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Complete Tungsten Ore Processing Plant
Gelin has a strong production capacity and the products cover full range of equipments for beneficiation engineering such as feeding & conveying, crushing, screening, grinding, flotation, separation etc.
Below is the flowchart for tungsten ore processing plant:
Jaw crusher
Jaw Crusher is mainly used to crush kinds of mining stones primarily, and the largest compression resistance of the material to be crushed is 320MPa. The jaw crusher is widely used in mining, metall-urgical industry, building material, highway, railway, and chemical industry.
Features:
1. Movable jaw plate is more advanced and very durable,which is made of high quality steel cast and moved through two big flywheel.
2. Crushing cavity is enough deep to improve the capacity and feeding ability.
3.Lubrication system is reliale and safe which makes it more easily change spare parts and maintain.
4.Simple structure, reliable work, strong crushing capacity, and easy maintenance.
Working Principle:
Motor drives V-belt & belt pulley to make moving jaw with periodic motion by eccentric shaft.
Moving jaw moves upwards to the fixed jaw, the materials are crushed in this process.
Moving jaw moves downwards from fixed jaw by pulling rod and spring, then final crushed materials are discharged from the outlet.
Data Parameter:
Model | Feeding Mouth Size (mm) | Max Feeding Size (mm) | Adjusting Range of Output Size (mm) | Capacity (t) | Rotation Speed (r/min) | Motor Power (kw) | Weight (t) | Dimension L*W*H (mm) |
mm | mm | mm | t/h | r/min | kw | Ton | mm | |
PE-200*300 | 200*300 | 180 | 15-50 | 2-6 | 260 | 7.5 | 1 | 910*750*990 |
PE-200*350 | 200*350 | 180 | 18-70 | 3-10 | 260 | 11 | 1.3 | 1000*870*990 |
PE-250*400 | 250*400 | 210 | 20-60 | 5-20 | 300 | 15 | 2.8 | 300*1090*1270 |
PE-400*600 | 400*600 | 340 | 40-100 | 16-60 | 275 | 30 | 7 | 730*1730*1630 |
PE-500*750 | 500*750 | 425 | 50-100 | 40-110 | 275 | 55 | 12 | 1980*2080*1870 |
PE-600*900 | 600*900 | 500 | 75-200 | 60-200 | 250 | 75 | 20 | 2290*2290*2400 |
PE-750*1060 | 750*1060 | 630 | 80-140 | 115-330 | 250 | 110 | 29 | 2660*2430*2800 |
PE-870*1060 | 870*1060 | 660 | 200-260 | 290-336 | 250 | 110 | 31.5 | 2810*2430*2800 |
PE-900*1060 | 900*1060 | 685 | 230-290 | 160-400 | 250 | 110 | 33 | 2870*2420*2940 |
PE-900*1200 | 900*1200 | 750 | 95-165 | 220-450 | 200 | 110 | 52 | 3380*2870*3330 |
PE-1000*1200 | 1000*1200 | 850 | 195-265 | 315-500 | 200 | 110 | 55 | 3480*3876*3330 |
PE-1200*1500 | 1200*1500 | 1020 | 150-300 | 400-800 | 180 | 160 | 100.9 | 4200*3300*3500 |
PEX-150*750 | 150*750 | 120 | 18-48 | 8-25 | 320 | 15 | 3.8 | 1200*1530*1060 |
PEX-250*750 | 250*750 | 210 | 25-60 | 13-35 | 330 | 30 | 5.5 | 1380*1750*1540 |
PEX-250*1000 | 250*1000 | 210 | 25-60 | 16-52 | 330 | 37 | 7 | 1560*1950*1390 |
PEX-250*1200 | 250*1200 | 210 | 25-60 | 20-61 | 330 | 45 | 8.5 | 2140*1660*1500 |
PEX-300*1300 | 300*1300 | 250 | 20-90 | 16-105 | 300 | 75 | 11 | 2720*1950*1600 |
Model | Max. Input size (mm) | Capacity | Eccentric shaft Speed (r/min) | Installation slope | Power | Weight |
(t/h) | (kw) | (t) | ||||
GL2400*800 | 480 | 30-80 | 400-500 | 0° | 7.5 | 2.8 |
GL3800*950 | 520 | 96-160 | 500-714 | 0° | 11 | 4 |
GL4200*1100 | 590 | 120-240 | 500-800 | 0° | 15 | 4.7 |
GL4900*960 | 550 | 120-240 | 500-800 | 0° | 15 | 5.35 |
GL4900*1100 | 620 | 120-280 | 500-800 | 0° | 15 | 5.3 |
GL5900*1100 | 650 | 220-350 | 500-800 | 0° | 22 | 6 |
GL6000*1300 | 760 | 400-550 | 500-800 | 0° | 22 | 7.5 |
Ball mill
Ball mill is the key re-crush eqipment after the crushing. Ball mill is widely used in cement, silicate products, new building materials, refractories, chemical fertilizer, black and non-ferrous metal ore-dressing, as well as the production industry of glass or ceramics, for carry though dry or wet grinding of a variety ores and other materials.
