Showing posts with label anodized aluminum. Show all posts
Showing posts with label anodized aluminum. Show all posts

Friday, August 28, 2020

Redoing things

 Since there's not a lot happening just now by way of sales (galleries mostly closed, shows cancelled) I've been spending some time redoing some older pieces.  Sometimes there'll be a piece that I almost like but something seems a bit wrong.  Often it takes me a while to decide just what it is that I don't like, or, once I figure that out, how best to fix it.  Sometimes it just takes a small tweak and sometimes a major redo.  Here is one of each:

When I made this pendant I had just figured out the square and circle (hexagon actually) shapes, and I've used them several times since.  So I liked the shapes, but I didn't quite like the shape of the pendant--too wide and flat, sticking out way beyond the chain. 

One of the recurring problems I have is that I make individual units, often not knowing just how I'll arrange them till after I've made several.  Then when I've decided I have to attach some sort of rings in the proper places as attachment points.  I could do this easily with open rings, i.e. ones that  aren't welded shut. But since I have thread at each joint, my worry is that a thread will find its way through the inevitable space where the 2 ends of the ring meet.  So I always want a closed ring.  But a closed ring has to be put in place as you're building the structure, and you often don't know where you'll want the

join to be.  In the first iteration I joined the shapes by putting a pair of tetrahedrons between them.  But that meant I had to join them at the places where the edge of the shape was a crosswise tube, not a point.  And that made the overall shape of the piece so long and wide. For the second version I came up with a way to join a point on the square to a crosswise tube on each circle and I like that better.


The second redo was a complete rethinking. I've always liked the colored piece shown first.  But it had some problems.  The colored tubes, which are anodised aluminum, are quite a bit bigger in diameter than the silver ones, and I've always felt that those bigger openings at the end of each tube were a problem.  Early on, my solution was to put a seed bead at the end of each tube and treat the bead-tube-bead as a single unit.  However, that triples the joints, and creates that many more places where if the thread tension is just a bit off the piece gets looser.  In general that method tends to make the structure much less firm.This piece has been around for a few years, and there were starting to be places where you could see thread between ajacent beads in a way I didn't like.The other problem is the structure puts a lot of  "stuff" at the back of your neck.  I used to be quite rigid about maintaining a structure all the way around the back, which can make them harder to wear, especially when, as here, the structure is relatively wide and flat.  A rounder shape going around the back works better.

The problem I had, though, is is that without the seed beads at each end,the colored tubes were too short to make octs that wouldn't zigzag, and I wanted them to run straight.  And I can no longer get those aluminum tubes, so I couldn't cut longer ones.  I could have cut a whole set of silver tubes in custom lengths to make the existing colored tubes work.  Instead I redid the whole thing in RAW and eliminated the color.  While I was at it I made the arrow heads more pronounced, added an extra arrow, and made the necklace one unit narrower and the back more wearable.  I like it  a lot, but I still miss the color, and I'm working on a way to do the new design in octahedrons with color.  More on that later.

Thursday, January 14, 2016

Some math, some design



 In some earlier posts, I've talked about some necklaces I've made out of octahedrons, where a long tube, often a colored aluminum one, acts as a hypotenuse to create octs that can stack in a way similar to the cubes in RAW.  This works well for necklaces, where it's nice to have the structures lying somewhat flat, but it doesn't work so well in a bracelet, where you would generally want them to stand up.  I needed a way to join 2 standing up octs so they'd be at an angle to each other.  After some trial and error, I  came up with a solution.  If I made an oct so that the triangle on the top used tubes that were half as long as the tubes on the bottom, I'd get an oct that if you looked at it from the top would look like one of the pictures
below, with the little triangle in the middle being the top of the oct and the bigger outside one being the bottom.  And the triangle "walls" that connected them would be perpendicular to the top and bottom ones ( actually there are  are 6 triangles connecting them and every other one is perpendicular.  If I used the pattern on the left to join 2 of my squarish octs, they'd be at right angles to one another; if I used the other, equilateral one they'd have a 60 degree angle.  That's what I used, and started to make the bracelet  shown below.  I was pleased
 with it from a structural standpoint, but it didn't seem to have enough color, and the aluminum tubes seemed to sort of get lost in all the dark sterling.  I decided that the problem was that the joining octs didn't have any colored tubes, and also that the colored tubes on the inside of the bracelet were kind of lost.  So I took it apart  and moved all the tubes to the outer wall of the bracelet, using them in both the squarish octs and the joining octs.  Both the bracekets are incomplete because I was gradually taking apart the first one to build the second one.  But I hope  they're complete enough that you can get the idea

of what they look like.

