Then perhaps Piper did do something positive on the quality side of things.
I posted detailed pictures of what was wrong with mine, mainly on the inside, and what I have done to correct it.
Just to be sure, when i placed my Piper downpipe, my car was running perfectly with:
* S2 (so O2 sensor and everything)
* Everest
* Ported wastegate
* OEM downpipe
* OEM but
empty pre-cat housing
* Piper 2.25" exhaust
* No Main CAT
After this I replaced:
* The exhaust manifold for another OEM (so no changes here)
* The first bend of the exhaust after the downpipe due to damage (for yet another one of Piper's finest, so also no changes here as well)
* The OEM lump + pre-cat housing for a Piper downpipe, where the internals of my Piper have been flowed.
After this, boost-creep returned. IMHO this can only be due to the flaw design of the Piper downpipe, which was confirmed by my flow-dynamics colleagues yesterday (it is not that hard to see)
Might I add to the overall discussion in this thread by stating that this is a FORUM, a discussion platform so to say. IMHO anyone is welcome to discuss an comment things even if they have nothing to go by than a picture and do not have the hardware itself. It is in my opinion good to have as much comment, meaningfully or not so meaningfully, as possible to chart the problem and derive solution directions. In my experience as a test engineer for rocket engines it happened multiple times that a solution direction was determined based on pictures and drawings ! So please everybody is welcome to discuss, and everybody who wants to bash will simply be ignored in time.
Anyway: so I took the Piper out and took it along with the OEM lump for comparison to my colleagues. The general opinion on matters is that the flow of the wastegate enters the main flow to steep, causing impinging problems (turbulence and pressure differences). DUH! The way to solve it is to let both flows mix at a minimum angle of 45 degrees. DUH!
You can't produce a baffle that reduces this to 0 degrees because it will take up too much volume of the main flow (and restrict it again) So I'll have to find an optimum.
My plan now is to dremel out a groove with the desired shape of the baffle. (both sides of the downpipe "head'). The sheet metal baffle is then bent into profile on a bench, inserted in the groove and welded from the outside. I am sorry, but I am not gonna place it back in order to do an Elanscan prior to the work.
We'll see what happens after replacement.

I have to be quick as temperatures are rising and chances of boost-creep reduce.
As always, I'll keep you informed. Now go out and drive in stead of hanging around behind your keyboards!
