cnc machine (part 3)
TRANSCRIPT
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How-To: Build your own CNC machine (Part 3) - Engadget
ow-To: Build your own CNC machine (Part 3)
osted Jul 11th 2006 9:45PM by Will O'Brien
led under: Features, Misc. Gadgets
ack in Part 1, we introduced the basics and started building the electronics. In Part 2, we finished up
e controller and started building our machine. Today we complete our unholy marriage of cutting
oards and dot matrix printers in Part 3 of How-To: Build your own CNC machine. Good luck.
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ast time we showed you the completed base, with the first axis. The screw drive turns easily and the
ry little play in the motion of the table.
he design of the upper axis is simple, but is the most difficult to execute. Originally we hoped to us
ir of the small sliders, but binding was an issue so we redesigned it to use a large printer slider at th
se. Ultimately, the binding was caused by the nut and threaded rod we were using. Swapping them
lved our problems.
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simple tower constructed of three pieces forms the basis for the rest of the machine. The tower wil
ounted to the outer edges of the base. This allows greater side to side movement to maximize the
able area on the table.The center piece of from the same cut as the bottom of the base. To drill the
des evenly, we screwed them together and drill the mounting holes with the drill press. One the firs
rew was in, we drilled the rest one at a time.
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he center slider is the most complex to build. Each piece is visible here. We used our usual trick of
rewing the opposite pieces together in order to align the holes for the slide and the threaded rod. Th
ass slider and long hex nut were pressed into the plastic with our bench vise. This technique seems
ork well, but alignment is critical!
o effectively deal with the minimum space, we had to get tricky. There just isn't enough room in the
rrier to mount bearings for the Z axis. Instead, we pressed bushings into the plastic with our vise. T
e added a washer and a lock nut to the threaded rod at the top and bottom of the carrier. Careful
weaking with a pair of wrenches made for very little play. Just how long this setup will stay tight is
uestion so we'll have to keep an eye on it as we break in the machine.
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his slide and carrier were salvaged from an old Okidata printer. We decided to use it to smooth out
tion for the Y axis.
e whipped out the drum sander attachment on our dremel tool and contoured the plastic on the bott
we could mount the printer slide without compromising the integrity of the cast metal.
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nce the slide was mounted, we marked and drilled the mounting holes for each axis. Once the slide
e set up, we'll use some screws to lock them in place.
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nce things start coming together, they'll get extra frustrating as you begin aligning the slides and dr
rews. I took us a while to narrow down that the source of binding was the drive screw and nut
mbination. We'd overlooked them initially because they worked very, very well in the other cases.
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nce each axis has been constructed, we needed a carrier for the rotating tool. We picked up a flexib
emel shaft and created a simple mount for it. The flexible shaft will reduce vibration. The dremel
rsion has the nice button for locking rotation -- far less frustrating to use than the off-brand tools.
e used a couple of tricks to achieve a nice fit. The strips were cut first, then screwed together with
me space to spare. Then we drilled the plastic with a starter hole and used the dremel tool to taper a
und out the holes until the fit was perfect.
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otor mounts are dependent on the motors you've ended up with. If you're lucky, you'll salvage som
otor mount brackets. Creative mounting can be achieved by using new or salvaged pulley systems.
mit switches are very helpful for keeping your machine from self destructing. A switch is placed at
mit of each axis and wired in parallel. When the carrier or table contacts one, the circuit is closed ane controller signals the computer. Lever switches like these are ideal, or you can salvage some of t
posed contact switches from printers. The main danger of either switch is fouling caused by debris
om your work project. Covering the switch with a bit of latex glove or balloon can help prevent
oblems later on.
ow that you've got all the bits of information you'll need to build your machine, lets get into some
tual software to make the machine work.
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Cam - Probably the easiest software to set up and configure, KCam is great for testing out your
achine. It ran just fine on our Windows XP laptop. The drawback has to do with the method that
indows uses to access the parallel port. Because of this limitation, the machine won't run as smooth
it really can.
MC Linux - Some dedicated individuals maintain EMC and actually produce a stripped down, brain
ad install of Linux just for running EMC. It doesn't take much of a machine to run, so it's great for
dicating an old machine just to run your CNC machine. Add a network card and you can operate and jobs to the machine remotely. It's not too bad to install, but expect to spend some time figuring
e quirks.
ow, what you've all been waiting for... the machine in action! The bit is another tungsten carbide bi
om Drill Bit City. (Oh, how we love them.)
you've gotten this far, congratulations are an order! Oh, and then you should already expect to spen
me time troubleshooting your creation. Don't be upset if everything doesn't work perfectly! (Or if y
d up ripping all apart and starting all over...)
ags: cnc machine, CncMachine, how to, how-to, HowTo