Showing posts with label dichroic glass. Show all posts
Showing posts with label dichroic glass. Show all posts

Friday, July 1, 2011

Color Change

Jewelry made with dichroic glass have the ability to 'adapt' to what we are wearing.  This is in part due to the fact that light is already reflecting back at you due to metal layers in the glass.  This reflective property seems to intensify the colors that are near it, making them appear to 'pop' out in the piece.  I did a series of photos using the same pendant in hopes of demonstrating what we see in real life.  I believe the effect is somewhat muted, however you be the judge and see if you notice a difference as you scroll down to each photograph.  Take note of what you notice first when you look at each picture.  What parts of the pendant are your eyes drawn to? 






















Tuesday, September 8, 2009

Sneak Peek @ New Items for Fall


We have finally moved into our house in San Antonio and most of the boxes are unpacked. I finally found my photo studio equipment and took some photos of new designs I've been working on all summer.

This is one of my dragonflies. These have been a challenge because glass wants to shink up to be 1/4" when it is molten and the wings on many of my earlier pieces shrank right off their wee bodies. For a while I was only getting about a 25% success rate, but I've been able to work out *most* of the kinks. I'm really happy with these little guys. I especially like the silver swirls at the ends of the wings.

Sunday, February 22, 2009

What is Dichroic Glass?

I've heard it called all kinds of things.... Dichronic, dichromic, or even dichromatic glass. So just what is this glass that folks just can't seem to remember the name?

The word dichroic literally means 'many colors'. Of these many colors artists are mostly concerned with two main types. These can be classified as both transmitted color and reflective color. Transmitted color is the color you see when you look through a piece of glass. Reflected colors are the colors that bounce back to you looking at the piece directly. (If you are looking at a piece of black backed dichroic glass that has already been fused, what you are seeing are the reflected colors.)

These colors come about as a result of multiple micro-layers of metal oxides that have been deposited onto the glass. NASA developed dichroic glass for use in deep space exploration, satellite mirrors and space suit visors. It has since moved on to be used various other applications, including art. Multiple ultra-thin layers of different metals (gold, silver, titanium, chromium, aluminum, zirconium, magnesium, silicon) are vaporized at extremely high heat in a vacuum chamber along with quartz crystal. These vapors adhere onto the surface of the glass and bind together on a molecular level. The brilliant colors are determined by the type of metal used in the vaporization process.

It's hard to believe that these thin layers of oxides have a total thickness of only 3-5 millionths of an inch! Certain wavelengths of light will either pass through the layers or be reflected, causing an varying array of color to be visible.

After fusing, the color will shift towards the left on the visible color spectrum from its pre-fused state, and depending on the thickness of the dichroic coating, the amount of time and temperature under which it was fired, the number of firings, and the type of base glass used will determine the color that you actually see.

Ok - so that's dichroic glass in tech speak... While I personally find the process facinating, I have to admit that when I first saw the stuff I really just reacted to it on a viseral level. You know, something along the lines of, "Oooo, pretty! Look how shiny...I want it!" I guess if I'm really honest with myself, I must admit that I still react that way even after years of working with it!