Furrows on a milled edge

Furrows on a milled edge

Home Forums Beginners questions Furrows on a milled edge

Viewing 14 posts - 26 through 39 (of 39 total)
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  • #422841
    Former Member
    Participant
      @formermember32069

      [This posting has been removed]

      #422846
      Kiwi Bloke
      Participant
        @kiwibloke62605

        Barrie, your result looks pretty good, vastly better than what my machines will do. Yes, prev. post was directed to OP, but also as a warning to all owners.

        Yes, I did mean radial play – as a result of slack sleeve bearings / bushes. Particularly annoying, because correction requires replacement, possibly custom manufacture, unless modification is considered. One forum member was intending to fit anti-friction bearings, and it's been written up in ME – ages ago. Unfortunately, it seems to require the manufacture of a smaller diameter spindle, so rigidity may be compromised. Perhaps fancy bronze/PTFE, or other 'plastic'-containing bushes are the simpler answer. One day, I'll sort mine out…

        Of course, the silly pressed-on pulley design means that elimination of axial play is difficult to eliminate, but at least one can try to adjust it out…

        #422847
        Kiwi Bloke
        Participant
          @kiwibloke62605

          Barrie, just in case you were wondering, the milling spindle is removed by pressing it out, (nose first) through the pulley. Do let us all know how your project goes.

          #422854
          Former Member
          Participant
            @formermember19781

            [This posting has been removed]

            #422863
            Former Member
            Participant
              @formermember32069

              [This posting has been removed]

              #422870
              JasonB
              Moderator
                @jasonb
                Posted by Kiwi Bloke on 06/08/2019 10:06:58:

                …………… making the attachment effectively useless for milling. …………….

                Depends what you define as useless, I made use of mine to do all the milling on this.

                Also did the milling for a Stuart beam on it as well as about 50% on my minnie the remeainder being done with a vertical slide
                #422891
                Russell Eberhardt
                Participant
                  @russelleberhardt48058
                  Posted by 34046 on 05/08/2019 19:43:12:

                  First thing noted is the use of the 3 jaw chuck as opposed to the drill chuck which I have been doing.

                  Surprised that nobody has picked up on that yet, or did I miss it? Using a drill chuck is a definite no. They are not designed to take the sideways force. You need to use a collet chuck or, failing that, a three jaw as Jason did.

                  Russell

                  #422910
                  Howard Lewis
                  Participant
                    @howardlewis46836

                    Note that you said that you used the Drill Chuck for milling.

                    DON'T.!

                    Drill chucks are designed for axial loads, not side loads.

                    So part of your problem is probably caused by the chuck flexing. You could even have a cutter come out of the chuck.

                    Use a proper Collet Chuck, or 3 jaw, which will withstand side loads. Also make sure that the arbor is tight in the quill.

                    For climb milling, nip the table clamps, to withstand the cutting forces which will try to drag the work into the cutter. hence to advice about only taking very light cuts..

                    Should have typed this earlier!

                    Howard

                    #422912
                    JasonB
                    Moderator
                      @jasonb

                      The quill is solid so you can't put an arbor up it. Or as I mentioned the shank of a long cutter.

                      #422934
                      JasonB
                      Moderator
                        @jasonb
                        Posted by Kiwi Bloke on 06/08/2019 10:06:58:

                        The pulley is pressed onto the spindle – its position determines the end-float. It can be 'adjusted' by judicious use of press or more brutal techniques.

                        The pulley screws onto mine. If you take it off and slip a suitably sized bit of tube over the end of the shaft and then put the lot in a press or even a vice you can push the metal collar down further to take out any end float.

                        It would probably be possible to take it all apart and put say a 1mm pitch thread on the spindle and fit a couple of lock rings, this combined with a slightly looser collar would make it more easily adjusted.

                        20190806_170948[1].jpg

                        #422949
                        david bennett 8
                        Participant
                          @davidbennett8

                          I became so disappointed with the poor milling head design of the Uni3 that I decided to use a Uni sl headstock instead. It is mounted on a spare rod of 24mm steel, drilled to fit the Uni3 (to keep the sl bar original) I can now mill steel with relative ease.

                          Dave.

                          #422990
                          Kiwi Bloke
                          Participant
                            @kiwibloke62605

                            Nurse should have tucked me safely up in bed, instead of letting me play on the computer after my bed-time. Of course, JasonB is right, the pulley screws on and it's a collar that's pressed onto the spindle shaft. I was working from memory (dangerous these days) – the vertical heads have been stored away and forgotten about, for some time. Sorry for any puzzlement caused.

                            The anti-friction bearing mod was the subject of this thread. I'm horrified to see that four and a half years have passed since then, and I've achieved nothing useful in that time…

                            Edited By Kiwi Bloke on 07/08/2019 07:02:54

                            #423012
                            Former Member
                            Participant
                              @formermember32069

                              [This posting has been removed]

                              #423499
                              Former Member
                              Participant
                                @formermember32069

                                [This posting has been removed]

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