共 53 条
- [31] Rokosz K., Hryniewicz T., Chapon P., Et al., XPS and GDOES characterization of porous coating enriched with copper and calcium obtained on tantalum via plasma electrolytic oxidation[J], Journal of spectroscopy, 2016, (2016)
- [32] Liu R., Wu J., Xue W., Et al., Discharge behaviors during plasma electrolytic oxidation on aluminum alloy[J], Materials chemistry and physics, 148, 1-2, pp. 284-292, (2014)
- [33] Hussein R.O., Nie X., Northwood D.O., Influence of process parameters on electrolytic plasma discharging behaviour and aluminum oxide coating microstructure[J], Surface & coatings technology, 205, 6, pp. 1659-1667, (2010)
- [34] Jovovic J., Stojadinovic S., Sisovic N.M., Et al., Spectroscopic characterization of plasma during electrolytic oxidation (PEO) of aluminium[J], Surface & coatings technology, 206, 1, pp. 24-28, (2011)
- [35] Owens D.K., Wendt R.C., Estimation of the surface free energy of polymers[J], Journal of applied polymer science, 13, pp. 1741-1747, (1969)
- [36] Kaelble D.H., Dispersion-polar surface tension properties of organic solids[J], The journal of adhesion, 2, 2, pp. 66-81, (1970)
- [37] You P., Lyu X., Wu H., Surface free energy of coated paper measured by Owens method[J], Journal of Shaanxi University of Science & Technology, 29, 2, pp. 36-39, (2011)
- [38] Rolo L.I., Caco A.I., Queimada A.J., Et al., Surface tension of heptane, decane, hexadecane, eicosane, and some of their binary mixtures[J], Journal of chemical & engineering data, 47, 6, pp. 1442-1445, (2002)
- [39] Wang Y., Wang L., Wang S.C., Et al., Nanocomposite microstructure and environment self-adapted tribological properties of highly hard graphite-like film[J], Tribology letters, 40, pp. 301-310, (2010)
- [40] Qiu J., Zhao W., Guilbert T., Et al., High temperature oxidation behaviours of these zirconium alloys[J], Acta metallurgical sinica, 47, 9, pp. 1216-1220, (2011)