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Erschienen in: Tribology Letters 2/2011

01.02.2011 | Original Paper

Effect of Sliding Speed on Surface Modification and Tribological Behavior of Copper–Graphite Composite

verfasst von: Wenlin Ma, Jinjun Lu

Erschienen in: Tribology Letters | Ausgabe 2/2011

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Abstract

In practice, the sliding speed is an important parameter for materials applied in sliding condition. We have conducted an experimental study to explore the effect of sliding speed on friction and wear performance of a copper–graphite composite. The sliding tests were carried out over a wide range of speeds with a pin-on-disc configuration. The results show that there is a critical speed at which there is a transition of the friction and wear regimes of the composite. In addition, the formation of a lubricant layer on the contact surface (surface modification) determines the actual tribological performance of the composite. The wear mechanisms in different wear regimes are also discussed.

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Literatur
1.
Zurück zum Zitat Lin, M.H., Buchgraber, W., Korb, G., Kao, P.W.: Thermal cycling induced deformation and damage in carbon fiber reinforces copper composite. Scripta Mater. 46, 169–173 (2002)CrossRef Lin, M.H., Buchgraber, W., Korb, G., Kao, P.W.: Thermal cycling induced deformation and damage in carbon fiber reinforces copper composite. Scripta Mater. 46, 169–173 (2002)CrossRef
2.
Zurück zum Zitat Moustafa, S.E., El-Badry, S.A., Sanad, A.M., Kieback, B.: Friction and wear of copper–graphite composites made with Cu-coated and uncoated graphite powder. Wear 253, 699–710 (2002)CrossRef Moustafa, S.E., El-Badry, S.A., Sanad, A.M., Kieback, B.: Friction and wear of copper–graphite composites made with Cu-coated and uncoated graphite powder. Wear 253, 699–710 (2002)CrossRef
3.
Zurück zum Zitat Oku, T., Kurumada, A., Sogabe, T., Oku, T., Hiraoka, T., Kuroda, K.: Effects of titanium impregnation on the thermal conductivity of carbon/copper materials. J. Nucl. Mater. 257, 59–66 (1998)CrossRef Oku, T., Kurumada, A., Sogabe, T., Oku, T., Hiraoka, T., Kuroda, K.: Effects of titanium impregnation on the thermal conductivity of carbon/copper materials. J. Nucl. Mater. 257, 59–66 (1998)CrossRef
4.
Zurück zum Zitat He, D.H., Manory, R.: A novel electrical contact material with improved self-lubrification for railway current collectors. Wear 249, 626–636 (2001)CrossRef He, D.H., Manory, R.: A novel electrical contact material with improved self-lubrification for railway current collectors. Wear 249, 626–636 (2001)CrossRef
5.
Zurück zum Zitat Feng, Y., Ying, M., Wang, C.: In: P. Ramakrishnan (ed.), Proceedings of Advances in composite materials. ASM International, India Chapter, Bombay, pp. 631–634 (1990) Feng, Y., Ying, M., Wang, C.: In: P. Ramakrishnan (ed.), Proceedings of Advances in composite materials. ASM International, India Chapter, Bombay, pp. 631–634 (1990)
6.
Zurück zum Zitat Rohatgi, P.K., Ray, S., Liu, Y.: Tribological properties of metal matrix–graphite particle composites. Int. Mater. Rev. 37, 129–149 (1992) Rohatgi, P.K., Ray, S., Liu, Y.: Tribological properties of metal matrix–graphite particle composites. Int. Mater. Rev. 37, 129–149 (1992)
7.
Zurück zum Zitat Garcia-Marquez, J.M., Anton, N., Jimenez, A., Madrid, M., Martinez, M.A., Bas, J.A.: Viability study and mechanical characterisation of copper–graphite electrical contacts produced by adhesive joining. J. Mater. Process. Technol. 143(144), 290–293 (2003)CrossRef Garcia-Marquez, J.M., Anton, N., Jimenez, A., Madrid, M., Martinez, M.A., Bas, J.A.: Viability study and mechanical characterisation of copper–graphite electrical contacts produced by adhesive joining. J. Mater. Process. Technol. 143(144), 290–293 (2003)CrossRef
