CN209432510U - A kind of electrolyte sampler - Google Patents
A kind of electrolyte sampler Download PDFInfo
- Publication number
- CN209432510U CN209432510U CN201920059595.6U CN201920059595U CN209432510U CN 209432510 U CN209432510 U CN 209432510U CN 201920059595 U CN201920059595 U CN 201920059595U CN 209432510 U CN209432510 U CN 209432510U
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- China
- Prior art keywords
- spring
- electrolyte
- connector shell
- sampler
- gasket
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Abstract
The utility model belongs to electrolyte production equipment field, in particular to a kind of electrolyte sampler.The present apparatus includes interface, sampler, adjusting nut and control valve.The device is realized using two-stage spring and gasket is isolated the sealing of sampler and space;The device has creatively used magnet to act on the unlatching for carrying out the spring sealed pad of regulation and control;The device is novel in design, can satisfy the requirement of big dosage sampling, also can store internal pressure place in electrolyte height and use, moreover it is possible to the connector transferred as electrolyte.
Description
Technical field
The utility model belongs to electrolyte production equipment field, in particular to a kind of electrolyte sampler.
Background technique
It is certain all in generally having in the jar of sealing during the electrolyte being commercialized at present is in production and storage
Interior pressure.Since the ingredient of electrolyte needs real-time perfoming to monitor, to guarantee its production and use quality.Existing electrolyte
Sampling equipment is generally required reserves sample tap on pipeline, is sealed by gelatinous layer, then holds needle and is taken with insertion
Sample.The sampling that can satisfy sample fraction is sampled in this way, the places that needs are largely sampled or transferred cannot achieve effect,
And if storage electrolyte internal pressure is excessive, often will cause electrolyte splashing, brings security risk.
Utility model content
To solve the above-mentioned problems, the utility model embodiment provides a kind of electrolyte sampler, both can solve
The requirement of big dosage sampling can also use, moreover it is possible to the connector transferred as electrolyte in height storage internal pressure place.
The technical solution is as follows:
A kind of electrolyte sampler, including interface, sampler, adjusting nut and No.1 control valve, the interface with
The sampler using groove couple or flange connection, the sampler include connector shell, inner magnet, No.1 gasket,
No.1 spring, No. two springs, No. two gaskets and sample tap;The connector shell is hollow T-type pipeline configuration, the inner magnet
Refer to including No.1 pole ring and No. two magnetic poles, there are gaps between the inner magnet and the connector shell;The No.1 gasket
It is fixedly connected with one end of No.1 spring, the No.1 spring is fixedly connected with the connector shell inner wall, No. two springs
One end and the section of the inner wall convex portion of the connector shell lateral are fixedly connected, one end of No. two springs with it is described
No. two gaskets are fixedly connected, and electrolyte sample tap direction is provided with sample tap, the sample tap in No. two gaskets
Pipeline is internally provided with No. two screw threads;The adjusting nut include No. three pole rings, No. three springs and No. four pole rings, described three
Number pole ring and No. four pole rings are connected as outer magnet, the cross of No. three spring one ends and No. three pole rings
Section is fixedly connected, and the section of No. three spring one ends and the boss of the connector shell is fixedly connected;The interface exists
No.1 control valve is provided on the direction that electrolyte flows into.
Further, the connector shell is being provided with No.1 screw thread, the No.1 screw thread on the outside of the interface pipe
Corresponding inner wall of the pipe is provided with rear position-arresting block and front position-arresting block.
Further, the corresponding connector shell inner wall of the No.1 gasket is provided with convex cross section, and the protrusion is cut
Face corresponds to No.1 gasket position and is provided with ring-shaped groove.
Further, the corresponding connector shell inner wall of No. two gaskets is provided with convex cross section, and the protrusion is cut
Face corresponds to No. two gasket positions and is provided with ring-shaped groove.
Further, the No.1 spring and No. two springs are straight-tube shape helical spring or oval section volute spring, institute
The lesser one end of diameter for stating oval section volute spring is fixedly connected with the No.1 gasket and No. two gaskets respectively;Institute
It states No.1 spring and No. two springs produces that electrostatic material is made or surface is coated with anti-corrosion, does not produce electrostatic material by anti-corrosion, not
Material.
Further, No. three pole ring inner walls are provided with No. three screw threads, and the inner wall of No. four pole rings is provided with
No. four screw threads, No. three screw threads and No. four screw threads can be with the No.1 threaded engagements.
