CN107055020A - A kind of anode carbon block depot and its walking dolly - Google Patents
A kind of anode carbon block depot and its walking dolly Download PDFInfo
- Publication number
- CN107055020A CN107055020A CN201710103873.9A CN201710103873A CN107055020A CN 107055020 A CN107055020 A CN 107055020A CN 201710103873 A CN201710103873 A CN 201710103873A CN 107055020 A CN107055020 A CN 107055020A
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- China
- Prior art keywords
- walking
- supporting seat
- turning supporting
- loading chute
- mobile holder
- Prior art date
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- Granted
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- 230000009184 walking Effects 0.000 title claims abstract description 110
- OKTJSMMVPCPJKN-UHFFFAOYSA-N Carbon Chemical compound [C] OKTJSMMVPCPJKN-UHFFFAOYSA-N 0.000 title claims abstract description 17
- 229910052799 carbon Inorganic materials 0.000 title claims abstract description 17
- 230000007246 mechanism Effects 0.000 claims abstract description 86
- 230000007306 turnover Effects 0.000 claims abstract description 19
- 239000000725 suspension Substances 0.000 claims description 10
- 229910000831 Steel Inorganic materials 0.000 claims description 5
- 210000002421 cell wall Anatomy 0.000 claims description 5
- 239000010959 steel Substances 0.000 claims description 5
- 238000009826 distribution Methods 0.000 claims description 4
- 230000001360 synchronised effect Effects 0.000 claims description 4
- 230000003028 elevating effect Effects 0.000 abstract description 7
- 238000005516 engineering process Methods 0.000 abstract description 4
- 239000000155 melt Substances 0.000 abstract description 4
- XAGFODPZIPBFFR-UHFFFAOYSA-N aluminium Chemical compound [Al] XAGFODPZIPBFFR-UHFFFAOYSA-N 0.000 description 7
- 229910052782 aluminium Inorganic materials 0.000 description 7
- 230000006870 function Effects 0.000 description 6
- 239000004411 aluminium Substances 0.000 description 4
- 238000010276 construction Methods 0.000 description 3
- 238000004519 manufacturing process Methods 0.000 description 3
- 239000000203 mixture Substances 0.000 description 2
- 230000008450 motivation Effects 0.000 description 2
- 239000000428 dust Substances 0.000 description 1
- 238000000034 method Methods 0.000 description 1
- 230000004048 modification Effects 0.000 description 1
- 238000012986 modification Methods 0.000 description 1
- 230000008569 process Effects 0.000 description 1
- 230000000717 retained effect Effects 0.000 description 1
- 238000005096 rolling process Methods 0.000 description 1
- 238000006467 substitution reaction Methods 0.000 description 1
- 230000032258 transport Effects 0.000 description 1
Classifications
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B65—CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
- B65G—TRANSPORT OR STORAGE DEVICES, e.g. CONVEYORS FOR LOADING OR TIPPING, SHOP CONVEYOR SYSTEMS OR PNEUMATIC TUBE CONVEYORS
- B65G35/00—Mechanical conveyors not otherwise provided for
Landscapes
- Engineering & Computer Science (AREA)
- Mechanical Engineering (AREA)
- Handcart (AREA)
- Chutes (AREA)
Abstract
The present invention relates to a kind of anode carbon block depot and its walking dolly.The turning supporting seat of walking dolly is lifted under the drive of lifting drive mechanism, and when limit inferior position is dropped down onto under turning supporting seat, in the case of bracket bracketing, turning supporting seat is located at the bottom of mobile holder, pallet is accepted at the height and position that now the loading chute beam in turning supporting seat can be relatively low in ground base, the structure that middle pallet need to be placed in above elevating mechanism compared with prior art, present invention reduces height during pallet loading, also the melt pit built in workshop is just eliminated, the building cost in workshop is reduced;On the other hand, the turnover driving mechanism carried in turning supporting seat can move pallet by loading chute sill bolt and overturn, on the basis of above-mentioned elevating function, maintain the due upset of walking dolly institute and walking function, it is unlikely to the missing for function occur, the retroversion of technology, thus the walking dolly have the advantages that it is easy to use and without melt pit.
Description
Technical field
The present invention relates to a kind of anode carbon block depot and its walking dolly.