Features:
♦ Energy-saving.
♦ Simple structure and split installation
♦ Easy to installing and maintaining
♦ 2 types feeders: combined feeder and cylinder feeder
♦ Dry ball mills & wet ball mills for option according to different materials & discharging methods
Working Principle:
Ball mill is a horizontal rotating device transmitted by the outer gear. materials are transferred to the grinding chamber through the quill shaft uniformly. There are ladder liner, ripple liner and different specifications of steel balls in the chamber.
The centrifugal force caused by rotation of barrel brings the steel balls to a certain height then impact and grind the materials.The ground materials are discharged through the discharging board thus the grinding process is finished.
Data Parameter:
Model | Shell rotation speed(r/min) | Ball load(t) | Feeding size(mm) | Discharging size(mm) | Capacity | Motor power (kw) | Weight(t) |
(t/h) | |||||||
Ø900*1800 | 36-38 | 1.5 | <=20 | 0.075-0.89 | 0.65-2 | 18.5 | 4.6 |
Ø900*3000 | 36 | 2.7 | <=20 | 0.075-0.89 | 1.1-3.5 | 22 | 5.6 |
Ø1200*2400 | 36 | 3 | <=25 | 0.075-0.6 | 1.5-4.8 | 30 | 12 |
Ø1200*3000 | 36 | 3.5 | <=25 | 0.074-0.4 | 1.6-5 | 37 | 12.8 |
Ø1200*4500 | 32.4 | 5 | <=25 | 0.074-0.4 | 1.6-5.8 | 55 | 13.8 |
Ø1500*3000 | 29.7 | 7.5 | <=25 | 0.074-0.4 | 2-5 | 75 | 15.6 |
Ø1500*4500 | 27 | 11 | <=25 | 0.074-0.4 | 3-6 | 110 | 21 |
Ø1500*5700 | 28 | 12 | <=25 | 0.074-0.4 | 3.5-6 | 130 | 24.7 |
Ø1830*3000 | 25.4 | 11 | <=25 | 0.074-0.4 | 4-10 | 130 | 28 |
Ø1830*4500 | 25.4 | 15 | <=25 | 0.074-0.4 | 4.5-12 | 155 | 32 |
Ø1830*6400 | 24.1 | 21 | <=25 | 0.074-0.4 | 6.5-15 | 210 | 34 |
Ø1830*7000 | 24.1 | 23 | <=25 | 0.074-0.4 | 7.5-17 | 245 | 36 |
Ø2100*3000 | 23.7 | 15 | <=25 | 0.074-0.4 | 6.5-36 | 155 | 34 |
Ø2100*4500 | 23.7 | 24 | <=25 | 0.074-0.4 | 8-43 | 245 | 42 |
Ø2100*7000 | 23.7 | 26 | <=25 | 0.074-0.4 | 8-48 | 280 | 50 |
Ø2200*4500 | 21.5 | 27 | <=25 | 0.074-0.4 | 9-45 | 280 | 48.5 |
Ø2200*6500 | 21.7 | 35 | <=25 | 0.074-0.4 | 14-26 | 380 | 52.8 |
Ø2200*7000 | 21.7 | 35 | <=25 | 0.074-0.4 | 15-28 | 380 | 54 |
Ø2200*7500 | 21.7 | 35 | <=25 | 0.074-0.4 | 15-30 | 380 | 56 |
Ø2400*3000 | 21 | 23 | <=25 | 0.074-0.4 | 7-50 | 245 | 54 |
Ø2400*4500 | 21 | 30 | <=25 | 0.074-0.4 | 8.5-60 | 320 | 65 |
Ø2700*4000 | 20.7 | 40 | <=25 | 0.074-0.4 | 12-80 | 400 | 94 |
Ø2700*4500 | 20.7 | 48 | <=25 | 0.074-0.4 | 12-90 | 430 | 102 |
Ø3200*4500 | 18 | 65 | <=25 | 0.074-0.4 | ----- | 800 | 137 |
Spiral Classifier
Spiral classifier is widely used to form a closed cycle process to split mineral sand with ball mill in ore dressing plants, grade ore and fine mud in the gravity ore dressing plant, or for the pulp size classification in the metal beneficiation process, as well as desliming and dehydration in washing operations. Spiral classifier has the characteristics of simple structure, reliable work, convenient operation, etc.
