Compressible Electrode End Face
A graphite electrode having an end face having an integral structure which is compressible when exposed to a torque of at least about 390 Nm which, when employed in an electrode joint, can reduce the tendency of the electrode joint of which it is an element to come unscrewed during furnace operation, and impede oxidation of the joint, without a significant reduction in electrode performance.
1 . A graphite electrode having an end face having an integral structure which is compressible when exposed to a torque of at least about 390 Nm.
2 . The graphite electrode of claim 1 , wherein the structure comprises a plurality of ridges extending from the surface of the end face of the graphite electrode.
3 . The graphite electrode of claim 2 , wherein the ridges extend from the surface of the end face of the graphite electrode to a height of at least about 250 microns.
4 . The graphite electrode of claim 2 , wherein the ridges each have a tip, and the tips of the plurality of ridges are separated by at least about 3 mm on average.
5 . The graphite electrode of claim 1 , wherein the structure comprises a plurality of rounded corrugations extending from the surface of the end face of the graphite electrode.
6 . The graphite electrode of claim 5 , wherein the corrugations extend from the surface of the end face of the graphite electrode to a height of at least about 150 microns.
7 . The graphite electrode of claim 5 , wherein the corrugations each have a rounded top, and the rounded tops of the plurality of corrugations are separated by at least about 1 mm on average.
8 . The graphite electrode of claim 1 , wherein the structure comprises an end face forming an acute angle with respect to the sidewall of the graphite electrode.
9 . The graphite electrode of claim 8 , wherein the acute angle formed by the end face with respect to the sidewall is greater than about 70°.
10 . The graphite electrode of claim 9 , wherein the acute angle formed by the end face with respect to the sidewall is between about 75° and about 89°.
11 . An electrode joint comprising two joined graphite electrodes, wherein at least one of the electrodes has an end face having a structure which is compressible when exposed to a torque of at least about 390 Nm.
13 . The electrode joint of claim 11 , wherein the structure comprises a plurality of ridges extending from the surface of the end face of the graphite electrode.
14 . The electrode joint of claim 11 , wherein the structure comprises a plurality of rounded corrugations extending from the surface of the end face of the graphite electrode.
15 . The electrode joint of claim 11 , wherein the structure comprises an end face forming an acute angle with respect to the sidewall of the graphite electrode.
16 . The electrode joint of claim 15 , wherein the acute angle formed by the end face with respect to the sidewall is greater than about 70°.
17 . A process for preparing an electrode joint, the process comprising providing a first graphite electrode having an end face having a structure which is compressible when exposed to a torque of at least about 390 Nm; providing a second graphite electrode; and threadedly engaging the first graphite electrode with the second graphite electrode using a torque of at least about 390 Nm.
18 . The process of claim 17 , wherein the torque is about 830 Nm to about 8000 Nm.
19 . The process of claim 17 , wherein the compressible structure on the end face of the first graphite electrode comprises a plurality of ridges extending from the surface of the end face of the first graphite electrode.
20 . The process of claim 17 , wherein the compressible structure on the end face of the first graphite electrode comprises an end face forming an acute angle with respect to the sidewall of the first graphite electrode.