Problem
A car of mass travels at and hits a wall, stopping in . Estimate the average force of interaction between wall and car. Discuss why airbags and the deformation of the vehicle increase safety.
Solution
Step 1 — Converting the speed. It is convenient to work in SI units:
Step 2 — Average acceleration (deceleration). The car goes from to in the interval . In magnitude
Step 3 — Average force. From Newton’s second law
This is an enormous force, about ten times the weight of the car itself.
Discussion — airbags and deformation. The change in speed is imposed by the crash and cannot be reduced. Rewriting the second law as
we see that the force is inversely proportional to the time over which the stop occurs. Airbags, seatbelts with pre-tensioners and crumple zones (the panels that “concertina” on impact) exist precisely to lengthen : by spreading the stop over a longer time, for the same , the average force on the occupants drops proportionally. A rigid wall stops the body in a fraction of a second; an airbag can lengthen the stop just enough to bring the force below the injury threshold.
Links
Topics: Dynamics Concepts: Newton’s second law · Uniformly accelerated motion