Claims
- 1. A separator for separating gold particles from gold ore, comprising:
- a three-legged frame including a front part having first and second legs and a top part interconnecting said first and second legs, and a rear part comprising a single third leg having an upper end connected to the top part of said front part, said front and rear parts of the frame extending downwardly from their connection, and diverging apart as they extend downwardly;
- a transverse frame member extending between and interconnecting said first and second legs;
- a rotatable gold pan mounted on said transverse frame member for rotation about an axis, said gold pan including a bottom, a generally frusto-conical sidewall having a small diameter inner end connected to said bottom and a large diameter outer end, a hub cup at the center of the bottom, and a spiral rib inside said pan, spiraling inwardly from the outer end of the sidewall to said hub cup, first on the sidewall of the pan and then on the bottom of the pan;
- said mounting frame mounting the pan to lean backwards from vertical, into a position with said sidewall presenting a lower portion which slopes downwardly and forwardly from said bottom;
- wherein said hub cup has an open forward end where the hub cup intersects the bottom, and a closed bottom;
- wherein said cup slopes downwardly and rearwardly from said forward end to said closed bottom;
- wherein said spiral rib includes a radially inwardly directed surface which, below the hub cup, slopes forwardly and upwardly, both in the region of the sidewall and in the region of the bottom;
- a drive motor for rotating the pan, said drive motor being positioned on the frame rearwardly of the pan and above the axis;
- a drive transmission interconnecting the drive motor and the pan;
- wherein in use the pan is rotated by said drive motor in a direction causing particles on the spiral rib to be moved along the spiral rib to the hub cup; and
- wherein in use gold ore is introduced into the pan while the pan is rotating, wherein relatively large particles of the ore gravitate radially of the pan and move across the rib and out from the pan, and wherein small gold particles are held by the rib and are moved by the rib inwardly along the spiral path of the rib into the hub cup.
- 2. A separator according to claim 1, comprising an upper housing mounted on the front part of the frame, wherein said drive motor is located within said upper housing.
- 3. A separator according to claim 1, wherein the transmission comprises a first pulley attached to the drive motor, a second pulley attached to the pan, and a belt interconnecting the two pulleys.
- 4. A separator according to claim 1, wherein the transmission comprises a two stage first pulley attached to the drive motor, a two stage second pulley attached to the pan, and a drive belt interconnecting the two pulleys, said first pulley including a small diameter stage and a large diameter stage and said second pulley including a large diameter stage and a small diameter stage, wherein the drive belt is positionable to interconnect the small diameter stage of the first pulley with the large diameter stage of the second pulley or the large diameter stage of the first pulley with the small diameter stage of the second pulley.
- 5. A separator according to claim 3, wherein said transverse frame member is adjustably affixable to the first and second legs, allowing movement of the transverse frame member for purposes of providing a desired tension in the drive belt.
- 6. A separator according to claim 4, wherein said transverse frame member is adjustably affixable to the first and second legs, allowing movement of the transverse frame member for purposes of providing a desired tension in the drive belt.
- 7. A separator according to claim 1, wherein the front part of said frame is generally U-shaped and its top part is a bight interconnecting the first and second legs, said separator further including a first connector member connected to said bight, said first connector member including a body, a transverse bolt hole extending through said body and a first side part which in use is generally vertically disposed, and said separator further including a second connector member at the upper end of the third leg, said second connector member including a body having a transverse bolt receiving opening and a second side part which in use is generally vertically disposed and is against the first side part, and a bolt insertable through one of the transverse holes and threadably engageable with threads in the other transverse hole, whereby the third leg can be pivotally moved into a desired position relative to the first and second legs and then the bolt can be tightened to draw the two side parts of the two connector members together, into tight engagement, for substantially holding the third leg in position relative to the first and second legs.
- 8. A separator according to claim 7, wherein the first and second side parts of the connector members include interfitting elements which lock the connector members against relative rotation when the bolt is tightened to draw the interfitting elements into engagement with each other.
- 9. A separator according to claim 7, wherein the front part of the frame is a single tubular member bent into a substantially U-shape, and wherein said first connector member has a mounting end portion which includes a concave surface in contact with the tubular member at the bight, and a fastener which secures the mounting end portion of the first connector member to said tubular member at the bight.
- 10. A separator according to claim 7, wherein the third leg of the frame is a tubular member and said second connector member includes a mounting end portion which extends into said tubular member at the upper end of the third leg.
