The Allison WAS in mass production.
Please define mass production. In 1940 Allison built/shipped 3 engines in Jan, 7 engines in each of Feb, March and April, 14 engines in May, 30 in June, and 73 in July.
Allison did deliver 223 engines in Sept when the deal with Packard was signed. First time production hit triple digits. Production fell below 200 per month 3 times by April of 1941 with a high of 400 in Feb. 1941.
Things got much better after May of 1941. But by that time The Aircraft engine industry was tooling up in massive fashion. The deals with Studebaker, Buick and Chevrolet were already signed in addition to the Packard and Ford deals and more were to come.
We also had a high-altitude system for it.
The decision makers decided to remove that from the popwer system of our fighters by deleting the turbocharger.
The decision makers made that decision because, in their opinion, the 1939 turbo system wasn't ready for either production or squadron service or both. They estimated that waiting for a turbo system that was usable in squadron service would delay the P-40 (see P-37) and perhaps the P-39 by an additional year. Turbo P-40s showing up in the Spring of 1941 instead of non-turbo P-40s the Spring of 1940? Turbo P-39s showing up in Dec of 1941 instead non turbos P-39s in Dec of 1940? It took about 1 year to go from 5th aircraft delivered to the 1000th aircraft delivered for those two models. A little less for the P-40 and a little more for the P-39.
Much is made of the lack of high altitude capability of American fighters in the Spring/summer of 1942. Not many people consider the effect on the US of being about 2000 fighters shorter than we were at the time of Pearl Harbor and the carry over into the Spring/summer of 1942. Low altitude fighters being better than
NO fighters.
Allison realized the need for a better supercharger in 1938 and started the 2 stage project. But when you are making only 1-2 engines a month and even those are not the same model and trying to expand the factory by an order of magnitude ( or several orders of magnitude) at the same time, certain projects get moved to the back of the stove.
Once we identified the issues with the intake system, it took only several months to fix. It took almost a year to realize that European fuels were not teh same mix as American fuels. That took some carburetor adjustments, but was also fixed.
Which problem with the intake? I think there was more than one.
Anybody with any knowledge of gasoline at all
KNEW there was a difference in US gas and British gas in 1940. The specifications could not have been more clear. US Spec fuel
could not contain more than 2% aromatics. British Spec fuel could not contain
less than 20% aromatics, ten times the US max. Without the aromatics however there is NO rich response (or a very small one), no 100/130 fuel. US fuel Specs were brought into line with the British ones, what the British may have given up I don't know.
The problem with "European fuel" came later. In an attempt to stretch fuel supplies a higher percentage of heavy compounds were allowed
in all 100/130 fuel. Not all batches of fuel may have gotten the heavier compounds or gotten them in the same amounts. These heavy compounds showed a greater tendency to condense out (or the fuel, being a bit heavier condensed easier?) at low temperatures and 'puddle' in the intake manifolds. This problem was known/anticipated and Allison was working on a new intake manifold in the late spring or summer of 1943. BY the time P-38s in Europe were actually having difficulties the New manifolds were already designed, flight tested and in production. New engines got the manifolds and old engines were retrofitted in the field with the new manifolds often shipped by air to the units.
With fuel being made in a number of different refineries and with different amounts of certain compounds allowed or used ( there are over 400 different compounds that can be used in "gasoline", obviously not all at the same time) it is not surprising that a few batches may have come up a little short. I would note that the problems the European P-38s had were also made worse by poor piloting technique. They were being taught to cruise at low boost and high rpm which is not only wrong from a range//endurance standpoint (and against both Allison and Lockheed recommendations) but caused the intake charge temperature to be lower than normal which added to the fuel vaporization problem.
P-38s in warmer theaters may have gotten poorly blended fuel but the warmer temperatures (and lower altitudes) may have kept the vaporization problem to a minimum.
According the "Vees for Victory" ALL Allisons go the new manifolds, P-39s, P-40s, and Allison powered P-51a/A-36s, not just P-38s.