CN201102917Y - Permanent magnetic processor - Google Patents
Permanent magnetic processor Download PDFInfo
- Publication number
- CN201102917Y CN201102917Y CNU2007201486050U CN200720148605U CN201102917Y CN 201102917 Y CN201102917 Y CN 201102917Y CN U2007201486050 U CNU2007201486050 U CN U2007201486050U CN 200720148605 U CN200720148605 U CN 200720148605U CN 201102917 Y CN201102917 Y CN 201102917Y
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- magnetic
- permanent
- clamp
- magnetic clamp
- axial dimension
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Abstract
The utility model provides a permanent magnetic processor, characterized in that a plurality of permanent magnetic rings of radial magnetization, a plurality of permanent magnetic rings of axial magnetization and a plurality of conducting magnetic rings are adopted and ingeniously combined to form an U-shaped fluid pathway; a radial poly magnetic field and an axial magnetic field are built in the fluid pathway; magnetized fluid is processed by the strong magnetic field when passing the U-shaped fluid pathway. The permanent magnetic processor can be applied to the treatment of the magnetized fluids such as scale removal of the water and purification of the gas with small volume, convenient use and wide application which does not consume the electricity.
Description
Technical field
The utility model relates to a kind of fluid treating device, particularly a kind of permanent magnetism processor that magnetisable fluid is handled.
Background technology
With magnetic field magnetisable fluid is handled, can be improved fluid.Inflammable gas can be refined into vaporific after magnetic treatment, and is more abundant during burning, improved efficiency of combustion, reduced emission of harmful substances; Water can significantly reduce or prevent impurity fouling on water transport pipe, container, valve and equipment after magnetic treatment, irrigate the crops through the water of magnetic treatment and can increase production, through the tap water of magnetic treatment to healthy and helpful.As everyone knows, the magnetic field of treat fluid should be enough strong.But existing electromagnetic treatment device volume is big, power consumption, life-span are short, it is diligent to safeguard, existing magneto treatment unit magneticstrength is strong not enough.
Summary of the invention
The utility model designs a kind of magnetisable fluidic permanent magnetism processor, overcomes the defective of existing device for magnetic treatment, and without electric energy, magneticstrength is higher, and is pollution-free, simple in structure, easy to use, non-maintaining.
The utility model is realized by following technical scheme.
The utility model adopts the permanent-magnetic clamp and the exquisite assembly of some magnetic guiding loops of the permanent-magnetic clamp of some radial magnetizings, some axial chargings, form the U-shaped fluid channel, and in passage, set up radially poly-magnetic magnetic field and axial magnetic field, magnetisable fluid is handled by high-intensity magnetic field through the U passage.
The utility model is used for the magnetic treatment to inflammable gas, water, also can be used for the processing to other magnetisable fluid accumulating and tube road course of conveying.
Except advantage with existing magneto treatment unit, to compare with existing magneto treatment unit, the effect that the utility model is useful is:
1. the passage magneticstrength of the magnetisable fluid process of the utility model is stronger;
2. the utility model U-shaped fluid high-intensity magnetic field passage makes the high-intensity magnetic field distance of magnetisable fluid process long, and the processed ground of fluid is more abundant.
Description of drawings
Fig. 1 is the structural representation of embodiment one;
Fig. 2 is the A-A sectional view of Fig. 1;
Fig. 3 is the structural representation of embodiment two;
Embodiment
Further specify below in conjunction with embodiment.
