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2014 | Vol. 14, no. 4 | 682--690
Tytuł artykułu

Processing damages of material components of aerial conductors and their tribological behaviors under dry friction

Wybrane pełne teksty z tego czasopisma
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
In this study, materials AA-1070, AA-6101, Fe, aluminum clad steel (ACS) and aluminum clad steel (CS) tube used in manufacturing of aerial bare conductors for transmission lines have been presented by analyzing their interactions with processing tools of machines and friction properties of each other. To detect interactions of conductor metal and processing machine, analyses of samples collected from their manufacturing plant were performed by means of SEM and optical microscope. Tribological properties of components of bare conductors were analyzed experimentally under dry sliding to illustrate processing damaging of machines. Five different samples were carried out on pin on disk wear tester for that purpose. The effects of heat treatment on the tribological behavior of the samples were also investigated. As a conclusion, it has been detected that ACS wire clad with AA-1070 and Zinc coated steel wire can be preferred as high wear resistance metal components. On the other hand, under dry sliding condition, samples prepared from the materials AA-6101 (heat treated) and AA-6101 (non-treated) have lower friction coefficient values than other samples. These conductor materials are very vulnerable due to external effects and processing tooling. It requires perfect management of processing of the material in the plant.
Wydawca

Rocznik
Strony
682--690
Opis fizyczny
Bibliogr. 11 poz., rys., tab., wykr.
Twórcy
  • Kocaeli University, Engineering Faculty, Mechanical Engineering Department, Izmit, Kocaeli, Turkey, efeyz@kocaeli.edu.tr
autor
  • Kocaeli University, Engineering Faculty, Mechanical Engineering Department, Izmit, Kocaeli, Turkey, sedatkarabay58@gmail.com
Bibliografia
  • [1] Z.R. Zhou, Q.Y. Liu, M.H. Zhu, L. Tanjala, P.H. Kapsa, L. Vincent, An investigation of fretting behavior of several metallic materials under grease lubrication, Tribology International 33 (2000) 69–74.
  • [2] Z.R. Zhou, S.R. Gu, L. Vincent, An investigation of the fretting wear of two aluminium alloys, Tribology International 30 (1) (1997) 1–7.
  • [3] Z.R. Zhou, A. Cardeu, S. Goudreau, M. Fiset, Fretting pattern in a conductor–clamp contact zone, Fatigue & Fracture of Engineering Materials & Structures 17 (1994) 661–669.
  • [4] A.A. Fadel, D. Rosa, L.B. Murça, J.L.A. Fereira, J.A. Araújo, Effect of high mean tensile stress on the fretting fatigue life of an Ibis steel reinforced aluminum conductor, International Journal of Fatigue 42 (2012) 24–34.
  • [5] C.R.F. Azevedo, A.M.D. Henriques, A.R. Pulino Filho, J.L.A. Ferreira, J.A. Araujo, Fretting fatigue in overhead conductors: rig design and failure analysis of a grosbeak aluminium cable steel reinforced conductor, Engineering Failure Analysis 16 (2009) 136–151.
  • [6] Y.T. Horng, T.C. Chang, J.W. Hsu, H.C. Shih, The erosive wear and corrosion behavior of zinc and aluminum coated steels in simulated coastal environment, Surface and Coatings Technology 168 (2003) 209–215.
  • [7] http://www.phoneix-tribology.com.
  • [8] G. Liu, Y. Chen, H. Li, A study on sliding wear mechanism of ultrahigh molecular weight polyethylene/polypropylene blends, Wear 256 (2004) 1088–1094.
  • [9] F. Wang, H.M. Liu, Y.J. Ma, Y.S. Jin, Effect of Si content on the dry sliding wear properties of spray deposited Al–Si alloy, Materials & Design 25 (2004) 163–166.
  • [10] G. Chen, X. Wang, J. Wang, J. Liu, T. Zhang, W. Tang, Damage investigation of the aged aluminium cable steel reinforced (ACSR) conductors in a high-voltage transmission line, Engineering Failure Analysis 19 (2012) 13–21.
  • [11] S. Karabay, F.K. Önder, An approach for analysis in refurbishment of existing conventional HV-ACSR transmission lines with AAAC, Electric Power Systems Research 72 (2) (2004) 179–185. archives of civil and mechanical engineering 14 (2014) 682–690690.
Typ dokumentu
Bibliografia
Identyfikatory
Identyfikator YADDA
bwmeta1.element.baztech-0370b5d4-b225-4e47-aedf-ed03f147c6c0
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