impact factor: 0.291)
  52. W. S. Lee, (2009) “Impact mechanical response and microstructural evolution of Ti alloy under various temperaturesJournal of Materials Processing Technology, Vol. 209, pp. 2282-2294 (SCI, Impact factor: 1.420)
  53. H,C. Hsu, Y.C. Lin, S.H. Wang, W.C. Lee, F.H. Kao, J.R. Yang and W.S. Lee, (2009),High Strain Rate Induces Bainite and Carbide Transformation from Retained Austenite,” Scripta Materialia, (Accepted) (SCI, Impact factor: 2.949)
  54. W.Y. Hsiao, S.H. Wang, C.Y. Chen, J.R. Yang and W.S. Lee, (2008) “Effects of Dynamic on Mechanical Properties and Microstructure of Special Stainless Steel Weldments” Materials Chemistry and Physics, Vol. 111, pp. 172-179. (SCI, Impact factor: 1.799)
  55. W. S. Lee, T. H. Chen, (2008), “Dynamic deformation behaviour and microstructural evolution of high-strength weldable aluminum scandium (Al-Sc) alloy”, Materials Transactions, JIM, Vol. 48, n6, pp. 1284-1293. (SCI, Impact factor: 0.753)
  56. W. S. Lee, and T. H. Chen (2008), The Effects of Strain Rate and Temperature on the Dynamic Mechanical Behaviour and Microstructural Evolution of Aluminum-Scandium (Al-Sc) Alloy,” Materials Science and Technology  Vol. 24, No. 10, pp. 1271-1282. (SCI, Impact factor: 0.894)
  57. W. S. Lee, T. H. Chen and H. H. Hwang (2008), Impact response and microstructural evolution of biomedical titanium alloy under various temperatures,” Metallurgical and Materials Transactions A, Vol. 39A, pp. 1435-1448  (SCI, Impact factor: 1.389)   
  58. W. S. Lee, C. F. Lin, T. H. Chen and H. H. Hwang (2008) “Effects of strain rate and temperature on mechanical behaviour of Ti-15Mo-5Zr-3Al alloyJournal of the Mechanical Behavior of Biomedical Materials, Vol. 1, No. 4, pp. 336-344 (SCI, Impact factor: 3.176) 
  59. W. S. Lee, C. F. Lin, T. H. Chen and H. H. Hwang (2008) “The strain rate and temperature dependence of microstructural evolution of Ti-15Mo-5Zr-3Al alloyJournal of Material Science, Vol. 43, pp. 1568-1575  (SCI, Impact factor: 1.181)
  60. W. S. Lee, C. F. Lin, T. H. Chen and H. H. Hwang (2008) “High Strain Rate Deformation of Ti-15Mo-5Zr-3Al Alloy Over a Wide Temperature RangeMaterial Science and Technology,  Vol. 24, pp.15-25 (SCI, Impact factor: 0.894) 
  61. W. S. Lee, C. F. Lin, T. H. Chen and H. H. Hwang (2008) “Correlation of dynamic impact properties with adiabatic shear banding behaviour in Ti-15Mo-5Zr-3Al alloy,” Materials Science and Engineering A, Vol. 475, pp.172-184. (SCI, Impact factor: 1.806) 
  62. W. S. Lee, F. J. Fong (2008), ”Microstructural study of annealed gold-silicon thin films under nanoindentation,” Materials Science and Engineering A, Vol. 475, pp. 319-326.  (SCI, Impact factor: 1.806) 
  63. W. S. Lee, C. Y. Liu and T. H. Chen (2008), “Adiabatic shearing behaviour of different steels under extreme high shear loading,Journal of Nuclear Materials, Vol. 374, pp. 313-319. (SCI, Impact factor: 1.501)
  64. W. S. Lee, C. Y. Liu and Po-Kai Wang, (2008), “Correction of Wave Dispersion Effect in Split-Hopkinson Pressure Bar System Using Discrete Fourier Transformation, Journal of the Chinese Society of Mechanical Engineers  , Vol. 29, no. 5, pp. 389-396. (SCI, EI)
  65. W. S. Lee, F. J. Fong, (2008) “Effects of nanoindentation depth and annealing temperature on microstructural evolution of Au/Cr/Si thin films” Journal of the Chinese Society of Mechanical Engineers , Vol. 29, no. 4, pp. 281-287. (SCI, EI)
  66. W. S. Lee, Te-Yu Liu, (2007) “Effect of annealing temperature on microstructure of nanoindented Au/Cr/Si thin films” Nanotechnology, 18, 335701. (SCI, Impact factor: 3.31)
  67. W. S. Lee, F. J. Fong, (2007) ” Eutectic and Amorphous Phase Formation at Au/Cr/Si Thin Film Interface by Nanoindentation and Annealing,” Materials Transactions, JIM, Vol. 48, No. 10, pp.2650-2658. (SCI, Impact factor: 1.018)
  68. S.T. Chiou, H.L. Tsai and W.S. Lee, (2007), “Effects of strain rate and temperature on the deformation and fracture behaviour of Titanium alloy” Materials Transactions, JIM, Vol. 48, No. 9, pp. 2525-2533. (SCI, Impact factor: 1.018) 
  69. W. S. Lee, T. H. Chen and Q. J. Gon (2007), “Dynamic Shear Behaviour of Unweldable Aluminum-Scandium (Al-Sc) Alloy” Materials Transactions, JIM, Vol. 48, No. 3, pp. 200-509. (SCI, Impact factor: 1.018)
  70. W. S. Lee, C. F. Lin, C. Y. Liu and C. W. Cheng (2007), ”Effects of strain rate and welding current mode on the microstructural properties of SUS 304L PAW welds,” Journal of Materials Processing Technology, Vol. 183, pp. 183-193. (SCI, Impact factor: 0.816)
  71. W.S Lee and T. Y. Chan, (2007), “The effects of molybdenum content on the dynamic properties of tungsten-based heavy alloys,” Materials Science Forum, Vol.534-536, pp.1293-1296.