Embodiment one: show as Fig. 1 Fig. 2, outside magnetic conduction axle 2 septal space vertically successively phase ground connection cover radially magnetize and polarity alternative permanent- magnetic clamp 22,25,28,30 vertically, the inside and outside circle size of permanent- magnetic clamp 22,25,28,30 is identical, between the interior circle of magnetic conduction axle 2 and permanent- magnetic clamp 22,25,28,30, radially adorn support bar 18,19 symmetrically, support bar 18,19 and magnetic conduction axle 2 are affixed, be with the non magnetic packing ring 20 of some radial holes in the right external arc of support bar 18,19, the right side of the left side of non magnetic packing ring 20 and permanent-magnetic clamp 22 joins; At the cylindrical of permanent- magnetic clamp 22,25,28,30 phase ground connection cover permanent-magnetic clamp 23, magnetic guiding loop 24, permanent-magnetic clamp 26, magnetic guiding loop 27, permanent-magnetic clamp 29 successively vertically, the cylindrical of permanent-magnetic clamp 23, magnetic guiding loop 24, permanent-magnetic clamp 26, magnetic guiding loop 27, permanent-magnetic clamp 29 is identical with non magnetic packing ring 20, permanent- magnetic clamp 23,26,29 all magnetizes vertically, and homopolarity is relative vertically with permanent-magnetic clamp 26 to make permanent-magnetic clamp 23 and permanent-magnetic clamp 26 and permanent-magnetic clamp 29; Non magnetic end cap 17 is fixing coaxially with magnetic conduction axle 2 and packing ring 20, place sealing-ring 16 in the left side of non magnetic end cap 17, magnetic conductive cylinder 21 is connected with non magnetic end cap 17 usefulness bolts (not drawing among the figure); The interior circle of magnetic conductive cylinder 21 vertically successively phase ground connection put into and radially magnetize and polarity alternative permanent-magnetic clamp 15 vertically, 13,10,7, permanent-magnetic clamp 7,10,13,15 internal diameter is all identical, they interior circle vertically successively phase ground connection put into permanent-magnetic clamp 14, magnetic guiding loop 12, permanent-magnetic clamp 11, magnetic guiding loop 9, permanent-magnetic clamp 8, magnetic conductive cylinder 21, align with the right side of permanent-magnetic clamp 22 and permanent-magnetic clamp 23 in the right side of permanent-magnetic clamp 14 and permanent-magnetic clamp 15, permanent-magnetic clamp 14, magnetic guiding loop 12, permanent-magnetic clamp 11, magnetic guiding loop 9, the internal diameter of permanent-magnetic clamp 8 is identical, all leaves permanent-magnetic clamp 23, magnetic guiding loop 24, permanent-magnetic clamp 26, magnetic guiding loop 27, the gap that the cylindrical one of permanent-magnetic clamp 29 is identical; Permanent- magnetic clamp 7,15,22,30 axial dimension equates, permanent- magnetic clamp 8,11,14,23,26,29 axial dimension equates, permanent- magnetic clamp 10,13,25,28 axial dimension equates, permanent-magnetic clamp 7 and 15 axial dimension be permanent- magnetic clamp 8 or 14 axial dimension 1/2, permanent- magnetic clamp 22 and 30 axial dimension be permanent- magnetic clamp 23 or 29 axial dimension 1/2, magnetic guiding loop 9,12,24,27 axial dimension equates, magnetic guiding loop 9,12,24, the bisector of 27 axial dimension and permanent- magnetic clamp 10,13,25,28 coincidence, the axial dimension of permanent-magnetic clamp 10 is axial dimension sums of axial dimension and the permanent-magnetic clamp 8 or the permanent-magnetic clamp 11 of magnetic guiding loop 9, the axial dimension of permanent-magnetic clamp 13 is axial dimension sums of axial dimension and the permanent-magnetic clamp 14 or the permanent-magnetic clamp 11 of magnetic guiding loop 12, the axial dimension of permanent-magnetic clamp 25 is axial dimension sums of axial dimension and the permanent-magnetic clamp 23 or the permanent-magnetic clamp 26 of magnetic guiding loop 24, and the axial dimension of permanent-magnetic clamp 28 is axial dimension sums of axial dimension and the permanent-magnetic clamp 26 or the permanent-magnetic clamp 29 of magnetic guiding loop 27; Pad sealing-ring 6 between non magnetic end plate 5 and magnetic conductive cylinder 21, non magnetic end plate 5 connects with magnetic conductive cylinder 21 usefulness bolts (not drawing among the figure), the median pore diameter of non magnetic end plate 5 equates with the internal diameter of permanent-magnetic clamp 30, also inputing or outputing pipe 3 internal diameter with fluid equates, the mesopore of non magnetic end plate 5 symmetrical holes on both sides up and down all equates with the internal diameter of fluid output or input tube 1 and pipe 4, pipe 3 is concentric fixed with non magnetic end plate 5, pipe 1 and manage 4 respectively with the two hole centerings up and down of non magnetic end plate 5 after fixed.The quantity of above-described each permanent-magnetic clamp and magnetic guiding loop is according to the actual design changeable, and combination and assembly method are still as previously discussed.All parts of the present utility model all adopt anticorrosively, anti-oxidant, and the surface treatment of wear-resisting wiping (as nickel phosphorus non-crystal plating) technology is carried out surface treatment.
Dotted line is shown in the path of fluid process among Fig. 1, and obviously, the fluidic passage resembles U-shaped, when pipe 3 be input terminus, and pipe 1 and to manage 4 be output terminal, on the contrary also anti-.
