Trifanov G.D.,Mikryukov A.Y.,Arkhipov E.V. Equipment for continuous monitoring of dynamicparameters "lifting vessel - rigid reinforcement" shafts

Geoteh. meh. 2015, 125, 130-136

EQUIPMENT FOR CONTINUOUS MONITORING OF DYNAMICPARAMETERS "LIFTING VESSEL - RIGID REINFORCEMENT" SHAFTS

1Trifanov G.D., 1Mikryukov A.Y., 2Arkhipov E.V.
1Perm National Research Polytechnic University, 2Company "Regional rope center"Perm-city

UDC 622.673.1

Abstract. The article describes the equipment of continuous monitoring of dynamic parameters of the SIS "lifting vessel-reinforcement" of vertical shafts. The possibility withdrawn cheniyaperformance mine hoisting installations, equipped with systems of continuous-ous control. The results of tests of the system in an industrial setting, chart speed up skip in the frontal and lateral plane. The analysis of impacts in the "lifting vessel - a rigid reinforcement."Instrumental сontinuous monitoring of the lift channel-ing, surface and underground mine lifting equipment is reduced to a minima of the human factor, and reduce downtime to install a visual inspection. Pre-position realized in the federal rules and regulations in the field of industrial-Secure.
Keywords: Keywords: mine shaft, the shaft reinforcement, mine hoisting co-court system "vessel - reinforcement" dynamic control.

REFERENCES

1. Trifanov G.D., (2009) «Increase of efficiency and safety of exploitation of mine lifting options.»,Gornoye oborudovaniye i elektromekhanika., no 7, pp. 49-51.
2. Hjuzer, R. (2004), «Increase of productivity of setting of the main getting up AV7 by the increase of actual load of east skip separation», Glyukauf,. no.2 (3), pp. 97.
3. Ciganek, J.(1997), « Stavebni likvidace doly ve veyle evropskych predpisu», Actual problems of mining, HSB, Ostrava, Czech Republic, no.5, pp. 158-162.
4. Hankus, J. (1990), Glowny institute gornictwa: Budowa i wlasnosci mechaniczne lin staloy, Katovice, Polska.
5. Ilyin, S.R. and Trifanov, G.D. (2009), «Dynamic diagnostics of the systems of «cage-shaft equipment» vertical mine shafts», Gornoye oborudovaniye i elektromekhanika, - no. 8, pp. 29-34.
6. Trifanov, G.D. and Mikryukov, A. Yu. (2014), «Test of the checking system of smoothness of motion of lifting vessel in a mine shaft», Gornoye oborudovaniye I elektromekhanika, no. 12, pp. 16-22.
7. Tejszerska, D. (1989), «Mathematical model of vibrations of mine hoists, coupled with longitudinal vibrations», Zeszity naukowe Politechniki slaskiej, Gliwice, pp,107-118.
8. Federalnye normy i pravila v oblasti promyshlennoy bezopasnosti «Pravila bezopasnosti pri vedenii gornykh rabot i pererabotke tverdykh poleznykh iskopaemykh [Federal norms and rules in area of industrial safety of «Rule of safety at the conduct of mineountain works and processing of hard minerals»] 2014, Seriya 03, Vypusk 78, Zakrytoe akcionernoye obshhestvo «Nauchno-tehnicheskiy centr issledovaniy problem promyshlennoy bezopasnosti», Moscow, RU.

 About the authors:

Trifanov Gennady Dmitrievich, Doctor of Technical Sciences (D.Sc), Associate Professor, Head of Department of Mining Electrical Engineering Mining and Petroleum Faculty of Perm National Research Polytechnic University, Perm, Russia. This email address is being protected from spambots. You need JavaScript enabled to view it.

Mikryukov Alexey Yurevich, Doctoral Student of Mining Electrical Engineering Mining and Petroleum Faculty of Perm National Research Polytechnic University, Perm, Russia. This email address is being protected from spambots. You need JavaScript enabled to view it.

Arkhipov Evgeny Viktorovich, Master of Science, Head of the expert group of Company "Regional rope center", Perm