That set up sounds sensible. It made me envision  a simple arrangement
using a mounted angle grinder on a fixture with different pivot points.
Maybe CNC not needed at all.

On Sat, Jun 6, 2015 at 12:46 AM, Roland Jollivet <[email protected]>
wrote:

> In point form
>
> - lay the rod in a long V (angle iron will be fine)
> - rotate the rod at about 10RPM from the far end with a small reduction DC
> motor and a 3-jaw chuck
> - at the working end, support the rod with two large (80mm) overlapping
> rollers (like used for balancing)
> - have a third roller lightly pressing down
> - make a small X-Y table and mount a grinding wheel on it (axis of grinding
> wheel is parallel to rod)
>
> - system is easy to load and unload
> - you can program the X-Y to any arc you like, and is easy to edit the code
> - have a sharp point nearby so you can dress the wheel automatically
> - since the X-Y is very light duty, you could use as small as 4mm threaded
> bar for the feedscrew. Light spring pre-load and brass nuts.
> - best to use rollers instead of slides for the axes.
>
>
> Regards
> Roland
>
>
> On 5 June 2015 at 22:19, Mark Johnsen <[email protected]> wrote:
>
> > I thought I'd throw this out here because some of the ideas passed around
> > are really good.  I thought someone might have a helpful suggestion.
> >
> > I have an application where we need to grind a ball-end on the end of rod
> > that can be between 0.5 meters to 2 meters long and vary in diameter from
> > about 1.25mm to 8mm.  Currently, it's done by hand on rotary disk sander.
> > The material is stainless steel or titanium.
> >
> > It seems like a solution might be a small cnc'd lathe and bar feeder type
> > application and it needs to be easy to use and quick.
> >
> > 1.  How do I cut/grind the hemisphere?
> > I'm thinking a small CNC type lathe should do it?
> > I read on practicalmachinist.com that for manual lathes they often use a
> > custom tool at the radius they want to cut, but I have varying radii, so
> it
> > didn't seem like that would be a good solution.  Using a CNC would solve
> > the varying radii problem.  Either a sensor or operator manually enters
> > dia.
> >
> > 2.  How do I hold and spin the rod?  Especially, w/ differing diameters
> > that can show up at any time.  Here were some ideas, but they don't
> handle
> > the differing diameters?
> > http://www.processwelding.com/standardLathes.php
> > http://www.4machining.com/4m-Tooling/Harig-All/Harig-Air-Collet-Closer
> >
> > What about a large rolling wheel driving against two idlers to rotate the
> > bar?
> >
> > 3.  Lastly, controlling the whip while the stock is rotating?
> > I could see a barfeeder type application and then something to keep the
> rod
> > from whipping?
> >
> > Thanks,
> > Mark
> >
> >
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