US731037A - Diamagnetic separator. - Google Patents
Diamagnetic separator. Download PDFInfo
- Publication number
- US731037A US731037A US13881703A US1903138817A US731037A US 731037 A US731037 A US 731037A US 13881703 A US13881703 A US 13881703A US 1903138817 A US1903138817 A US 1903138817A US 731037 A US731037 A US 731037A
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- US
- United States
- Prior art keywords
- diamagnetic
- separator
- pole
- pockets
- incline
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Expired - Lifetime
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B03—SEPARATION OF SOLID MATERIALS USING LIQUIDS OR USING PNEUMATIC TABLES OR JIGS; MAGNETIC OR ELECTROSTATIC SEPARATION OF SOLID MATERIALS FROM SOLID MATERIALS OR FLUIDS; SEPARATION BY HIGH-VOLTAGE ELECTRIC FIELDS
- B03C—MAGNETIC OR ELECTROSTATIC SEPARATION OF SOLID MATERIALS FROM SOLID MATERIALS OR FLUIDS; SEPARATION BY HIGH-VOLTAGE ELECTRIC FIELDS
- B03C1/00—Magnetic separation
- B03C1/02—Magnetic separation acting directly on the substance being separated
- B03C1/23—Magnetic separation acting directly on the substance being separated with material carried by oscillating fields; with material carried by travelling fields, e.g. generated by stationary magnetic coils; Eddy-current separators, e.g. sliding ramp
Definitions
- arating diamagnetic substances from mix tures containing them or diamagnetic substances of varying diamagnetic susceptibilities from each other by feeding the material to be separated into the interpolar space through zones adjacent to the faces of the pole-pieces and continuing the material in the magnetic field until the particles to be separated have gradually moved out toward the central neutral plane or zone, and finally collecting them from said neutral zone, the inert particles being received in a separate hopper.
- Figure 1 represents a front elevation of a diamagnetic separator embodying my improvements.
- Fig. 2 represents a central vertical section thereof.
- H indicates the yoke, F the cores, f the polepieces, and j the coils or bobbins, of a powerful electromagnet.
- the pole-pieces are separated by a long narrow interpolar space and are preferably of the same height as the main body portions of the cores themselves, whereby a magnetic field of substantially uniform strength is established from top to bottom of the interpolar space.
- the feeding-hopper K is arranged in close proximity to one of the pole-faces, as
- the material to be separated is fed by the hopper K into the magnetic field in close proximity to the face of the inclined pole-piece containing the pockets.
- Inert material such as sand or the like, is unaffected by the magnetic field, and on its way down the incline enters the series of pockets 1) and is conveyed by said pockets into the discharge-chute 0 common to them all, and thence passed into the tailings-hopper L.
- the diamagnetic material of higher diamagnetic susceptibility, such as gold or the like, moves outwardly from the face of the pole-piece toward the central neutral zone of the interpolar space.
- This outward movement is progressive and is favored by the fact that the material is constantly becoming disembarrassed of thesand and because the inclination of the pole-pieces causes the pole-face, from which the diamagnetic particles are receding, to follow, in effect, the outwardly-moving particles, thereby giving them a wider and cleaner separation from the main mass of the material to be treated.
- I necessarily feed the material upon one of the pole-pieces only; but despite this lessened capacity of the magnet, in comparison with those forms of apparatus wherein I feed the material along both of the polar faces, I obtain an increased effect because of the uniform strength of the magnetic field from top to bottom of the interpolar space.
- a diamagnetie separator provided with a downwardly-inclined pole-piece, means for feeding the material to be separated upon the upper portion of the incline,said incline crossing the path of gravital descent of the material, and said pole-piece being provided with pockets, and a hopper at the bottom of the incline, and extending outwardly therefrom, for the heads, substantially as described.
- a diamagnetic separator provided with a downwardly-inclined pole-piece, means for feeding the material to be separated upon the upper portion of the incline, said incline crossing the path of gravital descent of the material, and said pole-piece being provided with pockets, a common chute or channel with which the pockets communicate, a hopper for receiving the tailin gs from the chute or channel, and a hopper at the bottom of the incline, and extending outwardly therefrom, for the heads, substantially as described.
- a dialnagnetic separator comprisingan electromagnet, having pole-pieces separated by a long narrow diagonal interpolar space
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- Addition Polymer Or Copolymer, Post-Treatments, Or Chemical Modifications (AREA)
- Combined Means For Separation Of Solids (AREA)
Description
PATENTED JUNE 16, 1903.
E. GATES. DIAMAGNETIG SEPARATOR.
APPLICATION FILED JAN. 13. 1903.
K0 MODEL.
