共 25 条
[1]
Peng W., A study on strengthening effects of laser shock peening on stress corrosion cracking resistance of stainless steel welded joints, (2006)
[2]
Han L., Lin G., Wang Z., Et al., Study on corrosion resistance of 316l stainless steel welded joint, Rare Metal Materials and Engineering, 39, 3, pp. 393-396, (2010)
[3]
Iordachescu M., Valiente A., Caballero L., Et al., Laser shock processing influence on local properties and overall tensile behavior of friction stir welded joints, Surface and Coatings Technology, 206, 8, pp. 2422-2429, (2012)
[4]
Li X., Zhang Y., Lu Y., Et al., Research of corrosion resistance for AZ31 magnesium alloy by laser shock processing, Chinese Journal of Lasers, 41, (2014)
[5]
Lu J.Z., Luo K.Y., Yang D.K., Et al., Effects of laser peening on stress corrosion cracking (SCC) of ANSI 304 austenitic stainless steel, Corrosion Science, 60, pp. 223-226, (2012)
[6]
Bai T., Chen P., Guan K., Evaluation of stress corrosion cracking susceptibility of stainless steel 304L with surface nanocrystallization by small punch test, Materials Science & Engineering A, 561, pp. 498-506, (2013)
[7]
Wu Y., Kong D., Long D., Et al., Effects of laser shock processing on corrosion of X70 pipeline steel in acidic soil environment, Transactions of the China Welding Institution, 33, 12, pp. 101-106, (2012)
[8]
Li J., Li J., He W., Et al., Improvement of wear resistance by laser shock processing and carburization composite technology used on 12CrNi3A steel, High Power Laser and Particle Beams, 26, (2014)
[9]
Kalainathan S., Sathyajith S., Swaroop S., Effect of laser shot peening without coating on the surface properties and corrosion behavior of 316L steel, Optics and Lasers in Engineering, 50, 12, pp. 1740-1745, (2012)
[10]
Sano Y., Yoda M., Mujai N., Et al., Observation and modeling of laser peening phenomenon, The Review of Laser Engineering, 26, 11, pp. 793-799, (1998)