  72. W. S. Lee, C. F. Lin and T. J. Liu, (2007), “Impact and fracture response of sintered 316L stainless steel subjected to high strain rate loading,” Materials Characterization, Vol. 58, No. 4, pp.363-370. (SCI, Impact factor: 0.932)
  73. W. S. Lee and B. K. Wang, (2007), “High strain rate mechanical properties of austenitic manganese steel,” Material Science and Technology, Vol. 23, No. 2, pp.151-157. (SCI, Impact factor: 0.713) 
  74. W. S. Lee, C. F. Lin and Y. C. Lin, (2006), “Dynamic deformation and failure behaviour of Al-Sc alloy under shear loading,” Journal de Physique IV France, Vol. 134, pp.965-970. (SCI, Impact factor: 0.315)
  75. W. S. Lee and T. J. Liu, (2006), “Strain Rate Dependence of Impact Properties of Sintered 316L Stainless Steels,” Journal of Nuclear Materials, Vol. 359, pp. 247-257 (SCI, Impact factor: 1.261)  
  76. W. S. Lee, C. Y. Liu, (2006), “The effect of temperature and strain rate on the dynamic flow behaviour of different steels”, Materials Science and Engineering A, A426, pp. 101-113. (SCI, Impact factor: 1.49)
  77. W. S. Lee, C. H. Hsu, (2006), “ Dependence of Impact Deformation Behaviour of Fe-2Ni Sintered Alloy on Strain Rate and Sintered Density”, Material Science and Technology, Vol. 22, No. 12, pp. 1431-1443. (SCI, Impact factor: 0.677)
  78. W. S. Lee, C. C. Chiu, (2006), “Deformation and Fracture Behaviour of 316L Sintered Stainless Steel under Various Strain Rate and Relative Sintered Density Conditions”, Metallurgical and Materials Transactions A, Vol. 37A, pp. 3685-3696. (SCI, Impact factor: 1.366)
  79. W. S. Lee, T. H. Chen, (2006), “Dynamic Mechanical Response and Microstructural Evolution of High Strength Aluminum-Scandium (Al-Sc) Alloy”, Materials Transactions, JIM, Vol. 47, No. 2, pp. 355-363. (SCI, Impact factor: 0.927)
  80. W. S. Lee, Y. C. Lin, (2006), “Strain rate and temperature dependence of the dynamic shear properties of Al-Sc alloy”, Materials Science and Technology, Vol. 22, No. 5, pp. 571-582. (SCI, Impact factor: 0.677)  
  81. W. S. Lee, T. H. Chen, (2006), “Rate-dependent deformation and dislocation substructure of Al-Sc alloy”, Scripta Materialia, Vol. 54, pp. 1463-1468. (SCI, Impact factor: 2.161)
  82. W. S. Lee, C. F. Lin and S. Z. Hwang, (2006), “Effect of Temperature and Strain Rate on the Shear Properties of Ti-6Al-4V Alloy,” Proc. Instn. Mech. Engrs. Part C: Journal of Mechanical Engineering Science, Vol. 220, pp. 127-136. (SCI, Impact factor: 0.329)
  83. W. S. Lee and B. K. Wang, (2006), “A Study of the Impact Deformation and Fracture Behaviour of Austenitic Manganese Steel,” Metals and Materials International, Vol. 12, No.6, pp. 459-466. (SCI, Impact factor: 1.025)
  84. W. S. Lee and J. C. Chang, (2005), “The Influence of Drawing Passes on Mechanical Properties of Copper Wires,” Journal of Manufacturing Science and Engineering–ASME, (Accepted) (SCI, Impact factor: 0.532 )
  85. W. S. Lee, C. F. Lin, C. Y. Liu and C. W. Cheng (2005), “Strain Rate and Welding Current Mode Effects on the Microstructure Evolution of Plasma Arc Welded 304L Stainless Steel,” Journal of Materials Processing Technology, (in press). (SCI, Impact factor: 0.592)
  86. W. S. Lee, C. Y. Liu and T. N. Sun, (2005), “Dynamic Impact Response and Microstructural Evolution of Inconel 690 Super Alloy at Elevated Temperatures,” International Journal of Impact Engineering, Vol. 32/1-4, pp. 210-223. (SCI, Impact factor: 0.766)
  87. W. S. Lee and C. Y. Liu, (2005), ”Comparison of Dynamic Compressive Flow Behaviour of Mild and Medium Steels over Wide Temperature Range, ” Metallurgical and Materials Transactions A, Vol. 36A, pp. 3175-3186.(SCI, Impact factor: 1.232)
  88. W. S. Lee and C. Y. Liu, (2005), “Dynamic Compressive Flow Behaviour of S15C Low Carbon Steel Over Wide Temperature Range,” Materials Science and Technology, Vol. 21, No. 9, pp.1083-1093 (SCI, Impact factor: 0.639)
  89. W. S. Lee and S. K. Lee, (2005), “The Estimation of Fire Location and Heat Release Rate by Using Sequential Inverse Method,” Journal of the Chinese Society of Mechanical Engineers, Vol. 26, No. 2, pp. 199-205.
  90. W. S. Lee, C. F. Lin and B. T. Chen, (2005), “Tensile Properties and Microstructural Aspects of 304L Stainless Steel Weldments as a Function of Strain Rate and Temperature,” Proc. Instn. Mech. Engrs. Part C: Journal of Mechanical Engineering Science, Vol. 219, pp. 439-451. (SCI, Impact factor: 0.277)
  91. W. S. Lee and S. Z. Huang, (2005), “Deformation and Failure Behaviour of Ti-6Al-4V Alloy under High Rate Shear Loading,” WIT Transactions on Modeling and Simulation, Vol. 40, pp. 229-238.
  92. W. S. Lee and J. K. Chou, (2005), “The Effect of Strain Rate on the Impact Behaviour of Fe-2 mass% Ni Sintered Alloy,” Materials Transactions, JIM, Vol. 46, No. 4, pp. 805-811. (SCI, Impact factor: 1.103)
  93. W. S. Lee, C. F. Lin and F. T. Tzeng (2005), ”Mechanical Properties of 304L Stainless Steel SMAW Joint Under Dynamic Impact Loading,” Journal of Materials Science, Vol. 40, pp. 4839-4847. (SCI, Impact factor: 0.901)  
  94. S. T. Chiou, W. C. Cheng, and W. S. Lee (2005), “Strain Rate Effects on the Mechanical Properties of a Fe-Mn-Al Alloy under Dynamic Impact Deformations,” Materials Science and Engineering A, Vol. 392, pp. 156-162. (SCI, Impact factor: 1.347)
  95. C. S. Huang, S. H. Wang, W. S. Lee, T. H. Chen and C. Lien, (2005), “Dynamic Impact Behavior and Ferrite Variation of Special Stainless Steels,” Scripta Materialia, Vol. 52, pp. 843-849. (SCI, Impact factor: 2.228)
  96. W. S. Lee and C. Y. Liu, (2004), “Influence of Carbon Content and Strain-rate Effect on Impact Behaviour in Steel,” Journal of the Chinese Society of Mechanical Engineers, Vol. 25, No. 6, pp. 493-501.
  97. S. T. Chiou, W. C. Cheng, and W. S. Lee (2004), “The Analysis of the Microstructure Changes of a Fe-Mn-Al Alloy under Dynamic Impact Tests”, Materials Science and Engineering A, Vol. 386, pp. 460-467. (SCI, Impact factor: 1.445)
  98. W. S. Lee, C. Y. Liu and T. N. Sun (2004),Plastic Flow Behaviour of Inconel 690 Super Alloy Under Compressive Impact Loading”, Materials Transactions, JIM, Vol. 45, No. 7, pp. 2339-2345. (SCI, Impact factor: 1.12)
  99. W. S. Lee, C. F. Lin, C. Y. Liu, and F. T. Tzeng (2004), “Impact Properties of 304L Stainless Steel GTAW Joint Evaluated by High Strain Rate of Compression Tests”, Journal of Nuclear Materials, Vol. 335, pp. 335-344. (SCI, Impact factor: 1.448)
  100. W. S. Lee, C. F. Lin, C. Y. Liu and J. I. Cheng (2004), “Dynamic and Failure Response of 304L Stainless Steel SMAW Joint Under Dynamic Shear Loading”, Materials Science and Engineering A, Vol. 381, pp. 206-215. (SCI, Impact factor: 1.445)
  101. W. S. Lee and C. Y. Liu, (2004), “Dynamic Compressive Deformation Behaviour of S50C Medium Carbon Steel,” Materials Science and Technology, Vol. 20, pp. 919-924. (SCI, Impact factor: 0.639)
  102. W. S. Lee, C. Y. Liu and T. N. Sun (2004), “Deformation Behaviour of Inconel 690 Super Alloy Evaluated by Impact Test”, Journal of Materials Processing Technology, Vol. 153, pp. 219-225. (SCI, Impact factor: 0.578)
  103. W. S. Lee, C. F. Lin, C. Y. Liu and C. W. Cheng (2004), “The Effects of Strain Rate and Welding Current Mode Effects on the Impact Response of Plasma Arc Welded 304L Stainless Steel”, Metallurgical and Materials Transactions A, Vol. 35, No. 5, pp. 1501-1515. (SCI, Impact factor: 1.308)
  104. W. S. Lee, H. C. Shen (2004) “Comparisons of Deformation and Fracture Behaviour of PC/ABS and ABS under Dynamic Shear Loading”, Materials Science and Technology, Vol. 20, pp. 8-15. (SCI, Impact factor: 0.639)  
  105. W. S. Lee, C. F. Lin, C. Y. Liu and F. T. Tzeng  (2003),Microstructure Evolution of 304L Stainless Steel GTAW Joints Subjected to High-Velocity Impact Loading,Journal of The Chinese Society of Mechanical Engineers, Vol. 24, No.5, pp. 479-488
  106. W. S. Lee, J. I. Cheng, C. F. Lin, and C. Y. Liu (2003), “Dynamic Mechanical Properties and Fracture Behaviour of 304L Stainless Steel GTAW Joint in Shear Conditions”, Materials Transactions, JIM, Vol. 44, No. 12, pp. 2637-2645. (SCI, Impact factor: 1.159)
  107. W. S. Lee, and S. T. Chiou (2003), “Plastic Deformation and Fracture Response of 304 Stainless Steel Subjected to Dynamic Shear Loading”, Materials Science and Technology, Vol. 19, pp. 1266-1272. (SCI, Impact factor: 0.688)
  108. W. S. Lee, H. L. Lin (2003), “The Strain Rate Dependence of Deformation and Fracture Behaviour of Acrylonitrile-Butadiene-Styrene (ABS) Copolymer in Impact Test”, Fracture of Polymers, Composites and Adhesives, Vol. 22, pp.67-74. (SCI)
  109. W. S. Lee, C. F. Lin, C. Y. Liu and M. H. Chiang (2003), “A Comparison of the Dynamic Shear Properties and Fracture Behaviour of Continuous and Pulsed Current Plasma Arc Weldments of 304L Stainless Steel“, Journal de Physique IV France, Vol. 110, pp.81-86. (SCI, Impact factor: 0.319)
  110. W. S. Lee, and T. H. Chen (2002), “Plastic Deformation and Fracture Characteristics of High-Mn Hadfield Steel Subjected to High Velocity Impact Loading”, Proc. Instn. Mech. Engrs. Part C: Journal of Mechanical Engineering Science, Vol. 216, pp. 971-982. (SCI, Impact factor: 0.226)
  111. W. S. Lee, and C. F. Lin (2002), “Comparative Study of Impact Response and Microstructure of 304L Stainless Steel With and Without Prestrain”, Metallurgical and Materials Transactions A, Vol. 33A, pp. 2801-2810. (SCI, Impact factor: 1.219)
  112. W. S. Lee, and C. F. Lin (2002), “Effects of Prestrain and Strain Rate on the Dynamic Deformation Characteristics of 304L Stainless Steel: Part II. Microstructural Study”, Materials Science and Technology, Vol. 18, pp. 877-884. (SCI, Impact factor: 0.686)
  113. W. S. Lee, and C. F. Lin (2002), “Effects of Prestrain and Strain Rate on the Dynamic Deformation Characteristics of 304L Stainless Steel: Part I. Mechanical Behaviour”, Materials Science and Technology, Vol. 18, pp. 869-876. (SCI, Impact factor: 0.686)
  114. W. S. Lee, H. L. Lin (2002), “The Response of Acrylonitride-Butadiene-Styrene (ABS) Copolymer to Compressive Loading over a Wide Range of Strain Rates”, Journal of The Chinese Society of Mechanical Engineers, Vol. 22, No. 1, pp. 45-53.