Features:
1.Large processing capacity
2.Easy operation, Large particle size of ore washing
3.Suitable for all kinds of ore and stones
Working Principle:
Different sizes of crushers have different weights, so their sedimentation rates are also different. In the working process, fine ore grains float on the surface of water, and rough grains sink on the bottom of the cell. Screw grader can classify materials from mill, and then bring the rough grains to the entrance mouth of mill with the help of flights, and discharge the fine ore grins though pipe. The pedestal spiral classifier is made of box iron. The body is made of welding steel plates. The faucet and spindle nose of screw shaft are made of pig iron set which is wear-resisting durable. The take-up sets include two types power-driven and manual operation.
Data Parameter:
Model | Spiral Dia. (mm) | Trough Length (mm) | Rotation Speed (r/min) | Capacity (t/d) | Power (kw) | Dimension L*W*H (mm) | Weight (t) | ||||
Sand-return | Overflow | For Driving | For Lifting | ||||||||
FG-3 | 300 | 3000 | 12-30 | / | / | 1.1 | / | 3850*490*1140 | 0.7 | ||
FG-5 | 500 | 4500 | 8-12.5 | 135-210 | 32 | 1.1 | / | 5430*680*1480 | ≦1.9 | ||
FG-7 | 700 | 5500 | 6-10 | 340-570 | 65 | 3 | / | 6720*980*1820 | ≦3.1 | ||
FG-10 | 1000 | 6500 | 5-8 | 675-1080 | 110 | 5.5 | / | 7590*1240*2380 | ≦4.9 | ||
FC-10 | 8400 | 675-1080 | 85 | 7.5 | / | 9600*1240*2680 | ≦6.2 | ||||
FG-12 | 1200 | 6500 | 4-6 | 1170-1870 | 155 | 7.5 | 2.2 | 8180*1570*3110 | ≦8.5 | ||
FC-12 | 8400 | 1170-1870 | 120 | 7.5 | 2.2 | 10370*1540*3920 | ≦11 | ||||
2FG-12 | 6500 | 2340-3740 | 310 | 15 | 4.4 | 8230*2790*3110 | ≦15.8 | ||||
2FC-12 | 8400 | 2340-3740 | 240 | 15 | 4.4 | 10370*2790*3920 | ≦17.6 | ||||
FG-15 | 1500 | 8300 | 4-6 | 1830-2740 | 235 | 7.5 | 2.2 | 10410*1880*4080 | ≦12.5 | ||
FC-15 | 10500 | 1830-2740 | 185 | 7.5 | 2.2 | 12670*1820*4890 | ≦16.8 | ||||
2FG-15 | 8300 | 2280-5480 | 470 | 15 | 4.4 | 10410*3390*4080 | ≦22.1 | ||||
2FC-15 | 10500 | 2280-5480 | 370 | 15 | 4.4 | 12670*3370*4890 | ≦30.7 | ||||
FG-20 | 2000 | 8400 | 3.6-5.5 | 3290-5940 | 400 | 11-15 | 3 | 10790*2530*4490 | ≦20.5 | ||
FC-20 | 12900 | 3210-5940 | 320 | 11-15 | 3 | 15610*2530*5340 | ≦28.5 | ||||
2FG-20 | 8400 | 7780-11880 | 800 | 22-30 | 6 | 11000*4600*4490 | ≦35.5 | ||||
2FC-20 | 12900 | 7780-11880 | 640 | 22-30 | 6 | 15760*4600*5640 | ≦48.7 | ||||
FG-24 | 2400 | 9130 | 3.67 | 6800 | 580 | 15 | 3 | 11650*2910*4970 | ≦26.8 | ||
FC-24 | 14130 | 6800 | 490 | 18.5 | 4 | 16580*2930*7190 | ≦41 | ||||
2FG-24 | 9130 | 13600 | 1160 | 30 | 6 | 12710*5430*5690 | ≦45.8 | ||||
2FC-24 | 14130 | 13700 | 910 | 37 | 8 | 17710*5430*8000 | ≦67.9 | ||||
2FG-30 | 3000 | 12500 | 3-2 | 23300 | 1785 | 40 | 8 | 16020*6640*6350 | ≦73 | ||
2FC-30 | 14300 | 23300 | 1410 | 40 | 8 | 17091*6640*8680 | ≦84.8 | ||||
Vibration Screen
Gelin's circular motion vibrating screens are used for screening of granulous bulk material and are robust in design and build. The screen frame consists of both side panels and cross beams being bolted and glued to the panels carrying the screen deck substructure. The excitation is made with in-house manufactured unbalanced shaft or with a single unbalanced motor. The vibrating screens can be equipped with all different kinds of screen mats available on the market and it 's best suitable for long-living and economical operation.
