CN205341034U - Permanent magnetism pipeline de -ironing separator - Google Patents

Permanent magnetism pipeline de -ironing separator Download PDF

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Publication number
CN205341034U
CN205341034U CN201620052551.7U CN201620052551U CN205341034U CN 205341034 U CN205341034 U CN 205341034U CN 201620052551 U CN201620052551 U CN 201620052551U CN 205341034 U CN205341034 U CN 205341034U
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China
Prior art keywords
bar magnet
main line
permanent magnetism
pipeline
deironing device
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CN201620052551.7U
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Chinese (zh)
Inventor
周中心
张五堂
朱涛声
汪谢
林志强
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Contemporary Amperex Technology Co Ltd
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Contemporary Amperex Technology Co Ltd
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Abstract

The utility model relates to a permanent magnetism pipeline de -ironing separator, including pipeline and deironing main part, the pipeline is including the main line that has feed inlet and discharge gate, the deironing main part includes the bar magnet, the bar magnet lay in in the main line and with the axis of main line parallels, the bar magnet global with leave the round clearance between the main line, the bar magnet bottom is the cone. The permanent magnetism pipeline de -ironing separator's that this application provided bar magnet bottom is the cone, and effectual water conservancy diversion can be carried out to the high viscosity thick liquids to this cone structure to make thick liquids and bar magnet fully contact, and evenly distributed is in the pipeline, thereby improves the deironing effect.