Background technology
At present, the anode assembling workshop of large-scale aluminium manufacturer is that carbon block is constituted into new anode together with aluminum guide assembly and connection,
And the anode scrap remained after potroom use is handled, i.e., the carbon block retained on anode scrap and aluminum guide are separated, it is right
After aluminum guide is cleared up again, it is assembled into new anode with new carbon block.Its course of work is:Forklift will be shipped from potroom
Anode scrap is loaded onto on the stretched wire dolly in anode assembling workshop in dress station station, and anode scrap is moved to anode unit with stretched wire dolly
Different station is cleared up and is assembled into new anode between entrucking, and assembled good new anode is moved to stretched wire dolly unloads station work
Position, new anode transports to potroom by forklift again after being removed, very heavy because anode carbon block is sufficiently bulky.Traditional handicraft
In, this work is mainly aided in by forklift, is manually unloaded from stretched wire dolly, is sent to potroom.In operating process
Inefficiency, labor strength are very big.In the prior art, to mitigate labor strength, anode handling are made to realize automation,
Some electrolytic aluminium factories realize the transhipment of anode carbon block using depot, but present depot needs to take very big factory building sky
Between, carrier loader range ability is long, and efficiency is very low, and cost is very high.
The U of Chinese patent literature CN 204342892 disclose a kind of handler of electrolytic aluminium anode carbon block, including for
The unloading of the loading of old anode and new anode on anode production line Cantenary suspension conveying system, the handler is positioned including pallet
Frame, aligning guide, walking dolly, pallet, tipping mechanism, pressure gather dust mechanism and electric control system;The stretched wire conveying
The melt pit of depression is provided with below system, melt pit has handling station and topples over station, and handling station is located at stretched wire delivery system
The underface of system, topples over the side that station is located at Cantenary suspension conveying system, the aligning guide and tipping mechanism are separately positioned on ground
The both sides in hole, and aligning guide is arranged on the side of handling station, tipping mechanism, which is arranged on, topples over station side;The dress of the present invention
Handler, can realize electrolytic aluminium anode carbon block on a production line high efficiency, the automation of high reliability position, load, unloading,
Residue is toppled over, anode scrap loads and new pole is transported.But in the anode carbon block depot, walking dolly is transported in melt pit
Capable, this is due to that elevating mechanism on walking dolly is located at below pallet, so pallet is placed on fortune by trailer for convenience
Walk on dolly, it is necessary to reduce the overhead height of elevating mechanism, and the construction of melt pit will increase the capital construction cost of anode plant, lead
The building cost increase in anode assembling workshop is caused, production cost is consequently increased.
The content of the invention
The present invention is intended to provide walking dolly a kind of not only easy to use but also without melt pit, while additionally providing one kind makes
With the anode carbon block depot of the walking dolly.
In order to solve the above technical problems, the technical scheme of walking dolly is as follows in the present invention:
Walking dolly, including two groups of walking units being symmetrical set, each walking unit are used for the respective side of connecting trays
Edge, and two walking units synchronous walking along the longitudinal direction;
Walking unit includes mobile holder, walking mechanism or walking structure of the bottom provided with front and rear walking of mobile holder, walking
Have on support or be connected with the bracket positioned at mobile holder bottom;
Walking unit also includes guiding movement above and below turning supporting seat, turning supporting seat and is assemblied on mobile holder, and turning supporting seat is upper
Fall during the limit inferior position of lower guiding movement on the bracket, turnover driving mechanism is connected with turning supporting seat;
Walking unit also includes loading chute beam, and loading chute beam is located between the mobile holder of two walking units, and loading chute beam can phase
For turning supporting seat around left and right extend axis rotate drive connection on turnover driving mechanism, the front-end and back-end of loading chute beam
In at least one be for pallet corresponding edge load openend, and in front-end and back-end only have one end be openend when,
The other end is blind end, and openend is provided with the plugging mechanism for being used for controlling opening switch;
Walking unit also includes lifting drive mechanism, and lifting drive mechanism is located at the top of turning supporting seat, and lifting drive mechanism
It is connected with turning supporting seat, and the lifting drive mechanism of two walking units mutually cooperates with lifting.
