Booster Air Compressor

Booster Air Compressor 10 To 40 HP Reciprocating

Indo-Air is a leading manufacturer of Booster Air Compressor since 1998. Indo-Air pressurizes the air entering the compressor at 7-13 bar up to 40 bars with the IBH series booster air compressors in its production range.

Standard Equipment

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Booster Compressor

High quality components such as IP55 electric motors with the IE2 efficiency class, star-delta motor starter system, electrical as per the market requirements, durable compressor blocks are provided as standard in all our products.

Reliability

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Indo-Air pressurizes the air entering the compressor at 7-13 bar up to 40 bars with the IBH series booster air compressors in its production range.

General Features

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Booster Compressor

Main Motor and Drive System:

  • High efficiency 415V/3 phase/50Hz IE2 IP55 electric motor.
  • Special loadless start system and automatic discharge system for loadless start
  • Belt-pulley drive system
  • Specially designed fan type cast iron pulley
  • Easy belt tensioning system

Compressor Block:

  • Cast iron cylinder with cooling fins and special aluminum alloy cylinder heads
  • Specially designed high-speed stainless steel concentric valves.
  • Cast iron crankcases with high strength
  • Dynamically-balanced cast steel crankshaft and counter weight
  • Special alloy aluminum pistons and steel cast connecting rods
  • Specially designed finger-type, high-capacity stainless steel suction-discharge valves
  • Stainless steel suction-discharge valves, specially designed for high pressure strength

Safety Systems:

  • Intake air control system
  • High pressure switch
  • Manual discharge valve
  • Integrated check valve on the air outlet line
  • Belt pulley housing grill
  • Outlet pressure manometer
  • High pressure relief valve

Other Features:

  • Automatic discharge system for loadless start
  • Bearings with a long service life
  • Outlet air cooling radiator
  • Loaded-Unloaded operating options
  • Air suction filter and silencer for unloaded operation
  • Lubrication system with whisking rod
  • Oil level gauge
  • Special discharge system preventing oil leakage from blowdown valve
Booster Compressor

Options

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Booster Compressor
  • High pressure air dryer
  • High pressure air receiver
  • Air filtering system with oil trap
  • Main motor with IE3 efficiency class

Booster Air Compressor (10 To 40 Hp)

Technical Specifications

MODEL PRESSURE SUCTION CAPACITY Motor Power KW/HP AIR CONNECTION DIMENSIONS
MM
WEIGHT
KG
Minimum Maximum 7 bar 10 bar 13 bar
bar PSI bar PSI M3/ MIN SCFM M3/ MIN SCFM M3/ MIN SCFM Width Length Height
IBH 10 15 218 40 580 1.78 63 2.48 87 3.11 110 7.5/10 1" 1256 825 753 268
IBH 15 15 218 40 580 2.11 74.5 2.89 102 3.66 129 11/15 1" 1256 825 753 285
IBH 20 15 218 40 580 3.14 111 4.35 153 5.53 195 15/20 1" 1357 820 758 300
IBH 25 15 218 40 580 4.15 147 5.72 202 7.27 257 18,5/25 11/4" 1423 874 736 345
IBH 30 15 218 40 580 4.74 167 6.32 230 8.27 292 22/30 11/4" 1423 881 736 390
IBH 40 15 218 40 580 5.65 200 7.95 275 9.92 350 30/40 11/4" 1423 972 736 426
MODEL IBH 10 IBH 15
MINIMUM PRESSURE BAR 15 15
MAXIMUM PRESSURE BAR 40 40
MINIMUM PRESSURE PSI 218 218
MAXIMUM PRESSURE PSI 580 580
7 BAR M3/ MIN 1.78 2.11
7 BAR Delivery SCFM 63 74.5
10 BAR M3/ MIN 2.48 2.89
10 BAR Delivery SCFM 87 102
13 BAR M3/ MIN 3.11 3.66
13 BAR Delivery SCFM 110 129
Motor Power KW/HP 7.5/10 11/15
Air Connection 1" 1"
Width MM 1256 1256
Length MM 825 825
Height MM 753 753
Weight kg 268 285
MODEL IBH 20 IBH 25
MINIMUM PRESSURE BAR 15 15
MAXIMUM PRESSURE BAR 40 40
MINIMUM PRESSURE PSI 218 218
MAXIMUM PRESSURE PSI 580 580
7 BAR M3/ MIN 3.14 4.15
7 BAR Delivery SCFM 111 147
10 BAR M3/ MIN 4.35 5.72
10 BAR Delivery SCFM 153 202
13 BAR M3/ MIN 5.53 7.27
13 BAR Delivery SCFM 195 257
Motor Power KW/HP 15/20 18.5/25
Air Connection 1" 11/4"
Width MM 1357 1423
Length MM 820 874
Height MM 758 736
Weight kg 300 345
MODEL IBH 30 IBH 40
MINIMUM PRESSURE BAR 15 15
MAXIMUM PRESSURE BAR 40 40
MINIMUM PRESSURE PSI 218 218
MAXIMUM PRESSURE PSI 580 580
7 BAR M3/ MIN 4.74 5.65
7 BAR Delivery SCFM 167 200
10 BAR M3/ MIN 6.52 7.95
10 BAR Delivery SCFM 230 275
13 BAR M3/ MIN 8.27 9.92
13 BAR Delivery SCFM 292 350
Motor Power KW/HP 22/30 30/40
Air Connection 11/4" 11/4"
Width MM 1453 1423
Length MM 881 972
Height MM 736 736
Weight kg 390 426
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FAQs

