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A tribological research on a reciprocating sliding contact of aluminum - ferrous composite against cast - iron

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At the Faculty of Mechanical Engineering of the Gdańsk University of Technology a research was undertaken on new metallic composites of potentially high wear resistance in reciprocating sliding. Composites were composed of ferrous powder or cutting carbon steel (N9) in cast aluminium alloy (AlSi11) matrix. A reaction between aluminium and iron was anticipated to result in the strengthening phases forming in the material. The composite materials and a reference non - composite were tested on the TPZ-1 tribometer in reciprocating unlubricated sliding against cast - iron. Tests were carried out at 5 MPa surface pressure and speed of O.1 m/s. Wear resistance was different for each material tested. The highest wear rate was exhibited by reference aluminium-silicon alloy. In composite materials the wear was slower. The exact influence of factors such as the time of mixing of the iron powder with the aluminium base material on the wear ratę remains still to be established. The friction coefficient characteristics vary with the material tested. The most stable friction coefficient was observed on unmodified aluminium - silicon alloy. A simple relation between the value of the friction coefficient and the wear rate among the tested materials was not observed yet.
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  • Gdańsk Institute of Technology, Faculty of Mechanical Engineering, ul Narutowicza 11/12, 80-952 Gdańsk, Poland tel. (+4858)347-26-93, (+48 58)347-27-62, fax. (+4858)347-27-42
  • Gdańsk Institute of Technology, Faculty of Mechanical Engineering, ul Narutowicza 11/12, 80-952 Gdańsk, Poland tel. (+4858)347-26-93, (+48 58)347-27-62, fax. (+4858)347-27-42
  • Gdańsk Institute of Technology, Faculty of Mechanical Engineering, ul Narutowicza 11/12, 80-952 Gdańsk, Poland tel. (+4858)347-26-93, (+48 58)347-27-62, fax. (+4858)347-27-42
Bibliografia
  • [1] Druet K., Urządzenie do badania tarcia ślizgowego w ruchu prostoliniowym, XXIII Jesienna Szkoła Tribologiczna - Kształtowanie tribologicznych wtasciwosci węzłów tarcia. Teoria i praktyka. Zielona Góra- Lubiatów, wrzesień 1999, pp. 29 - 34.
  • [2] Druet K., Łubiński T.,Łubiński J. I., Reciprocating motion tribometer, Abstracts of papers from 2nd World Tribol. Congr. Vienna, Austria, 3 - 7 September 2001, p. 663.
  • [3] Druet K., Łubiński J. I., Grymek S., Stanowisko do badania tarcia ślizgowego w ruchu posuwisto-zwrotnym, J. of KONES 2002 vol. 9 nr 1- 2, pp. 72-79.
  • [4] Druet K., Łubiński J. I., Grymek S., Tribometr posuwisto-zwrotny ze stałą prędkością ślizgania, Zesz. Nauk. Wydz. Mech. P. Koszal. 2003 nr 32, pp. 9- 16.
  • [5] Imielińska K., Le Petitcorps Y., Processing and properties of Al-Si•Fe•Cr in situ composites, Inżynieria Materiałowa, Nr 2 ( 133)/2003, pp. 74- 79.
  • [6] Łubiński J. I., Druet K., Serbiński W., Friction and wear of cast aluminium alloy with laser modified surface layer, J. of KONES 2003 vol. 10 nr 1 - 2, pp. 155 - 162.
  • [7] Łubiński J. I., Druet K., Serbiński W., Badania tribologiczne w warunkach posuwisto-zwrotnego ślizgania stopu AK/2 (AlSi/3Mg/CuNi) po obróbce laserowej w warunkach kriogen, Tribologia 2003 R. 34 nr 4 ( 190), pp. 315-326.
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Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BUJ6-0023-0130
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