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2015 hot electromagnetic vibrating feeder/vibration feeder
Product description
HYGL-Series vibrating feeder, which is used to evenly, continuously, or quantitatively feed bulk, particle and powder materials in stock bin into the receiving device, can be widely applied to industries like mining, metallurgy, coal, light, electricity, chemical, food and so on. It can realize even feeding for crushers in sand stone production line and make rough screening for materials. Vibrating feeder is widely applied in combined operation of crushing and screening in the industries like metallurgy, mine, mine selection, building materials, chemicals, etc
The electromagnetic vibrating feeder utilizes electromagnetic
vibrating device to drive minerals to reciprocate in the direction
of dip. When the vertical component of accelerated speed of feeder
exceeds accelerated speed, minerals are tossed upward and leap
forward in parabolic fashion. It takes 1/5 second to finish the
rising and falling. The chute vibrates for one time and
subsequently the minerals are tossed for one time. The chute
vibrate at a frequency 3000/minute. Correspondingly, minerals are
tossed upward and leap forward. So minerals can continuously and
uniformly move forward and feeding is achieved.
1 Small in size, light in weight, simple in structure, easy to install, less on failure, and low in cost.
2 The general type, in open form, is for feeding with no special
requirement.
3 The closed type (F), in enclosed rectangular structure, fits for
feeding with more dust.
4 The tube type (G), whose feeding trough is in the form of tube,
fits for the feeding of fragile particles, and material with more
pollution and volatility.
5 The adjusting type (T) fits for automatic feeding.
1 F denotes the closed type, and K denotes the general type.
2 The one in the picture is the general type, for the closed type
or other special requirements, the customer can indicate it in the
order contract, our company will supply for your needs.
Technical Parameters
Model No. | Type | Capacity (T/H) | Particle size(mm) | L | L1 | L2 | B | B1 | B2 | H | H1 | H2 | H3 | H | D | Power(KW) | Voltage(V) | Weight(kg) |
GL15-Ⅰ | F or K | 15 | 40 | 600 | 295 | 700 | 250 | 380 | 210 | 100 | 660 | 590 | 540 | 50 | 250 | 0.15 | 250 | 84 |
GL15-Ⅱ | 800 | 420 | 775 | 88 | ||||||||||||||
GL15-Ⅲ | 1000 | 550 | 845 | 94 | ||||||||||||||
GL30-Ⅰ | 30 | 50 | 800 | 280 | 995 | 400 | 520 | 360 | 160 | 841 | 570 | 600 | 50 | 400 | 0.15*2 | 380 | 184 | |
GL30-Ⅱ | 900 | 380 | 186 | |||||||||||||||
GL30-Ⅲ | 1000 | 480 | 188 | |||||||||||||||
GL30-Ⅳ | 1100 | 1095 | 190 | |||||||||||||||
GL30-Ⅴ | 1200 | 1195 | 192 | |||||||||||||||
GL50-Ⅰ | 50 | 60 | 700 | 380 | 955 | 500 | 560 | 450 | 200 | 1120 | 770 | 890 | 60 | 500 | 0.25*2 | 204 | ||
GL50-Ⅱ | 800 | 420 | 1015 | 210 | ||||||||||||||
GL50-Ⅲ | 900 | 300 | 1120 | 217 | ||||||||||||||
GL50-Ⅳ | 1000 | 1220 | 630 | 224 | ||||||||||||||
GL50-Ⅴ | 1200 | 350 | 1270 | 230 | ||||||||||||||
GL80-Ⅰ | K | 80 | 200 | 900 | 234 | 1276 | 600 | 728 | 620 | 250 | 804 | 704 | 624 | 0.2*2 | 240 | |||
GL80-Ⅱ | 1000 | 1376 | 270 | |||||||||||||||
GL80-Ⅲ | 1200 | 1576 | 300 | |||||||||||||||
GL100-Ⅰ | 100 | 240 | 900 | 1306 | 700 | 828 | 712 | 280 | 990 | 800 | 690 | 0.4*2 | 360 | |||||
GL100-Ⅱ | 1000 | 1406 | 380 | |||||||||||||||
GL100-Ⅲ |