BRPI0805659A2 - cross-frame magnetic separator with tetrapolar rotary magnetic circuit and annular rotors - Google Patents
cross-frame magnetic separator with tetrapolar rotary magnetic circuit and annular rotors Download PDFInfo
- Publication number
- BRPI0805659A2 BRPI0805659A2 BRPI0805659-5A BRPI0805659A BRPI0805659A2 BR PI0805659 A2 BRPI0805659 A2 BR PI0805659A2 BR PI0805659 A BRPI0805659 A BR PI0805659A BR PI0805659 A2 BRPI0805659 A2 BR PI0805659A2
- Authority
- BR
- Brazil
- Prior art keywords
- cross
- annular
- tetrapolar
- rotor
- rotors
- Prior art date
Links
- 239000006148 magnetic separator Substances 0.000 title claims abstract description 9
- 238000004519 manufacturing process Methods 0.000 abstract description 4
- 238000005406 washing Methods 0.000 abstract description 2
- 210000004209 hair Anatomy 0.000 abstract 1
- 239000007787 solid Substances 0.000 abstract 1
- 238000012423 maintenance Methods 0.000 description 3
- 239000000463 material Substances 0.000 description 3
- 239000012141 concentrate Substances 0.000 description 2
- 238000010276 construction Methods 0.000 description 2
- 238000006073 displacement reaction Methods 0.000 description 1
- 230000004907 flux Effects 0.000 description 1
- 229910052500 inorganic mineral Inorganic materials 0.000 description 1
- 238000009434 installation Methods 0.000 description 1
- 239000011707 mineral Substances 0.000 description 1
- 238000005065 mining Methods 0.000 description 1
- 230000004048 modification Effects 0.000 description 1
- 238000012986 modification Methods 0.000 description 1
Classifications
-
- 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
- B03C1/04—Magnetic separation acting directly on the substance being separated with the material carriers in the form of trays or with tables
- B03C1/08—Magnetic separation acting directly on the substance being separated with the material carriers in the form of trays or with tables with non-movable magnets
-
- 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
- B03C1/025—High gradient magnetic separators
- B03C1/029—High gradient magnetic separators with circulating matrix or matrix elements
-
- 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
- B03C1/025—High gradient magnetic separators
- B03C1/031—Component parts; Auxiliary operations
- B03C1/032—Matrix cleaning systems
-
- 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
- B03C1/025—High gradient magnetic separators
- B03C1/031—Component parts; Auxiliary operations
- B03C1/033—Component parts; Auxiliary operations characterised by the magnetic circuit
- B03C1/0335—Component parts; Auxiliary operations characterised by the magnetic circuit using coils
Landscapes
- Centrifugal Separators (AREA)
- Manufacture Of Motors, Generators (AREA)
Abstract
Refere-se a presente mvençao a um separador magnético cuja forma construtiva se caracteriza pelo uso de uma estrutura cruzada que permite o uso de quatro pólos magnéticos com polaridades alternadas norte/sul em cada um dos dois rotores anulares (4). O uso de quatro pôlos em cada rotor anular (4), em lugar de usar apenas dois pólos em cada rotor maciço (2), conforme os modelos atuais, possibilita duplicar os pontos de alimentação (5) e os pontos de lavagem (6) dos produtos. Essa duplicaçao permite dobrar a capacidade de produçao em um único equipamento.The present invention refers to a magnetic separator whose constructive shape is characterized by the use of a cross structure that allows the use of four magnetic poles with alternating north / south polarities in each of the two annular rotors (4). The use of four hairs on each annular rotor (4), instead of using only two poles on each solid rotor (2), according to current models, makes it possible to duplicate the feeding points (5) and the washing points (6). of the products. This duplication allows doubling the production capacity in a single equipment.