  115. W. S. Lee, C. F. Lin and H. C. Shen (2001), “Shear Deformation and Fracture Behaviour of Polycarbonate/Acrylonitrile-Butadiene-Styren Blend at High Strain Rates”, Plastics, Rubber & Composites, Vol. 30, No. 10, pp. 484-489. (SCI, Impact factor: 0.271)
  116. W. S. Lee, and C. F. Lin (2001), “Effects of Prestrainning on the Impact Response and Twinning Structure of 304L Stainless Steel”, Materials Transactions, JIM, Vol. 42, No. 10, pp. 2080-2086. (SCI, Impact factor: 1.056)
  117. W. S. Lee, C. H. Lai and S. T. Chiou (2001),”Numerical Study on Perforation Behaviour of 6061-T6 Aluminum Metal Matrix Composite”, Journal of Materials Processing Technology, Vol. 117, pp. 125-131. (SCI, Impact factor: 0.255) 
  118. W. S. Lee, L. W. Chen and L. T. Yeh (2001), “The Influence of Strain Rate and Temperature on the Deformation Behaviour of 63Sn/37Pb and 60Sn/40Pb Solder Alloys”, Materials Transactions, JIM, Vol. 42, No. 4, pp. 686-690. (SCI, Impact factor: 1.056)
  119. W. S. Lee, C. F. Lin (2001), “Impact Properties and Microstructure evolution of 304L Stainless-Steel”, Materials Science and Engineering A, A308, pp. 124-135. (SCI, Impact factor: 0.978)
  120. W. S. Lee, W. C. Sue (2001), “The Rate Dependent Deformation of Carbon Fiber Reinforced Aluminum-Lithium Metal Matrix Composite”, Materials Science and Technology, Vol. 17, pp. 497-504. (SCI, Impact factor: 0.616)
  121. W. S. Lee, (2000), “High Speed Impact Response of Carbon Fiber Reinforced Aluminum-Lithium Matrix Composite”, Engineering Science & Technology Bulletin, National Science Council, Vol. 44, pp. 63-67.
  122. W. S. Lee, C. F. Lin (2000), “The Morphologies and Characteristics of Impact-induced Martensite in 304L Stainless Steel”, Scripta Materialia, Vol. 43, pp. 777-782. (SCI, Impact factor: 0.923)
  123. W. S. Lee, W. C. Sue, S. T. Chiou (2000), “Effect of Reinforcement Orientation on the Impact Fracture of Carbon Fiber Reinforced 7075-T6 Aluminum Metal Matrix Composite”, Materials Transactions, JIM, Vol. 41, No. 8, pp. 1055-1063. (SCI, Impact factor: 0.923)
  124. W. S. Lee, W. C. Sue, C. F. Lin (2000), “The Effect of Temperature and Strain Rate on The Properties of Carbon Fiber Reinforced 7075 Aluminum Alloy Metal Matrix Composite”, Composites Science and Technology, Vol. 60, No. 10, pp. 1975-1983. (SCI, Impact factor: 0.675)
  125. W. S. Lee, S. T. Chang, C. F. Lin (2000), “Plastic Flow of Tungsten-based Composite Under Hot Compression”, Journal of Materials Processing Technology, Vol. 100, pp. 123-130. (SCI, Impact factor: 0.237)
  126. W. S. Lee, W. C. Sue, C. F. Lin, C. J. Wu (2000), “The Strain Rate and Temperature Dependence of The Dynamic Impact Properties of 7075 Al Alloy”, Journal of Materials Processing Technology, Vol. 100, pp. 116-122. (SCI, Impact factor: 0.237)
  127. W. S. Lee, W. C. Sue (2000), “Dynamic Impact and Fracture Behaviour of Carbon Fiber Reinforced 7075 Al Metal Matrix Composite”, Journal of Composite Materials, Vol. 34, No. 21, pp. 1821-1841. (SCI, Impact factor: 0.832)
  128. W. S. Lee, J. C. Shyu and S. T. Chiou (2000), “Effect of Strain Rate on the Impact Response and Dislocation Substructure of 6061-T6 Aluminum Alloy”, Scripta Materialia, Vol. 42, pp. 51-56. (SCI, Impact factor: 0923) 
  129. W. S. Lee, J. C. Shyu (1999), “Dynamic Impact Response and Dislocation Substructure of 6061 Aluminum Alloy”, accepted by Journal of Materials Science. (SCI, Impact factor: 0.786) 
  130. W. S. Lee, C. F. Lin (1999), “Tensile Properties and Failure Characteristics of Acrylonitrile-Butadine-Styrene Subjected to Low and High Strain Rates, accepted by International Journal of Polymer Engineering and Science. (SCI, Impact factor: 1.224)
  131. W. S. Lee, W. C. Sue, C. F. Lin, C. J. Wu (1999), “Effect of Aging on High Strain Rate and High Temperature Properties of 7075 Aluminium Alloy”, Materials Science and Technology, Vol. 15, No. 12, pp. 1379-1386. (SCI, Impact factor: 0.683) 
  132. W. S. Lee, T. T. Su (1999), “Mechanical Properties and Microstructural Features of AISI 4340 High Strength Alloy Under Quenched and Tempered Conditions,” Journal of Materials Processing Technology, Vol. 87, pp. 198-206. (SCI, Impact factor: 0.196) 
  133. W. S. Lee, C. C. Hwang, S. Lin and H. S. Chu (1999), “Nonlinear Diffusion-Induced Stresses in a Long Bar of Square Cross Section”, International Journal of Solids and Structures, Vol. 36, pp. 269-284. (SCI, Impact factor: 0.971)
  134. W. S. Lee, G. L. Xiea, C. F. Lin (1998), “The Strain Rate and Temperature Dependence of the Dynamic Impact Response of Tungsten Composite”, Materials Science and Engineering A, A257, pp. 256-267. (SCI, Impact factor: 0.943)
