The Rare Earths: Their Occurrence, Chemistry, and TechnologyLevy, Stanley Isaac
Science
The Rare Earths: Their Occurrence, Chemistry, and Technology
Levy, Stanley Isaac
Rare earths
Although low percentage ferro-titanium is usually employed, it has been
stated that high-percentage alloys, and even the element itself, are
immediately taken up by steel if aluminium be added at the same time.
Thus Venator[615] states that if titanium and aluminium be added
together to the bath, both elements are immediately taken up, the
reaction being very rapid and complete; the effects produced by the
titanium are in no way influenced by the presence of the aluminium.
Goldschmidt[616] proposes the use of ferro-titanium containing 24-25 per
cent. of the element, with 3 per cent. of aluminium; this dissolves very
readily, is very effective, and moreover, can be very easily prepared by
the alumino-thermic reaction.
[615] _Stahl Eisen_, 1910, ~30~, 650.
[616] _D. R. P._ 235461, June, 1911.
In some cases, where it is desired to treat a steel both with silicon
and with titanium, ferro-alloys containing both of these elements may be
employed. By reduction of ilmenite or rutile with carbon in an electric
furnace, in presence of silica, Becket[617] obtains alloys of high
titanium and silicon content, which are said to dissolve very easily in
molten steels and to produce improved effects. The Titanium Alloy
Manufacturing Company have also patented[618] the preparation of
titanium-silicon alloys, with or without addition of iron or copper, by
the reduction of a mixture of rutile and quartz.
[617] _U. S. P._ 940665 and 941553 of November, 1909.
[618] _F._ 407858, January, 1910.
Recently the use of ferro-titanium in the manufacture of pig iron has
attracted attention. For this purpose, alloys of very low
titanium-content (0·1-1·0 per cent.) are employed. Addition of very
small amounts of such alloys to the molten metal before casting is said
to have a marked cleansing effect,[619] resulting in much better and
stronger castings.
[619] _Vide_ Slocum, _Chem. Eng._ 1911, ~13~, 257.
Public-domain text, read in full here on John Shaqi.
Reviews
Reviews
No reviews yet
Be the first to share your thoughts on this work.
Elsewhere in the archive
Join the Discussion
Join the discussion
Sign in to leave a comment or review.
Sign InorCreate an account