References
[1]. Achintha, M., Nowell, D., Fufari, D., Sackett, E. E., &
Bache, M. R. (2014). Fatigue behaviour of geometric
features subjected to laser shock peening: Experiments
and modelling. International Journal of Fatigue, 62, 171-
179. https://doi.org/10.1016/j.ijfatigue.2013.04.016
[2]. Atkinson, K. R. (2014). Design, function, and
applications of high-retention doffer and worker wire.
Textile Research Journal, 84(8), 881-894. https://doi.org/
10.1177%2F0040517514523179
[3]. Berthe, L., Fabbro, R., Peyre, P., Tollier, L., & Bartnicki, E.
(1997). Shock waves from a water-confined lasergenerated
plasma. Journal of Applied Physics, 82(6),
2826-2832. https://doi.org/10.1063/1.366113
[4]. Ding, K., & Ye, L. (2006). Laser Shock Peening:
Performance and Process Simulation. Woodhead
Publishing, Cambridge.
[5]. Ganesh, P., Sundar, R., Kumar, H., Kaul, R.,
Ranganathan, K., Hedaoo, P., Tiwari, P., Kukreja, L. M.,
Oak, S. M., Dasari, S., & Raghavendra, G. (2012). Studies
on laser peening of spring steel for automotive
applications. Optics and Lasers in Engineering, 50(5), 678-
686. https://doi.org/10.1016/j.optlaseng.2011.11.013
[6]. Kalpan, N. S. (2008). Yarn Technology. Abhishek
Publications, Chandigarh, India.
[7]. Kuo, C. F. J., Chou, Y. C., & Lin, T. Y. (2012). Automatic
control of roller carding machine. Part I: Modeling and validation of roller carding machine. Textile Research
Journal, 82(1), 3-10. https://doi.org/10.1177/0040517511
416275
[8]. Mao, S. S., Mao, X., Greif, R., & Russo, R. E. (2001).
Influence of preformed shock wave on the development
of picosecond laser ablation plasma. Journal of Applied
Physics, 89(7), 4096-4098. https://doi.org/10.1063/1.
1351870
[9]. Peng, C., Xiao, Y., Wang, Y., & Guo, W. (2017). Effect of
laser shock peening on bending fatigue performance of
AISI 9310 steel spur gear. Optics & Laser Technology, 94,
15-24. https://doi.org/10.1016/j.optlastec.2017.03.017
[10]. Rosemann, H. (2008). Saw-tooth wire for producing
a saw-tooth all-steel clothing for a roller or a carding
element of a spinning room machine. (US Patent No.
US7797798B2) United States. Retrieved from https://
patents.google.com/patent/US7797798B2/en
[11]. Sathyajith, S., Kalainathan, S., & Swaroop, S. (2013).
Laser peening without coating on aluminum alloy Al-
6061-T6 using low energy Nd:YAG laser. Optics & Laser
Technology, 45, 389-394. https://doi.org/10.1016/j.
optlastec.2012.06.019
[12]. Shen, X., Shukla, P., Nath, S., & Lawrence, J. (2017).
Improvement in mechanical properties of titanium alloy
(Ti-6Al-7Nb) subject to multiple laser shock peening.
Surface and Coatings Technology, 327, 101-109.
https://doi.org/10.1016/j.surfcoat.2017.08.009