Cone Ball Mill introduction:
1, Low energy consuming
2, Large range of application
3, Easy to installation
4, Simple structure, convenient maintenance.
Cone Ball Mill is a key equipment to grind the crushed materials, and the ball mill is widely used in powder-making production line including cement, silicate, new-type building material, refractory material, fertilizer, ore dressing of ferrous metal and non-ferrous metal, glass ceramics, etc, and the ball mill can grind various ores and other materials with dry type and wet type. There are two kinds of ball mill, grate type and overfall type due to different ways of discharging material. Energy-saving Cone Ball Mill
This Cone Ball Mill changes the intrinsic grinding machine structure. Ball mill body and ground plank are an integral whole, so when fixing, ball mill can be lowered on a plane surface once only. Using double tiered roller axletree with centripetal spherical surface as the support of the host axletree can reduce energy cost by 30%. The intrinsic grille pattern forcing evacuation of ball mill is instead by overfall pattern controlling one. Ball mill can improve the milling of the granule and the capacity of the ball mill be increased by 15-20%.
Advantages of Cone Ball Mill:
1 Ball mill's Double-row self-aligning spherical roller bearing replaces babbit-lined bearing. Friction resistance is greatly lowered down, easy to start and 20-30% of energy is saved.
2. Ball mill's Grooved and ringed liner increases contacting surface between balls and ores, improving milling effect and saving energy through its lifting effect to the materials.
3. Ball mill's All-in-one frame is used in middle-sized or small-sized machinery, facilitating engineering construction and equipment installation.
4. Ball mill's large discharging outlet and high capacity, discharge coarse particles, usually used in first stage milling.
5. The Energy-saving Cone Ball Mill can be used for grinding particles in the process of metal mineral resources, such as gold, silver, iron, copper, lead, zinc etc., and non-metal mineral resources.
Ball mill is mainly composed of charging and discharging, cyclone and rotation parts (like redactor, minor rotation gear, motor, electric machine, etc). Hollow axis is made of steel parts with a lining replacable. Major rotation gear, machined by rolling wheel of casting, is lined with wearing plate with fine wear-resisting property. This machine runs stably and reliably. the ball mill technical specifications from Dia 900-Dia 3200mm. Export standard container, or in bulk carrier.
Model(Dia. Length) Rotating Speed (r/min) Feeding Size(mm) Capacity(t/h) Grinding Body Loading Capacity(t) Main Motor Power Main Reducer Weight (t) Model Power(kw) Rotating Speed(r.p.m) Model Speed Ratio 2.2 11 20.91 25 15¡«17 50 TR1512-8 570 740 Zd80 5.6 92 2.4 8 20.91 25 14¡«18 39.5¡«42 TRQ1512-8 570 740 Zd80-9 5 76.4 2.4 9 20.91 25 23¡«25 50 TR1512-8 570 740 Zd80-9 5 91 2.4 10 20.91 25 16¡«22 50 TR1512-8 570 740 Zd80-9 5 111 2.4 11 21 25 Open19¡«24 Circle22¡«28 6265 YR710-8/1180 710 740 JDX630 5.6 125 2.4 12 21 25 Open18¡«20 Circle21¡«23 6365 YR800-8/1180 800 740 MBY710 6.3 127 2.4 13 21 25 Open21¡«22 Circle24¡«26 6668 YR800-8/1180 800 740 MBY710 6.3 131 2.6 10 20.6 25 21¡«24 64 YR800-8/1180 800 740 JDX710 6.3 140 2.6 13 20.6 25 28¡«31 81 YR1000-8/1180 1000 740 JDX800 6.3 158 3.0 9 19.13 25 40¡«45 85 YR1000-8/1180 1000 740 MBY800 7.1 148 3 11 18.92 25 44¡«47 95 YR1250-8/1430 1250 740 JDX900 7.1 177 3 12 18.92 25 48¡«52 103 YR1250-8/1430 1250 740 JDX900 7.1 182 3 13 18.92 25 39¡«45 116max YR1400-8/1430 1400 740 JDX900 7.1 200.7 3.2 11 18.3 25 45¡«48 112max YR1600-8/1430 1400 740 JDX900 7.15 213.6 3.2 13 18.7 25 50¡«55 133max YR1600-8/1430 1600 740 JDX1000 7.15 237 3.4 11 18 25 45¡«55 120max YR1600-8/1430 1600 740 JDX1000 230 3.5 13 17 25 60¡«65 156max YR2000-8/1730 2000 740 TS130-A-F1 257.6 3.8 13 17 25 65¡«70 185 YR2500-8/1730 2500 740 DMG22/2500 313 4 13 16.3 25 78¡«80 191 YRKK900-80 2800 745 JS140-A 348 4.2 11 15.8 25 100¡«110 182¡«190 YR2800-8/17830 2800 740 JS140-A-F1D 350 4.2 13 15.2 25 110¡«120 230 YRKK1000-8 3350 740 MFY355-A 380 4.6 14 15 25 100¡«115 285 YR1000-8 4200 740 J3160-C 485. In container.
Ball mill Ball mill is an efficient tool for grinding many materials into fine powder. The Ball Mill is used to grind many kinds of mine and other materials, or to select the mine.2 It is widely used in building material, chemical industry, etc. There are two ways of grinding: the dry way and the wet way. It can be divided into tabular type and flowing type according to different expelling mine. To use the Ball Mill, the material to be ground is loaded into the Neoprene barrel that contains grinding media. As the barrel rotates, the material is crushed between the individual pieces of grinding media that mix and crush the product into fine powder over a period of several hours. Quite simply, the longer the Ball Mill runs, the finer the powder will be. Ultimate particle size depends entirely on how hard the material you're grinding is, and the time how long the Ball Mill runs. Our Ball Mills have been used to grind glass, powder food products, creat custom varnishes,make ceramic glaze, powder various chemicals, and make Black Powder.
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Services: We are a large-scaled joint-stock enterprise with an integration of R&D, production and marketing departments. We specialize in manufacturing large and medium-sized sand-making machinery
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Features: It is of various types. It is suitable for crushing maximum, medium and minimum stones. The operating principle is easy to be operated. The structure is simple and it is easy to maintain.
Functional process: Load the material for grinding evenly and continuously into the grinding chamber of the main frame. Due to the centrifugal force in rotation, the roller swings outward and presses closely upon the ring. The shovel carries the material to the space between the roller and ring. When the roller rolls, the material is thus ground. After being ground, the material is to be routed to the sorter along the wind belt of the blower and the coarse powder will be put back to the mill for regrinding. The fine powder flows into the cyclone collector together with airflow and is expelled from the discharge pipe as final product. In the grinding chamber, since the material may contain moisture to some extent, the heat generated during grinding makes the moisture evaporated; since the pipeline joints are not airtight, the external air is sucked in and the circulation air amount increases. In order to enable the mill to work under negative pressure, the increased airflow is guided to the deduster anew sequentially to the atmosphere after purification.
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