Claims
- 1. A pilot plant SAG mill comprising a cylindrical outer chamber having flanges at opposed ends, said cylindrical outer chamber having a diameter of 2.5-5.5 feet and a ratio of length to diameter in the range of greater than 1:1, said cylindrical outer chamber containing a removable grinding chamber in the form of a sleeve, longitudinal lifters and a diaphragm, said removable grinding chamber having a ratio of diameter to length in the range of 3:1 to 1:1 and containing a plurality of steel balls not exceeding 15% of the grinding chamber volume, said removable grinding chamber extending partly down the length of the cylindrical outer chamber and having said longitudinal lifters attached to the internal surface of the sleeve, said lifters being capable of lifting steel balls and ore located in the removable grinding chamber during rotation of the cylindrical chambers, said removable grinding chamber having means at one end for receiving particulate ore from a feed hopper and said removable diaphragm at the opposed end, said removable diaphragm having outlet ports therein for discharge of ground particulate ore into the cylindrical outer chamber, said cylindrical outer chamber having discharge ports for discharge of ground particulate from the SAG mill, and a means to rotate the cylindrical outer chamber about a longitudinal axis.
- 2. The SAG mill of claim 1 in which the means to rotate the cylindrical outer chamber is by use of a vari-speed chain or V-belt drive.
- 3. The SAG mill of claim 1 in which the diameter of the cylindrical grinding chamber is 2.0 to 5.0 feet.
- 4. The SAG mill of claim 2 in which the diameter:length ratio of the grinding chamber is in the range of 3:1 to 1:1.
- 5. A method of testing the milling properties of a particulate ore, comprising:
feeding particulate ore to a SAG mill, said SAG mill comprising a cylindrical outer chamber having flanges at opposed ends, said cylindrical outer chamber having a diameter (d) of 2.5-5.5 feet and a ratio of length to diameter in the range of greater than 1:1, said cylindrical outer chamber containing a removable grinding chamber in the form of a sleeve, longitudinal lifters and a diaphragm, said removable grinding chamber having a ratio of diameter to length in the range of 3:1 to 1:1, said removable grinding chamber extending partly down the length of the cylindrical outer chamber and having said longitudinal lifters attached to the internal surface of the sleeve, said lifters being capable of lifting steel balls and ore located in the removable grinding chamber during rotation of the cylindrical chambers, said removable grinding chamber having means at one end for receiving particulate ore from a feed hopper and said removable diaphragm at the opposed end, said removable diaphragm having outlet ports therein for discharge of ground particulate ore into the cylindrical outer chamber, said cylindrical outer chamber having discharge ports for discharge of ground particulate from the SAG mill, and a means to rotate the cylindrical outer chamber about a longitudinal axis, said removable chamber containing a plurality of steel balls having a diameter in the range of 1 to 4 inches, said steel balls occupying not more than 15% of the volume of the removable grinding chamber; rotating said cylinder about a longitudinal axis at 65-80% of critical speed (Sc), said critical speed in rpm being defined as Sc=76.63/{square root}d, where d is the grinding chamber inside diameter in feet and discharging ground particulate ore through said removable diaphragm into said cylindrical grinding chamber, and discharging said ground particulate ore from the cylindrical chamber.
- 6. The method of claim 5 in which the ground particulate ore is discharged discharge ports in the cylindrical outer chamber, located in sequence in circumferential rows down the length of the cylindrical outer chamber.
- 7. The method of claim 5 in which the cylindrical grinding chamber is rotated at 73-75% of critical speed.
- 8. The method of claim 5 in which the diameter of the cylindrical grinding chamber is 2 to 5 feet.
- 9. The method of claim 5 in which the diameter:length ratio of the cylindrical grinding chamber is in the range of 3:1 to 1:1.
CROSS-REFERENCE TO RELATED APPLICATION
[0001] The present application is claiming priority of U.S. Provisional Patent Application Serial No. 60/294,860, which was filed on May 31, 2001.
Provisional Applications (1)
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Number |
Date |
Country |
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60294860 |
May 2001 |
US |