Titanium is elastic and can adapt to an extended range of stresses without any measurable permanent strain remaining after the return to atmospheric pressure. It shrinks to adjust to pressure forces, and re-expands as these forces are alleviated. A carbon-fibre composite, on the other hand, is much stiffer and does not have the same kind of elasticity.
We can only speculate about what happened with the combination of these two technologies, which do not dynamically behave the same way under pressure.
But what we can say almost certainly is that there would have been some kind of loss of integrity due to the differences between these materials. A composite material could potential suffer from “delamination”, which leads to a separation of the layers of reinforcement.
This would have created a defect which triggered an instantaneous implosion due to the underwater pressure. Within less than one second, the vessel — being pushed down on by the weight of a 3,800m column of water — would have immediately crumpled in from all sides.
The final moments
When everything is designed, manufactured and tested perfectly, you’ve got a shape close enough to perfection that can withstand the overall pressure being applied from all directions. In this scenario, the material can “breathe” – shrink and expand as needed with depth. The Titan’s implosion means this was not happening.
The implosion itself would have killed everyone within less than 20 milliseconds. In fact, the human brain can’t even process information at this speed. As much as the news is devastating, perhaps it is somewhat reassuring the Titan’s passengers would not have suffered a terrifying and drawn-out end.