High-intensity magnetic field is to set up like this: with permanent- magnetic clamp 7,8,10,11, magnetic guiding loop 9 and permanent- magnetic clamp 26,28,29,30, magnetic guiding loop 27 is that example illustrates.Permanent- magnetic clamp 8,10,11 homopolarities are met, magnetic line of force imports magnetic guiding loop 9, and radially entad pass, form a strong magnetic pole, permanent- magnetic clamp 26,28,29 homopolarities are met, and magnetic line of force imports magnetic guiding loop 27, and radially centrifugal passing, form another strong magnetic pole opposite with previous strong pole polarity, two strong magnetic poles of the opposite sex have been set up radially high-intensity magnetic field; Permanent-magnetic clamp 7 repels the magnetic line of force of permanent-magnetic clamp 8, strengthened the magnetic pole magnetic force of permanent-magnetic clamp 8, permanent-magnetic clamp 30 repels the magnetic line of force of permanent-magnetic clamp 29, has strengthened the magnetic pole magnetic force of permanent-magnetic clamp 29, and the magnetic pole on the magnetic pole on permanent-magnetic clamp 8 left sides and permanent-magnetic clamp 29 left sides has also been set up radial magnetic field; Permanent-magnetic clamp 8, permanent-magnetic clamp 29 have also been set up axial magnetic field respectively in passage; Permanent-magnetic clamp 28, magnetic conduction axle 2, permanent-magnetic clamp 30 have been set up radial magnetic field (showing as sealing dotted line among Fig. 1) in passage, simultaneously, permanent-magnetic clamp 28 and permanent-magnetic clamp 30 have also been set up axial magnetic field in passage.Other permanent-magnetic clamp of the utility model is identical with previous example with the principle that magnetic guiding loop is set up magnetic field.In a word, the utility model has high-intensity magnetic field in the fluid channel, and its fluid of process will be subjected to strong magnetic treatment.
Embodiment two: show as Fig. 3, knit the non magnetic lining 31,32 of lining at the fluid channel inwall of executing example one described permanent magnetism processor, can prevent to contain the high-velocity fluid of solid particulate or have the strong corrosion fluid permanent-magnetic clamp is caused damage.All the other are with embodiment one.
Claims (2)
1. a permanent magnetism processor is characterized in that: adopt permanent-magnetic clamp and some magnetic guiding loop assembly of the permanent-magnetic clamp of some radial magnetizings, some axial chargings, form the U-shaped fluid channel; Outside magnetic conduction axle (2) septal space vertically successively phase ground connection cover radially magnetize and polarity alternative permanent-magnetic clamp (22) vertically. (25), (28), (30), permanent-magnetic clamp (22), (25), (28), (30) inside and outside circle size is identical, at magnetic conduction axle (2) and permanent-magnetic clamp (22), (25), (28), (30) radially adorn support bar (18) between the interior circle symmetrically, (19), support bar (18), (19) affixed with magnetic conduction axle (2), in support bar (18), (19) the right external arc is with the non magnetic packing ring (20) of some radial holes, and the right side of the left side of non magnetic packing ring (20) and permanent-magnetic clamp (22) joins; At the cylindrical of permanent-magnetic clamp (22), (25), (28), (30) phase ground connection cover permanent-magnetic clamp (23), magnetic guiding loop (24), permanent-magnetic clamp (26), magnetic guiding loop (27), permanent-magnetic clamp (29) successively vertically, the cylindrical of permanent-magnetic clamp (23), magnetic guiding loop (24), permanent-magnetic clamp (26), magnetic guiding loop (27), permanent-magnetic clamp (29) is identical with non magnetic packing ring (20), all magnetize vertically in permanent-magnetic clamp (23), (26), (29), and homopolarity is relative vertically with permanent-magnetic clamp (26) to make permanent-magnetic clamp (23) and permanent-magnetic clamp (26) and permanent-magnetic clamp (29); Non magnetic end cap (17) is fixing coaxially with magnetic conduction axle (2) and packing ring (20), place sealing-ring (16) in the left side of non magnetic end cap (17), magnetic conductive cylinder (21) and non magnetic end cap (17) are used Bolt Connection; The interior circle of magnetic conductive cylinder (21) vertically successively phase ground connection put into and radially magnetize and polarity alternative permanent-magnetic clamp (15) vertically, (13), (10), (7), permanent-magnetic clamp (7), (10), (13), (15) internal diameter is all identical, they interior circle vertically successively phase ground connection put into permanent-magnetic clamp (14), magnetic guiding loop (12), permanent-magnetic clamp (11), magnetic guiding loop (9), permanent-magnetic clamp 8, magnetic conductive cylinder (21), align with the right side of permanent-magnetic clamp (22) and permanent-magnetic clamp (23) in the right side of permanent-magnetic clamp (14) and permanent-magnetic clamp (15), permanent-magnetic clamp (14), magnetic guiding loop (12), permanent-magnetic clamp (11), magnetic guiding loop (9), the internal diameter of permanent-magnetic clamp (8) is identical, all leaves permanent-magnetic clamp (23), magnetic guiding loop (24), permanent-magnetic clamp (26), magnetic guiding loop (27), the gap that the cylindrical one of permanent-magnetic clamp (29) is identical; Permanent-magnetic clamp (7), (15), (22), (30) axial dimension equates, permanent-magnetic clamp (8), (11), (14), (23), (26), (29) axial dimension equates, permanent-magnetic clamp (10), (13), (25), (28) axial dimension equates, the axial dimension of permanent-magnetic clamp (7) and (15) be permanent-magnetic clamp (8) or (14) axial dimension 1/2, the axial dimension of permanent-magnetic clamp (22) and (30) be permanent-magnetic clamp (23) or (29) axial dimension 1/2, magnetic guiding loop (9), (12), (24), (27) axial dimension equates, magnetic guiding loop (9), (12), (24), the bisector of axial dimension (27) and permanent-magnetic clamp (10), (13), (25), (28) coincidence, the axial dimension of permanent-magnetic clamp (10) is the axial dimension sum of axial dimension and the permanent-magnetic clamp (8) or the permanent-magnetic clamp (11) of magnetic guiding loop (9), the axial dimension of permanent-magnetic clamp (13) is the axial dimension sum of axial dimension and the permanent-magnetic clamp (14) or the permanent-magnetic clamp (11) of magnetic guiding loop (12), the axial dimension of permanent-magnetic clamp (25) is the axial dimension sum of axial dimension and the permanent-magnetic clamp (23) or the permanent-magnetic clamp (26) of magnetic guiding loop (24), and the axial dimension of permanent-magnetic clamp (28) is the axial dimension sum of axial dimension and the permanent-magnetic clamp (26) or the permanent-magnetic clamp (29) of magnetic guiding loop (27); Between non magnetic end plate (5) and magnetic conductive cylinder (21), fill up sealing-ring (6), non magnetic end plate (5) is used Bolt Connection with magnetic conductive cylinder (21), the median pore diameter of non magnetic end plate (5) equates with the internal diameter of permanent-magnetic clamp (30), also equate with the internal diameter that fluid inputs or outputs pipe (3), the mesopore of non magnetic end plate (5) symmetrical holes on both sides up and down all equates with the internal diameter of fluid output or input tube (1) and pipe (4), pipe (3) is concentric fixed with non magnetic end plate (5), pipe (1) and manage (4) respectively with the two hole centerings up and down of non magnetic end plate (5) after fixed; When pipe (3) was input terminus, pipe (1) and pipe (4) were output terminal, otherwise also anti-.
2. permanent magnetism processor according to claim 1 and 2 is characterized in that: beat lining non magnetic lining (31), (32) at the fluid channel of permanent magnetism processor inwall.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CNU2007201486050U CN201102917Y (en) | 2007-04-30 | 2007-04-30 | Permanent magnetic processor |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CNU2007201486050U CN201102917Y (en) | 2007-04-30 | 2007-04-30 | Permanent magnetic processor |
Publications (1)
Publication Number | Publication Date |
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CN201102917Y true CN201102917Y (en) | 2008-08-20 |
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Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CNU2007201486050U Expired - Fee Related CN201102917Y (en) | 2007-04-30 | 2007-04-30 | Permanent magnetic processor |
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN101969242A (en) * | 2010-09-21 | 2011-02-09 | 哈尔滨工业大学 | Permanent magnet fluid treating device |
KR102138658B1 (en) * | 2019-10-10 | 2020-07-28 | 오케이 주식회사 | a device for generating magnetized water |
-
2007
- 2007-04-30 CN CNU2007201486050U patent/CN201102917Y/en not_active Expired - Fee Related
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN101969242A (en) * | 2010-09-21 | 2011-02-09 | 哈尔滨工业大学 | Permanent magnet fluid treating device |
KR102138658B1 (en) * | 2019-10-10 | 2020-07-28 | 오케이 주식회사 | a device for generating magnetized water |
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Legal Events
Date | Code | Title | Description |
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C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
C17 | Cessation of patent right | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20080820 Termination date: 20100430 |