IP Library Granted Patent US 12,545,562
Granted Patent B1
US 12,545,562 · App. 17/662,344 · Granted Feb 10, 2026

Electrode translation control system for an electric arc furnace

Inventor: Scott Michael Ullom (Hudson, WI)
B66F7/08F27D3/00F27D19/00F27D2003/0065
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Quick Facts
Patent No.
US 12,545,562
App. No.
17/662,344
Granted
Feb 10, 2026
Kind
B1
Abstract

An electrode lift system for an electric arc furnace (EAF) equipped with an electrode vertical translation control system that includes (i) a pump for pumping hydraulic fluid from a reservoir to a electrode lifting hydraulic cylinder, (ii) a primary single action proportional control valve in hydraulic communication between the pump and the electrode lifting hydraulic cylinder via a first hydraulic line and in hydraulic communication between the electrode lifting hydraulic cylinder and the reservoir via a second hydraulic line, and (iii) a secondary proportional valve in fluid communication with the second hydraulic line between the primary single action proportional control valve and the reservoir. The primary single action proportional control valve effects controlled hydraulically powered vertical lifting of the at least one electrode when actuated into a first position, and hydraulically unpowered gravity induced vertical dropping of the at least one electrode when actuated into a second position. The secondary proportional valve effects controlled gravity induced flow of hydraulic fluid from the electrode lifting hydraulic cylinder to the reservoir through the second hydraulic line so as to effect controlled drop of the one or more electrodes.

Claims (26)

1 . An electric arc furnace electrode lift subsystem, comprising:

(a) at least one electrode,

(b) an electrode lifting hydraulic cylinder, and

(c) an electrode vertical translation control system, including at least:

(i) a pump for pumping hydraulic fluid from a reservoir to the electrode lifting hydraulic cylinder,

(ii) a primary single action proportional control valve in hydraulic communication between the pump and the electrode lifting hydraulic cylinder via a first hydraulic line and in hydraulic communication between the electrode lifting hydraulic cylinder and the reservoir via a second hydraulic line, the primary single action proportional control valve operable for (A) effecting controlled hydraulically powered vertical lifting of the at least one electrode when actuated into a first position whereby hydraulic fluid is pumped via the first hydraulic line into the electrode lifting hydraulic cylinder, and (B) effecting hydraulically unpowered gravity induced vertical dropping of the at least one electrode when actuated into a second position whereby hydraulic fluid flows under force of gravity via the second hydraulic line from the electrode lifting hydraulic cylinder to the reservoir, and

(iii) a secondary proportional valve in fluid communication with the second hydraulic line between the primary single action proportional control valve and the reservoir operable for effecting controlled gravity induced flow of hydraulic fluid from the electrode lifting hydraulic cylinder to the reservoir through the second hydraulic line so as to effect controlled drop of the one or more electrodes.

2 . The electric arc furnace electrode lift subsystem of claim 1 comprising three electrodes.

3 . The electric arc furnace electrode lift subsystem of claim 1 wherein the one or more electrodes are cantilevered by at least one electrode retention arm, and the electrode lifting hydraulic cylinder is operable for vertically translating the at least one electrode retention arm.

4 . The electric arc furnace electrode lift subsystem of claim 1 wherein the secondary proportional valve is a proportional relief valve.

5 . The electric arc furnace electrode lift subsystem of claim 1 wherein the secondary proportional valve is controlled by a remotely located controller.

6 . The electric arc furnace electrode lift subsystem of claim 1 wherein the secondary proportional valve is controlled by a remotely located feed-back controller based upon sensed upstream hydraulic pressure acting upon the secondary proportional valve.

7 . The electric arc furnace electrode lift subsystem of claim 1 wherein operation of the electric arc furnace is controlled by a main programmable logic controller and the secondary proportional valve is automatically controlled by the main programmable logic controller based upon operational parameters monitored by the main programmable logic controller.

8 . An electric arc furnace electrode lift subsystem, comprising:

(a) three electrodes,

(b) an independently operable electrode lifting hydraulic cylinder for each electrode, and

(c) an electrode vertical translation control system for independently controlling each electrode lifting hydraulic cylinder, the electrode vertical translation control systems in fluid communication with a common pump for pumping hydraulic fluid from a reservoir to the electrode lifting hydraulic cylinder and each electrode vertical translation control system including at least:

(i) a primary single action proportional control valve in hydraulic communication between the pump and the electrode lifting hydraulic cylinder via a first hydraulic line and in hydraulic communication between the electrode lifting hydraulic cylinder and the reservoir via a second hydraulic line, the primary single action proportional control valve operable for (A) effecting controlled hydraulically powered vertical lifting of the attached electrode when actuated into a first position whereby hydraulic fluid is pumped via the first hydraulic line into the electrode lifting hydraulic cylinder, and (B) effecting hydraulically unpowered gravity induced vertical dropping of the attached electrode when actuated into a second position whereby hydraulic fluid flows under force of gravity via the second hydraulic line from the electrode lifting hydraulic cylinder to the reservoir, and

(ii) a secondary proportional valve in fluid communication with the second hydraulic line between the primary single action proportional control valve and the reservoir operable for effecting controlled gravity induced flow of hydraulic fluid from the electrode lifting hydraulic cylinder to the reservoir through the second hydraulic line so as to effect controlled drop of the attached electrode.

9 . An electric arc furnace electrode lift subsystem, comprising:

(a) three electrodes,

(b) an independently operable electrode lifting hydraulic cylinder for each electrode, and

(c) an electrode vertical translation control system for independently controlling each electrode lifting hydraulic cylinder, each electrode vertical translation control system including at least:

(i) a pump for pumping hydraulic fluid from a reservoir to the electrode lifting hydraulic cylinder,

(i) a primary single action proportional control valve in hydraulic communication between the pump and the electrode lifting hydraulic cylinder via a first hydraulic line and in hydraulic communication between the electrode lifting hydraulic cylinder and the reservoir via a second hydraulic line, the primary single action proportional control valve operable for (A) effecting controlled hydraulically powered vertical lifting of the attached electrode when actuated into a first position whereby hydraulic fluid is pumped via the first hydraulic line into the electrode lifting hydraulic cylinder, and (B) effecting hydraulically unpowered gravity induced vertical dropping of the attached electrode when actuated into a second position whereby hydraulic fluid flows under force of gravity via the second hydraulic line from the electrode lifting hydraulic cylinder to the reservoir, and

(iii) a secondary proportional valve in fluid communication with the second hydraulic line between the primary single action proportional control valve and the reservoir operable for effecting controlled gravity induced flow of hydraulic fluid from the electrode lifting hydraulic cylinder to the reservoir through the second hydraulic line so as to effect controlled drop of the attached electrode.

Continuity (1)
Provisional Application 63188119 · May 13, 2021
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