Description

A kind of permanent magnetism pipeline deironing device
Technical field
The application relates to a kind of permanent magnetism pipeline deironing device, particularly relates to dismountable deironing device of pipeline of a kind of magnetic metal for removing in highly viscous slurry liquid.
Background technology
Existing slurry pipeline formula permanent-magnetic iron expeller mainly has two kinds of forms, one is that bar magnet is perpendicular to fluid and flows to and lay, and this kind tramp iron separator is big for viscosity, solid content is high, for the slurry of poor fluidity, there is de-ferrous effect difference, slurry contacts insufficient with bar magnet, and de-ferrous effect does not reach levels of the standard;Another is that bar magnet is parallel to fluid flow direction laying, this kind of tramp iron separator is generally hemispherical or cylinder due to bar magnet end, the slurry high for viscosity, solid content is high, its water conservancy diversion weak effect, make slurry skewness in pipeline, thus cannot be fully contacted with bar magnet, cause de-ferrous effect cannot meet requirement.
To sum up, the shortcoming of existing slurry pipeline formula permanent-magnetic iron expeller ubiquity slurry skewness.
Utility model content
This application provides a kind of permanent magnetism pipeline deironing device, the problem of the skewness that it efficiently solves viscosity height, poor fluidity, slurry that solid content is high exist in existing tramp iron separator.
The application provides a kind of permanent magnetism pipeline deironing device, including pipeline and deironing main body,
Described pipeline includes the main line with charging aperture and discharging opening;
Described deironing main body includes bar magnet, and described bar magnet is laid in described main line and parallels with the axis of described main line, leaves a ring gap between side face and the described main line of described bar magnet, and described bar magnet bottom is cone.
Preferably, the axis also including bye-pass, the axis of described bye-pass and described main line is mutually perpendicular to, and the two ends of described bye-pass are all connected with described main line;
Described discharging opening includes the first discharging opening being arranged on described main line top and is perpendicular to the second discharging opening that the axis of described main line is arranged on described bye-pass.
Preferably, described bye-pass is connected with described main line by the fast interface of clip.
Preferably, described first discharging opening and described charging aperture are circle, and described first discharging opening, described charging aperture, described main line are all coaxially disposed with described bar magnet.
Preferably, the width in described gap is 3mm-15mm.
Preferably, described bar magnet is coated with nonmetal overcoat.
Preferably, described nonmetal overcoat is leather sheath, gum cover or paper set.
Preferably, described deironing main body also includes the dismountable cover plate being connected with the top of described bar magnet, the top of described main line is provided with opening, and described cover plate and described opening are removably connected by the fast interface of clip, and the diameter of described opening is more than the diameter of described bar magnet.
Preferably, it is provided with sealing ring between described cover plate and described main line.
Preferably, the angle of the cone of described bar magnet bottom is 55 °-85 °.
The technical scheme that the application provides can reach following beneficial effect:
The bar magnet bottom of permanent magnetism pipeline deironing device provided herein is cone, and highly viscous slurry can be carried out effective water conservancy diversion by this cone structure, so that slurry and bar magnet are fully contacted, and is evenly distributed in pipeline, thus improving de-ferrous effect.
It should be appreciated that above general description and details hereinafter describe and be merely illustrative of, the application can not be limited.
Accompanying drawing explanation
The front view of the permanent magnetism pipeline deironing device structure that Fig. 1 provides for the embodiment of the present application one;
The top view of the permanent magnetism pipeline deironing device structure that Fig. 2 provides for the embodiment of the present application one;
The front view of the permanent magnetism pipeline deironing device structure that Fig. 3 provides for the embodiment of the present application two;
The combination schematic diagram of the permanent magnetism pipeline deironing device structure that Fig. 4 provides for the embodiment of the present application one.
Accompanying drawing herein is merged in description and constitutes the part of this specification, it is shown that meet embodiments herein, and for explaining the principle of the application together with description.
Detailed description of the invention
Below by specific embodiment and in conjunction with accompanying drawing, the application is described in further detail."front", "rear" in literary composition, "left", "right", " on ", D score is all with the laying state of the permanent magnetism pipeline deironing device in accompanying drawing for reference.
As Figure 1-4, the embodiment of the present application provides a kind of permanent magnetism pipeline deironing device, and including pipeline and deironing main body, pipeline includes the main line 1 with charging aperture 9 and discharging opening, and main line 1 is used for holding deironing main body and for slurry stream;Deironing main body includes bar magnet 2, and bar magnet 2 is laid in main line 1 and parallels with the axis of main line 1, and adopting the bar magnet 2 that the axis with main line 1 be arranged in parallel is to make bar magnet 2 can be fully contacted with slurry, thus improving de-ferrous effect.
