CN207991468U - A kind of high positioning device of aluminium cell anode survey - Google Patents
A kind of high positioning device of aluminium cell anode survey Download PDFInfo
- Publication number
- CN207991468U CN207991468U CN201721426440.9U CN201721426440U CN207991468U CN 207991468 U CN207991468 U CN 207991468U CN 201721426440 U CN201721426440 U CN 201721426440U CN 207991468 U CN207991468 U CN 207991468U
- Authority
- CN
- China
- Prior art keywords
- pars contractilis
- anode
- stepping motor
- linear stepping
- laser sensor
- 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.)
- Active
Links
Landscapes
- Electrolytic Production Of Metals (AREA)
Abstract
The utility model provides a kind of aluminium cell anode survey high positioning device, belongs to aluminium cell equipment technical field, including interconnecting piece, the first pars contractilis, the second pars contractilis, laser sensor, through linear stepping motor, guide part and controller;First pars contractilis one end is connected with driving, and the other end is connect with interconnecting piece;Interconnecting piece is for installing the second pars contractilis and anode lift;Second pars contractilis one end is connect with interconnecting piece, and the other end is connect with through linear stepping motor.The utility model is by being arranged the first pars contractilis entirety lifting laser sensor and anode lift, relative position with laser sensor when the first pars contractilis lifting and anode lift is constant, anode entirety lifting is first gone out into electrolytic cell when the utility model cooperation driving being allow to use, then the height that new anode bottom is measured after the height and replacement of through linear stepping motor and laser sensor measurement anode scrap bottom is utilized, you can calculate the thickness difference of new and old anode.
Description
Technical field
The utility model belongs to aluminium cell equipment technical field, and in particular to a kind of high positioning dress of aluminium cell anode survey
It sets.
Background technology
Electrolytic aluminium needs replacing anode in production, and the influence of the installation site of new anode to electrolytic cell is very big, especially
The height of anode bottom, it is therefore desirable to the thickness difference that new pole and anode scrap are calculated during changing grade, according to new anode scrap thickness difference
It calculates and new pole bottom surface is put into the distance moved needed for anode bottom surface in slot from outside.
There are mainly two types of the change poles technologies of current electrolysis aluminium manufacturer, and one is methods of scoring, is crossed close to anode scrap by operator,
This precision of method is low and harm to the human body is bigger, and another kind is to refer to platform using measurement, and overhead traveling crane operating personnel need
Tie surface staff is wanted to work, actual use is also relatively difficult.
Utility model content
In order to provide a kind of device efficiently measuring new and old anode thickness difference, technical side used by the utility model
Case is:A kind of high positioning device of aluminium cell anode survey, including interconnecting piece, the first pars contractilis, the second pars contractilis, laser sensing
Device, through linear stepping motor, guide part and controller;First pars contractilis one end with driving connect, the other end with
The interconnecting piece connection;The interconnecting piece is for installing second pars contractilis and anode lift;Described second is flexible
The telescopic direction in portion is vertical direction;Second pars contractilis one end is connect with the interconnecting piece, the other end with it is described through
Linear stepping motor connects, and the one end being connect with the through linear stepping motor, which offers, accommodates the through straight line step
The receiving hole of stepper motor leading screw;The leading screw direction of displacement of the through linear stepping motor is vertical direction, described through
The lower end of the leading screw of linear stepping motor is provided with limited block;The guide part includes connector, guide rod and guide part, described
Leading screw passes through the connector and the connector is arranged on the limited block;The guide rod is solid with the connector
Fixed connection, the guide part are arranged on the side wall of second pars contractilis, are offered on the guide part and the guide rod
Guide rod described in matched through-hole passes through the guide part;The laser sensor is connect with the connector, in floor projection
On, the direction of the launch of the laser sensor is horizontally toward anode lift;The controller control described first is flexible
Portion, second pars contractilis, the through linear stepping motor, the laser sensor and installation anode lift
Work.
The utility model has the advantages that:
The utility model makes only using by the way that the first pars contractilis entirety lifting laser sensor and anode lift is arranged
The relative position of laser sensor and anode lift is constant when the first pars contractilis entirety lifting, makes the utility model cooperation row
Vehicle using when can anode entirety lifting first be gone out into electrolytic cell, then surveyed using through linear stepping motor and laser sensor
The height of new anode bottom is measured after the height of amount anode scrap bottom and replacement, you can calculate the thickness difference of new and old anode.
Description of the drawings
Fig. 1 is that aluminium cell anode surveys schematic diagram when high positioning device is equipped with anode lift.
Main element symbol description
Interconnecting piece 1 | First pars contractilis 2 | Second pars contractilis 3 |
Laser sensor 4 | Through linear stepping motor 5 | Limited block 51 |
Guide part 6 | Connector 61 | Guide rod 62 |
Anti-drop block 621 | Guide part 63 | Anode lift 7 |
Following specific implementation mode will further illustrate the utility model in conjunction with above-mentioned attached drawing.