8.
Zurück zum Zitat Guillet, A., Yama Nzoma, E., Pareige, P.: A new processing technique for copper–graphite multifilamentary nanocomposite wire: microstructures and electrical properties. J. Mater. Process. Technol. 182, 50–57 (2007)CrossRef Guillet, A., Yama Nzoma, E., Pareige, P.: A new processing technique for copper–graphite multifilamentary nanocomposite wire: microstructures and electrical properties. J. Mater. Process. Technol. 182, 50–57 (2007)CrossRef
9.
Zurück zum Zitat Kestursatya, M., Kim, J.K., Rohatgi, P.K.: Friction and wear behavior of a centrifugally cast lead-free copper alloy containing graphite particles. Metall. Mater. Trans. A 32A, 2115–2125 (2001)CrossRef Kestursatya, M., Kim, J.K., Rohatgi, P.K.: Friction and wear behavior of a centrifugally cast lead-free copper alloy containing graphite particles. Metall. Mater. Trans. A 32A, 2115–2125 (2001)CrossRef
10.
Zurück zum Zitat Kestursatya, M., Kim, J.K., Rohatgi, P.K.: Wear performance of copper–graphite composite and a leaded copper alloy. Mater. Sci. Eng. A 399, 150–158 (2001) Kestursatya, M., Kim, J.K., Rohatgi, P.K.: Wear performance of copper–graphite composite and a leaded copper alloy. Mater. Sci. Eng. A 399, 150–158 (2001)
11.
Zurück zum Zitat Liu, Y.B., Lim, S.C., Ray, S., Rohatgi, P.K.: Friction and wear of aluminum–graphite composites: the smearing process of graphite during sliding. Wear 159, 201–205 (1992)CrossRef Liu, Y.B., Lim, S.C., Ray, S., Rohatgi, P.K.: Friction and wear of aluminum–graphite composites: the smearing process of graphite during sliding. Wear 159, 201–205 (1992)CrossRef
12.
Zurück zum Zitat Jaha, A.K., Prasad, S.V., Upadhyaya, G.S.: Dry sliding wear of sintered 6061 aluminum alloy graphite particle composites. Tribol. Int. 22, 321–327 (1989)CrossRef Jaha, A.K., Prasad, S.V., Upadhyaya, G.S.: Dry sliding wear of sintered 6061 aluminum alloy graphite particle composites. Tribol. Int. 22, 321–327 (1989)CrossRef
13.
Zurück zum Zitat Ames, W., Alpas, A.T.: Wear mechanisms in hybrid composites of graphite-20% SiC in 356 aluminum alloy (Al-7% Si-0.3% Mg). Metall. Mater. Trans. A 26A, 85–98 (1995)CrossRef Ames, W., Alpas, A.T.: Wear mechanisms in hybrid composites of graphite-20% SiC in 356 aluminum alloy (Al-7% Si-0.3% Mg). Metall. Mater. Trans. A 26A, 85–98 (1995)CrossRef
14.
Zurück zum Zitat Riahi, A.R., Alpas, A.T.: The role of tribo-layers on the sliding wear behavior of graphite aluminum matrix composites. Wear 251, 1396–1407 (2001)CrossRef Riahi, A.R., Alpas, A.T.: The role of tribo-layers on the sliding wear behavior of graphite aluminum matrix composites. Wear 251, 1396–1407 (2001)CrossRef
15.
Zurück zum Zitat Yen, B.K., Ishihara, T.: Effect of humidity on friction and wear of Al–Si eutectic alloy and A1–Si alloy-graphite composites. Wear 198, 169–175 (1996)CrossRef Yen, B.K., Ishihara, T.: Effect of humidity on friction and wear of Al–Si eutectic alloy and A1–Si alloy-graphite composites. Wear 198, 169–175 (1996)CrossRef
16.
Zurück zum Zitat Yang, J.B., Lin, C.B., Wang, T.C., Chu, H.Y.: The tribological characteristics of A356.2Al alloy/Gr(p) composites. Wear 257, 941–952 (2004)CrossRef Yang, J.B., Lin, C.B., Wang, T.C., Chu, H.Y.: The tribological characteristics of A356.2Al alloy/Gr(p) composites. Wear 257, 941–952 (2004)CrossRef
17.
Zurück zum Zitat Bowden, F.P., Tabor, D.: The friction and lubrication of solids, Part II. Oxford Clarendon Press, London (1964) Bowden, F.P., Tabor, D.: The friction and lubrication of solids, Part II. Oxford Clarendon Press, London (1964)
18.