- 11. A separator according to claim 9, wherein the third leg of the frame is a tubular member and said second connector includes a mounting end portion which extends into said tubular member at the upper end of the third leg.
- 12. A separator for separating gold particles from gold ore, comprising:
- a pan mounting frame;
- a rotatable gold pan mounted on said frame for rotation about an axis, said gold pan including a bottom, a generally frusto-conical sidewall having a small diameter inner end connected to said bottom and a large diameter outer end, a hub cup at the center of the bottom, and a spiral rim inside said pan, spiraling inwardly from the outer end of the sidewall to said hub cup, first on the sidewall of the pan and then on the bottom of the pan;
- said pan mounting frame mounting the pan to lean backwards from vertical, into a position with said sidewall presenting a lower portion which slopes downwardly and forwardly from said bottom;
- wherein said hub cup has an open forward end where the cup intersects the bottom, and a closed bottom;
- wherein said cup slopes downwardly and rearwardly from said forward end to said closed bottom;
- wherein said spiral rib includes a radially inwardly directed surface which, below the hub cup, slopes forwardly and upwardly, both in the region of the sidewall and in the region of the bottom;
- a drive motor on said frame;
- a two speed drive transmission interconnecting the drive motor and the pan;
- wherein in use the pan is rotated by said drive motor and transmission at a selected speed and in a direction causing particles on the spiral rib to be moved along the spiral rib to the hub cup; and
- wherein in use gold ore is introduced into the pan while the pan is rotating, wherein relatively large particles of the ore gravitate radially of the pan, and move across the rib and out from the pan, and wherein small gold particles are held by the rib and are moved by the rib inwardly along the spiral path of the rib into the hub cup.
- 13. A separator according to claim 12, wherein the drive motor is positioned on the frame rearwardly of the pan and above the axis, and wherein the transmission comprises a first pulley attached to the drive motor, a second pulley attached to the pan, and a belt interconnecting the two pulleys.
- 14. A separator according to claim 13, wherein the first pulley is a two stage pulley and includes a small diameter stage and a large diameter stage, wherein the second pulley is a two stage pulley and includes a large diameter stage and a small diameter stage, and wherein the drive belt is positionable to interconnect the small diameter stage of the first pulley with the large diameter stage of the second pulley or the large diameter stage of the first pulley with the small diameter stage of the second pulley.
- 15. A separator according to claim 12, wherein the drive motor and pan are positioned on the mounting frame to each counterbalance the other.
- 16. Apparatus for separating gold particles from gold ore, comprising:
- a frame including a front part having first and second legs and a top part interconnecting said first and second legs, and a rear part comprising at least one leg, said rear part having an upper end connected to the top part of said front part, said front and rear parts of the frame extending downwardly from their connection, and diverging apart as they extend downwardly;
- a transverse frame member extending between and interconnecting said first and second legs, said frame member supporting a rotatable drive element;
- a rotatable vessel mountable on said drive element, for rotation about an axis, said vessel including a bottom, a sidewall and a mounting shaft at the center of the bottom, said mounting shaft being connected to the drive element;
- a drive motor for rotating the vessel;
- a drive transmission interconnecting the drive motor and the drive element; and
- wherein in use gold ore is introduced into the vessel and the vessel is rotated.
- 17. Apparatus for separating gold particles from gold ore, comprising:
- a frame including a front part having first and second legs and a top part interconnecting said first and second legs, and a rear part comprising at least one leg, said rear part having an upper end connected to the top part of said front part, said front and rear parts of the frame extending downwardly from their connection, and diverging apart as they extend downwardly;
- a transverse frame member extending between and interconnecting said first and second legs, said frame member supporting a rotatable drive element;
- a rotatable vessel mountable on said drive element, for rotation about an axis, said vessel including a bottom, a sidewall and a mounting shaft at the center of the bottom, said mounting shaft being connected to the drive element;
- a drive motor for rotating the vessel;
- a drive transmission interconnecting the drive motor and the drive element;
- wherein in use gold ore is introduced into the vessel and the vessel is rotated;
- wherein the vessel is a gold pan, said sidewall is a generally frusto-conical sidewall having a small diameter inner end connected to said bottom and an open, large diameter outer end, said gold pan including a hub cup at the center of the bottom and a spiral rib inside said pan, spiraling inwardly from the outer end of the sidewall to said hub cup, first on the sidewall of the pan and then on the bottom of the pan;
- said mounting frame mounting the pan to lean rearwardly form vertical, into a position with said sidewall presenting a lower portion which slopes downwardly and forwardly from said bottom;
- wherein said hub cup has an open forward end where the hub cup intersects the bottom, a closed rear end, and wherein said cup slopes downwardly and rearwardly from said forward end to said rear end;
- wherein said spiral rib includes a radially inwardly directed surface which, below the hub cup, slopes forwardly and upwardly, both in the region of the sidewall and in the region of the bottom;
- wherein in use the pan is rotated by said drive motor in a direction causing particles on the spiral rib to be moved along the spiral rib to the hub cup; and
- wherein in use gold ore is introduced into the pan while the pan is rotating, wherein relatively large particles of the ore gravitate radially of the pan and move across the rib and out from the pan, and wherein small gold particles are held by the rib and are moved by the rib inwardly along the spiral path of the rib into the hub cup.
