PSI - Issue 18

Abdeljalil Jikal et al. / Procedia Structural Integrity 18 (2019) 731–741 Abdeljalil JIKAL et al./ Structural Integrity Procedia 00 (2019) 000–000

741 11

Wang, D., Li, X., Wang, X. Shi, G., Mao, X., Wang, D., 2016. Effects of hoisting parameters on dynamic contact characteristics between the rope and friction lining in a deep coal mine, Tribol. Int., 96, 31-42. Costello, G. A., 1997. Theory of wire rope, Second ed., Springer-Verlag, New York. Peterka, P., Krešák, J., Kropuch, S., Fedorko, G., Molnar, V., Vojtko, M., 2014. Failure analysis of hoisting steel wire rope, Eng. Fail. Anal, 45, 96-105. Singh, R. P., Mallick, M., Verma, M. K., 2016. Studies on failure behaviour of wire rope used in underground coalmines, Eng. Fail. Anal., 70, 290 304. Dieter, G.E., 1961. Mechanical Metallurgy, International Student Edition, McGraw-Hill. Périer, V., Dieng, L., Gaillet, L., Tessier, C., Fouvry, S., 2009. Fretting-fatigue behaviour of bridge engineering cables in a solution of sodium chloride, Wear, 267, 308-314. Meksem, A., El Ghorba, M., Benali, A., El Barkany, A., 2011. Optimization by the reliability of the damage by tiredness of a wire rope of lifting, Appl. Mech. Mater., 61,15–24. Tijani, A., Meknassi, M., Chaffoui, H., Elghorba, M., 2017. Combined effect of broken rope components and corrosion on damage evolution through its lifetime, J. Mater. Civ. Eng., 29(7) 04017035. Molnár, V., Fedorko, G., Krešák, J., Peterka, P., Fabianová, J., 2017. The influence of corrosion on the life of steel ropes and prediction of their decommissioning, Eng. Fail. Anal., 74,119-132. Meknassi, M., Mouhib, N., Tijani, A., El Ghorba, M., 2015. Experimental study of wires extracted from steel wire rope and exposed to sulfuric acid, Int. J. Mech. Eng., IIJME, 3(11) 47-53. Faupel, J., Furbeck, A., 1953. Influence of residual stress on behavior of thick-wall closed-end cylinders, Trans. ASME. Aegerter, J., Kühn, H. J., Frenz, H., Weißmüller, C., 2011. EN ISO 6892-1: 2009 tensile testing: initial experience from the practical implementation of the new standard. Materials Testing, 53(10)595-603. Wang, D., Zhang, D., Zhao, W., Ge, S., 2014. Quantitative analyses of fretting fatigue damages of mine rope wires in different corrosive media. Mater. Sci., Eng., A, 596, 80-88. ISO, 1974. “Câbles En Acier Pour Usages Courants-Détermination de La Charge de Rupture Effective.” ISO 3108, Geneva. Klever, F., 2006. Formulas for rupture, necking, and wrinkling of octg under combined loads, SPE Annu. Tech. Conf. Exhib. Brabin, A., Christopher, T., 2009. Investigation on failure behavior of unflawed steel cylindrical pressure vessels using FEA, Multidiscipline. Veritas, D., 2000. Offshore standard dnv-os-f101, Submar. Pipeline Syst. Majid, F., Elghorba, M., 2017. HHPE pipes failure analysis and damage modeling, Eng. Fail. Anal., 71, 157–165. Mouhib, N., 2015. Multi-Scale Study of the Mechanical Behavior of a Non-rotating Lifting Wire Rope (19 ×7) Subjected to Static Loads and Prediction of its Lifetime: Experimental, Analytical and Numerical, Doctoral thesis (ENSEM), Hassan II University, Ain Chock, Casablanca,. Bui-Quoc, T., 1982. Cumulative damage with interaction effect due to fatigue under torsion loading, Exp. Mech. 22, 180–187. Shanley, F.R., 1957. Strength of Materials, Amazon Book Review. Valluri, S.R., 1965. J. Aerosp. Eng. 20, 68–89. Sorensen, A., 1969. A general theory of fatigue damage accumulation, J. Basic Eng. Trans. ASME 91. Ouardi, A., Majid, F., Mouhib, N., Elghorba, M., 2018. Residual life prediction of defected polypropylene random copolymer pipes (PPR), Frattura Integr. Strutt. 43; 97–105. MIFA of Morocco, incorporated company, steel cables, lifting department.

Made with FlippingBook - Online magazine maker