Drill Press Table Not Square to Bit
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- dusty
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Drill Press Table Not Square to Bit
I have just set up to drill a number of holes through 3" stock. My drill press table is square to the bit, when checked with a Wixey, front to back. When checked left to right, it is off .3° to the bit.
How big of an error is that going to create?
How big of an error is that going to create?
"Making Sawdust Safely"
Dusty
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Dusty
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- "Wild Bad Bob"
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How deep are the holes going to be?
Measure once, cut as many times as needed to get it right! Bob
56/57 Greenie with jointer, 85 Mark V with band saw, 63 Goldie with jointer, 3 ER 10s, 1951 vintage, Hernia from the Er 10s, Tool Shop SS clone 6" jointer, and 6" belt sander, Delta 10" TS, Buffalo 6" jointer, Craftsman 12" BS, 10" Ryobi planer. Compound Miter, and misc.
56/57 Greenie with jointer, 85 Mark V with band saw, 63 Goldie with jointer, 3 ER 10s, 1951 vintage, Hernia from the Er 10s, Tool Shop SS clone 6" jointer, and 6" belt sander, Delta 10" TS, Buffalo 6" jointer, Craftsman 12" BS, 10" Ryobi planer. Compound Miter, and misc.
- "Wild Bad Bob"
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One way to figure it out is, on a piece of something, draw a horizontal line, then a vertical line 90* to the horizontal one. Where they intersect, draw down a line .3* the length of your drilling depth and you will physically see the deviation.
Measure once, cut as many times as needed to get it right! Bob
56/57 Greenie with jointer, 85 Mark V with band saw, 63 Goldie with jointer, 3 ER 10s, 1951 vintage, Hernia from the Er 10s, Tool Shop SS clone 6" jointer, and 6" belt sander, Delta 10" TS, Buffalo 6" jointer, Craftsman 12" BS, 10" Ryobi planer. Compound Miter, and misc.
56/57 Greenie with jointer, 85 Mark V with band saw, 63 Goldie with jointer, 3 ER 10s, 1951 vintage, Hernia from the Er 10s, Tool Shop SS clone 6" jointer, and 6" belt sander, Delta 10" TS, Buffalo 6" jointer, Craftsman 12" BS, 10" Ryobi planer. Compound Miter, and misc.
- "Wild Bad Bob"
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I did it at 1* deflection, at 3", it was a 1/32" so .3* would be 1/3rd. of that so about 1/96th of an inch.
Measure once, cut as many times as needed to get it right! Bob
56/57 Greenie with jointer, 85 Mark V with band saw, 63 Goldie with jointer, 3 ER 10s, 1951 vintage, Hernia from the Er 10s, Tool Shop SS clone 6" jointer, and 6" belt sander, Delta 10" TS, Buffalo 6" jointer, Craftsman 12" BS, 10" Ryobi planer. Compound Miter, and misc.
56/57 Greenie with jointer, 85 Mark V with band saw, 63 Goldie with jointer, 3 ER 10s, 1951 vintage, Hernia from the Er 10s, Tool Shop SS clone 6" jointer, and 6" belt sander, Delta 10" TS, Buffalo 6" jointer, Craftsman 12" BS, 10" Ryobi planer. Compound Miter, and misc.
- BuckeyeDennis
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3" * Sine(0.3) = 0.0157" Almost exactly 1/64".dusty wrote:I have just set up to drill a number of holes through 3" stock. My drill press table is square to the bit, when checked with a Wixey, front to back. When checked left to right, it is off .3° to the bit.
How big of an error is that going to create?
Rather than using math (wixey) to adjust the table - mount your sanding disk in the chuck and mark the back. Now using that mark hand turn the disk and adjust the table until it just touches a known thickness block. You have an aluminum block that would be perfect for this.
Do this for all cardinal directions because as you adjust the table for sides you will probably change the fron/back .
You use the mark on the disk because disks (like saw blades) are not perfectly flat.
Do this for all cardinal directions because as you adjust the table for sides you will probably change the fron/back .
You use the mark on the disk because disks (like saw blades) are not perfectly flat.
Octogenarian's have an earned right to be a curmudgeon.
Chuck in Lancaster, CA
Chuck in Lancaster, CA
- dusty
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charlese wrote:Rather than using math (wixey) to adjust the table - mount your sanding disk in the chuck and mark the back. Now using that mark hand turn the disk and adjust the table until it just touches a known thickness block. You have an aluminum block that would be perfect for this.
Do this for all cardinal directions because as you adjust the table for sides you will probably change the fron/back .
You use the mark on the disk because disks (like saw blades) are not perfectly flat.
I sorta did this, Charlese. I gave up trying to predetermine the size of shims that were needed by using the mathematical methods or the Wixey.
Instead, I looked to see what sort of shims I had that would fit on the trunnion bolts. Not a whole lot of selection. I had five that were/are .028" and a fist full that are .003".
I decided to give it a shot using two of the .028" (one for each trunnion bolt).
Now I am .1° off in the opposite direction. That is where it stays until it causes me an assembly problem that could be avoided by getting closer. I doubt that will ever happen.
My brain teaser for the rest of the day will be trying to figure out what I am doing mathematically. This is the sort of real life problem that should be used in high school math classes to teach mathematics in a way that sticks.
In the case of the main table, this all gets fogged up because the shims are placed on the trunnion bolts and one needs to know the offset; in this case the distance from one trunnion to the other.
"Making Sawdust Safely"
Dusty
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Dusty
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