Monday, April 20, 2015

New octahedron piece

This is sort of a follow up on a post I did in January.  In that post I showed and talked about a necklace I had made in which I built octahedrons sized so that adjoining faces were almost at right angles to one another.  Each oct had a "waist" made of 2 short ( 10mm) tubes and 2 long gold filled tubes.  The angles weren't quite right angles because the 25mm gold filled tubes weren't quite long enough to be hypotenuses.  That would have required tubes of about 27mm, and I like to use stock sizes where I can.  So  on the sides of the piece the octs zigzagged a bit.
  In that post I mentioned wanting to use this idea to make a piece that was something on the order of a tic-tac-toe grid.  When I started to do it with the zigzagging rows of octs, I found that the intersecting rows weren't quite at right angles to one another.  To get that, I really did need octs that had right angles between their faces, so using the same 20 mm beads on the non-waist edges, I really did need 27mm waist tubes.
  It turns out the perfect solution was to use a 25mm tube with  a #11 seed bead at each end.  I wanted to use my anodised aluminum tubes instead of the gold filled ones, so that each chain of octs would have a different color, and I've found that with the aluminum tubes I'm pretty much always happier if I put a seed bead at each end of the tube.  That's because the aluminum tubes are quite a bit fatter than the silver ones, and so the open hole at each end of the tube is unattractive.  The addition of the seed beads solved both problems.

Friday, August 29, 2014

sterling silver tubes

 Buying and cutting those colored aluminum tubes that I've talked about in the last few posts has started me off on a tear.  I've thought for a while about using oxidized sterling silver instead of oxidized copper, but was put off by having to cut the tubes myself.  At the same time I knew that there were things I couldn't do with the copper tube lengths I had, that I could do if I could control the length myself.  So as soon as I had worked a bit with the aluminum tubes, I found myself buying silver tubes and cutting them up too.
  As a practical matter, the price difference between copper and silver isn't so very great because the necklaces don't actually have that much metal in them. They're light as a feather.  In fact, that may be a problem in some pieces down the road.  On many of my copper pieces I used some 18mm melon shaped beads, mostly to add a little weight to make the piece hang better.  But those same beads in silver are pretty pricey because they have a lot of silver in them.  For now, the time it takes to cut and, more importantly, de-burr the cut tubes adds more to the cost of the work than the difference in metal prices.  And I think silver has more customer appeal than copper.
   The piece on top, with the tetrahelixes, was my first one with oxidized sterling.  I find it doesn't oxidize as dark as the copper does, at least using liver of sulphur.  There may be other chemicals that make it darker if I decide I want that.  For now this is OK.  I felt I needed seed beads at the ends of the aluminum tubes, so I used them at the ends of the
silver tubes too.  On the second piece, below, I used them just on the aluminum, not on the silver.  As I was cutting the silver, I found I was seduced by how pretty the bright silver was, so for the second piece, I left it bright (also the dark blue and purple show up better against the bright silver).  However, as a practical matter, I don't want to spend a lot of time trying to clean silver, so I think I'll mostly darken it.  I've looked at a lot of Flora Book's work with silver tubes, and it's so beautiful it tempts me to do more with bright silver. I'll just have to see as I go along.
  On the bottom piece you can see the advantage of cutting my own tubes.  It's a simple chain of octahedrons.  But a chain of octahedrons would normally form a straight line.  In order to get the curve you need for a necklace I had to make the triangle on the outside edge longer than the triangle on the inside edge.
Here's where some trig would have come in handy in figuring out just how much longer, but I managed to figure it out with "lesser" math, and it came out right.

Friday, July 18, 2014

colored tubes

   I just got my first shipment of colored (anodized aluminum) tubes, and I'm loving them.  I've been wanting to make some pieces that are quite open, as all my tube pieces are, but still have a bit more presence.  The aluminum tubes accomplish this in 2 ways.  First, obviously, they're red.  But also, they're fatter than the oxidized copper tubes.  The copper ones are 1.5 mm in diameter, and the aluminum ones are 1/16" which is almost 2mm.  Because the tubes are relatively big, I found I needed seed beads at the ends, as having 3 big raw tube ends at each point of 
a tetrahedron was unattractive.  I had used #11 beads at the ends of copper tubes in the past, but I thought that the fatter tubes might "want" a bigger bead.  So I tried it with #8s.  But I didn't quite like it so I tried #11 beads (this is all in the 1st picture) and I liked that better.  A #11 bead fits quite nicely into the hole in the red tube.
   Then I had to figure out how to combine the red tubes with the blackened copper ones.  When I cut up the 1st 1' tube, I got 14 beads, but they were just a hair shorter than the long copper ones.  So I thought I might put seed beads only on the ends of the red tubes, and not the black ones, and that would even things out.  I did that in the 1st tet in the 2nd picture, and it pretty much worked, in terms of making the sides even.  But I wasn't sure I liked it. so I did a second tet in which all the tubes had beads at the ends.  I liked that better, even though the lengths weren't quite right.  On my next 1' tube I lengthened the individual tubes just a bit and got just 13 tubes out of a foot, but the length was better. 
  Actually, I need to work on getting tubes of a consistent length.  The red ones were better than the gold filled ones I did a few weeks ago, and the last red tube I did was better than the first,  But they're still not as consistent as I'd like.  Rio Grande sells a tube cutter that you can set to a length, and that should improve both consistency and speed.  I want to play around with the lengths of the tubes, but it will be trial and error as to how a given length affects the geometry of a piece, and I can't do much trial and error without wasting beads, so that's a problem.  I imagine there are CAD type programs where you could  play with  polyhedra that have sides of various lengths, but I don't know what they would be.  The only other thing I can think of is to buy unanodized aluminum, which is really cheap ( something like $.35/ft) and play with those.  That, of course, is expensive in time.  Anyway, for now I'm having great fun with my new red tubes.