  135. W. S. Lee, C. F. Lin, G. L. Xiea (1998), “Dynamic Shear Deformation and Fracture Behaviour of Pure Polycrystalline Tungsten”, Materials Science and Engineering A, A247, pp. 102-112.(SCI, Impact factor: 0.943)
  136. W. S. Lee, C. F. Lin (1998), “High Temperature Deformation Behaviour of Ti-6Al-4V Alloy Evaluated by High Strain Rate of Compression Tests”, Journal of Materials Processing Technology, Vol. 75, pp. 127-136. (SCI, Impact factor: 0.196)
  137. W. S. Lee, C. F. Lin (1998), “Plastic Deformation and Fracture Behaviour of Ti-6Al-4V alloy Loaded with High Strain Rate Under Various Temperatures”, Materials Science and Engineering A, A241, pp. 48-59. (SCI, Impact factor: 0.943)
  138. W. S. Lee, C. F. Lin (1997), “Adiabatic Shear Fracture of Titanium Alloy Subjected to High Strain and High Temperature Loadings”, Journal de Physique IV France, colloque C3, Supplément au Journal de Physique III d’août, pp. C3-855-C3-860. (SCI, Impact factor: 0.381)
  139. W. S. Lee, M. T. Lin (1997), "The Effects of Strain Rate and Temperature on Compressive Deformation Behaviour of Ti-6Al-4V Alloy", Journal of Materials Processing Technology, Vol. 71, pp. 235-246. (SCI, Impact factor: 0.196)
  140. W. S. Lee, G. W. Yeh (1997), "The Plastic Deformation Behaviour of AISI 4340 Alloy Steel Subjected to High Temperature and High Strain Rate Loading Conditions", Journal of Materials Processing Technology, Vol. 71, pp. 224-234. (SCI, Impact factor: 0.196) 
  141. W. S. Lee, S. T. Chiou (1996), "The Influence of Loading Rate on Shear Deformation Behaviour of Tungsten Composite", Composites: Part B, 27B, pp. 193-200. (SCI, Impact factor: 0.436)
  142. W. S. Lee, H. F. Lam (1996), "The Deformation Behaviour and Microstructure Evolution of High Strength Alloy Steel at High Rate of Strain", Journal of Materials Processing Technology, Vol. 57, pp. 233-240. (SCI, Impact factor: 0.196) 
  143. W. S. Lee, S. C. Hwang (1995), "The Analysis and Simulation of Dynamic Impact Behaviours of High Strength Alloy Steel", The Chinese Journal of Mechanics (Journal of Mechanics), Vol. 3, pp. 253-260. (SCI, Impact factor: 0.531)
  144. W. S. Lee (1995), "The Effects of Strain Rate on Mechanical Behaviour and Microstructure Variations of Tungsten Single Crystal", Journal of The Chinese Society of Mechanical Engineers, Vol. 16, No. 2, pp. 180-186.
  145. W. S. Lee, W. S. Lin (1995), "The Analysis of Effects of Strain Rate and Temperature on Plastic Deformation Behaviour of Titanium Alloy", Chinese Journal of Mining and Metallurgy, Vol. 39, No. 2, pp. 180-186.
  146. W. S. Lee, S. T. Chiou (1995), "Strain Rate and Temperature Effects on Mechanical Responses of Polycrystalline High Purity Aluminum Under Dynamic Shear Deformation", Journal of The Chinese Society of Mechanical Engineers, Vol. 16, No. 6, pp. 559-608.
  147. W. S. Lee, H. F. Lam (1994), "Mechanical Response and Dislocation Substructure of High Strength Ni-Cr-Mo Steel Subjected to Impact Loading", Journal de Physique, Colloque C8, Supplement au Journal de Physique 3, Volume 4, pp. C8-307-C8-312. (SCI, Impact factor: 0.381)
  148.  C. Y. Chiem, W. S. Lee (1994), "The Influence of Dynamic Shear Loading on Plastic Deformation and Microstructure of Tungsten Single Crystal", Materials Science and Engineering A, Vol. A 187, No.1, pp.43-50. (SCI, Impact factor: 0.943)
  149. W. S. Lee, H. F. Lam, K. P. Staudhammer (1991), "Steel-18G2A and Steel-HNMCu Strengthened by Explosive and Cold-Rolled Deformation", Journal de Physique, Colloque C5, Supplement au  9, Tome 50, C5-405-C5-412. (SCI, Impact factor: 0.381) 
  150. C. Y. Chiem, W. S. Lee, P. Meyer (1988), "Dynamic Response and Microstructural Aspect of CP271 and CP274 Aluminium-Lithium Alloy", Journal de Physique, Colloque C3, Supplement au  9, Tome 49, C3-19-C3-28. (SCI, Impact factor: 0.381)
  151. C. Y. Chiem, X. W. Zhou (1987), W. S. Lee, "High Strain Rate Behaviour of CP271 Aluminium-Lithium Alloy", Journal de Physique, Collque C3, Supplement au  9, Tome 48, C3-557-C3-568. (SCI, Impact factor: 0.381) 

B. 學術會議論文

  1. 李偉賢;呂名祺;高子桓,"晶粒尺寸對奈米結構316LVM不銹鋼塑性變形行為及微觀結構特性之效應分析",中國機械工程學會第三十四屆全國學術研討會; 台中市,勤益科技大學,民國106121-2日。
  2. 李偉賢;顏廷軒;黃嘉泓,"不同晶粒尺寸之奈米結構316LVM不銹鋼在極高速剪切荷載下之絕熱剪切變形行為研究",中國機械工程學會第三十四屆全國學術研討會; 台中市,勤益科技大學,民國106121-2日。
  3. 李偉賢;顏嫚言;羅宗倫,"晶粒尺寸在生醫材料316LVM不銹鋼準靜態壓縮特性上的分析",中國機械工程學會第三十四屆全國學術研討會; 台中市,勤益科技大學,民國106121-2日。
  4. 李偉賢;黃建瑋;呂名祺,"鎳基超合金(Inconel 625)於高速荷載下之高溫塑變行為與差排結構分析",中國機械工程學會第三十三屆全國學術研討會; 台北市,台灣大學,民國105123-4日。
  5. 李偉賢;李楷為; 顏廷軒"雙相不銹鋼(SAF2304)在不同溫度下之動態壓縮變形行為與顯微結構特徵分析",中國機械工程學會第三十三屆全國學術研討會; 台北市,台灣大學,民國105123-4日。
  6. 李偉賢;吳崇安;顏嫚言"溫度及應變速率在純鈦撞擊特性及顯微結構上之效應",中國機械工程學會第三十三屆全國學術研討會; 台北市,台灣大學,民國105123-4日。
  7. 李偉賢;胡志豪,"純鈦在高溫撞擊下之機械性質與微觀結構分析",中國機械工程學會第三十二屆全國學術研討會; 台雄市,高雄應用科技大學,民國104126-7日。
  8. 李偉賢;高崇豪,"生醫鈦合金(Ti-13Nb-13Zr)在不同溫度下之撞擊特性與微觀結構分析",中國機械工程學會第三十二屆全國學術研討會; 台雄市,高雄應用科技大學,民國104126-7日。
