--- Ronn!Blankenship <[EMAIL PROTECTED]> wrote:
> No.  Naturally-occurring uranium is about 99.3%
> U-238 (half-life 4.5 
> billion years) and 0.7% U-235.  Only the U-235 is
> fissionable, so the two 
> isotopes must be separated for use in nuclear power
> plants or nuclear 
> bombs.  The left-over non-fissionable material (99.6
> to 99.7% U-238 IIRC, 
> as the separation process is not perfect) is what is
> called "depleted 
> uranium" and used in places where a metal which is
> significantly denser 
> than lead is desired, such as armor-piercing rounds
> and as the 
> counterweights for the control surfaces on aircraft.
>  (From 
>
<<http://www.science.co.il/PTelements.asp?s=Density>>,
> the density of 
> uranium is 17.95 g/cm^3, and the density of lead is
> 11.35 g/cm^3, so a 
> given volume of uranium has 1.58 times the mass of
> the same volume of lead.)
> 
> -- Ronn! :)

Hey Ronn.  I believe that there's actually more to it
than just that.  DU is used in both armor and
armor-piercing rounds.  This isn't terribly surprising
- so it steel, after all.  It's useful in armor
because it's very dense and very tough (osmium, for
example, is denser than Uranium but also melts in your
hand).  It's useful in projectiles for both those
reasons, plus an interesting third one - DU has some
neat mechanical properties.  A round made of DU that
impacts instead of deforming as it punches through the
armor (the way steel would) actually flakes off in
bits and pieces, and the flakes tend to ignite.  Thus
a DU sabot round that hits an enemy tank both smashes
through the armor _and_ ignites the flammable objects
(ammunition and people, chiefly) inside.

Gautam

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