Features:
1.High vibrating force with unique eccentric structure.
Working Principle:
The motor makes the exciter rotaring speedily through the V-blet.
The powerful centrifugal force produced by rotating eccentric block makes the sieve box do a circular motion of some amplitude.the materials on the screen surface will be continuously tossed forward by the impulse transmitted through sieve box on the slope surface.Thus the classification is achieved during the process of thrown-up as the smaller size materials are falling through mesh.
Data Parameter:
Model | Layer | Max. Feeding size (mm) | Sieve Size (mm) | Capacity (t/h) | Vibration Frequency (r/min) | Angel (°) | Power (kw) | Boundary Size L*W*H(mm) | Weight (kg) |
SZZ600×1200 | 1 | 40 | 2-25 | 10-20 | 1000 | 15-25 | 2.2 | 1370x890×330 | 340 |
SZZ2600×1200 | 2 | 40 | 2-25 | 10-20 | 1000 | 15-25 | 2.2 | 1370x890×430 | 360 |
SZZ900×1800 | 1 | 40 | 2-25 | 20-25 | 1000 | 15-25 | 2.2 | 2150×1358x575 | 550 |
SZZ2900×1800 | 2 | 40 | 2-25 | 20-30 | 1000 | 15-25 | 3 | 2489×1358×770 | 620 |
SZZ1250×2500 | 1 | 100 | 2-40 | 50-150 | 850 | 15-20 | 5.5 | 2762×1714×680 | 1100 |
SZZ21250×2500 | 2 | 150 | 2-40 | 50-150 | 850 | 15-20 | 5.5 | 2702×1714×740 | 1300 |
SZZ1500×3000 | 1 | 100 | 2-40 | 70-220 | 800 | 15-25 | 7.5 | 3320×1449×787 | 2100 |
Shaking Table
GELIN ShakingTable is one of the main equipments of gravity concentration. It is not only widely applied on separating tungsten, the tin, the tantalum niobium and other rare metals and the noble metal ore.
Features:
1.The large range of transverse slope adjustment(0 -10°) and adjustable stroke available (be stably operation when
change them).
2. The deck surface is smooth with good corrosion resistance, strong and durable, not easy to deform, and isconvenient for local repair.
3. Spring is installed in the case with compact structure.
4. The head of the deck is reliable. with less wear parts and no oil-leakage.
5. Without reagents consumption, little electricity consumption.
Working Principle:
It's to allow loose layering of ores on the bed surface and fan-shaped zoning by combined action of the specific gravity difference of sorted minerals, alternating movement of bed surface, and transverse oblique water flow and riffle (or notch groove),Then different products is produced.