The mobile holder of two walking units is stand, and the top of two mobile holders is bridged by crossbeam to be connected and form door shape
Only one of which is openend in support body, and the front-end and back-end of loading chute beam, and another in front-end and back-end is blind end, institute
Crossbeam is stated positioned at side of the blind end away from openend, between two mobile holders crossbeam close to loading chute beam openend side
For loading space.
There is the fluctuating orbit being located above bracket, fluctuating orbit can be divided on front side of turning supporting seat on mobile holder
Relative distribution before and after preceding fluctuating orbit and the rear fluctuating orbit on rear side of turning supporting seat, preceding fluctuating orbit and rear fluctuating orbit;
Turning supporting seat is located between preceding fluctuating orbit and rear fluctuating orbit, and the front side of turning supporting seat has or is connected with and preceding lifting
Track male-female engagement or sleeve coordinate two between the upper and lower every forward guides, the rear side of turning supporting seat has or is connected with after
Fluctuating orbit male-female engagement or sleeve coordinate two between the upper and lower every rear guide.
Mobile holder has the cage of a framework shape loaded for turning supporting seat, and preceding fluctuating orbit is located at before cage
On wall, rear fluctuating orbit is located on the rear wall of cage;
Turnover driving mechanism is located at the side of the dorsad loading chute beam of turnover bracket.
The top of turning supporting seat has or is connected with the suspension member of hook-shaped or ring-type or ear;
The steel wire rope that lifting drive mechanism includes drawing on the hoist engine above mobile holder, hoist engine is connected directly between extension
On part or pile warp pulley is connected on suspension member.
The bottom of mobile holder is the I-shaped or box bottom girder of front and rear extension, and bottom girder has to be sequentially connected from top to bottom
Top plate, web and bottom plate, and mobile holder has a bracket, and bracket is the part being located at below turning supporting seat of bottom, top
Plate and web have the fracture being located above bracket.
The bottom of mobile holder is provided with walking mechanism, the rear and front end of walking mechanism including bottom girder the driven of setting
The lowest part of the driving wheel that wheel and the other end are set, driving wheel and driven pulley is in the same plane and is less than bracket, and main
Driving wheel is connected with movable motor by reductor.
The notch of loading chute beam is offered and groove towards another walking unit, and on the openend cell wall of loading chute beam
The bypass opening that chamber is communicated;
Plugging mechanism includes movable chuck, and movable chuck coordinates with bypass opening plug, and movable chuck can be stretched from bypass opening
Enter vallecular cavity and the movable chuck exited through bypass opening from vallecular cavity;
Plugging mechanism also includes closure drive mechanism, and closure drive mechanism is located on loading chute beam, and closure drive mechanism driving connects
It is connected on movable chuck, it is flexible that closure drive mechanism can drive movable chuck to be plugged in bypass opening.
Movable chuck is provided with the connecting portion being hinged on loading chute beam, and movable chuck is for a part for connecting portion or with connecting
Socket part is connected;
It is the telescoping cylinder being hinged between connecting portion and loading chute beam to block drive mechanism.
The technical scheme of Anodic carbon block depot of the present invention is as follows:
Anode carbon block depot, including the walking guide rail being laid in ground base and the walking dolly installed thereon, walk small
Car includes two groups of walking units being symmetrical set, and each walking unit is used for the respective side edge of connecting trays, and two
Walking unit synchronous walking along the longitudinal direction;
Walking unit includes mobile holder, walking mechanism or walking structure of the bottom provided with front and rear walking of mobile holder, walking
Have on support or be connected with the bracket positioned at mobile holder bottom;
Walking unit also includes guiding movement above and below turning supporting seat, turning supporting seat and is assemblied on mobile holder, and turning supporting seat is upper
Fall during the limit inferior position of lower guiding movement on the bracket, turnover driving mechanism is connected with turning supporting seat;
Walking unit also includes loading chute beam, and loading chute beam is located between the mobile holder of two walking units, and loading chute beam can phase
For turning supporting seat around left and right extend axis rotate drive connection on turnover driving mechanism, the front-end and back-end of loading chute beam
In at least one be for pallet corresponding edge load openend, and in front-end and back-end only have one end be openend when,
The other end is blind end, and openend is provided with the plugging mechanism for being used for controlling opening switch;
Walking unit also includes lifting drive mechanism, and lifting drive mechanism is located at the top of turning supporting seat, and lifting drive mechanism
It is connected with turning supporting seat, and the lifting drive mechanism of two walking units mutually cooperates with lifting.
