danscot wrote:Progress made - The stud came out with the aid of a pair of waterpump plier
s. I now know that the washer is locked on by the stud & both are liberally coated with a red sealant. I'm now going off to get some red Loctite
This allows me to rotate that washer to an unworn area &, because that seems to be a factory fit, it has confirmed that the washers are all correct.
But the unworn part of the washer raises the back end of the protractor so do I have to shim the washer at the pivot point to bring the face of the protractor back to 90 degrees to the table? This would also have the benefit of lifting the leading edge of the protractor above the table edge when sliding in.
I think the 'red sealant' was intended to secure the stud to the bar, but too much apparently also did the same for the washer. I do not think a non-rotating washer there was intentional(nor the localized wear to the washer).
I would use BLUE locktite on the stud and clean up the washer and the bar surface where it sets. If you got the stud out using pliers, that to me says the 'red sealant' was NOT red locktite.
The powdery stuff 'was' what makes it a Nylok screw. It provides a thread jamming that allows the screw to rotate with the protractor and 'not come loose'.
So I would use BLUE locktite on both the stud and the pivot screw.
I tighten the screw until the protractor drags, then back it out slightly until dragging ceases.
I verified that the bottom of the protractor is indeed flat all across the bottom. So with same size washers(the thinner ones) the protractor face should be perpendicular to the top of the bar.
Re the table clearance: I would swap the thin washers(move the worn one to the pivot etc.). That would provide a more consistent reference for the protractor segment bottom surface and the edge wear of the worn washer will have small effect on the pivot spacing. If the front of the gauge is hitting the edge of the table top the bar may be too 'thin'(setting too deeply into the slot). I also suspect the pivot screw too tight will have a contribution(as per your description).
The use of two washers under the lock knob is of recent origin. By using two washers, the tightening of the knob should
not cause the protractor to move.
Finally I would adjust the glides for face/table squareness assuming that is possible.
Finally consider that inserting the miter gauge into the slot is more easily done from above(drop the bar into the slot) than inserting it from the front. When a workpiece is clamped to the gauge, the workpiece will hold the gauge(bar/washer/bottom of casting) up off the table.