Air suspension or air spring is a type of vehicle suspension
that is powered by an air pump or a compressor. They are commonly used in heavy
duty vehicles, but over the last decade it has also made its mark in the
smaller commercial vehicles.
Air suspension is made of tough rubber and plastics inflated
at a certain pressure to withstand the shocks. Air springs have various
advantages over a shock absorber and coil spring arrangement. Several automobile
manufacturers use air suspension today such as Rolls Royce, Mercedes-Benz,
Maybach, Land Rover, Jeep, Lexus, Volkswagen, etc.
Air Suspension System
Design:
As already mentioned, that air suspension is made of tough
rubber and plastic (polyurethane) bags that are inflated to a correct pressure
with the help of a compressor.
The bags come in 3 different shapes:
·
Double-Convoluted
Bag: This type of bag is in the shape of an hour glass or a double cheese
burger. It provides better lateral flexibility than other types and has more
load capacity. It has a short stroke and a progressive spring rate. It is best
suited for front suspension.
·
Rolling
Sleeve and Tapered Sleeve Bags: These
have a smaller diameter and also the stroke length is longer. The linear spring
rate is higher and more suited for rear end applications.
Rolling Sleeve |
Taper Sleeve |
Compressor Motor:
Most of the air suspension systems are provided with an
electric compressor motor. It draws the air from the atmosphere, compresses it
and then sends the compressed air to inflate the bags through a series of
compressed air lines. Apart from compressing the air, it also maintains the pressure
to be supplied to the bags. The pressure has to be varied for different driving
conditions. Therefore, the compressor provides a transition in pressure.
In vehicles fitted with advanced air suspension system, a
separate air tank is provided to maintain the compressed air pressure and also
to provide a smoother change in pressure. The pressure of the air might vary
from 5 bar to 12 bar and the tank capacity might vary from 7 liters to 20
liters depending on the load that a vehicle carries.
Desiccant Air dryer:
The air drawn from the atmosphere might have moisture which can
damage the system. To remove the moisture, air dryer is installed to absorb the
moisture before it is sent to the system.
Air Lines:
High pressure lines made of rubber and polyurethane
composition are used to carry the compressed air to the bags. Advanced systems
often use steel lines.
Valves (Two way or
Four way):
Valves play a crucial role in controlling the amount of air
to be supplied to the bags. A two way valve system uses one valve per axle.
During cornering, let’s assume a vehicle taking a left turn; the left air bag
will be more compressed than the right air bag. Two way valve systems allow the
air to transfer from left to right, thus increasing the tendency of body rolls.
Body rolls bring a huge disadvantage to a air suspension system.
To overcome the problem, four way valve systems were
introduced. It offered separate valve for each bag. It also requires a separate
air line for each bag, hence canceling the possibility of body rolls due to air
suspension.
Electronic Control
System (Solenoids):
Solenoids are used to electronically control the amount of
air supplied to an air bag. The electronic control module receives inputs such
as ride height, and pressure through sensors and switches the compressor ON and
OFF as required to vary the pressure.
There is also a completely manual setup to regulate the rife
height and pressure. This is done with the help of pneumatic valves.
There are 3 types of
Electronic Control Systems:
·
Pressure
Based System: The pressure based electronic control system relies solely on
the air pressure inputs. Based on the air pressure inputs, the control module
has to calculate the ride height of the vehicle. It is more of an assumption
than calculating the exact ride height value. The system might not perfectly
vary the ride height required based on the pressure inputs alone.
·
Ride
Height Based System: With a ride height control system, the issue of
assuming the ride height is overcome. Ride height sensors accurately measure
the ride height of individual wheel. But without a pressure based system, the
vehicle might face cross loading. Cross loading is the difference in ride
height between the tires in one diagonal and the tires in the other diagonal.
Two diagonal corner tires might be over inflated while the other two diagonal
corner tires might be under inflated. To
overcome the issue, air suspensions are fitted with a combo of both pressure
based system and ride height based system.
·
Combo
System: Both pressure based system and ride height system are installed
together to overcome both cross loading and ride height calculation issues.
Advantages of Air
Suspension:
·
Superior ride quality. Passengers don’t feel
like their car is being driven over bumps.
·
It can improve towing capabilities
·
It can maintain the firmness of a vehicle when
carrying heavy loads.
Disadvantages:
The only major disadvantage is the cost of buying an air
suspension unit. It is mostly used in luxury cars. People who can spend extra
money would generally go for this variant. Air suspension is standard in
Mercedes S class and Range Rover.
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Car air suspension, also known as air ride suspension or pneumatic suspension, uses air springs or air bags to support the weight of the vehicle and provide a smoother, more comfortable ride than traditional coil springs.
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