  9. 李偉賢;梁寶庭;吳崇安;李楷為,"晶相結構及溫度在7075-T6鋁合金動態塑變行為與結構特性之效應分析",中國機械工程學會第三十一屆全國學術研討會; 台中市,逢甲大學,民國103126-7日。
  10. 李偉賢;周正文;高崇豪,"AZ80鎂合金在在不同溫度下之撞及特性與微觀結構分析",中國機械工程學會第三十一屆全國學術研討會; 台中市,逢甲大學,民國103126-7日。
  11. 李偉賢; 林青;胡志豪," 7075-T6鋁合金在低溫撞擊下之機械性質與微觀結構分析",中國機械工程學會第三十一屆全國學術研討會; 台中市,逢甲大學,民國103126-7日。
  12. 李偉賢; 楊茜文;梁寶庭,"鋁合金(6061-T6)之高溫高速撞擊與微觀特徵分析",中國機械工程學會第三十屆全國學術研討會; 宜蘭市,國立宜蘭大學,民國102126-7日。
  13. 李偉賢; 唐子超;周正文,"6061-T6鋁合金在高溫撞擊下之塑變行為與差排結構分析",中國機械工程學會第三十屆全國學術研討會; 宜蘭市,國立宜蘭大學,民國102126-7日。
  14. 李偉賢; 黃鈺祺;林青"6061-T6鋁合金在低溫下之撞擊特性與微觀結構分析",中國機械工程學會第三十屆全國學術研討會; 宜蘭市,國立宜蘭大學,民國102126-7日。
  15. 李偉賢; 陳家瑋,"鈦合金(Ti-6Al-7Nb)在高溫下之高速撞擊與微觀特徵分析",中國機械工程學會第二十九屆全國學術研討會; 高雄市,國立中山大學,民國101127-8日。
  16. 李偉賢; 許銘家,"Inconel 690合金於低溫高速荷載下之動態塑變行為與顯微結構分析",中國機械工程學會第二十九屆全國學術研討會; 高雄市,國立中山大學,民國101127-8日。
  17. 李偉賢; 吳宗翰,"6061-T6鋁合金滾軋板材在不同晶向方位及溫度下之動態剪切性能分析",中國機械工程學會第二十九屆全國學術研討會; 高雄市,國立中山大學,民國101127-8日。
  18. 李偉賢; 劉茂宏,"6061-鋁合金滾軋板材在不同晶向方位及應變速率下之塑變行為與差排次結構分析",中國機械工程學會第二十九屆全國學術研討會; 高雄市,國立中山大學,民國101127-8日。
  19. 李偉賢; 高豪謙,"鈷基Haynes188超合金在不同溫度下之撞擊特性與微觀分析",中國機械工程學會第二十九屆全國學術研討會; 高雄市,國立中山大學,民國101127-8日。
  20. 李偉賢; 林敬淯,"4140合金鋼在不同溫度下之高速撞擊與微觀結特徵分析",中國機械工程學會第二十八屆全國學術研討會; 台中市,國立中興大學,民國1001210-11日。
  21. 李偉賢; 王舜民,"AISI4140合金鋼在極高速剪切荷載下之絕熱剪切變形與破壞行為分析",中國機械工程學會第二十八屆全國學術研討會; 台中市,國立中興大學,民國1001210-11日。
  22. 李偉賢; 謝牧勳,"溫度及應變速率在AISI4140合金鋼動態剪切性能上之效應分析",中國機械工程學會第二十八屆全國學術研討會; 台中市,國立中興大學,民國1001210-11日。
  23. 李偉賢;羅文振,"316L不銹鋼在不同溫度下之動態撞擊行為分析",中國機械工程學會第二十七屆全國學術研討會; 台北市,國立台北科技大學,民國991210-11日。
  24. 李偉賢;吳政倫,"銀矽薄膜之奈米壓痕行為及其退火微觀結構變化之研究",中國機械工程學會第二十七屆全國學術研討會; 國立台北科技大學,民國991210-11日。
  25. 李偉賢;李宗運,"應變速率及溫度在316L不鏽鋼動態剪切變形與破壞行為之效應分析",中國機械工程學會第二十七屆全國學術研討會; 國立台北科技大學,民國991210-11日。
  26. 李偉賢;黃啟生,"溫度及應變速率在鎳基718超合金動態剪切變形與破壞行為之效應分析",中國機械工程學會第二十六屆全國學術研討會; 國立成功大學,民國981120-21日。
  27. Woei-Shyan Lee;Te-Yu Liu;Tao-Hsing Chen,"The Temperature Effect on Nanoindentation Behaviour of Au/Cr/Si Thin Films",2009精密機械與製造科技研討會PMMT;臺灣墾丁福華飯店( 2009)
  28. 李偉賢;陳弘偉,"鎳基718超合金在不同溫度下之撞擊特性與微觀結構分析",中國機械工程學會第二十六屆學術研討會; 國立成功大學,民國981120-21日。
  29. 李偉賢;莊予良,"銅/矽薄膜之奈米壓痕行為及其退火後微觀結構變化之研究",中國機械工程學會第二十六屆學術研討會; 國立成功大學,民國981120-21日。
  30. 李偉賢;張碩玲,"荷載及退火溫度在矽單晶奈米壓痕行為及微觀結構變化上之效應分析",中國機械工程學會第二十六屆學術研討; 國立成功大學,民國981120-21日。
  31. 李偉賢*;陳道星;盧俊廷,"鋁鈧合金在極高速剪切荷載下之絕熱剪切變形行為研究",先進工程學刊 (Journal of Advanced Engineering);,( 2008)
  32. W. S. Lee, C. Y. Liu and T.H. Chen, 7-10 December, 2008, “Shear localization in dynamic deformation of different steels,3rd International Symposium on Advanced Fluid/Solid Science and Technology in Experimental Mechanics, Tainan, Taiwan.
  33. W. S. Lee, C. Y. Liu and T.H. Chen, 13-15 May, 2008, “Shear deformation of different steels under extreme high rate loading,17th International Conference on Metallurgy and Materials(Metal 2008), Hradec nad Moravicí, Czech Republic, Europe.
  34. W. S. Lee, T.H. Chen and H.H. Haung, 21-23 May, 2008, “Strain Rate and Temperature Dependence of Mechanical Pproperties and Microstructure of Biomedical Titanium Alloy, ” International Conference on Mechanical and Manufacturing Engineering (ICME)2008, Johor Bahru, Johor, Malaysia.
  35. 李偉賢,陳道星,“Comparative Study of Dynamic Impact Properties and Microstructures of Weldable and Unweldable Aluminum-Scandium (Al-Sc) Alloys 中國機械工程師學會第二十五屆全國學術研討會,彰化縣大社鄉,私立大葉大學,民國971121-22日。
  36. 李偉賢,楊孟杰,“預變形304L不銹鋼在高速高溫變形下之機械性質與微觀結構分析 中國機械工程師學會第二十五屆全國學術研討會,彰化縣大社鄉,私立大葉大學,民國971121-22日。
  37. 李偉賢,黃獻慶,“Ti-6Al-4V合金在低溫下之撞擊變形行為分析 中國機械工程師學會第二十五屆全國學術研討會,彰化縣大社鄉,私立大葉大學,民國971121-22日。
  38. 李偉賢,陳俊明,“鎳矽薄膜之奈米壓痕行為及退火微觀結構變化之研究 中國機械工程師學會第二十五屆全國學術研討會,彰化縣大社鄉,私立大葉大學,民國971121-22日。
  39. 李偉賢,陳銘祥,楊孟杰,“鋁鈧合金之撞擊變形與差排結構特徵分析,先進工程學刊 (Journal of Advanced Engineering)3卷第1,民國971月。
  40. 李偉賢,陳道星,盧俊廷,“鋁鈧合金在極高速剪切荷載下之絕熱剪切變形行為研究,先進工程學刊 (Journal of Advanced Engineering)3卷第2,民國974月。
  41. W. S. Lee and F.J., Fong, “Nanoindentation behaviour and microstructural evolution of au/cr/si thin films,” 第六屆海峽兩岸製造技術研討會 (The 6th Cross-strait Manufacturing Workshop), 西安,西安交通大學,中 ,民國96818-19
  42. W. S. Lee and F.J., Fong, September 23-25, 2007Influence of nanoidentation depth and annealing temperature on formation of eutectic phase in Au/Si thin film systems” International Symposium on Advanced Fluid/Solid Science and Technology in Experimental Mechanics (2th ISEM 2007), Osaka, Japan .
  43. 李偉賢,陳銘祥,楊孟杰,“鋁鈧合金之撞擊變形與差排結構特徵分析,中國機械工程師學會第二十四屆全國學術研討會,桃園縣中壢市,私立中原大學,民國961123-24日。
  44. 李偉賢,陳道星,盧俊廷,“鋁鈧合金在極高速剪切荷載下之絕熱剪切變形行為研究,中國機械工程師學會第二十四屆全國學術研討會,桃園縣中壢市,私立中原大學,民國961123-24日。
  45. 李偉賢,陳道星,李南瑋,“生醫鈦合金之動態剪切變形與破壞行為分析,中國機械工程師學會第二十四屆全國學術研討會,桃園縣中壢市,私立中原大學,民國961123-24日。
  46. 李偉賢,劉得煜,陳俊明“金//矽薄膜系統之奈米壓痕行為及其微觀結構變化之研究,中國機械工程師學會第二十四屆全國學術研討會,桃園縣中壢市,私立中原科技大學,民國961123-24日。
  47. W. S. Lee,  C. F. Lin and Y.C, Lin,  11-15 September 2006Dynamic deformation and failure behaviour of Al-Sc alloy under shear loadingDYMAT 2006,  Dijon, France.
