共 11 条
[1]
Liberski P., Anticorrosive hot-dip coatings (In Polish), (2013)
[2]
Liberski P., Podolski P., H Kania A., Gierek J., Mendala, Corrosion Resistance of Zinc Coatings Obtained in High-Temperature Baths, Materials Science, 39, 5, pp. 652-657, (2003)
[3]
Kania H., Bieronska M., Corrosion Resistance of Zn-31AlMg Coatings Obtained by Batch Hot Dip Method, Proc. Of XXI Conference on Technologies and Properties Of Modern Utility Materials (TPMUM 2013), 212, pp. 167-172, (2014)
[4]
Kania H., The structure of coatings obtained in the Zn-31Al-3Mg bath by the batch hot dip method, IOP Conf. Series – Materials Science and Engineering, 35, (2012)
[5]
Kania H., Liberski P., Synergistic influence of Al, Ni, Bi and Sn addition to a zinc bath upon growth kinetics and the structure of coatings, IOP Conf. Series – Materials Science and Engineering, 35, (2012)
[6]
Mendala J., The influence of Si addition in 55AlZn bath on the coating structures obtained in the batch hot-dip metallization, IOP Conf. Series – Materials Science and Engineering, 22, (2011)
[7]
Shchukin E.D., Physical-chemical mechanics in the studies of Peter A. Rehbinder, Colloids and Surfaces A: Physicochemical and Engineering Aspects, 149, 1-3, pp. 529-537, (1999)
[8]
Joseph B., Picat M., Barbiera F., Liquid metal embrittlement: A state-of-the-art appraisal, The European Physical Journal Applied Physics, 5, pp. 19-31, (1999)
[9]
Clegg R.E., Jones D., Liquid metal embrittlement of tensile specimens of EN 19 steel by tin, Engineering Failures Analysis, 10, pp. 119-130, (2003)
[10]
Mendala J., Liquid metal embrittlement of steel with galvanized coatings, IOP Conf. Ser.: Materials Science and Engineering, 35, (2012)