algale wrote:Did Shopsmith mill off the area shown in your post #58 or did they create the ledges shown in #58 by milling lower/deeper into the pad area where the lock wedge sits/travels. If it is the latter, the wedge would sit lower relative to the trunnion and the wedge would need to travel further in order to apply the same amount of contact force as a lock wedge sitting on a higher pad. Does that make sense?
It appears to me that the milled area in #58 is 'deeper' than that in the later post, and I think that explains the 'wear' also. The milling cutter also cut into the lip of the 'ledge'.
I measured the 'rod'/wedges/clamp nut and determined that the clamp nut will run out of thread when the outer edges of the wedges are 16 1/2" apart. When clamped, the separation is 16 5/8". That is only 1/8" 'to spare', but is approximately the same as the wedge to the 'bottom' of the milled area when clamped.(about half on each end) The rear end of the rod is bottomed out about 5/8" into the wedge.
The 'acute' angle is about 30 °, so the vector force would still have a significant horizontal magnitude. The wedge should slide smoothly on the milled area so it will not 'cock'/lock as a bar clamp would.
I agree the clamp will exert force normal to the trunion angle that results in 'squeezing' the trunion against its pivot. The milled area and flat side of the wedge counteracts that force as the clamp nut provides the lateral force to the wedge. I still think the three ridges merely limit trunion deflection as they are squeezed. That will provide some friction, but small compared to the wedge/trunion surface. The fact that the $ shim has any effect indicates the trunions do indeed deflect ever so slightly. FWIW, that also affects the resultant 'normal' force to the trunion and may explain the reason for weak clamping.
I would move the rear trunion so it butts up against the trunion pivot and see if propensity to slip is reduced.
I have come to the 'conclusion' that table alignment should merely reposition the table to the trunions and that the trunions must bear against the pivots horizontally(that is why the clamp is tightened and the $ used as a shim since it holds the trunions in position).
Out loud mental meandering!