Data Parameter:
Model | 6s -7.6 | 6s- 7.6 | 6s- 7.6 | 6s- 4.08 | 6s- 1.95 | 6s- 0.5 | |||||||
Deck Type | Coarse Ore Deck | Fine Sand Deck | Slurry/Slime Deck | Three Deck Types Available | |||||||||
Beneficiation Area ㎡ | 7.6 | 7.6 | 7.6 | 4.08 | 1.95 | 0.5 | |||||||
Deck Size (mm) | Length (mm) | 4450 | 4450 | 4450 | 3000 | 2100 | 1100 | ||||||
transmission end width (mm) | 1855 | 1855 | 1855 | 1320 | 1050 | 500 | |||||||
Concentrate end width (mm) | 1546 | 1546 | 1546 | 1100 | 850 | 430 | |||||||
Maximum Feeding Size (mm) | 2 | 0.5 | 0.15 | Sand--2 Slime--0.1 | Sand--2 Slime--0.074 | Sand--2 Slime--0.074 | |||||||
Feeding Capacity (ton/hour) | 0.8-1.5 | 0.8-1.5 | 0.8-1.5 | 0.4-1.5 | 0.3-0.8 | 0.05-0.2 | |||||||
Feeding Density (%) | 25-30 | 20-25 | 15-25 | 10-30 | |||||||||
Stroke (mm) | 16-22 | 11-16 | 8-16 | 6-30 | 12-28 | 9-17 | |||||||
Frequency (t/s) | 45-48 | 18-53 | 50-57 | 210-320 | 250-450 | 280-460 | |||||||
Water added (t/h) | 1-3 | 1-3 | 1-3 | 0.4-2 | 0.2-1 | 0.1-0.5 | |||||||
Transverse Slope of Deck (°) | 2.3°-4. 3° | 1.3°-3.3° | 1° -2° | 0 -10° | 0 -8° | 0 -10° | |||||||
Longitudinal Slope of Deck (°) | 1.4 | 0.92 | / | / | / | / | |||||||
Cross-Section Shape of Deck | rectangle | Saw-Tooth/ Indention | Triangle | Rectangle, Saw Tooth, Triangle Available | |||||||||
Motor Power (KW) | 1.1 | 1.1 | 1.1 | 1.1 | 1.1 | 0.55 | |||||||
Transimission Mechanism | Eccentric Linkage Type | ||||||||||||
Model | Shell size (diameter×length) mm | Magnetic induction on shell surface mT | 6s- 7.6 | 6s- 7.6 | Capacity | 6s- 1.95 | Power (KW) | Shell ratation speed (r/min) | Weight (T) | |||
Magnetic pole geometric centre | Average | Max. Magnetic Strength | T/h | m³/h | ||||||||
CTS(N.B)-46 | 400×600 | 130 | 160 | 1-3 | 5 | 1.1 | 45 | 600 | ||||
CTS(N.B)-66 | 600×600 | 145 | 170 | 5~10 | 16 | 1.1 | 40 | 705 | ||||
CTS(N.B)-69 | 600×900 | 145 | 170 | 8~15 | 24 | 1.1 | 40 | 830 | ||||
CTS(N.B)-612 | 600×1200 | 145 | 170 | 10~20 | 32 | 2.2 | 40 | 990 | ||||
CTS(N.B)-618 | 600×1800 | 145 | 170 | 15~30 | 48 | 2.2 | 40 | 1330 | ||||
CTS(N.B)-712 | 750×1200 | 120 | 155 | 180 | 15~30 | 48 | 3 | 35 | 1500 | |||
CTS(N.B)-718 | 750×1800 | 120 | 155 | 180 | 20~45 | 72 | 3 | 35 | 2100 | |||
CTS(N.B)-918 | 900×1800 | 148 | 165 | 190 | 25~55 | 90 | 4 | 28 | 2900 | |||
CTS(N.B)-924 | 900×2400 | 148 | 165 | 190 | 35~70 | 110 | 4 | 28 | 3500 | |||
CTS(N.B)-1018 | 1050×1800 | 148 | 165 | 190 | 40~75 | 120 | 5.5 | 22 | 4000 | |||
CTS(N.B)-1021 | 1050×2100 | 160 | 240 | 280 | 45~88 | 140 | 5.5 | 22 | 4500 | |||
CTS(N.B)-1024 | 1050×2400 | 160 | 240 | 280 | 52~100 | 160 | 5.5 | 22 | 5000 | |||
CTS(N.B)-1030 | 1050×3000 | 160 | 240 | 280 | 65~125 | 200 | 7.5 | 22 | 6200 | |||
CTS(N.B)-1218 | 1200×1800 | 160 | 240 | 280 | 47~90 | 140 | 5.5 | 19 | 5800 | |||
CTS(N.B)-1224 | 1200×2400 | 160 | 240 | 300 | 82~120 | 192 | 7.5 | 19 | 6200 | |||
CTS(N.B)-1230 | 1200×3000 | 160 | 240 | 280 | 80~150 | 240 | 7.5 | 19 | 7200 | |||
CTS(N.B)-1530 | 1500×3000 | 180 | 240 | 300 | 90~170 | 270 | 11 | 14 | 8100 | |||
CTS(N.B)-1540 | 1500×4000 | 180 | 240 | 300 | 115~220 | 350 | 11 | 14 | 9300 | |||
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