I've been reading this thread, with a degree of interested concern.
As a chemist there is much of interest to me in this thread.
First, stepping back a bit: steel is used to make the chassis as in the 1950s it was the only option in town. Back then the quality of steel available was terrible. Remember how cars rotted?
Galvanizing steel helped reduce corrosion, but saying "galvanising" is like saying "painting", there are many ways to get the zinc on the steel and it is easy to do a poor job. Hot dipping, where the steel is dipped in molten zinc gives a thick, but uneven coat and can distort the structure. Electroplating is slow, but gives an even, very thin coat. Both are virtually impossible to paint, though powder coating is OK if the structure doesn't flex. So no use on a Mog. The only way to protect the zinc is to slap an thick solvent based goo on the structure, something the EC Air Quality Rules seek to discourage.
Today alloy steels are of far, far higher quality than in the past and many are inherently rust resistant. There are construction grades of steel that form a strong oxide layer that protects the rest of the steel. They look a bit naff, though.
Also the quality of protective coatings are light years away from oil based paint of the 1960s. As has been mentioned nanao technology is in the wings: early experimental work suggests that self healing coatings are not far away. So for the next 10 to 15 years I think MMC will stick to a steel ladder chassis, protected by clever modern coatings.
BUT steel is still so "yesterday". Aluminium is the future. It is available in many, many alloy forms, some are effectively corrosion proof as the alloy forms a hard, dull grey oxide layer that heals when damaged. Look underneath an early Aero. There is no corrosion because the grade of alloy used is both tough and corrosion resistant. The only problem is that it can't be welded and isn't easily formed into complex shapes. The alloy used to make the panel beaten body is sensitive to galvanic corrosion, unlike the alloy used to make the thermoformed components.
So the Aero based cars have multiple types of aluminium alloy in their structure, assembled round a very high-tech natural composite structure (wood!) As a result they are are inherently corrosion resistant, without the need for additional layers of goo.
So, I expect that over the next 15 years MMC will move almost all production to an alloy structure, as are all motor manufacturers.
It might even be possible to make a ladder chassis in aluminium alloy, but I doubt they will. Even so it would be interesting to see someone try, using a combination of sheet bending, welding and gluing. Light, stiff and corrosion resistant. Then steel chassis can quietly disappear.....