The Dependence of the Friction Coefficient on the Size and Course of Sliding Speed

Author:

Labašová Eva1

Affiliation:

1. Slovak University of Technology

Abstract

The coefficient of friction for the bronze material (CuZn25Al6) with insert graphite beds and other bronze material (CuSn12) are investigated in this paper. Friction coefficient was investigated experimentally by the testing machine Tribotestor`89 which uses the principle of the ring on ring method. The external fixed bushing was exposed to the normal load of the same size in all tests. Process of load was increased from level 50 N to 600 N during run up 300 s, after the run up the appropriate level of load was held. The internal bushing performed a rotational movement with constant sliding speed. The value of sliding speed was changed individually for every sample (v = 0.2 (0.3, 0.4) m.s-1). The forth test had a rectangular shape of sliding speed with direct current component 0.3 m.s-1 and the amplitude 0.1 m.s-1 period 300 s, the whole test took 2100 s. The obtained results reveal that friction coefficient increase with the increase of sliding speed.

Publisher

Trans Tech Publications, Ltd.

Reference6 articles.

1. V. Peťková, et al., Tribotechnology in theory and in practice, Vienala, Košice, (2012).

2. G. W. Stachoviak et al., Experimental methods in tribology, Elsevier, Oxford, (2004).

3. P. Blaškovič, J. Balla, M. Dzimko, Tribology, ALFA, Bratislava, (1990).

4. R. Ďuriš, E. Labašová, Experimental determination of the coefficient of friction in rotational sliding joint, Appl. Mech. Mater. 309 (2013) 50-54.

5. E. Labašová, The size of the friction coefficient depending on the size and course of normal load, Appl. Mech. Mater. 474 (2014) 303-308.

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