Existing bar magnet 2 bottom is designed as spherical structure mostly, and bar magnet 2 bottom contacts slurry and often at first to needing the slurry carrying out deironing process to carry out water conservancy diversion, and it can make slurry and bar magnet 2 be fully contacted, it is thus achieved that better de-ferrous effect.But the design of existing spherical structure makes bar magnet 2 bottom can not play good guide functions when with slurry contact, especially when processing highly viscous slurry, it is understood that there may be owing to tapping problem that is improper and that cause slurry cannot be fully contacted with bar magnet 2 and affect de-ferrous effect.Therefore, bar magnet 2 bottom is designed as cone by the application, owing to cone has cutting-edge structure, when with slurry contact, when especially contacting with highly viscous slurry, this cone structure can be good at slurry is carried out water conservancy diversion, makes slurry can be uniformly distributed in the gap that the side face by bar magnet 2 and main line are formed, so that slurry can be fully contacted with bar magnet 2, improve the de-ferrous effect of permanent magnetism pipeline deironing device.The angle design of the cone of bar magnet 2 bottom in 55 °-85 ° these angular ranges, is in the cone within the scope of this and highly viscous slurry has better water conservancy diversion effect by the application.
Pipeline in the application also includes the axis of bye-pass 3, the axis of bye-pass 3 and main line 1 and is mutually perpendicular to, and the two ends of bye-pass 3 are all connected with main line 1;And bye-pass 3 is connected with main line 1 by the fast interface of clip, the fast interface of clip is adopted to improve permanent magnetism pipeline deironing device efficiency of assembling as connector, and readily accessible when maintenance.
Discharging opening includes the first discharging opening 4 being arranged on main line top and is perpendicular to the second discharging opening 5 that the axis of main line 1 is arranged on bye-pass.Processing that viscosity is big, solid content is high, the slurry of poor fluidity time, the permanent magnetism pipeline deironing device with the second discharging opening 5 can be adopted, because the flow velocity of slurry can be improved by laying multiple outlets, thus improving the de-ironing efficiency of permanent magnetism pipeline deironing device;And when processing low viscosity slurry, then can adopt the permanent magnetism pipeline deironing device being provided with the first discharging opening 4.First discharging opening 4, charging aperture 9 are circle, and first discharging opening 4, charging aperture 9, main line 1 and bar magnet 2 are all coaxially disposed, why employing is coaxially disposed, and is because such structural design and is more beneficial for the flowing of slurry, improves the permanent magnetism pipeline deironing device treatment effeciency to slurry.
Leaving a ring gap between side face and the main line of bar magnet, the width in gap 6 is set to 3mm-15mm by the application, it is preferred to 4~10mm, more preferably 5~7mm.The width range in gap 6, when being designed, is not clearly limited by existing permanent magnetism pipeline deironing device, and the application obtains the optimum range of width in gap 6 by appropriate design, scientific validation.For the process of highly viscous slurry, when the width setup in gap 6 is within the scope of this, highly viscous slurry can spread in gap 6 completely, so that highly viscous slurry and bar magnet 2 are fully contacted, and then realizes high-efficient deferrization.
Deironing main body in the application also includes the dismountable cover plate being connected with bar magnet 2 top, main line 1 top is provided with opening, cover plate and opening are removably connected by the fast interface of clip, the fast interface of clip is adopted to connect the two, make dismounting more convenient, the diameter of opening is more than the diameter of bar magnet 2, in order to bar magnet 2 separates from main line 1.After bar magnet carries out deironing more than 2 time, have a large amount of iron filings and stay on bar magnet 2, it is necessary to bar magnet 2 is taken out from main line 1, can be separated with main line 1 by this opening, bar magnet 2 and coupled cover plate simultaneously.The connected mode adopting the fast interface of clip makes maintenance more convenient, and in order to ensure the seal of permanent magnetism pipeline deironing device, is also additionally arranged sealing ring 8 between cover plate and main line 1.When being intended to the iron filings on bar magnet 2 are cleared up, first bar magnet 2 and cover plate and main line 1 are easily separated, then bar magnet 2 and cover plate are easily separated, then the bar magnet 2 taken out is carried out.Existing bar magnet 2 is all directly contact with iron filings, and when it is cleared up, often there is cleaning process comparatively numerous and diverse, the problem that cleaning effect is not good, and then affects the service life of bar magnet 2.The application is for this problem, one layer of nonmetal overcoat 7 in bar magnet 2 outer cladding, during cleaning, only nonmetal overcoat 7 need to be carried out from taking off bar magnet 2, the cleaning work making bar magnet 2 becomes simple efficient, not be made directly for bar magnet 2 due to cleaning work, reducing the damage that bar magnet 2 is caused by cleaning work, thus extending the service life of bar magnet 2.This nonmetal overcoat 7 can be leather sheath, gum cover or paper set.
When specifically used, also two permanent magnetism pipeline deironing devices can be carried out serial or parallel connection, first discharging opening 4 of permanent magnetism pipeline deironing device is connected with the first discharging opening 4 of another permanent magnetism pipeline deironing device, or the second discharging opening 5 of permanent magnetism pipeline deironing device is connected with the second discharging opening 5 of another permanent magnetism pipeline deironing device, then forms parallel permanent magnetism pipeline deironing device;And the first discharging opening 4 or second discharging opening 5 of permanent magnetism pipeline deironing device are connected with the charging aperture 9 of another permanent magnetism pipeline deironing device, then form in-line permanent magnetism pipeline deironing device, by adopting the connected mode of serial or parallel connection, further increase permanent magnetism pipeline deironing device to the treatment effect of highly viscous slurry and treating capacity.
Highly viscous slurry can be carried out effective water conservancy diversion by the permanent magnetism pipeline deironing device that the present embodiment provides, so that slurry and bar magnet 2 are fully contacted, and is evenly distributed in main line 1, thus improving de-ferrous effect.
These are only the preferred embodiment of the application, be not limited to the application, for a person skilled in the art, the application can have various modifications and variations.All within spirit herein and principle, any amendment of making, equivalent replacement, improvement etc., should be included within the protection domain of the application.