The mobile holder of two walking units is stand, and the top of two mobile holders is bridged by crossbeam to be connected and form door shape
Only one of which is openend in support body, and the front-end and back-end of loading chute beam, and another in front-end and back-end is blind end, institute
Crossbeam is stated positioned at side of the blind end away from openend, between two mobile holders crossbeam close to loading chute beam openend side
For loading space.
There is the fluctuating orbit being located above bracket, fluctuating orbit can be divided on front side of turning supporting seat on mobile holder
Relative distribution before and after preceding fluctuating orbit and the rear fluctuating orbit on rear side of turning supporting seat, preceding fluctuating orbit and rear fluctuating orbit;
Turning supporting seat is located between preceding fluctuating orbit and rear fluctuating orbit, and the front side of turning supporting seat has or is connected with and preceding lifting
Track male-female engagement or sleeve coordinate two between the upper and lower every forward guides, the rear side of turning supporting seat has or is connected with after
Fluctuating orbit male-female engagement or sleeve coordinate two between the upper and lower every rear guide.
Mobile holder has the cage of a framework shape loaded for turning supporting seat, and preceding fluctuating orbit is located at before cage
On wall, rear fluctuating orbit is located on the rear wall of cage;
Turnover driving mechanism is located at the side of the dorsad loading chute beam of turnover bracket.
The top of turning supporting seat has or is connected with the suspension member of hook-shaped or ring-type or ear;
The steel wire rope that lifting drive mechanism includes drawing on the hoist engine above mobile holder, hoist engine is connected directly between extension
On part or pile warp pulley is connected on suspension member.
The bottom of mobile holder is the I-shaped or box bottom girder of front and rear extension, and bottom girder has to be sequentially connected from top to bottom
Top plate, web and bottom plate, and mobile holder has a bracket, and bracket is the part being located at below turning supporting seat of bottom, top
Plate and web have the fracture being located above bracket.
The bottom of mobile holder is provided with walking mechanism, the rear and front end of walking mechanism including bottom girder the driven of setting
The lowest part of the driving wheel that wheel and the other end are set, driving wheel and driven pulley is in the same plane and is less than bracket, and main
Driving wheel is connected with movable motor by reductor.
The notch of loading chute beam is offered and groove towards another walking unit, and on the openend cell wall of loading chute beam
The bypass opening that chamber is communicated;
Plugging mechanism includes movable chuck, and movable chuck coordinates with bypass opening plug, and movable chuck can be stretched from bypass opening
Enter vallecular cavity and the movable chuck exited through bypass opening from vallecular cavity;
Plugging mechanism also includes closure drive mechanism, and closure drive mechanism is located on loading chute beam, and closure drive mechanism driving connects
It is connected on movable chuck, it is flexible that closure drive mechanism can drive movable chuck to be plugged in bypass opening.
Movable chuck is provided with the connecting portion being hinged on loading chute beam, and movable chuck is for a part for connecting portion or with connecting
Socket part is connected;
It is the telescoping cylinder being hinged between connecting portion and loading chute beam to block drive mechanism.
Turning supporting seat is lifted under the drive of lifting drive mechanism in the present invention, and drops down onto limit inferior under turning supporting seat
During position, in the case of bracket bracketing, turning supporting seat is located at the bottom of mobile holder, and now the loading chute beam in turning supporting seat can
To accept pallet at relatively low height and position in ground base, middle pallet need to be placed in above elevating mechanism compared with prior art
Structure, present invention reduces height during pallet loading, also just eliminates the melt pit built in workshop, reduces the building in workshop
Cost;On the other hand, the turnover driving mechanism carried in turning supporting seat can move pallet by loading chute sill bolt and overturn, in above-mentioned liter
Drop on the basis of function, maintain the walking dolly due upset of institute and walking function, be unlikely to the missing for function occur, technology
Retroversion, thus the walking dolly have the advantages that it is easy to use and without melt pit.
Brief description of the drawings
Fig. 1 is the structural representation of the walking dolly of depot in the present invention;
Fig. 2 is the structural representation of loading chute beam in Fig. 1.
