Showing posts with label ikea. Show all posts
Showing posts with label ikea. Show all posts

Tuesday, January 6, 2015

3D Printing : IKEA Hack - Lustifik Shelf Extension - Filament Holder

Filament! I've got plenty, but I'm always looking for more, especially if there are new blends, new materials, etc! I really like testing out new filament and thinking on the possibilities that these materials could end up becoming or how to use them.  Its one of the reasons I got the replicator 2x "experimental", which I regret, since that is so far from the truth.  But that's for another show ;)  Thankfully I have a delta printer as well! :D

With so much filament, 64 or so spools at last count, I was just stacking it on my shelves as wide as the shelf, two spools deep and two  or three spools high.  But this was a bit unwieldy and the spools had a tendency to slide, especially if I stacked them three high.

initial prototype no channel, testing
out the strength with filament
support added in (the white) 
I started using peg board to hang my spools of filament from and had everything arranged via ROYGBIV designation, but I noticed that even a few of my ABS spools were taking on moisture, so I'm was sure my PLA that was sitting out in the open too would be troublesome in the future.  You can read about a solution I constructed to help "dry" out spools.  While its a good solution  when needed, I didn't want to have to do this every time so I needed to make sure they remained bagged with desiccant. When I rearranged the peg board I could only fit 2 spools on top of two peg board pegs.  I needed a better solution.


I had an extra IKEA Lustifik shelf and when put side by side i could fit about 6-8 spools per shelf (depending on the thickness of the spools)  which was a much better solution.  You can also flip another Lustifik shelf on top of the initial shelf and attach via bolts however you're left with a "middle shelf" that's about an one inch high. Here is a pic of the starting of the "shelf tower".  As you might guess the"plugs" that attach two units will create a small shelf, which I plan to use for sample filaments I receive from manufacturers or unspooled filament, like laywood, or laybrick.

you can click on any of these pics to make them full size!

I designed the following files to fit between the two units and free up that space.


The rods extend between the two units when you flip the shelving units, the plugs are for the upside unit, where you remove the no scuff feet and insert those plugs so that you can join another unit together.

 


As you can see I print out 8 "halves" and then use the adhesive below, but you can straight acetone to "weld" the two halves together as well.  The larger holes are there to save on material, the smaller holes are there, if you want, to use as an additional method to strengthen the object by using 1.75mm filament which you put adhesive on and then slide into the holes which then are welded/bonded to the plug (as can be seen in the pic on the right) or strut.  After gluing I decided the extra filament welds weren't needed, those struts and plugs are plenty strong!  

The final feature is a channel going down the center to allow you to insert a 2in bolt/machine screw along with a nylon hex nut that fits in the 2nd hole from each side that goes through the tubing on the shelf unit.  With a bit of screwing the hexnut should retract and come to rest between the two circular holes with in the strut and provide extra added strength.  Oh and I got my adhesive at Tap Plastics here in San Jose, CA.  



As you can see in the last photo the print on the delta, this is with ABS, even though it has a heated bed with no "enclosure" the plastic really wants to "warp" and it pulling up the blue tape!

Hope you enjoyed this post and thanks for stopping by!

Thursday, November 11, 2010

Its MAGICKER! - A IKEA LAMP CONVERSION / HACK

Light at Half Power
Magicker is the "style" of the Ikea Lamp, which I don't even think its available anymore, that I use for my bookcase lamps.  The video explains why I did this conversion, which more or less was because these lamps were going through the $5.00 halogen bulbs like there was no tomorrow.  I had to replace both lamps bulbs once a month and the last straw was when I had to replace three bulbs in a months time.  


I have a suspect that it has something to do with the transformers the lamps used as they always ran very, very HOT and I even had one appear to have shorted out and scorched a power outlet not long after purchasing them!  The transformers were just a step down transformer which went from 120V AC to 12V AC.  My power in my apartment has never had a brown out or black out, which is surprising living in California, but I suspect that it has something to do likely being on the same power grid as the Hospital I live near.


So needless to say I decided to ditch the AC transformers and use a universal DC transformer, you know the kind that has a bunch of different barrels/connections on the ends for electronic games, and gadgets. This also saved me from having to wire up in my schematic going from AC to DC, which I was going to build my own LED board.  Then after a quick fry's electronic store trip I stumbled across these kits from digitron (don't bother looking for them on their site, its not listed yet).  The kits were $9.99, a bit pricy i know, but it had everything I wanted.  They're super bright have 6 lights with 3 bright white LED's (so technically 18 individual LED's) and could be used for either 12V AC or DC!  The cool thing is that if you want you could solder up a bunch together in various configurations and still only run one power source! You see they're designed with solder pads on each corner and once that connection is made power will flow along to all that are connected!  NEAT!  


Overall it was a fun conversion and i'm pretty happy with the outcome, the transformers no longer run HOT, and the light is a nice bright white which I can vary at a flick of a switch from just a faint glow for movie watching or full on "daylight" for reading.  


What I'd like to do in a future hack is add maybe a small controller board and wireless so that I can program a time schedule and turn them on/off wirelessly or some other wacky idea, strobing perhaps!


So if you're interested in seeing my explanation, about 8 mins, and then build process, its in time lapse, take a look at the video!





Hope you enjoyed this post and thanks for stopping by!

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