D. H. Hsiao, T. C. Chen, S. L. Jeng, T. J. Chung and L. W. Tsay* 2016 “Effects of simulated microstructure on the creep rupture of the modified 9Cr-1Mo steel”, J. Mats. Eng. Perf. In press (SCI). IF:0.998.
C.T. Hsieh, R. K. Shiue, R.-T. Huang and L.W. Tsay*2016 “The effect of post-weld heat treatment on the microstructure and notched tensile fracture of Ti-15V-3Cr-3Al-3Sn to Ti-6Al-4V dissimilar laser welds” Mats Sci Eng. A Vol. 653, pp. 139-146. (SCI). IF:2.567
T. C. Chen, S. T. Chen and L. W. Tsay* 2016 “The effect of phase transformation in the plastic zone on the hydrogen-assisted fatigue crack growth of 301 stainless steel” Mats Characterization Vol. 112, pp. 134-141. (SCI). IF:1.845
J. B. Cai, C. Yu , R.K. Shiue and L.W. Tsay* 2015 “Stress corrosion cracking of austenitic weld deposits in a salt spray environment” J. Nuclear Material, Vol. 433, pp 419-423 (SCI). IF:1.865
Y.-K. Chou, L. W. Tsay* and C. Chen 2015 “Effects of Aging Treatments on the Mechanical Behavior of Ti-15V-3Cr-3Sn-3Al Alloy” J. Mats. Eng. Perf. Vol. 23, pp. 967-974 (SCI). IF:0.998
T. C. Chen, S. T. Chen and L. W. Tsay*, 2014 “The Role of Induced α′-Martensite on the Hydrogen-Assisted Fatigue Crack Growth of Austenitic Stainless Steels”, Int. J. Hydrogen Energy, Vol. 39, pp. 10293-10302. (SCI). IF:3.313
C. Y. Chu, C. T. Hsieh and L. W.Tsay*, 2014 “Microstructure and Notched Tensile Fracture of Ti-6Al-4V to Ti-4.5Al-3V-2Fe-2Mo Dissimilar Welds”, Mats & Design, Vol. 63, pp. 14-19 . (SCI). IF:3.501
C. T. Hsieh, C. Y. Chu, R. K. Shiue and L. W. Tsay*, 2014 “The Effect of Post-weld Heat Treatments on the Notched Tensile Fracture of Ti-6Al-4V to Ti-6Al-6V-2Sn Dissimilar Laser Welds”, Mats & Design, Vol. 59, pp. 227-232. (SCI). IF: 3.501
R.-T. Huang, W.-L. Huang, R.-H. Huang and L. W. Tsay, 2014, “Effects of microstructure on the notch tensile fracture feature of heat-treated Ti-6Al-6V-2Sn alloy “, at elevated temperature” Mats Sci. Eng., Vol. A595, pp. 297-305. (SCI). IF:2.567
H. A. Chu, M. C. Young, H. C. Chu ,L. W. Tsay* and C. Chen, 2014 “The Effect of Nb and S Segregation on the Solidification Cracking of Alloy 52M Weld Overlay on CF8 Stainless Steel” J. Mats. Eng. Perf. Vol. 23, pp. 967-974 (SCI). IF:0.998
W. J. Li, M. C. Young , C. L. Lai, W. Kai and L.W. Tsay*, 2013“The Effects of Rolling Temperature and Sensitization Treatment on the Stress Corrosion Cracking of 304L Stainless Steel in Salt-Spray Environment” Corr. Sci. Vol. 68, pp 25-33 (SCI). IF:4.442
H. A. Chu, M. C. Young, H. C. Chu, L. W. Tsay* and C. Chen, 2013 “Hot Cracking Susceptibility of Alloy 52M Weld Overlays onto CF8 Stainless Steel” J. Nuclear Material, Vol. 433, pp 419-423 (SCI). IF:1.865
Leu-Wen Tsay*, S. T. Chang and Chun Chen, 2013“Fatigue crack growth characteristics of Ti-15V-3Cr-3Sn-3Al alloy in variously aged conditions” Mat. Trans JIM, Vol. 54, pp 326-331 (SCI). IF:0.679
R.-T. Huang, W.-H. Chen, L. W. Tsay, 2013, “Relationship between microstructure and notch tensile strength in Ti-15V-3Cr-3Al-3Sn alloy at elevated temperature” Mat. Trans JIM, Vol. 54, pp 319-325 (SCI). IF:0.679
W. Kai, Y. H. Wu, W. S. Chen, L. W. Tsay, H. L. Jia, P.K. Liaw, 2013, “Air-oxidation behavior of a [(Fe50Co50)75B20Si5]96Nb4 bulk metallic glass at 500–650oC ”, Corr. Sci. Vol. 66, pp 26-32 (SCI). IF: 4.442
C. L. Lai, L.W.Tsay*, C. Chen, 2013 “Effect of microstructure on hydrogen embrittlement of various stainless steels”, Mats Sci. Eng., Vol. A584, pp. 14-20. (SCI). IF: 2.567
H. H. Hsu, Y. C. Wu and L. W. Tsay, 2012 “Notched Tensile Fracture of Ti-15V-3Cr-3Sn-3Al Alloy” Mats Sci. Eng., 545A, pp20-25. IF: 2.567
H. H. Hsu and L. W. Tsay, 2012 “Fracture properties of hydrided Zircaloy-4 Cladding in recrystallization”, J. Nuclear Material, Vol. 422, pp 67-72 (SCI). IF: 1.865
M. Y. Lu, L. W. Tsay* and C. Chen, 2012 “Notched Tensile Fracture of Ti-6Al-4V Laser Welds at Elevated Temperatures”, Mat. Trans JIM, Vol. 53, pp 1042-1047 (SCI). IF: 0.679
L. W. Tsay*, Y. J. Lin and C. Chen, 2012 “The Effects of Rolling Temperature and Sensitization Treatment on Sulfide Stress Corrosion Cracking of AISI 304L Stainless Steel” Corr. Sci. Vol. 63, pp 267-274 (SCI). IF: 4.442