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Air Suspension 2009

319 Item(s)

  1. Audi Q7 Luchtvering Compressor | WABCO 4L0698007
    spare part
  2. VW Touareg Veerbalg Luchtvering Achterzijde | Volkswagen Touareg Luchtveer 7L6616503B 7L5616503F
  3. Mercedes S-Klasse W221 Airmatic Luchtvering Compressor A2213201704
    spare part
  4. Jaguar XJ series X350 X358 comfort air strut rear
  5. Jaguar XJ Series X350 X358 MK3 Air Strut Front C2C41340
  6. Jaguar XJ Series X350 X358 MK 3 Sport Air Strut Front
  7. Mercedes ML Luchtvering W164 M-Klasse links A1643206113
    spare part
  8. BMW 5-serie F11 Ventielblok | 2-weg magneetventiel | Valve Block Luchtvering
    spare part
  9. BMW E70 E71 luchtleidingen luchtvering
  10. A2193200825
    spare part
  11. A2193200725
    spare part
  12. Mercedes E-Klasse Veerpoot Luchtvering W211 rechtsvoor 2113205413
    spare part
  13. Mercedes M-Klasse W164 airmatic air spring front | A1643206013
  14. Mercedes ML Luchtvering W164 M-Klasse Rechts Voorzijde
    spare part
  15. Mercedes R-Class W251 airmatic air spring front A2513203013
  16. Mercedes R-Class W251 air spring rear A2513200425
  17. Mercedes ML Luchtvering W164 M-Klasse Rechts
    spare part
  18. Mercedes ML Luchtvering X164 GL-Klasse Rechts
    spare part
  19. Jaguar XJ Serie X351 MK4 Air Suspension Compressor AMK C2D5825
    spare part
  20. Mercedes GL-Klasse Airmatic Veerbalg Voorzijde A1643206013
  21. Mercedes R-Klasse Luchtvering W251 A2513203013
    spare part
  22. LR041777
    spare part
  23. Audi Q7 Veerbalg Luchtvering Voorzijde Rechts | AUDI Q7 luchtveer voorzijde rechts 7L8616404B 7L8616040D
  24. Audi Q7 Veerbalg Luchtvering Voorzijde Links | Audi Q7 7L8616403B 7L8616039D
  25. Valve Block Ventieleenheid 7L0698014
    spare part
  26. Valve Block Ventieleenheid 95535890300
    spare part
  27. Audi Q7 Ventielblok Luchtvering | 5-weg magneetventiel | Ventieleenheid 7L0698014
    spare part
  28. Audi A6 C6 4F Veerbalg Luchtvering Achterzijde | Luchtbalg achter 4F0616001 (Veerbalgen & Veerpoten)
  29. Volkswagen Touareg Luchtvering Compressor | Air Supply Unit 7P0698007A
    spare part
  30. Mercedes S-Klasse W221 Veerpoot Rechts Achterzijde Gereviseerd A2213205613
    Mercedes S-Klasse Airmatic Veerpoot Rechts Achterzijde Rechts Gereviseerd | A2213205613
    Mercedes S-Klasse W221 gereviseerde veerpoot luchtvering achterzijde rechts (2007-2013) zonder 4 Matic. Bij aankoop van 2 veerpoten krijgt u 10% korting!
    €744.92 €615.64
  31. Porsche Panamera Valve Block Ventieleenheid 97035815302
  32. Porsche Panamera 970 air suspension compressor Continental 97035815109
    spare part
  33. Air Supply Unit 37206799419
    spare part
  34. Range Rover Sport Luchtvering Compressor Dunlop LR023964
  35. Mercedes CLS-Klasse W219 Compressor WABCO
    spare part
  36. Mercedes S-Klasse W221 ABC Veerpoot Links Achterzijde Gereviseerd (geen AMG)
Page

Increasingly, car manufacturers in the more expensive segment are no longer equipping passenger cars with steel springs in combination with traditional shock absorbers, but opting instead for a complete (full air suspension) or partial (rear axle level control) electronically adjustable air suspension system. This benefits not only driving characteristics, but also safety. The system was first used in lorries in 1909, but has been on the rise in recent decades due to the arrival of very luxurious cars and SUVs.

How does air suspension work?

What is resilience?

Air consists of air particles that can be compressed, when air is compressed pressure is created. When the pressure drops, these air particles return to their original shape. The principle of the air spring consists of compressing and expanding air. An air spring can therefore replace a coil spring.

The air spring essentially consists of nothing more than a piston and a cylinder. The air springs or pistons compresses the air present in the cylinder. The spring force (= carrying capacity) of an air spring is determined by the diameter of the circle of the piston and the overpressure present in the air spring.

The larger the circle, the greater the carrying capacity of the air spring. Small changes in the circle area can already make a big difference in the carrying capacity of the air spring. By adjusting the pressure in the air spring, the carrying capacity and stiffness of the spring can be adjusted. The less air, the stiffer the suspension; the more air, the smoother the suspension.

Compress and extend

When the air spring is extended, the diameter of the spring springs is smallest. When compressing, the spring springs roll along the roller piston. The diameter of the spring springs is then the largest.

The larger the diameter of the spring springs, the greater the carrying capacity of the air spring. During compression, the air in the spring springs is compressed. If there is little air in the spring, a hard (sporty) suspension is created. If there is a lot of air in the spring springs, a soft (comfortable) suspension is created.

Construction of air springs

We speak of air springs when only air is used as the spring element (and no liquids or other gases).
Air springs consist of:
an upper housing with an outer casing;
the spring springs of the air spring;
optionally : an auxiliary reservoir
a vibration damper (shock absorber) that is integrated in the spring.

In a “fully load-bearing” air suspension system, only air springs are fitted as load-bearing spring elements on all wheels. In “part bearing” air suspension system, a combination of steel springs and gas pressure springs (with hydraulic or pneumatic control) provides the suspension. (auxiliary suspension)

Air suspension passenger cars

Air is stored in the expansion tank with the aid of a compressor.
If the air pressure falls below a certain value (electronically set), the compressor automatically switches on and refills the expansion tank to the desired pressure.

As soon as the driver changes the suspension setting in the vehicle, a solenoid valve directs air in or out of the air spring. This regulates the flexibility of the suspension (little