CONCLUSIONS i. A mathematical cost analysis model has been developed to help optimize the plans of the production of multicomponent filler mixes by a group of mines using a common filler raw material base.2. Optimization of the annual plans for large-scale filling operations resulted in a cost reduction of 5-7%.3. The implications of alternative filler raw material output plan for the mix preparation programs for mines and the related operation costs have been estimated for the Norilsk Integrated Mining and Metal Works. IMPROVING THE RELIABILITY OF PRODUCTION CYCLES OF HYDRAULIC FILLER EQUIPMENT IN KUZBASS COAL MINES V. P. Bukhgol'ts, V. L. Skripka, and L. I. McGinnisThe working of thick, medium, gentle, and steep coal seams with roof collapse, especially in the Prokopyevsk-Kiselevsk area of Kuzbass, is difficult if not impossible.Systems with complete filling of the worked-out space have been developed for this area.Efficient and productive technology is used in stopes, the outputs have increased and failure-free operation of hydraulic filling equipment and its improved performance.become very important.Emergency repairs to this equipment presently account for 20-25% of total downtime, or some 36% of failure-free service.Improving the operation reliability of this equipment and reducing emergency downtime is a way of improving the general efficiency of mining with the filling of worked-out space in the Prokop'evsk-Kiselevsk area.Hydraulic equipment is used to feed filling material into the worked-out space; pulp is moved by natural pressure due to the altitude difference at the inlet and outlet of the pulp duct.The technical scheme of the hydraulic filling equipment consists of an accumulating hopper with an outlet and a dosage device, a water supply system, and a pulp duct with mixers. In reliability engineering terms, it is a system of sequential elements: a failure of one element leads to a general system breakdown (Fig. i).A large-scale experimental study has been conducted of hydraulic filling facilities at the Prokopyevskugol Mines to estimate the operation reliability of the system elements and of the general filling scheme.Statistical data collected during experimental observation were processed using probability theory and mathematical statistics, yielding an evaluation of the reliability indicators for system components and the filling system as a whole (Table i).The overall unit labor cost of maintenance and repair in the technical scheme is Q = ql + q2 + qa = 0.23 + 0.77 + 2.34 = 3.34 man-h/h, where ql, q2, and q3 are the unit total labor intensiveness of the maintenance of accumulating hoppers, water supply system, and pulp ducts, respectively.According to Table i, the pulp duct and the mixers are the least reliable elements in the hydraulic filler system; they are followed by the accumulating hoppers; the water supply is the least failure-prone component.We will examine the main causes of failures in the elements of the filling system and consider ways of reducing their impact on the overall system...
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