Specific implementation mode
The following examples can help those skilled in the art to be more fully understood the utility model, but cannot be with
Any mode limits the utility model.
Referring to Fig. 1, including interconnecting piece 1, the first pars contractilis 2, the second pars contractilis 3, laser sensor 4, through straight line
Stepper motor 5, guide part 6 and controller.
Described first pars contractilis, 2 one end is connected with driving, and the other end is connect with the interconnecting piece 1.Preferably, described first
Pars contractilis 2 is oil cylinder.
The interconnecting piece 1 is for installing second pars contractilis 3 and anode lift 7.In the present embodiment, institute
It states 7 adjustable retractable amount of anode lift and blocks anode aluminium bar using claw.
The telescopic direction of second pars contractilis 3 is vertical direction;Described second pars contractilis, 3 one end and the interconnecting piece 1
Connection, the other end are connect with the through linear stepping motor 5, the one end being connect with the through linear stepping motor 5
Offer the receiving hole 31 for accommodating 5 leading screw of through linear stepping motor.Preferably, second pars contractilis 3 is oil cylinder
Or cylinder, piston rod one end trepanning of second pars contractilis, for accommodating leading screw.
The leading screw direction of displacement of the through linear stepping motor 5 is vertical direction, the through straight line stepping electricity
The lower end of the leading screw of machine 5 is provided with limited block 51;
The guide part 6 includes connector 61, guide rod 62 and guide part 63, and the leading screw passes through the connector 61 simultaneously
And the connector 61 is arranged on the limited block 51;The guide rod 62 is fixedly connected with the connector 61, described
Guide part 63 is arranged on the side wall of second pars contractilis 3, offers on the guide part 63 and is matched with the guide rod 62
Through-hole described in guide rod 62 pass through the guide part 63.Preferably, 62 one end of the guide rod is connect with the connector 61,
The other end is provided with anti-drop block 621, and the size of the anti-drop block 621 is more than the radius of the guide rod, prevents the guide rod
Abjection.
The laser sensor 4 is connect with the connector 61, in floor projection, the transmitting of the laser sensor 4
Direction is horizontally toward anode lift 7.In the present embodiment, the laser sensor 4 is diffusing reflection laser sensor.
The controller controls first pars contractilis 2, second pars contractilis 3, the laser sensor 4, described passes through
General formula linear stepping motor 5 and the anode lift 7 of installation work.
Second pars contractilis 3 be in range, the through linear stepping motor 5 leading screw stretch out longest and
When anode lift 7, the height of the laser sensor 4 is less than the minimum point of the anode lift 7.
In the present embodiment, the rate-determining steps that the aluminium cell anode surveys high positioning device are:
S1, so that the first pars contractilis 2 is in maximum elongation state, adjust the position of anode lift 7 and pass through claw
Anode scrap and the relative position of anode lift 7 is set to fix;
S2, the elongation for adjusting the first pars contractilis 2, by anode scrap hoisting depth;
S3, so that the second pars contractilis 3 is in maximum elongation state, start through linear stepping motor 5, make through straight line
Stepper motor 5 is in maximal tensility, then the displacement of adjusting screw, so that laser sensor 4 is detected from top to bottom, works as inspection
It is stopped when measuring anode bottom, records the leading screw displacement amount H 1 of through linear stepping motor 5 at this time;
S4, anode scrap is unloaded, loads onto new anode, height of vertical direction is adjusted by the first pars contractilis 2 during this
Whole, the stroke of anode lift 7 is constant;
S5, by being stopped the step of S3 when detecting new anode bottom, record the silk of through linear stepping motor 5
Thick stick displacement amount H 2;The thickness difference h=H2-H1 of new and old anode can be calculated at this time.
Claims (7)
1. a kind of aluminium cell anode surveys high positioning device, it is characterised in that:The aluminium cell anode surveys high positioning device packet
Include interconnecting piece, the first pars contractilis, the second pars contractilis, laser sensor, through linear stepping motor, guide part and control
Device;
First pars contractilis one end is connected with driving, and the other end is connect with the interconnecting piece;
The interconnecting piece is for installing second pars contractilis and anode lift;
The telescopic direction of second pars contractilis is vertical direction;Second pars contractilis one end is connect with the interconnecting piece, separately
One end is connect with the through linear stepping motor, and the one end being connect with the through linear stepping motor offers receiving
The receiving hole of the through linear stepping motor leading screw;
The leading screw direction of displacement of the through linear stepping motor is vertical direction, the silk of the through linear stepping motor
The lower end of thick stick is provided with limited block;
The guide part includes connector, guide rod and guide part, and the leading screw passes through the connector and the connector
It is arranged on the limited block;The guide rod is fixedly connected with the connector, and the guide part is arranged described second
On the side wall of pars contractilis, is offered on the guide part and pass through the guiding with guide rod described in the matched through-hole of the guide rod
Part;
The laser sensor is connect with the connector, and in floor projection, the direction of the launch of the laser sensor is water
It puts down towards anode lift;
The controller controls first pars contractilis, second pars contractilis, the through linear stepping motor, described swashs
Optical sensor and the work of the anode lift of installation.