Description
Separador Magnético de Estrutura Cruzada com Circuito MagnéticoRotórico Tetrapolar e Rotores AnularesMagnetic Circuit Breaker with Magnetic CircuitTetrapolar Rotor and Annular Rotors
Refere-se a presente invenção a um separador magnético que permite duplicara capacidade de produção obtida quando comparado aos atuais modelosdisponíveis no mercado. Uma nova forma construtiva cuja característicamarcante é uma forma estrutural cruzada que permite a duplicação do númerode pólos magnéticos e a duplicação do número de pontos de alimentação e delavagem. Outra característica vantajosa é a modificação dos dois rotores cujoformato circular maciço é modificado para a forma anular, o que reduzsubstancialmente o peso do equipamento. Essa forma rotórica anular, maisleve e econômica, é possibilitada pela localização dos pólos magnéticos lado alado com polaridades alternadas norte/sul em torno da periferia do rotor, oque faz com que as linhas de força magnéticas tenham um percurso tangencialao rotor. A polaridade norte/sul/norte/sul do rotor superior se torna no rotorinferior sul/norte/sul/norte, isto é, haverá um deslocamento de 180° elétricosentre os pólos situados no rotor superior, em relação aos pólos do rotorinferior, permitindo, assim, o completo fechamento das linhas de forçamagnéticas entre os dois rotores. Esta idéia torna possível obter umequipamento de alta produção com substancial economia de materiais e commelhor aproveitamento da área de instalação. Do ponto de vista demanutenção do equipamento, a nova forma construtiva permite ainda a trocadas bobinas de forma simplificada, sem a necessidade de desmontar grandeparte do equipamento, como ocorre nos modelos atualmente em uso.The present invention relates to a magnetic separator which allows double the production capacity obtained when compared to current models available on the market. A new constructive form whose characteristic feature is a cross-structural form that allows the doubling of the number of magnetic poles and the doubling of the number of feed and wash points. Another advantageous feature is the modification of the two rotors whose massive circular shape is modified to the annular shape, which substantially reduces the weight of the equipment. This more lightweight and economical annular rotor shape is made possible by the location of the winged magnetic poles with alternating north / south polarities around the periphery of the rotor, which makes the magnetic force lines have a tangential path to the rotor. The north / south / north / south polarity of the upper rotor becomes the lower rotor south / north / south / north, ie there will be a 180 ° electric displacement between the poles located in the upper rotor, relative to the lower rotor poles, allowing, thus the complete closure of the magnetic force lines between the two rotors. This idea makes it possible to achieve a high production equipment with substantial material savings and better use of the installation area. From the point of view of equipment maintenance, the new construction also allows the changeover of coils in a simplified manner, without the need to disassemble the large part of the equipment, as occurs in the models currently in use.
Exemplos dos separadores magnéticos existentes no mercado e em relaçãoaos quais esta invenção traz vantagens em relação à produtividade, economiade materiais e de manutenção substanciais, são aqueles separadoresmagnéticos objeto das patentes USA 3830367 e CAN 717 830. A demandaatual da industria no ramo de mineração, mormente no setor deprocessamento mineral de materiais cada vez mais pobres, é pela busca deequipamentos mais compactos e com maior capacidade de produção e demanutenção mais fácil. Atualmente, neste tipo de equipamento atualmenteem uso, a construção é sempre executada com o uso de pólos magnéticosmontados em posições diametralmente opostas em relação ao rotor e em cadarotor são utilizados dois pontos de alimentação, dois pontos de lavagem demédio e dois pontos de lavagem de concentrado, além de serem utilizadosrotores com discos maciços. A presente invenção pode ser melhor entendidacomparando-se a figura 1, na qual é representado o modelo atual desse tipo deequipamento, com a figura 2, na qual pode ser observada a nova formaconstrutiva. Na figura 1 observa-se a existência de quatro bobinas (1) e nafigura 2 pode-se observar a existência de oito bobinas (1). Na figura 3,correspondente à configuração