Embodiment
Describe the present invention in detail below with reference to accompanying drawing and in conjunction with the embodiments.It should be noted that not conflicting
In the case of, the embodiment in the present invention and the feature in embodiment can be mutually combined.
The embodiment of Anodic carbon block depot of the present invention:As depicted in figs. 1 and 2, the depot includes being laid on ground
On the basis of walking guide rail and the walking dolly installed thereon, extend before and after walking guide rail, walking dolly uses door type structure, main
To be made up of two groups of walking units being symmetrical set and the crossbeam bridged between the two, each walking unit, which is used to connect, holds in the palm
The respective side edge of disk, and two walking units synchronous walking along the longitudinal direction.
Walking unit includes mobile holder 1, and mobile holder 1 is stand, and mobile holder 1 is mainly set gradually by from top to bottom
Back timber 11, column 12 and bottom girder 13 constitute.Bottom girder 13 for front and rear extension steel I-beam, bottom girder 13 it is main by from top to bottom according to
Secondary connected top plate, web and bottom plate composition;The middle part of bottom girder 13 has bracket 14, and bracket 14 is located at turning supporting seat for bottom
The part of lower section, top plate and web have the fracture for being located at the top of bracket 14;The vehicle with walking machine of walking before and after being provided with bottom girder 13
The driving wheel that the driven pulley and the other end of a setting are set in structure, rear and front end of the walking mechanism including bottom girder 13, driving wheel
It is in the same plane and less than bracket 14 with the lowest part of driven pulley, and driving wheel is connected with movable motor by reductor
15.Column 12 surrounds the cage 16 of the framework shape loaded for turning supporting seat in the front and rear sides of fracture, and the preceding of cage 16 is stood
Wall is provided with the preceding fluctuating orbit extended vertically, and the rear wall of cage 16 is provided with the rear fluctuating orbit extended vertically, preceding liter
It is above pallet and the groove 17 of front and rear Relative distribution to drop track and rear fluctuating orbit.
Walking unit also includes turning supporting seat 20, and turning supporting seat 20 is located in the cage 16 of mobile holder 1, turning supporting seat
20 are located between preceding fluctuating orbit and rear fluctuating orbit, and the front side of turning supporting seat 20 has or is connected with concavo-convex with preceding fluctuating orbit
Two coordinated between the upper and lower every forward guides, the rear side of turning supporting seat 20 has or is connected with and rear fluctuating orbit male-female engagement
Two between the upper and lower every rear guide, forward guides and rear guide are the roller 21 around the straight-line rolling of front and rear extension,
Roller 21 and the cell wall of respective slot 17 are rolled and coordinated, so that guiding movement is assemblied on mobile holder 1 above and below turnover bracket, are turned over
Turn bearing 20 at the limit inferior position of guiding movement up and down to fall on the bracket 14, remote another upset branch of turning supporting seat 20
The side of seat 20 is connected with turnover driving mechanism, and the turnover driving mechanism is upset motor 22.The top connection of turning supporting seat 20
There is the suspension member 23 of ear, suspension member 23 includes the load-bearing axle of left and right extension, and the two ends of load-bearing axle are connected to the both sides of turning supporting seat 20
The otic placode from the top stretching of turning supporting seat 20 is connected with plate, in the middle part of load-bearing axle, otic placode has earhole.
Walking unit also includes loading chute beam 3, and loading chute beam 3 is located between the mobile holder 1 of two walking units, loading chute
Beam 3 can relative to turning supporting seat 20 around left and right extend axis rotate drive connection on turnover driving mechanism, loading chute beam 3
One end is openend 31 in front-end and back-end, and the other end is blind end 32, and openend 31 is provided with for controlling opening switch
Plugging mechanism.The notch of loading chute beam 3 is opened towards another walking unit, and on the cell wall of openend 31 of loading chute beam 3
Provided with the bypass opening 33 communicated with vallecular cavity.Plugging mechanism is main by movable chuck 41, connecting portion 42 and closure drive mechanism 43
Composition.Movable chuck 41 coordinates with the plug of bypass opening 33, and movable chuck 41 can stretch into vallecular cavity and through side from bypass opening 33
Open up the movable chuck 41 that mouth 33 is exited from vallecular cavity.Movable chuck 41 is provided with the connecting portion 42 being hinged on loading chute beam 3, living
Dynamic dop 41 is a part for connecting portion 42.Block drive mechanism 43 to be located on loading chute beam 3, the closure driving of drive mechanism 43 connects
It is connected on movable chuck 41, it is flexible that closure drive mechanism 43 can drive movable chuck 41 to be plugged in bypass opening 33, and closure is driven
Motivation structure 43 is the telescoping cylinder being hinged between connecting portion 42 and loading chute beam 3.