- 18. Apparatus for separating gold particles from gold ore, comprising:
- a frame including a front part having first and second legs and a top part interconnecting said first and second legs, and a rear part comprising at least one leg, said rear part having an upper end connected to the top part of said front part, said front and rear parts of the frame extending downwardly from their connection, and diverging apart as they extend downwardly;
- a transverse frame member extending between and interconnecting said first and second legs, said frame member supporting a rotatable drive element;
- a rotatable vessel mountable on said drive element, for rotation about an axis, said vessel including a bottom, a sidewall and a mounting shaft at the center of the bottom, said mounting shaft being connected to the drive element;
- a drive motor for rotating the vessel;
- a drive transmission interconnecting the drive motor and the drive element;
- wherein in use gold ore is introduced into the vessel and the vessel is rotated;
- wherein the vessel is a mill vessel and it includes mill elements, and
- wherein in use the vessel is rotated and during rotation the mill elements tumble and contact the ore and mechanically dislodge gold particles from the ore.
- 19. A method of separating gold particles from gold ore, comprising:
- providing a rotatable gold pan which includes a bottom, a generally frusto-conical sidewall, a hub cup at the center of the bottom, and a spiral rib inside said pan which spirals inwardly from the outer end of the sidewall to said hub cup, first on the sidewall of the pan and then on the bottom of the pan;
- providing a mounting frame for the pan;
- mounting the pan on the mounting frame for rotation about an axis which extends axially of the hub cup;
- positioning the pan on the frame so that the pan leans rearwardly and a lower portion of the pan sidewall slopes downwardly and forwardly from the bottom of the pan, and the spiral rib slopes forwardly and upwardly from the inner surface of the pan;
- providing a drive motor on said frame, connected to the gold pan to rotate the gold pan in a direction causing particles on the spiral rib to move inwardly along the spiral rib towards the hub cup; and
- introducing gold ore into the lower portion of the pan while rotating the pan, to cause relatively large particles to gravitate radially of the pan and move across the rib and out from the pan, and cause small particles to fall on the rib and be held by the rib and be moved by the rib inwardly along the spiral path of the rib into the hub cup.
- 20. The method of claim 19, comprising providing a mounting frame for the pan which includes a front part having an upper part and a rear part having an upper part which is adjustably connectable to the upper part of the front part, mounting the pan on said front part, and adjustably affixing the position of the rear part of the frame to the front part of the frame for determining the attitude of the pan.
- 21. The method of claim 19, comprising introducing dry gold ore into the lower portion of the pan while rotating the pan at a first speed, to cause relatively large particles to gravitate radially of the pan and move across the rib and out from the pan, and cause small particles of gold and some ore to fall on the rib and be held by the rib and be moved by the rib inwardly along the spiral path of the rib into the hub cup, removing the collected gold particles and ore from the hub cup, mixing such gold particles and ore with water and introducing such mixture into the lower portion of the pan while rotating the pan at a selected second speed, to cause the ore to gravitate radially of the pan and move across the rib and out from the pan, and cause the small gold particles to fall on the rib and be held by the rib and be moved by the rib inwardly along the spiral path of the rib into the hub cup.
RELATED APPLICATIONS
This application is a continuation-in-part of U.S. patent application Ser. No. 07/817,134, filed Jan. 6, 1992, entitled "Rotating Gold Pan For Separating Gold Particles From Ore" still pending.
US Referenced Citations (14)
Foreign Referenced Citations (1)
Number |
Date |
Country |
371153 |
Mar 1923 |
DE2 |
Continuation in Parts (1)
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Number |
Date |
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Parent |
817134 |
Jan 1992 |
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