  48. W. S. Lee, C. Y. Liu and T.H. Chen, 30 July- 3 August, 2006 Adiabatic shearing behaviour of different steels under extreme high shear loadingAdvanced in Materials and Processing Technologies (AMPT) 2006 Conference, Les Vegas, L.A., U.S.A.
  49. W. S. Lee and S.K., Lee, 10-12 May, 2006, “The heat release rate of the fire predicted by sequential inverse methods 28th International Conference on Boundary Elements and Other Mesh Reduction Method, Skiathos, Greece.
  50. W. S. Lee and S.K., Lee, 8 July, 2006, “Heat Release Rate of the Fire Predicted by Sequential Inverse Method, 4th International Conference on Quantum Engineering Science, Tainan, TAIWAN.
  51. 李偉賢,馮芳瑞,劉得煜“奈米壓痕深度及加熱溫度對金矽薄膜共晶相形成之影響,中國機械工程師學會第二十三屆全國學術研討會,台南縣永康市,私立崑山科技大學,民國951124-25日。
  52. 李偉賢,陳道星,龔虔稽,“溫度及應變速率在非可銲性鋁鈧合金動態剪切性能上之效應分析,中國機械工程師學會第二十三屆全國學術研討會,台南縣永康市,私立崑山科技大學,民國951124-25日。
  53. 李偉賢,林奇鋒,陳道星,黃信華,“生醫鈦合金在不同溫度及應變速率下之機械與微觀特性反應,中國機械工程師學會第二十三屆全國學術研討會,台南縣永康市,私立崑山科技大學,民國951124-25日。
  54. W. S. Lee  and S.Z. Huang, 13-17 May, 2005 “Deformation and failure behaviour of Ti-6Al-4V alloy under high rate shear loading” 2nd International Conference on Computational Ballistics, Cordoba, Spain.
  55. 黃智生,王星豪,李偉賢,陳道星,吳嘉昌,蕭琬云,連敏榮,不銹鋼桿件受動態撞擊引發之γ相變態,中國機械工程學會第二十二屆全國學術研討會,桃園中壢市,國立中央大學,民國941125-26日。
  56. 李偉賢,劉鎮洋,“溫度與應變速率效應在不同鋼鐵動態壓縮塑流行為之影響,中國機械工程師學會第二十二屆全國學術研討會,桃園中壢市,國立中央大學,民國941125-26日。
  57. 李偉賢,林奇鋒,黃信華,“應變速率溫度在鈦合金(Ti-15Mo-5Zr-3Al)塑變行為及顯微結構上之效應分析,中國機械工程師學會第二十二屆全國學術研討會,桃園中壢市,國立中央大學,民國941125-26日。
  58. 李偉賢,林永慶,“應變速率與溫度在鋁鈧合金動態剪切特性上之效應分析,中國機械工程師學會第二十二屆全國學術研討會,桃園中壢市,國立中央大學,民國941125-26日。
  59. 李偉賢,徐嘉祥,“應變速率及相對密度在鐵鎳合金(Fe-2Ni)粉末冶金件高速撞擊性質與微觀結構上的效應分析,中國機械工程師學會第二十二屆全國學術研討會,桃園中壢市,國立中央大學,民國941125-26日。
  60. 李偉賢,邱建程,“燒結密度對316L不銹鋼粉末冶金件動態撞擊特性及微觀結構之影響“,中國機械工程師學會第二十二屆全國學術研討會,桃園中壢市,國立中央大學,民國941125-26日。
  61. 黃智生,王星豪,李偉賢,陳道星,連敏榮,“特殊不銹鋼之動態撞擊行為”,中國機械工程學會第二十一屆全國學術研討會,高雄市,國立中山大學,民國931126-27日。
  62. 李偉賢,張榮洲,“抽線道次對銅伸線機械性質的影響”,中國機械工程學會第二十一屆全國學術研討會,高雄市,國立中山大學,民國931126-27日。
  63. 李偉賢,劉宗儒,“應變速率316L銹鋼粉末冶金件撞擊性能的影響”,中國機械工程學會第二十一屆全國學術研討會,高雄市,國立中山大學,民國931126-27日。
  64. 李偉賢,周建綱,“鐵鎳合金(Fe-2Ni)粉末冶金件之高速變形行為分析”,中國機械工程學會第二十一屆全國學術研討會,高雄市,國立中山大學,民國931126-27日。
  65. 李偉賢,林奇鋒,黃士展,“溫度與應變速率在鈦合金(Ti-6Al-4V剪切特性上之效應分析”,中國機械工程學會第二十一屆全國學術研討會,高雄市,國立中山大學,民國931126-27日。
  66. 李偉賢,王柏凱,“鐵錳鋁合金之高速撞擊與破壞行為研究”,中國機械工程學會第二十一屆全國學術研討會,高雄市,國立中山大學,民國931126-27日。
  67. 李偉賢,劉鎮洋,王柏凱“離散傅立葉轉換對霍普金森桿實驗波散效應之消除法”,第二十七屆中華民全國力學學會暨全國力學會議,台南市,國立成功大學,民國921212-13日。
  68. 李偉賢,劉鎮洋,“應變速率以及溫度效應對退火中碳鋼動態壓縮變形行為之影響”,第二十七屆中華民全國力學學會暨全國力學會議,台南市,國立成功大學,民國921212-13日。
  69. 李偉賢,林奇鋒,曾昫嵐“霍普金森桿應用於材料動態變形行為測試之實際與數值模擬比較分析”,第二十七屆中華民全國力學學會暨全國力學會議,台南市,國立成功大學,民國921212-13日。
  70. 李偉賢,孫泰農,“鎳基690合金於高溫高速荷載下之動態塑變行為與顯微結構分析”,中國機械工程學會第二十屆全國學術研討會,台北市,國立台灣大學,民國92125-6日。
  71. 李偉賢,陳柏村,“溫度及應變速率在304L 不銹鋼銲接件抗拉性質與顯微結構上的效應分析”,中國機械工程學會第二十屆全國學術研討會,台北市,國立台灣大學,民國92125-6日。
  72. 李偉賢,許耀臣,“304L不銹鋼電漿電弧銲接件在不同溫度及應變速率下的機械性質與破壞行為”,中國機械工程學會第二十屆全國學術研討會,台北市,國立台灣大學,民國92125-6日。
  73. W. S. Lee, C. Y. Liu, C. F. Lin, M. H. Chiang, 8-12 September 2003, “A Comparison of the Dynamic Shear Properties and Fracture Behaviour of Continuous and Pulsed Current Plasma Arc Weldments of 304L Stainless Steel”, 7th International Conference on Mechanical and Physical Behaviour of Materials under Dynamic Loading, Porto University, Portugal.
  74. W. S. Lee, C. Y. Liu, T. N. Sun, 8-11 July 2003, ” Deformation Behaviour of  Inconel 690 Super Alloy Evaluated by Impact Test”, International Conference on Advances in Materials and Processing Technologies, AMPT 2003, Dublin, Ireland.
  75. 李偉賢,林奇鋒,劉鎮洋,江明信,“304L不銹鋼定電流與脈衝電流電漿銲接件在動態剪切荷載下之塑變行為及破壞特性比較”,中國機械工程學會第十九屆全國學術研討會,雲林縣,國立虎尾技術學院,民國911129-30日。
  76. 李偉賢,劉鎮洋,林奇鋒,曾繁宗,“304L不銹鋼之惰性氣體鎢棒電弧銲及遮蔽金屬電弧銲銲接件的高速撞擊行為與顯微結構之特性分析”,中國機械工程學會第十九屆全國學術研討會,雲林縣,國立虎尾技術學院,民國911129-30日。
  77. 李偉賢,劉鎮洋,林奇鋒,程仁毅,“304L不銹鋼之惰性氣體鎢棒電弧銲及遮蔽金屬電弧銲銲接件在動態剪切負荷下的塑變行為與破壞特性分析”,中國機械工程學會第十九屆全國學術研討會,雲林縣,國立虎尾技術學院,民國911129-30日。
  78. 李偉賢,林奇鋒,劉鎮洋,陳志維,“應變速率及銲接電流模式在304L不銹鋼電漿電弧銲接件之動態撞擊特性及顯微結構的效應分析”,中國機械工程學會第十九屆全國學術研討會,雲林縣,國立虎尾技術學院,民國911129-30日。
  79. 李偉賢,林煌隆,“PC/ABS高分子聚合物之高速撞擊特性與破壞分析”, 第七屆破壞科學研討會,屏東墾丁,中國材料科學學會,民國91322-23日。
  80. W. S. Lee, H. L. Lin, 15-18 September 2002, “The Strain Rate Dependence of Deformation and Fracture Behaviour of Acrylonitrile-Butadiene-Styrene (ABS) Copolymer in Impact Test”, 3rd ESIS TC4 Conference on Polymer and Composites, Les Diablerets, Switzerland, pp.67-74.