Further, the inner magnet and the outer magnet are permanent magnet, No. four pole rings and the No.1 magnetic
Polar ring is two magnetic poles that there is a natural attraction between the sexes.
Optionally, in the inner magnet and the outer magnet one be permanent magnet, a gold for that can be adsorbed by permanent magnet
Belong to body.
Technical solution provided by the embodiment of the utility model has the benefit that the utility model embodiment provides
A kind of electrolyte sampler, which is realized using two-stage spring and gasket is isolated the sealing of sampler and space;
In addition, the device has creatively used magnet to act on the unlatching for carrying out the spring sealed pad of regulation and control;The device is novel in design,
It can satisfy the requirement of big dosage sampling, can also be used in height storage internal pressure place, moreover it is possible to the connector transferred as electrolyte.
Detailed description of the invention
Fig. 1 is the structural schematic diagram of electrolyte sampler provided by the embodiment of the utility model;
Fig. 2 is the structural schematic diagram of the inner magnet of electrolyte sampler provided by the embodiment of the utility model;
Fig. 3 is the structural schematic diagram for the electrolyte sampler that the utility model alternative embodiment provides;
In figure: 1 interface, 2 samplers, 20 connector shells, 200 rear position-arresting blocks, 201 front position-arresting blocks, 21 No.1 screw threads, 22 1
Number pole ring, 23 No. two magnetic poles refer to, 24 No.1 gaskets, 25 No.1 springs, 26 No. two springs, 27 No. two gaskets, 28 sample taps,
280 No. two screw threads, 3 adjusting nuts, 30 No. three pole rings, 300 No. three screw threads, 31 No. three springs, 32 No. four pole rings, 320 4
Number screw thread, 4 No.1 control valves, 5 No. two control valves
In the present invention unless specifically defined or limited otherwise, term " setting " term shall be understood in a broad sense, energy
It is enough fixedly connected, also can be detachably to couple, or it is integral;" connection " is to be connected directly integrally, and " connection " is removable
Formula connection is unloaded, " fixation " is quiet connection;Unless otherwise restricted clearly, for the ordinary skill in the art, can
The concrete meaning of above-mentioned term in the present invention is understood as the case may be.
Specific embodiment
It is practical new to this below in conjunction with attached drawing to keep the purpose of this utility model, technical solution and advantage clearer
Type is described in further detail.
Referring to Fig. 1, a kind of electrolyte sampler, including interface 1, sampler 2, adjusting nut 3 and No.1 control valve
4, interface 1 is coupled with sampler 2 using groove or flange couples, and sampler 2 is close including connector shell 20, inner magnet, No.1
Packing 24, the gasket 27 of spring 26, two of No.1 spring 25, two and sample tap 28;Connector shell 20 is hollow T-type pipeline knot
Structure, inner magnet include that No.1 pole ring 22 and No. two magnetic poles refer to 23, and there are gaps between inner magnet and connector shell 20;No.1 sealing
Pad 24 and one end of No.1 spring 25 are fixedly connected, and No.1 spring 25 is fixedly connected with 20 inner wall of connector shell, No. two springs 26
One end and the section of the inner wall convex portion of 20 lateral of connector shell are fixedly connected, one end of No. two springs 26 and No. two sealings
Pad 27 is fixedly connected, and electrolyte sample tap direction is provided with sample tap 28 in No. two gaskets 27, inside 28 pipeline of sample tap
It is provided with No. two screw threads 280;Adjusting nut 3 includes 30, No. three springs 31 of No. three pole rings and No. four pole rings 32, No. three magnetic poles
Ring 30 and No. four pole rings 32 are linked into outer magnet, and No. three 31 one end of spring and the cross section of No. three pole rings 30 are fixedly connected,
No. three 31 one end of spring and the section of the boss of the connector shell 20 are fixedly connected;Interface 1 is in the direction that electrolyte flows into
On be provided with No.1 control valve 4.
Referring to Fig. 1, further, connector shell 20 is being provided with No.1 screw thread 21, No.1 screw thread on the outside of 1 pipeline of interface
21 corresponding inner wall of the pipes are provided with rear position-arresting block 200 and front position-arresting block 201.