atual, as bobinas (1) estão opostas ao rotorcircular maciço (2). As linhas de força magnética (3) circulam do pólo nortepara o pólo sul por dentro do rotor circular maciço (2). Na figura 4 sãomostradas as quatro bobinas (1) localizadas com polaridades norte e sulalternadas em torno da periferia do rotor anular (4). As linhas de forçamagnética (3) que saem do pólo norte se dividem à metade e seguem emdireção aos dois pólos sul adjacentes utilizando como caminho para esse fimapenas a periferia do rotor anular (4). É esta característica de fluxo magnéticocirculando apenas na região externa do rotor anular (4) e com uma quantidadede linhas de força correspondente à metade das linhas de força que saem dospólos que permite que o mesmo seja construído na forma anular, pois aslinhas de força não o cruzam diametralmente como ocorre nos modelos destetipo de equipamento existentes no mercado. Na figura 3, correspondente aosmodelos atuais, existem apenas dois pontos de alimentação (5) em cada rotorcircular maciço (2) e na figura 4, objeto dessa invenção, existem quatropontos de alimentação (5) situados em cada rotor anular (4). Na figura 4 ospontos de lavagem de médio (6) e de concentrado (7) são no total de quatro,respectivamente, enquanto que na figura 3 esses mesmos pontos totalizamduas unidades. Portanto o equipamento representado na figura 4 tem o dobrode capacidade de processamento em relação ao modelo atual de mesmo porte,mostrado na figura 3. Na figura 5 é demonstrado como a unidade polar quesuporta as bobinas (8) pode ser retirada do equipamento com a finalidade deefetuar a troca das bobinas (1) sem necessidade de retirar os rotores e,portanto, desmontar a maior parte da máquina como ocorre nos equipamentosatuais.Examples of magnetic separators on the market and in which this invention has advantages over substantial productivity, material economy and maintenance are those magnetic separators which are the subject of USA 3830367 and CAN 717 830. The current demand of the mining industry, particularly In the sector of mineral processing of increasingly poor materials, it is by seeking more compact equipment with greater production capacity and easier maintenance. Currently, in this type of equipment currently in use, the construction is always performed using magnetic poles mounted diametrically opposite to the rotor and in the rotor. Two feed points, two demic wash points and two concentrate wash points are used. , besides being used rotors with massive disks. The present invention can be better understood by comparing Figure 1, in which the current model of this type of equipment is depicted, with Figure 2, in which the new constructive form can be observed. Figure 1 shows the existence of four coils (1) and in figure 2 one can observe the existence of eight coils (1). In Figure 3, corresponding to the current configuration, the coils (1) are opposite the massive rotorcircular (2). The magnetic force lines (3) circulate from the north pole to the south pole inside the massive circular rotor (2). Figure 4 shows the four coils (1) located with north and south polarities around the periphery of the annular rotor (4). The lines of magnetic force (3) that leave the north pole divide in half and follow the two adjacent south poles, using as a path to this axis the periphery of the annular rotor (4). It is this characteristic of magnetic flux circulating only in the outer region of the annular rotor (4) and with a quantity of power lines corresponding to half of the power lines leaving the poles that allows it to be built in the annular form, since the power lines do not. cross diametrically as it occurs in the models of this type of equipment on the market. In Figure 3, corresponding to the current models, there are only two feed points (5) in each massive rotorcircular (2) and in Figure 4, object of this invention, there are four feed points (5) located in each annular rotor (4). In figure 4 the washing points of medium (6) and concentrate (7) are a total of four, respectively, while in figure 3 these same points total two units. Therefore, the equipment shown in figure 4 has a double processability compared to the current model of the same size, shown in figure 3. Figure 5 shows how the polar unit that supports the coils (8) can be removed from the equipment for the purpose. Replace the coils (1) without removing the rotors and therefore dismantle most of the machine as in the current equipment.
