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Difference between revisions of "Basic Alloy"
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Melding the strength of Titanium with the lightness of Aluminum, Basic Alloys can be used economically to construct durable machine parts. The non-ferrous nature of parts constructed from Basic Alloys and their resistance to oxidization makes them ideal for use in almost any manufacturing environment. When Basic Alloys are infused with a matrix of [[Boron]] fibers and combined with [[Super Alloy]]s, the resulting material is then fabricated into the [[Ship Hull Panels]] used by shipyards throughout the colonies. | Melding the strength of Titanium with the lightness of Aluminum, Basic Alloys can be used economically to construct durable machine parts. The non-ferrous nature of parts constructed from Basic Alloys and their resistance to oxidization makes them ideal for use in almost any manufacturing environment. When Basic Alloys are infused with a matrix of [[Boron]] fibers and combined with [[Super Alloy]]s, the resulting material is then fabricated into the [[Ship Hull Panels]] used by shipyards throughout the colonies. | ||
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*[[Dortmund Station]], [[New Berlin]], [[Rheinland]] | *[[Dortmund Station]], [[New Berlin]], [[Rheinland]] | ||
*[[Fort Bush]], [[New York]], [[Liberty]] | *[[Fort Bush]], [[New York]], [[Liberty]] |
Revision as of 20:42, 29 October 2008
Melding the strength of Titanium with the lightness of Aluminum, Basic Alloys can be used economically to construct durable machine parts. The non-ferrous nature of parts constructed from Basic Alloys and their resistance to oxidization makes them ideal for use in almost any manufacturing environment. When Basic Alloys are infused with a matrix of Boron fibers and combined with Super Alloys, the resulting material is then fabricated into the Ship Hull Panels used by shipyards throughout the colonies.