  81. 李偉賢,葉律廷,“Compressive Deformation and Failure Behaviour of Tin-Lead Solder Alloys”,2001年電子接觸與連接器研討會,台北市陽明山,私立文化大學,民國90126-8日。
  82. 李偉賢,林煌隆,“高分子聚合物在不同應變速率下之壓縮變形特性與破壞分析”,中國機械工程學會第十八屆學術研討會,台北市,國立台灣科技大學,民國90129-10日。
  83. 李偉賢,陳道星,“高錳鋼在不同應變速率下的動態塑性變形行為與顯微結構之特性分析”,中國機械工程學會第十八屆學術研討會,台北市,國立台灣科技大學,民國90129-10日。
  84. 李偉賢,劉家銘,“304不銹鋼在動態剪切荷載下的塑變行為與破壞結構特性分析”,中國機械工程學會第十八屆學術研討會,台北市,國立台灣科技大學,民國90129-10日。
  85. 李偉賢,沈弘哲,“丙烯睛-丁二烯-苯乙烯(ABS)共聚合物與聚碳酸脂混合高聚物(PC/ABS blend)之動態剪切變形與破壞行為分析”,中國機械工程學會第十八屆學術研討會,台北市,國立台灣科技大學,民國90129-10日。
  86. W. S. Lee, C. F. Lin, 5-11 August, 2001, “Effect of Reinforcement Orientation on Dynamic Properties of 6061-T6 Aluminum/Carbon Fiber Metal Matrix Composite”, Eighth Annual International Conference on Composites Engineering, Tenerife, Spain, pp. 549-550.
  87. 李偉賢,劉鎮洋,”63-37錫鉛合金在不同溫度下之動態塑變行為及破壞顯微特徵分析,中國機械工程學會第十七屆學術研討會,高雄市,高雄第一科技大學,民國89128-9日,pp. 601-608
  88. 李偉賢,詹志源,”60-40錫鉛合金在不同溫度下之動態塑變行為及顯微結構特徵分析 中國機械工程學會第十七屆學術研討會,高雄市,高雄第一科技大學,民國89128-9日,pp. 593-600
  89. 李偉賢,葉律廷,溫度及應變速率在錫鉛合金材料壓縮變形行為上之效應分析,中國材料科學學會八十九年度論文發表會,高雄市,義守大學,民國891124-25日,H-04
  90. W. S. Lee, C. H. Lai and S. T. Chiou, 3-5 July, 2000, “Simulation of Perforation Behaviour of Carbon Fiber Reinforced 6061-T6 Aluminium Metal Matrix Composite by a Tungsten Projectile”, Sixth International Conference on Structures Under Shock and Impact,Cambridge University, U. K., pp. 185-194.
  91. 李偉賢,曾昫嵐,霍普金森桿應用於材料動態測試之模擬與分析,中國機械工程學會第十六屆學術研討會,新竹市,民國8812月,pp. 703-710
  92. 李偉賢,賴昌宏,”6061鋁基碳纖維強化複合材料高速撞擊下之變形行為模擬與分析,中國機械工程學會第十六屆學術研討會,新竹市,民國8812月,pp. 67-74
  93. 李偉賢,徐家權,溫度及應變速率在6061合金動態塑變行為與差排結構之效應分析中國機械工程學會第十六屆學術研討會,新竹市,民國8812月,pp. 97-104
  94. W. S. Lee, W. C. Sue, 5-9 July 1999, “Dynamic Compressive Strength and Failure of Carbon Fiber Reinforced Aluminum Metal Matrix Composite”, 12th International Conference on Composite Materials, Paris, France, pp. 455-464.
  95. 李偉賢,吳清吉,不同製程對7075鋁合金在高速高溫變形特性上的影響,中國機械工程學會第十五屆學術研討會,台南市,民國8711月,pp. 59-66
  96. 李偉賢,張森泰,溫度及應變速率在鎢基穿甲複合材料壓縮變形特性上之效應分析,中國機械工程學會第十五屆學術研討會,台南市,民國8711月,pp. 29-36
  97. W. S. Lee, W. C. Sue, 5-10 July, 1998, “Dynamic Impact Loading Deformation of Carbon Fiber Reinforced Al-Li Metal Matrix Composite”, 5th International Conference on Composites Engineering, Las Vegas, U. S. A., pp. 539-540.
  98. 李偉賢,謝國良,鎢基穿甲複合材料 (W-Ni-Fe)在高溫及高速下之塑變行為分析﹐中國機械工程學會第十四屆學術研討會﹐中壢市﹐民國8612月﹐pp. 297-304
  99. 李偉賢,林奇鋒,"鈦合金(Ti-6Al-4V)之高速高溫變形行為分析",中國機械工程學會第十三屆學術研討會,台北市,民國8511月,pp. 486-494.
  100. W. S. Lee, C. C. Lin, 3-5 July, 1996, "Oblique Impact and Perforation Behaviours of AISI 4340 Alloy Steel Plate by Hemisperically-tipped Tungsten Sinter Alloys Projectile", Fourth International Conference : Structures Under Shock and Impact, SUSI 96, Udine, Italy, pp. 351-360.
  101. W. S. Lee, W. C. Sue, 21-24 August, 1995, "The Study of A380 Aluminum Alloy Strengthened with 316L Stainless Steel Fiber", 2nd International Conference on Composites Engineering, New Orleans, U. S. A., pp. 451-452.
  102. 李偉賢,林明通,"溫度及應變速率在鈦合金鍛壓特性上之效應分析",中國機械工程學會第十二屆學術研討會,嘉義縣,民國8411月,pp. 619-628
  103. 李偉賢,林忠旗,"高速正向撞擊下AISI 4340 合金鋼之變形及貫穿行為分析與模擬",中國機械工程學會第十二屆學術研討會,嘉義縣,民國8411月,pp. 91-100
  104. 李偉賢,葉根旺,"AISI 4340 合金鋼之高溫高速變形行為分析",中國機械工程學會第十二屆學術研討會,嘉義縣,民國8411月,pp. 601-610
  105. 李偉賢,林文生,"應變速率及溫度在鈦合金塑變行為上之效應分析與模擬",中國機械工程學會第十一屆學術研討會,台中市,民國8311月,pp. 191-197
  106. 李偉賢,蘇再添,"AISI 4340 高強度合金鋼之單軸拉伸機械性質及顯微結構分析",中國機械工程學會第十一屆學術研討會,台中市,民國8311月,pp. 601-608
  107. 李偉賢,蘇再添,"AISI 4340 高強度合金鋼之高週疲勞特性及微觀結構分析",中國機械工程學會第十一屆學術研討會,台中市,民國8311月,pp. 649-658
  108. 李偉賢,吳東壁,"35NCD16鋼材之低週波疲勞特性及顯微結構分析",中國工程師學會第十屆全國學術研討會,新竹市,民國8211月,pp. 471-478
  109. W. S. Lee, H. F. Lam, April 1993, "Strain Rate Dependence of Mechanical Behaviour and Evaluation of Microstructure of 35NCD16 Steel", Proc. of The 1993 Annual Conf. of The Chinese Soc. for Mat. Sci. pp. 1-17 - 1-18.
  110. W. S. Lee, T. B. Wu, April 1993, "The Influences of Tempering Conditions on Microstructural Features and Mechanical Properties of 35NCD16 Steel", Proc. of the 1993 Annual Conf. of The Chinese Soc. for Mat. Sci. pp. 1-131 - 1-132.
  111. W. S. Lee, Nov. 1992, "The Effects of Strain Rate on Mechanical Behaviour and Microstructure Variations of Tungsten Single Crystal", 9th. Nat. Conf. on Mech. Eng. CSME, Kaohsiung, pp. 113-120.