Claims (4)
Priority Applications (3)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| BRPI0805659-5A BRPI0805659A2 (en) | 2008-11-17 | 2008-11-17 | cross-frame magnetic separator with tetrapolar rotary magnetic circuit and annular rotors |
| AU2009315919A AU2009315919B2 (en) | 2008-11-17 | 2009-11-16 | Crossed structure magnetic separator with tetrapolar rotary magnetic circuit and annular rotors |
| PCT/EP2009/008159 WO2010054847A1 (en) | 2008-11-17 | 2009-11-16 | Crossed structure magnetic separator with tetrapolar rotary magnetic circuit and annular rotors |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| BRPI0805659-5A BRPI0805659A2 (en) | 2008-11-17 | 2008-11-17 | cross-frame magnetic separator with tetrapolar rotary magnetic circuit and annular rotors |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| BRPI0805659A2 true BRPI0805659A2 (en) | 2010-08-24 |
Family
ID=41650384
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| BRPI0805659-5A BRPI0805659A2 (en) | 2008-11-17 | 2008-11-17 | cross-frame magnetic separator with tetrapolar rotary magnetic circuit and annular rotors |
Country Status (3)
| Country | Link |
|---|---|
| AU (1) | AU2009315919B2 (en) |
| BR (1) | BRPI0805659A2 (en) |
| WO (1) | WO2010054847A1 (en) |
Families Citing this family (5)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| FR2963744A1 (en) * | 2010-08-11 | 2012-02-17 | Arnaud Becker | DEVICE FOR SEPARATING FERROUS AND NON-FERROUS PRODUCTS FROM MILLING, INCINERATION OR OTHERWISE |
| CN101934247B (en) * | 2010-09-29 | 2012-05-23 | 岳阳大力神电磁机械有限公司 | Hyperfine high-gradient magnetic separator |
| CN103495573B (en) * | 2013-09-15 | 2016-01-20 | 沈阳隆基电磁科技股份有限公司 | The cleaning method of a kind of pulsating high gradient strong magnetic machine magnetizing mediums |
| CN106040425A (en) * | 2016-07-13 | 2016-10-26 | 江苏旌凯中科超导高技术有限公司 | Mineral magnetic separator |
| US11465157B2 (en) | 2020-07-14 | 2022-10-11 | Cláudio Henrique Teixeira Ribeiro | Magnetic separators with stationary magnetic matrices, and methods of using the same |
Family Cites Families (7)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| GB1054807A (en) * | 1962-07-25 | 1900-01-01 | ||
| US3869379A (en) * | 1971-03-31 | 1975-03-04 | Kloeckner Humboldt Deutz Ag | Magnetic separator |
| US3830367A (en) * | 1972-06-26 | 1974-08-20 | W Stone | High intensity wet magnetic separators |
| US4059510A (en) * | 1975-02-05 | 1977-11-22 | Readings Of Lismore Pty. Limited | Magnetic separators |
| DE2606408C2 (en) * | 1976-02-18 | 1982-12-02 | Klöckner-Humboldt-Deutz AG, 5000 Köln | Strong magnetic separator for wet processing of magnetizable solid particles |
| GB1592779A (en) * | 1976-12-15 | 1981-07-08 | English Clays Lovering Pochin | Magnetic separation |
| GB2111407B (en) * | 1981-11-16 | 1985-11-27 | George Henry Jones | Rotary magnetic separators |
-
2008
- 2008-11-17 BR BRPI0805659-5A patent/BRPI0805659A2/en not_active Application Discontinuation
-
2009
- 2009-11-16 AU AU2009315919A patent/AU2009315919B2/en active Active
- 2009-11-16 WO PCT/EP2009/008159 patent/WO2010054847A1/en not_active Ceased
Also Published As
| Publication number | Publication date |
|---|---|
| AU2009315919B2 (en) | 2015-04-02 |
| WO2010054847A1 (en) | 2010-05-20 |
| AU2009315919A1 (en) | 2010-05-20 |
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Legal Events
| Date | Code | Title | Description |
|---|---|---|---|
| B03A | Publication of an application: publication of a patent application or of a certificate of addition of invention | ||
| B11A | Dismissal acc. art.33 of ipl - examination not requested within 36 months of filing | ||
| B11Y | Definitive dismissal acc. article 33 of ipl - extension of time limit for request of examination expired |