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Pulse Bag Deduster

Application:

Pulse Bag Deduster is the constitution of blowing system, impulse valve port A links to the compressed air manifold, port B links to impulse pipe, the controller gives the orders to control the control-valve. When the controller doesn' t output signals..

  • Main Specification
  • Technical Data
  • Features
  • Working principle
Pulse Bag Deduster is the constitution of blowing system, impulse valve port A links to the compressed air manifold, port B links to impulse pipe, the controller gives the orders to control the control-valve. When the controller doesn' t output signals, the moving iron core of control-valve seals the exhaust port, impulse valve is power off. When the controller sends signals, the pulse back pressure chamber and atmosphere are interlinked by control-valve, pulse valve opening, the compressed air spurts into venture from gas capsule through pulse valve by the holes of spray pipe, alters to the instantaneous positive pressure in filter bag, realizes cleaning.
 
 

Model

DMC64

DMC72

DMC84

DMC96

DMC108

DMC120

DMC160

Filter Area (m2)

45

54

63

72

81

90

126

Filter Bag Quantity (PCS)

64

72

84

96

108

120

160

Filter Bag Size  (mm)

φ130x2000

Air Volume (m3/h)

5400-10800

6480-12960

7560-12960

8640-17280

9270-19440

10800-21600

11000-21600

Temperature

(Celsius)

<120oC

Device Resistance (Pa)

1200Pa-1500Pa

Dust Collector Efficiency (%)

99%-99.5%

Pulse Pressure (MPa)

2-4m/min

Air Compressed Volume (m3/min)

0.5-0.7

Filter Wind Velocity (m/min)

0.2-0.8

0.25-1

0.3-1.2

0.3-1.3

0.4-1.5

0.4-1.7

0.165-1.7

Electromagnet Pulse Valve Quantity (PCS)

10

12

14

16

18

20

20

Measurement (mm)

1700*1700* 4750

1900*1700* 4750

2400*1550*

4750

2400*1700* 4750

2400*1850*

4750

2400*2000*

4750

3230x2100x4750

Discharge Valve Motor (Power)

0.75KW

DMC60-120 pulse bag collector is composed of five main parts.

1. Top body: including upper maintenance gate and air outlet.
2. Middle body: including perforated plate, maintenance gate, filter bag, keel, venturi.
3. Lower body: including air intake, ash bucket, maintenance gate.
4. Ash Discharge System: including spiral conveyor or star ash valve powered by reducer.
5.Blowing System: including pulse controller, electromagnet impulse valve, impulse pipe, air manifold.

The dust air enters deduster’s tank body through air intake, because the air current volume expands suddenly, the flow speed reduces suddenly, ash of which particles are larger separates from the air current including ash as a result of the collision and the gravity, deposits into ash bucket of lower tank body. Smaller particles are absorbed sluggishly into the extine of filter bag due to various effects of filter bag. The gas which was purified is discharged from air outlet of top body through filter bag by venturi. As time going, with the dust which is absorbed by filter bag’s surface growing, with the air permeability of filter bag weakening, which causes the resistance of deduster to increase unceasingly. To ensure the resistance of deduster to be controlled in a limitative range, with pulse controller sending signals, electromagnetic pulse valve is opened following in order, which makes the compressed air in the gas capsule jet out from each spray orifice of spray pipe to corresponding venture (called primary wind), and then induces ambient air (called secondary wind) which is a few times than primary wind to enter the filter bag when the high-speed airflow passes the venture, resulting the filter bag rapid expansion in an instant, because the impact effect of reverse pulse air current will disappear soon, the filter bag contracts sharply, so this allows the dust accumulating on the filter bag’s extine to be cleared. The falling dust is discharged through the ash discharge systeBecause cleaning proceedes separately toward a few groups of the filter bag in oder, and do not cut off the dust air which needs to deal, so the processing capacity of deduster remains invariant in the process of cleaning.

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