(57) The coaxial cable (10) has a metallic signal-transmitting core (12), a dielectric
component (14) which is resistant to temperatures of at least about 1000 degrees C.,
preferably 1000-1100 degrees C., surrounding the core, and a sheath (16) of stainless
steel surrounding the dielectric component and core. The outer surface (20) of the
sheath (16) has an adherent protective black oxide layer (22) which comprises chromium
oxide, preferably in the form of chromic oxide, with essentially the remainder of
the black oxide layer being iron oxide. The stainless steel sheath (16) preferably
has about 18-20 weight percent of chromium with essentially the remainder being iron.
The black oxide layer (22) is formed on the outer surface (20) of the assembled coaxial
cable (18), in accordance with the present method, by passing the coaxial cable through
a furnace having a hydrogen-free, wet-nitrogen atmosphere, at a temperature of at
least about 1000 degrees C., preferably about 1000-1100 degrees C., and for a residence
time in the furnace of about two to about five minutes.
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