An airflow control device comprises a body and an active material in
operative communication with the body. The active material, such as a
shape memory material, is operative to change at least one attribute in
response to an activation signal. The active material can change its
shape, dimensions and/or stiffness producing a change in at least one
feature of the airflow control device such as shape, dimension, location,
orientation, and/or stiffness to control vehicle airflow to better suit
changes in driving conditions such as the need for increased airflow
through the radiator due to increases in engine coolant temperature. As
such, the device improves vehicle fuel economy while maintaining proper
engine cooling. An activation device, controller and sensors may be
employed to further control the change in at least one feature of the
airflow control device such as shape, dimension, location, orientation,
and/or stiffness of the device. A method for controlling vehicle airflow
selectively introduces an activation signal to initiate a change of at
least one feature of the device that can be reversed upon discontinuation
of the activation signal.