  112. W. S. Lee, C. Y. Chiem, Nov. 1990, "Cisaillement et Traction Dynamiques de Composite SiC-L. A. S. Bidimensionnel", Comptes-Rendus des septiems Journees Nationales Sur Les Composites, Lyon, France, pp. 315-324.
  113. C. Y. Chiem, W. S. Lee, March 1989, "Strain Rate Dependence of Mechanical Behaviour and Evaluation of the Microstructure of Tungsten Monocrystals" Fourth Conference on Mechanical Properties of High Rate of Strain, Oxford, U. K., pp. 227-236.
  114. C. Y. Chiem, W. S. Lee, Feb. 1989, "High Strain Rate Behaviour of Tungsten Single Crystals under Shear Loading", Internal Research Orientation Conference of the French-Germany Ministries of Defense, Paris.
  115. C. Y. Cheim, W. S. Lee, Sept. 1988, "The Relationship Between Tensile Strength and Shear Strength in Tungsten Base Materials Subjected to High Strain Rates", 2nd International Conferences on Mechanical and Physical Behaviour of Materials under Dynamic Loading, Ajaccio, France, pp. 191-197.
  116. T. S. Lei. E. T. Chen, W. S. Lee, Y. C. Lin, April 1984, "The Rolling and Sliding Properties of the High Strength Ductile Irons", Proc. of 1st Inter. Austempering Ductile Iron Conference, Chicago.

C. 其它專書

  1. 李偉賢July 2012, “6061鋁合金滾軋板材在不同晶向方位及應變速率下之塑變行為與差排次結構分析”, 國科會專題研究報告,NSC –100-2221-E006-062
  2. 李偉賢July 2011, “應變速率及溫度在316L不銹鋼高速變形特性、差排及麻田散鐵變態與雙晶生成上之效應分析”, 國科會專題研究報告,NSC –99-2221-E006-020
  3. 李偉賢July 2010, “鎳基超合金(In718)在不同溫度下之撞擊特性與顯微結構分析”, 國科會專題研究報告,NSC –98-2221-E006-035
  4. 李偉賢July 2009, “應變速率及溫度在高強度錳鉬合金鋼塑變特性及顯微結構與絕熱剪切破壞上之效應研究”, 國科會專題研究報告,NSC –97-2221-E006-047
  5. 李偉賢July 2008, “高強度鋁鈧合金之塑變特性及顯微結構與絕熱剪切破壞研究(3/3)”, 國科會專題研究報告,NSC –96-2221-E006-048
  6. 李偉賢July 2007, “高強度鋁鈧合金之塑變特性及顯微結構與絕熱剪切破壞研究(2/3)”, 國科會專題研究報告,NSC –95-2221-E006-270
  7. 李偉賢July 2007, “不同鋼種在極高速剪切荷載下之絕熱剪切變形行為研究”, 國科會專題研究報告,NSC –95-2221-E006-031
  8. 李偉賢July 2006, “高強度鋁鈧合金之塑變特性及顯微結構與絕熱剪切破壞研究(1/3)”, 國科會專題研究報告,NSC –94-2212-E006-038
  9. 李偉賢July 2005, “應變速率及溫度在鈦合金(Ti-15Mo-5Zr-3Al)塑變行為及顯微結構上之效應分析”, 國科會專題研究報告,NSC –93-2212-E006-076
  10. 李偉賢July 2004, “鎳基超合金在不同荷載速率及溫度下之變形及顯微結構分析”, 國科會專題研究報告,NSC –92-2212-E006-110
  11. 李偉賢July 2004, “霍普金森桿運用於材料動態變形行為之實驗與數值模擬比較分析”, 國科會專題研究報告,NSC -92-2212-E006-109
  12. 李偉賢July 2003,“304L不銹鋼電漿電弧銲件之動態撞擊特性與顯微結構分析”, 國科會專題研究報告,NSC -91-2216-E-006-063
  13. 李偉賢May 2003, “彎管機活動臂轉軸行星齒輪壽命之提升(提升產業技術及人才培育計畫)”, 國科會專題研究報告, NSC -91-2622-E-006-023-CC3
  14. 李偉賢July 2002,“預變形對304L不銹鋼高速撞擊行為、麻田散鐵變態及變形雙晶生成之效應分析”, 國科會專題研究報告,NSC-90-2216-E006-055
  15. 李偉賢July 2001高速撞擊下不銹鋼之麻田散鐵變態特性及其對動態機械性質之影響﹐國科會專題研究報告,NSC-89-2216-E006-064
  16. 李偉賢July 2000長纖碳纖維6061鋁基複合材料之動態塑性變形及破壞分析﹐國科會專題研究報告,NSC-89-2216-E006-022
  17. 李偉賢July 1999航空材料之動態測試及航空結構之撞擊行為分析(III)—子計畫二﹕鋁鋰金屬基碳纖維複合材料之動態撞擊行為分析與摸擬(III)”﹐國科會專題研究報告,NSC-88-2212-E006-059
  18. 李偉賢July 1998航空材料之動態測試及航空結構之撞擊行為分析(II)—子計畫二﹕鋁鋰金屬基碳纖維複合材料之動態撞擊行為分析與摸擬(II)”﹐國科會專題研究報告,NSC-87-2212-E006-068
  19. 李偉賢July 1997航空材料之動態測試及航空結構之撞擊行為分析(I)—子計畫二﹕鋁鋰金屬基碳纖維複合材料之動態撞擊行為分析與摸擬(I)”﹐國科會專題研究報告,NSC-86-2212-E006-015
  20. 李偉賢July 1997軌道荷載速率效應﹐磨耗特性及破壤檢測分析﹐國科會專題研究報告,NSC-86-2212-E-006-073
  21. 李偉賢,林明通,September 1993"鎳鉻鉬鋼之高速壓縮荷載行為與顯微結構分析",大專學生暑期參與專題研究計畫成果報告,NSC-83-0115-C006-01-024E
  22. 李偉賢July 1996"軌道荷載速率效應,磨耗特性及破壞檢測分析",國科會專題研究報告,NSC-85-2212-E006-039
  23. 李偉賢July 1995"應變速率及溫度在多晶純鋁剪切變形及差排結構上之效應分析",國科會專題研究報告,NSC-84-2212-E006-065
  24. 李偉賢December 1994"應變速率及溫度在多晶純鋁剪切變形上之效應分析",國科會專題研究報告,NSC-83-0401-E006-016
  25. 李偉賢July 1994"高速變形下35NCD16鋼材之機械性質及差排結構分析",國科會專題研究報告,NSC-83-0401-E006-147
  26. 李偉賢July 1993"鎢單晶動態壓縮之塑性變形行為及微觀特性分析",國科會專題研究報告,NSC-82-0405-E006-106
  27. 李偉賢July 1992"應變速率對35NCD16鋼材之機械性質及顯微結構效應分析",國科會專題研究報告,NSC-81-0405-E006-11
  28. C. Y. Chiem, W. S. Lee, August 1990, "Comportement Dynamique et Mode de Rupture des Polycristaux de Tungsten Soumis en Cisaillement aux Grandes Vitesses de Sollicitation", Rapport Technique, ENSM/DRET, NCL-030490/L. M.
  29. W. S. Lee, June 1990, "Correlation entre la Microstructure et les Properiétés Méchanique de Materiaux à Base de Tungsten aux Cisaillement à Grande Vitesse", Ph. D. Thesis, Ecole Centrale de Nantes, France.
  30. C. Y. Chiem, W. S. Lee, A. Rouxell, September 1989, "Deformation de la Loi de Compertement et de la Resistance en Rupture de Trois Materiaux Metalliques", Rapport Technique, 1'Aerispatitable, Establissement des Mureaux, Departement TY, N 355285.
  31. C. Y. Chiem, W. S. Lee, April 1989, "Comportement Dynamique des Monocristaux et Polycristaux de Tungsten Soumis aux Grandes Vitesses de Sollicitation", Rapport Technique ENSM/DRET, N87/1192.
  32. 李偉賢,黃廷合,May 1988"鑄件缺陷之成因及對策",全華圖書公司。
  33. 雷添壽,李偉賢,林原慶,Oct. 1984"高強度球狀石墨鑄鐵之機械性質及滾磨耗特性研究",國科會專題研究報告,NSC-73-0405-E-011-03