Walking unit also includes lifting drive mechanism, and lifting drive mechanism is located at the top of turning supporting seat 20, and lifting is driven
Motivation structure is connected with turning supporting seat 20, and the lifting drive mechanism of two walking units mutually cooperates with lifting.Lifting driving
The steel wire rope pile warp pulley 52 that mechanism includes drawing on the hoist engine 51 positioned at the top of mobile holder 1, hoist engine 51 is connected to extension
On part 23.
Crossbeam 6 is bridged between the top of two mobile holders 1, the tops of two mobile holders 1 bridged by crossbeam 6 be connected and
Portal body is formed, crossbeam 6 is located between side of the blind end 32 away from openend 31, two mobile holders 1 in crossbeam 6 close to dress
The side for carrying the openend 31 of groove beam 3 is loading space.
The turning supporting seat 20 of walking dolly is lifted under the drive of lifting drive mechanism in the present embodiment, and in upset branch
When limit inferior position is dropped down onto under seat 20, in the case of the bracketing of bracket 14, turning supporting seat 20 is located at the bottom of mobile holder 1, now
Pallet is accepted at the height and position that loading chute beam 3 in turning supporting seat 20 can be relatively low in ground base, compared with prior art
The structure that middle pallet need to be placed in above elevating mechanism, present invention reduces height during pallet loading, is also just eliminated in workshop
The melt pit of construction, reduces the building cost in workshop;On the other hand, the turnover driving mechanism carried in turning supporting seat 20 can pass through
Loading chute beam 3 drives pallet upset, on the basis of above-mentioned elevating function, maintains walking dolly institute due upset and walking
Function, be unlikely to the missing for function occur, the retroversion of technology, thus the walking dolly have it is easy to use and without the excellent of melt pit
Point.
Finally it should be noted that:The above embodiments are merely illustrative of the technical solutions of the present invention, rather than its limitations;Although
The present invention is described in detail with reference to the foregoing embodiments, it will be understood by those within the art that:It still may be used
To be modified to the technical scheme described in foregoing embodiments, or equivalent substitution is carried out to which part technical characteristic;
And these modification or replace, do not make appropriate technical solution essence depart from various embodiments of the present invention technical scheme spirit and
Scope.
Claims (10)
1. walking dolly, it is characterised in that including two groups of walking units being symmetrical set, each walking unit is used to connect
The respective side edge of pallet, and two walking units synchronous walking along the longitudinal direction;
Walking unit includes mobile holder, walking mechanism or walking structure of the bottom provided with front and rear walking of mobile holder, walking
Have on support or be connected with the bracket positioned at mobile holder bottom;
Walking unit also includes guiding movement above and below turning supporting seat, turning supporting seat and is assemblied on mobile holder, and turning supporting seat is upper
Fall during the limit inferior position of lower guiding movement on the bracket, turnover driving mechanism is connected with turning supporting seat;
Walking unit also includes loading chute beam, and loading chute beam is located between the mobile holder of two walking units, and loading chute beam can phase
For turning supporting seat around left and right extend axis rotate drive connection on turnover driving mechanism, the front-end and back-end of loading chute beam
In at least one be for pallet corresponding edge load openend, and in front-end and back-end only have one end be openend when,
The other end is blind end, and openend is provided with the plugging mechanism for being used for controlling opening switch;
Walking unit also includes lifting drive mechanism, and lifting drive mechanism is located at the top of turning supporting seat, and lifting drive mechanism
It is connected with turning supporting seat, and the lifting drive mechanism of two walking units mutually cooperates with lifting.
2. walking dolly according to claim 1, it is characterised in that the mobile holder of two walking units is stand, two rows
The top for walking support bridges connected and forms portal body by crossbeam, and only one of which in the front-end and back-end of loading chute beam
For openend, another in front-end and back-end is blind end, and the crossbeam is located at side of the blind end away from openend, two walkings
Between support crossbeam close to loading chute beam openend side be loading space.