2. a kind of aluminium cell anode as described in claim 1 surveys high positioning device, it is characterised in that:First pars contractilis
For oil cylinder.
3. a kind of aluminium cell anode as claimed in claim 2 surveys high positioning device, it is characterised in that:Second pars contractilis
For oil cylinder or cylinder.
4. a kind of aluminium cell anode as claimed in claim 3 surveys high positioning device, it is characterised in that:Second pars contractilis
The trepanning of piston rod one end, for accommodating leading screw.
5. a kind of aluminium cell anode as claimed in claim 4 surveys high positioning device, it is characterised in that:Described guide rod one end
It is connect with the connector, the other end is provided with anti-drop block, and the size of the anti-drop block is more than the radius of the guide rod.
6. a kind of aluminium cell anode as described in claim 1 surveys high positioning device, it is characterised in that:Second pars contractilis
Leading screw in range, the through linear stepping motor stretches out longest and when anode lift, described
The height of laser sensor is less than the minimum point of the anode lift.
7. a kind of aluminium cell anode as described in claim 1 surveys high positioning device, it is characterised in that:The laser sensor
For diffusing reflection laser sensor.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201721426440.9U CN207991468U (en) | 2017-10-31 | 2017-10-31 | A kind of high positioning device of aluminium cell anode survey |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201721426440.9U CN207991468U (en) | 2017-10-31 | 2017-10-31 | A kind of high positioning device of aluminium cell anode survey |
Publications (1)
Publication Number | Publication Date |
---|---|
CN207991468U true CN207991468U (en) | 2018-10-19 |
Family
ID=63803476
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
CN201721426440.9U Active CN207991468U (en) | 2017-10-31 | 2017-10-31 | A kind of high positioning device of aluminium cell anode survey |
Country Status (1)
Country | Link |
---|---|
CN (1) | CN207991468U (en) |
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN107843199A (en) * | 2017-10-31 | 2018-03-27 | 广西信发铝电有限公司 | A kind of aluminium cell anode surveys high positioner |
-
2017
- 2017-10-31 CN CN201721426440.9U patent/CN207991468U/en active Active
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN107843199A (en) * | 2017-10-31 | 2018-03-27 | 广西信发铝电有限公司 | A kind of aluminium cell anode surveys high positioner |
Similar Documents
Publication | Publication Date | Title |
---|---|---|
CN104785452B (en) | A kind of bearing height detection means | |
CN105177625B (en) | A kind of method that electrolytic cell changes anode | |
CN205049110U (en) | Double anode height finding positioner based on laser rangefinder technique | |
CN101348213A (en) | Mounting method of crane sliding contact line in workshop | |
CN204495337U (en) | A kind of self-level(l)ing device for laser forming | |
CN204569209U (en) | The lifting appliance of the automobile-used equipment handling of a kind of electric power first-aid | |
CN204474187U (en) | A kind of wall type turning crane | |
CN205132800U (en) | Elevator no -load equilibrium coefficient detection device | |
CN207991468U (en) | A kind of high positioning device of aluminium cell anode survey | |
CN209758878U (en) | Hoisting accessory for mechanical equipment | |
CN107843199A (en) | A kind of aluminium cell anode surveys high positioner | |
CN106168458A (en) | A kind of device detecting T-shaped hole axiality | |
CN109630861A (en) | A kind of high pressure coal gas holder | |
CN115077353A (en) | Building engineering quality detection device and detection method | |
CN221218919U (en) | Foundation secant pile perpendicularity control device | |
CN106169718A (en) | One can charged for replacement cable termination support insulator support means | |
CN205958223U (en) | Exhaust duct resists flexible impact tester | |
CN212988332U (en) | Base structure of leveling instrument staff | |
CN105424347A (en) | Jack pressure detection equipment | |
CN206015117U (en) | A kind of aluminium manufacturer's anode based on laser ranging technique surveys high alignment system | |
CN206099167U (en) | Can change cable termination post insulators strutting arrangement with electricity | |
CN219474514U (en) | Object detection device | |
CN205189016U (en) | Controlling means of high strain detection hammer center and distance that falls | |
CN217155414U (en) | Vertical line reference instrument | |
CN220829199U (en) | Anode guide rod straightness detection device |
Legal Events
Date | Code | Title | Description |
---|---|---|---|
GR01 | Patent grant | ||
GR01 | Patent grant |