Referring to fig. 2, No. two magnetic poles refer to that 23 are uniformly connected on 22 1 end face of No.1 pole ring for elongated rod shape, and more magnetic poles refer to
There are gap between 23, front position-arresting block 201 can pass through gap and No. two magnetic poles is prevented to refer to 23 continuation to 24 direction of No.1 gasket
Mobile, rear position-arresting block 200 can prevent No.1 pole ring 22 from continuing to mobile far from 24 direction of No.1 gasket.
Referring to Fig. 1, further, corresponding 20 inner wall of connector shell of No.1 gasket 24 is provided with convex cross section, and protrusion is cut
Face corresponds to 24 position of No.1 gasket and is provided with ring-shaped groove;No. two corresponding 20 inner walls of connector shell of gasket 27 are provided with convex
Section is played, convex cross section corresponds to No. two 27 positions of gasket and is provided with ring-shaped groove.Specifically, No.1 gasket 24 and No. two
Gasket 27 is provided with protruding ring in the one side extension of corresponding ring-shaped groove respectively, and protruding ring can be with corresponding ring-shaped groove
Completely agree with, the section of protruding ring and ring-shaped groove preferably is arc-shaped.
Referring to Fig. 1, further, No.1 spring 25 and No. two springs 26 are straight-tube shape helical spring or cone-type spiral bullet
Spring, the lesser one end of the diameter of oval section volute spring are fixedly connected with No.1 gasket 24 and No. two gaskets 27 respectively;No.1
Spring 25 and No. two springs 26 produce that electrostatic material is made or surface is coated with anti-corrosion, does not produce electrostatic material by anti-corrosion, not.Cone
Shape helical spring can produce bigger static thrust, increase the sealing effect of gasket and ring-shaped groove.Specifically, spring is to sealing
The thrust of gasket should be greater than the interior pressure of electrolyte, it is ensured that be not in static by under acting on except spring in gasket seal
State, it is ensured that the effect of sealing.The material that is made of No.1 spring 25 and No. two springs 26 should ensure that and be electrolysed in its long period of soaking
It is not susceptible to corruption in liquid, does not react with electrolyte, and does not generate electrostatic, the elasticity and extension of spring can be kept in this way
The service life of spring.
Referring to Fig. 1, further, No. three 30 inner walls of pole ring are provided with No. three screw threads 300, the inner wall of No. four pole rings 32
No. four screw threads 320 are provided with, No. three screw threads 300 and No. four screw threads 320 can be engaged with No.1 screw thread 21.
Referring to Fig. 1, further, inner magnet and outer magnet are permanent magnet, and No. four pole rings 32 and No.1 ring 22 are different
Two attracting magnetic poles of property.
Referring to Fig. 1, optionally, one is permanent magnet in the inner magnet and the outer magnet, and one is can be by permanent magnet
The metallic object of absorption.
In use, No.1 gasket 24 is fully sealed under the effect of No.1 spring 25 with corresponding ring-shaped groove, No. two close
Packing 27 is fully sealed in the case where No. two springs 26 are acted on corresponding ring-shaped groove.When No.1 ring 22 and No. four pole rings 32 are two
When the magnetic pole of a opposite sex, sample tap 28 is threaded sampling injector or other threaded sampling sealing vessel, top
After opening No. two gaskets 27, No.1 control valve 4 is opened, adjusting nut rotation forces inner magnet on No.1 screw thread 21 is close to No.1
The movement of 24 direction of packing is to open No.1 gasket 24, to realize that 24 two sides space of No.1 gasket communicates;Due to No.1
Ring 22 and No. three pole rings 30 are like pole, and the two is mutually exclusive, so No.1 ring 22 cannot move to adjusting nut backwards
24 side of No.1 gasket;When adjusting nut drives inner magnet to gradually moving away from 24 direction of No.1 gasket, work as inner magnet
When leaving No.1 gasket 24, No.1 gasket is under the effect of 25 elastic force of No.1 spring, in entire sampler connector shell 20
Portion space is separated and seals.
Further, the settable positioning latch functions of adjusting nut.
Referring to Fig. 3, optionally, which can be set two stub interfaces, and one is sample tap 28, a waste liquid
Discharge outlet 50, is provided with No. two control valves 5 in waste liquid port, and waste liquid port can be discharged after a part of electrolyte in sampling from taking
The sampling of sample mouth, guarantees the accuracy of sampling in this way.
The above is only the preferred embodiment of the present invention, is not intended to limit the utility model, all practical at this
Within novel spirit and principle, any modification, equivalent replacement, improvement and so on should be included in the guarantor of the utility model
Within the scope of shield.