3. walking dolly according to claim 1 or 2, it is characterised in that have on mobile holder and be located above bracket
Fluctuating orbit, fluctuating orbit can be divided into the preceding fluctuating orbit on front side of turning supporting seat and the rear lifting on rear side of turning supporting seat
Relative distribution before and after track, preceding fluctuating orbit and rear fluctuating orbit;
Turning supporting seat is located between preceding fluctuating orbit and rear fluctuating orbit, and the front side of turning supporting seat has or is connected with and preceding lifting
Track male-female engagement or sleeve coordinate two between the upper and lower every forward guides, the rear side of turning supporting seat has or is connected with after
Fluctuating orbit male-female engagement or sleeve coordinate two between the upper and lower every rear guide.
4. walking dolly according to claim 3, it is characterised in that mobile holder has a frame loaded for turning supporting seat
The cage of frame shape, preceding fluctuating orbit is located on the preceding wall of cage, and rear fluctuating orbit is located on the rear wall of cage;
Turnover driving mechanism is located at the side of the dorsad loading chute beam of turnover bracket.
5. walking dolly according to claim 1 or 2, it is characterised in that the top of turning supporting seat has or be connected with hook
The suspension member of shape or ring-type or ear;
The steel wire rope that lifting drive mechanism includes drawing on the hoist engine above mobile holder, hoist engine is connected directly between extension
On part or pile warp pulley is connected on suspension member.
6. walking dolly according to claim 1 or 2, it is characterised in that the bottom of mobile holder is the front and rear work extended
Font or box bottom girder, bottom girder have top plate, web and the bottom plate being sequentially connected from top to bottom, and mobile holder has support
Seat, bracket is the part being located at below turning supporting seat of bottom, and top plate and web have the fracture being located above bracket.
7. walking dolly according to claim 6, it is characterised in that the bottom of mobile holder is provided with walking mechanism, walking
The driving wheel that the driven pulley and the other end of a setting are set in rear and front end of the mechanism including bottom girder, driving wheel and driven pulley
Lowest part is in the same plane and less than bracket, and driving wheel is connected with movable motor by reductor.
8. walking dolly according to claim 1 or 2, it is characterised in that the notch of loading chute beam is single towards another walking
Member, and the bypass opening communicated with vallecular cavity is offered on the openend cell wall of loading chute beam;
Plugging mechanism includes movable chuck, and movable chuck coordinates with bypass opening plug, and movable chuck can be stretched from bypass opening
Enter vallecular cavity and the movable chuck exited through bypass opening from vallecular cavity;
Plugging mechanism also includes closure drive mechanism, and closure drive mechanism is located on loading chute beam, and closure drive mechanism driving connects
It is connected on movable chuck, it is flexible that closure drive mechanism can drive movable chuck to be plugged in bypass opening.
9. walking dolly according to claim 8, it is characterised in that movable chuck is provided with and is hinged on loading chute beam
Connecting portion, movable chuck is a part for connecting portion or is connected with connecting portion;
It is the telescoping cylinder being hinged between connecting portion and loading chute beam to block drive mechanism.
10. anode carbon block depot, including the walking guide rail being laid in ground base and install thereon as above-mentioned right will
Seek the walking dolly described in any one in 1 to 9.
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CN201710103873.9A CN107055020B (en) | 2017-02-24 | 2017-02-24 | Anode carbon block loading and unloading station and walking trolley thereof |
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CN201710103873.9A CN107055020B (en) | 2017-02-24 | 2017-02-24 | Anode carbon block loading and unloading station and walking trolley thereof |
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CN2325356Y (en) * | 1997-12-25 | 1999-06-23 | 东风设计研究院 | Vehicle assembling conveyer of trolley automatic turning-back type |
EP1553042A1 (en) * | 2004-01-08 | 2005-07-13 | Demag Cranes & Components GmbH | trolley running on two rails with a winch |
CN206521014U (en) * | 2017-02-24 | 2017-09-26 | 新乡宏达冶金振动设备有限公司 | Anode carbon block depot and its walking dolly |
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2017
- 2017-02-24 CN CN201710103873.9A patent/CN107055020B/en active Active
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