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Proceedings of SerbiaTrib '13

Proceedings of SerbiaTrib '13

Proceedings of SerbiaTrib '13

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Second set <strong>of</strong> experiments was performed withthe conical welding tool - CWT (Figure 2, b),changing the rotation speed from lower to higherand starting with the maximal dimension <strong>of</strong> thetechnological hole and decreasing it to the 0 – fromminimal plunging force to the maximal. [-]1.210.80.60.40.20t 0=5.1 st ps=9.05 st st=24.2 st 1=27.4 s0 2 4 6 8 10 12 14 16 18 20 22 24 26 28 30t [s]Figure 6. Friction coefficient: CWT, n=265 rpm, d 0 =5 mmM fr / T [-] [-]10.90.80.70.60.50.40.30.20.10t 0=5.1 st ps=9.05 st st=24.2 st 1=24.7 s0 2 4 6 8 10 12 14 16 18 20 22 24 26 28 30t [s]Figure 7. Ratio M fr /T: CWT, n=265 rpm, d 0 =5 mm1.210.80.60.40.20t 0 =t ps' =3.1st pt=10.1 st st=20.3 st 1=24.3 s0 2 4 6 8 10 12 14 16 18 20 22 24 26t [s]Figure 8. Friction coefficient: CWT, n=265 rpm, d 0 =3.2 mmM fr / T [-]10.90.80.70.60.50.40.30.20.10t 0=t ps' =3.1 st pt=10.1 st st=20.3 st 1=24.3 s0 2 4 6 8 10 12 14 16 18 20 22 24 26t [s]Figure 9. Ratio <strong>of</strong> the momentum <strong>of</strong> friction and thetorque: CWT, n=265 rpm, d 0 =3.2 mm [-]1.210.80.60.40.20t 0=9.6 st ps'=22.7 st st=25.1 st 1=29.7 s0 2 4 6 8 10121416182022242628303234t [s]Figure 10. Friction coefficient: CWT, n=265 rpm, d 0 =2 mmM fr / T [-] [-]10.90.80.70.60.50.40.30.20.10t 0=9.6 st ps'=22.7 st st=25.1 st 1=29.7 s0 2 4 6 8 10121416182022242628303234t [s]Figure 11. Ratio M fr /T: CWT, n=265 rpm, d 0 =2 mm1.21.110.90.80.70.60.50.40.30.20.10t 0=2.2 st ps'=6.1 st st=14.05 st 1=18.1 s0 2 4 6 8 10 12 14 16 18 20t [s]Figure 12. Friction coefficient: CWT, n=265 rpm, d 0 =0 mm392 13 th International Conference on Tribology – Serbiatrib’13

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