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The third picture is a little further along, with support brackets made and plate all screwed together. You will notice in the background a bit of ali plate with circles on it. I am just experimenting with a couple of milling cutters that came into my possession and I will be using this later. For pic 4 later is now here, as I said earlier, I didn't like the ali flywheel, well I had a bit of 1/2" thick brass plate, so I decided to go to town and made one out of it. The experimental cutter was used to simulate a riveted rim. The brass flywheel took about 7 hours to make because I kept getting dimensional overflow in my brain trying to remember where I was up to on the rotary table when profiling the spokes, one mistake and it was a do it again job. Number five is showing a close up of the simulated 'barley twist' columns. They are a double helix, concave cut at 2 1/2 threads per inch. Mounted in a bit of profiled hex bar to give them a base. They really need to be 1TPI but my lathe won't reach that far. I tried a four helix thread, but at this scale it looked like chewed up brass rod. The last picture shows the bearings squeezed into the areas that needed them the most. The eccentric was the worst, very tight, and a lot of maths by Bandit to make sure it would all work as required. I am deviating here from the plan on this bit, the plans show the eccentric rod sticking out the side, I am taking it straight up and thru a bellcrank to its original position. If possible, if I can squeeze it into the limited space on the cylinder platform, I am going to try and put a reverse linkage in, if I can achieve this, it will double the amount of items I can power with it, by using one way drives, two separate areas can be driven at different times.