Claims (10)

1. a permanent magnetism pipeline deironing device, including pipeline and deironing main body, it is characterised in that
Described pipeline includes the main line with charging aperture and discharging opening;
Described deironing main body includes bar magnet, and described bar magnet is laid in described main line and parallels with the axis of described main line, leaves a ring gap between side face and the described main line of described bar magnet, and described bar magnet bottom is cone.
2. permanent magnetism pipeline deironing device according to claim 1, it is characterised in that the axis also including bye-pass, the axis of described bye-pass and described main line is mutually perpendicular to, and the two ends of described bye-pass are all connected with described main line;
Described discharging opening includes the first discharging opening being arranged on described main line top and is perpendicular to the second discharging opening that the axis of described main line is arranged on described bye-pass.
3. permanent magnetism pipeline deironing device according to claim 2, it is characterised in that described bye-pass is connected with described main line by the fast interface of clip.
4. permanent magnetism pipeline deironing device according to claim 2, it is characterised in that described first discharging opening and described charging aperture are circle, and described first discharging opening, described charging aperture, described main line are all coaxially disposed with described bar magnet.
5. permanent magnetism pipeline deironing device according to claim 1, it is characterised in that the width in described gap is 3mm-15mm.
6. permanent magnetism pipeline deironing device according to claim 1, it is characterised in that described bar magnet is coated with nonmetal overcoat.
7. permanent magnetism pipeline deironing device according to claim 6, it is characterised in that described nonmetal overcoat is leather sheath, gum cover or paper set.
8. permanent magnetism pipeline deironing device according to claim 1, it is characterized in that, described deironing main body also includes the dismountable cover plate being connected with the top of described bar magnet, the top of described main line is provided with opening, described cover plate and described opening are removably connected by the fast interface of clip, and the diameter of described opening is more than the diameter of described bar magnet.
9. permanent magnetism pipeline deironing device according to claim 8, it is characterised in that be provided with sealing ring between described cover plate and described main line.
10. permanent magnetism pipeline deironing device according to claim 1, it is characterised in that the angle of the cone of described bar magnet bottom is 55 °-85 °.
CN201620052551.7U 2016-01-20 2016-01-20 Permanent magnetism pipeline de -ironing separator Active CN205341034U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201620052551.7U CN205341034U (en) 2016-01-20 2016-01-20 Permanent magnetism pipeline de -ironing separator

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201620052551.7U CN205341034U (en) 2016-01-20 2016-01-20 Permanent magnetism pipeline de -ironing separator

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CN205341034U true CN205341034U (en) 2016-06-29

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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107497600A (en) * 2017-09-18 2017-12-22 深圳市杰维工业设备有限公司 A kind of dynamic iron removaling filter plant
CN108057508A (en) * 2017-12-14 2018-05-22 成都建筑材料工业设计研究院有限公司 Wind send dry-type magnetic extractor
CN111545345A (en) * 2020-05-13 2020-08-18 华鼎国联四川动力电池有限公司 Honeycomb type slurry iron remover for power battery homogenizing equipment
CN112427139A (en) * 2020-10-14 2021-03-02 清华大学 Magnetic liquid screening device

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107497600A (en) * 2017-09-18 2017-12-22 深圳市杰维工业设备有限公司 A kind of dynamic iron removaling filter plant
CN107497600B (en) * 2017-09-18 2024-04-12 深圳市杰维工业设备有限公司 Dynamic iron removal filtration equipment
CN108057508A (en) * 2017-12-14 2018-05-22 成都建筑材料工业设计研究院有限公司 Wind send dry-type magnetic extractor
CN111545345A (en) * 2020-05-13 2020-08-18 华鼎国联四川动力电池有限公司 Honeycomb type slurry iron remover for power battery homogenizing equipment
CN112427139A (en) * 2020-10-14 2021-03-02 清华大学 Magnetic liquid screening device
CN112427139B (en) * 2020-10-14 2021-09-07 清华大学 Magnetic liquid screening device

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