(HE NORRIS Pt tki ca, FPQTO-LITNO wnumomu. a. c
' UNITED STATES Patented June 16, 1903.
PATENT OFFICE.
ELMER GATES, OF CHEVY CHASE, MARYLAND, ASSIGNOR TO THEODORE J.
MAYER, OF WASHINGTON, DISTRICT OF COLUMBIA.
DIAMAGNETIC SEPARATOR.
SPECIFICATION forming part of Letters Patent No. 731,037, dated June 16, 1903;
Application filed January 13,1903. Serial No. 138.817. (N model.)
arating diamagnetic substances from mix tures containing them or diamagnetic substances of varying diamagnetic susceptibilities from each other by feeding the material to be separated into the interpolar space through zones adjacent to the faces of the pole-pieces and continuing the material in the magnetic field until the particles to be separated have gradually moved out toward the central neutral plane or zone, and finally collecting them from said neutral zone, the inert particles being received in a separate hopper.
In the accompanying drawings, Figure 1 represents a front elevation of a diamagnetic separator embodying my improvements. Fig. 2 represents a central vertical section thereof.
Similar letters of reference indicate similar parts throughout both views.
Referring to the drawings, H indicates the yoke, F the cores, f the polepieces, and j the coils or bobbins, of a powerful electromagnet. The pole-pieces are separated by a long narrow interpolar space and are preferably of the same height as the main body portions of the cores themselves, whereby a magnetic field of substantially uniform strength is established from top to bottom of the interpolar space. The feeding-hopper K is arranged in close proximity to one of the pole-faces, as
The material to be separated is fed by the hopper K into the magnetic field in close proximity to the face of the inclined pole-piece containing the pockets. Inert material, such as sand or the like, is unaffected by the magnetic field, and on its way down the incline enters the series of pockets 1) and is conveyed by said pockets into the discharge-chute 0 common to them all, and thence passed into the tailings-hopper L. The diamagnetic material of higher diamagnetic susceptibility, such as gold or the like, moves outwardly from the face of the pole-piece toward the central neutral zone of the interpolar space. This outward movement is progressive and is favored by the fact that the material is constantly becoming disembarrassed of thesand and because the inclination of the pole-pieces causes the pole-face, from which the diamagnetic particles are receding, to follow, in effect, the outwardly-moving particles, thereby giving them a wider and cleaner separation from the main mass of the material to be treated.
In the particular form of apparatus shown in the drawings I necessarily feed the material upon one of the pole-pieces only; but despite this lessened capacity of the magnet, in comparison with those forms of apparatus wherein I feed the material along both of the polar faces, I obtain an increased effect because of the uniform strength of the magnetic field from top to bottom of the interpolar space.
It is apparent that the advantage of the series of pockets in the polar faces along which the material is fed is not limited to construcfeeding the material to be separated upon the upperportion of the incline, said incline crossing the path of gravital descent of the material, and said polepiece being provided with pockets; substantially as described.
A diamagnetie separator, provided with a downwardly-inclined pole-piece, means for feeding the material to be separated upon the upper portion of the incline,said incline crossing the path of gravital descent of the material, and said pole-piece being provided with pockets, and a hopper at the bottom of the incline, and extending outwardly therefrom, for the heads, substantially as described.
3. A diamagnetic separator, provided with a downwardly-inclined pole-piece, means for feeding the material to be separated upon the upper portion of the incline, said incline crossing the path of gravital descent of the material, and said pole-piece being provided with pockets, a common chute or channel with which the pockets communicate, a hopper for receiving the tailin gs from the chute or channel, and a hopper at the bottom of the incline, and extending outwardly therefrom, for the heads, substantially as described.
4. A dialnagnetic separator, comprisingan electromagnet, having pole-pieces separated by a long narrow diagonal interpolar space,
'and means for dropping into said space the pieces being provided with pockets, said pockets communicating with a common exitpassage; substantially as described.
In testimony whereof I affix my signature in presence of two witnesses. I
ELMER GATES.
Witnesses:
EDWIN S. CLARKsoN, JOHN C. PENNIE.
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| US13881703A US731037A (en) | 1903-01-13 | 1903-01-13 | Diamagnetic separator. |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| US13881703A US731037A (en) | 1903-01-13 | 1903-01-13 | Diamagnetic separator. |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| US731037A true US731037A (en) | 1903-06-16 |
Family
ID=2799544
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| US13881703A Expired - Lifetime US731037A (en) | 1903-01-13 | 1903-01-13 | Diamagnetic separator. |
Country Status (1)
| Country | Link |
|---|---|
| US (1) | US731037A (en) |
-
1903
- 1903-01-13 US US13881703A patent/US731037A/en not_active Expired - Lifetime
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