Common questions we get asked about air compressors with our replies.
Trouble shooting questions are answered on another page, there links to other popular air compressor related pages to the right.

The atmospheric air enters the compressor at atmospheric pressure and leaves it as a high pressure at low volume gas . This process can be done by Piston or by Rotary.

All process in indusries can not be done with atmostpheric pressure hence air is required to compress so that process can be been done.

volume of 0.818 m3; or 1 lb of air a volume of 13.07 ft3.

  • Causing leakages causing facrors like rust and scale deposits in steel pipes
  • Any resistance
  • Improper selection of pressure controling devices in the system
  • Moist in electro-magnetic controls
  • Freezing of moisture in pneumatic conveying system
  • Inaccurate moving parts

  • To reduce the running costs
  • Easy maintenance at low costs
  • Quick operation

  • Humidity
  • Dust particles
  • Oil mixed during the process by the compressor
  • Gases, Vapours, Fumes.
  • Bacteria/Viruses

Dew point can be defined as the temperature at which air is fully saturated and below which water will condense.

Compressed Air can be dried by two methods -

  • Refrigeration
  • Sorption
Refrigeration:- When the temperature of the air is lowered, its ability to hold moisture is reduced. A refigeration dryer reduces the dewpoint of the air by reducing the temperature of the air, thus separating moisture.
Sorption:- The air stream passes over a bed of granular desiccant which in its active state has a vapour pressure below the vapour pressure of air stream to be dried and therefore physically removes the moisture from the air stream. Sorption can be classified into Absorption and Adsorption.
Absorption:- Absorption systems use a desiccant that dissolves with the absorbed moisture. The desiccant cannot be regenerated.
Absorption:- Adsorption dryers operate by passing compressed air through a bed of desiccant material, to which the water vapour is adsorbed.. These desiccants once saturated can be regenerated and reused.

Hot, moist air enters the refrigeration dryer through an air to air heat exchanger, where the temperature of the inlet air is reduced. This cooled air now passes through a refrigerant to air to air heat exchanger where the tempe¬rature of the air is reduced to between 2° to 5°C The cooling induces condensation and the liquid water is removed in a liquid seprator. The dry air now goes out of the dryer through the air to air heat exchange where the temperature of the air is increased to slightly below the incoming air. This is a continuous process.

The dewpoint cannot go below 2°C PDP.

There are several different types of regenerative dryers but they all conform to the same basic concept. A regenerative dryer consists of two towers filled with the desiccant. The desiccant in one bed is on stream, drying the air, while the desiccant in the other tower is being regenerated. The two towers are interlinked with switching valves so that when the desiccant in the drying tower is saturated, the valves switch the flow into the tower that has just been regenerated. This switching operation is automatic giving conti¬nuous drying.

With an adsorption dryer, very low dewpoint, down to -40°C or -60°C can be achieved.

  • Silica Gel
  • Activated Alumina
  • Molecular Sieve

  • For general plant air, dewpoints of 2°C to 4°C are considered sufficient,
  • Refrigeration type dryers use less energy and hence are lower in first and operating costs.

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Experts in the field of engineering for the compressors & vacuum pumps industry

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