Claims (8)
1. a kind of electrolyte sampler, including interface (1), sampler (2), adjusting nut (3) and No.1 control valve (4),
It is characterized in that, the interface (1) is coupled with the sampler (2) using groove or flange couples, the sampler (2)
Including connector shell (20), inner magnet, No.1 gasket (24), No.1 spring (25), No. two springs (26), No. two gaskets (27)
With sample tap (28);The connector shell (20) be hollow T-type pipeline configuration, the inner magnet include No.1 pole ring (22) and
No. two magnetic poles refer to (23) that there are gaps between the inner magnet and the connector shell (20);The No.1 gasket (24) and one
One end of number spring (25) is fixedly connected, and the No.1 spring (25) is fixedly connected with connector shell (20) inner wall, and described two
Number one end of spring (26) and the section of the inner wall convex portion of connector shell (20) lateral are fixedly connected, and described No. two
One end of spring (26) is fixedly connected with No. two gaskets (27), in No. two gaskets (27) along electrolyte sample tap
Direction is provided with sample tap (28), and sample tap (28) pipeline is internally provided with No. two screw threads (280);The adjusting nut
It (3) include No. three pole rings (30), No. three springs (31) and No. four pole rings (32), No. three pole rings (30) and described four
Number pole ring (32) is linked into outer magnet, and No. three springs (31) one end and the cross section of No. three pole rings (30) are fixed
Connection, No. three springs (31) one end and the section of the boss of the connector shell (20) are fixedly connected;The interface (1)
No.1 control valve (4) are provided on the direction that electrolyte flows into.
2. electrolyte sampler according to claim 1, which is characterized in that the connector shell (20) connects close to described
It is provided with No.1 screw thread (21) on the outside of mouth (1) pipeline, the corresponding inner wall of the pipe of the No.1 screw thread (21) is provided with rear position-arresting block
(200) and front position-arresting block (201).
3. electrolyte sampler according to claim 1, which is characterized in that the corresponding institute of the No.1 gasket (24)
It states connector shell (20) inner wall and is provided with convex cross section, the convex cross section corresponds to No.1 gasket (24) position and is provided with
Ring-shaped groove.
4. electrolyte sampler according to claim 1, which is characterized in that the corresponding institute of No. two gaskets (27)
It states connector shell (20) inner wall and is provided with convex cross section, the convex cross section corresponds to No. two gaskets (27) position and is provided with
Ring-shaped groove.
5. electrolyte sampler according to claim 1, which is characterized in that the No.1 spring (25) and No. two described
Spring (26) be straight-tube shape helical spring or oval section volute spring, the lesser one end of the diameter of the oval section volute spring respectively with
The No.1 gasket (24) and No. two gaskets (27) are fixedly connected;The No.1 spring (25) and No. two springs
(26) produce that electrostatic material is made or surface is coated with anti-corrosion, does not produce electrostatic material by anti-corrosion, not.
6. electrolyte sampler according to claim 1, which is characterized in that No. three pole rings (30) the inner wall setting
There are No. three screw threads (300), the inner wall of No. four pole rings (32) is provided with No. four screw threads (320), No. three screw threads (300)
It can be engaged with No.1 screw thread (21) with No. four screw threads (320).
7. electrolyte sampler according to claim 1, which is characterized in that the inner magnet and the outer magnet are
Permanent magnet, No. four pole rings (32) and the No.1 pole ring (22) are two magnetic poles that there is a natural attraction between the sexes.
8. according to claim 1 or claim 6 or electrolyte sampler as claimed in claim 7, which is characterized in that described
One is permanent magnet, a metallic object for that can be adsorbed by permanent magnet in inner magnet and the outer magnet.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201920059595.6U CN209432510U (en) | 2019-01-15 | 2019-01-15 | A kind of electrolyte sampler |
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CN201920059595.6U CN209432510U (en) | 2019-01-15 | 2019-01-15 | A kind of electrolyte sampler |
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CN209432510U true CN209432510U (en) | 2019-09-24 |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN111678740A (en) * | 2020-06-10 | 2020-09-18 | 河海大学 | Device capable of automatically collecting atmospheric sedimentation samples at different time intervals |
-
2019
- 2019-01-15 CN CN201920059595.6U patent/CN209432510U/en active Active
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN111678740A (en) * | 2020-06-10 | 2020-09-18 | 河海大学 | Device capable of automatically collecting atmospheric sedimentation samples at different time intervals |
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