Zurück zum Zitat Takeuchi, E.: The mechanisms of wear of cast iron in dry sliding. Wear 11, 201–212 (1968)CrossRef Takeuchi, E.: The mechanisms of wear of cast iron in dry sliding. Wear 11, 201–212 (1968)CrossRef
19.
Zurück zum Zitat Hirst, W., Lancaster, J.K.: The influence of speed on metallic wear. Proc, R. Soc. Lond. Ser. A Math. Phys. Sci. 259(1297), 228 (1960)CrossRef Hirst, W., Lancaster, J.K.: The influence of speed on metallic wear. Proc, R. Soc. Lond. Ser. A Math. Phys. Sci. 259(1297), 228 (1960)CrossRef
20.
Zurück zum Zitat Yuasa, E., Morooka, T., Hayama, F.: Wear characteristics of powder-extruded Al–Si alloys containing dispersed graphite particle. J. Jpn inst. Met. 50, 1032–1040 (1986) Yuasa, E., Morooka, T., Hayama, F.: Wear characteristics of powder-extruded Al–Si alloys containing dispersed graphite particle. J. Jpn inst. Met. 50, 1032–1040 (1986)
21.
Zurück zum Zitat Biswas, S.K., Pramila Bai, B.N.: Dry wear of Al–graphite particle composites. Wear 68, 347–358 (1981)CrossRef Biswas, S.K., Pramila Bai, B.N.: Dry wear of Al–graphite particle composites. Wear 68, 347–358 (1981)CrossRef
22.
Zurück zum Zitat Jacobson, S., Hogmark, S.: Surface modifications in tribological contacts. Wear 266, 370–378 (2009)CrossRef Jacobson, S., Hogmark, S.: Surface modifications in tribological contacts. Wear 266, 370–378 (2009)CrossRef
23.
Zurück zum Zitat Godet, M.: The 3rd-body approach: a mechanical view of wear. Wear 100, 437–452 (1984)CrossRef Godet, M.: The 3rd-body approach: a mechanical view of wear. Wear 100, 437–452 (1984)CrossRef
24.
Zurück zum Zitat Basavarajappa, S., Chandramohan, G., Mahadevan, A., Thangavelu, M., Subramanian, R., Gopalakrishnan, P.: Influence of sliding speed on the dry sliding wear behaviour and the subsurface deformation on hybrid metal matrix composite. Wear 262(7/8), 1007–1012 (2007)CrossRef Basavarajappa, S., Chandramohan, G., Mahadevan, A., Thangavelu, M., Subramanian, R., Gopalakrishnan, P.: Influence of sliding speed on the dry sliding wear behaviour and the subsurface deformation on hybrid metal matrix composite. Wear 262(7/8), 1007–1012 (2007)CrossRef
25.
Zurück zum Zitat Menezes, P.L., Kishore, Kailas, S.V.: Role of surface texture of harder surface on subsurface deformation. Wear 266, 103–109 (2009)CrossRef Menezes, P.L., Kishore, Kailas, S.V.: Role of surface texture of harder surface on subsurface deformation. Wear 266, 103–109 (2009)CrossRef
26.
Zurück zum Zitat Emgea, A., Karthikeyan, S., Kim, H.J., Rigney, D.A.: The effect of sliding velocity on the tribological behavior of copper. Wear 263, 614–618 (2007)CrossRef Emgea, A., Karthikeyan, S., Kim, H.J., Rigney, D.A.: The effect of sliding velocity on the tribological behavior of copper. Wear 263, 614–618 (2007)CrossRef
27.
Zurück zum Zitat Akagaki, T., Kato, K.: Plastic flow process of surface layer in flow wear under boundary lubricated conditions. Wear 117, 179–196 (1987)CrossRef Akagaki, T., Kato, K.: Plastic flow process of surface layer in flow wear under boundary lubricated conditions. Wear 117, 179–196 (1987)CrossRef
28.
Zurück zum Zitat Kapoor, A., Johnson, K.L.: Plastic ratchetting as a mechanism of metallic wear. Proc. R. Soc. London Ser. A 445, 367–381 (1994)CrossRef Kapoor, A., Johnson, K.L.: Plastic ratchetting as a mechanism of metallic wear. Proc. R. Soc. London Ser. A 445, 367–381 (1994)CrossRef
Metadaten
Titel
Effect of Sliding Speed on Surface Modification and Tribological Behavior of Copper–Graphite Composite
verfasst von
Wenlin Ma
Jinjun Lu
Publikationsdatum
01.02.2011
Verlag
Springer US
Erschienen in
Tribology Letters / Ausgabe 2/2011
Print ISSN: 1023-8883
Elektronische ISSN: 1573-2711
DOI
https://doi.org/10.1007/s11249-010-9718-x

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