CN207047338U - A kind of electrolytic cell silt displacement pneumatic bucket device - Google Patents
A kind of electrolytic cell silt displacement pneumatic bucket device Download PDFInfo
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- CN207047338U CN207047338U CN201720995226.9U CN201720995226U CN207047338U CN 207047338 U CN207047338 U CN 207047338U CN 201720995226 U CN201720995226 U CN 201720995226U CN 207047338 U CN207047338 U CN 207047338U
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- flange
- cylinder
- nahlock
- electrolytic cell
- threaded rod
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Abstract
The utility model discloses a kind of electrolytic cell silt displacement pneumatic bucket device, including cylinder, the top movable of the cylinder is connected with first flange, the internal whorl of the cylinder is connected with the first threaded rod, the top of first threaded rod sequentially passes through cylinder and first flange and extends to the outside of first flange, the bottom of the cylinder is connected with second flange, the internal whorl of the cylinder is connected with the second threaded rod, and the bottom of second threaded rod sequentially passes through cylinder and second flange and extends to the outside of second flange.The utility model is by setting first flange, the first threaded rod, second flange, the second threaded rod, motion bar, connecting rod, connecting plate, fixed block, the first nahlock, pull bar, the second nahlock, bucket body and the 3rd nahlock, grabbing electrolytic cell silt displacement pneumatic bucket device, low slag efficiency, malfunction, labor intensity are big, grab slag operation safety coefficient height, are advantageous to the use of people.
Description
Technical field
It the utility model is related to electrolytic magnesium production industry field and operate relevant device technical field with closing down magnesium electrolysis bath, specifically
For a kind of electrolytic cell silt displacement pneumatic bucket device.
Background technology
China is all manually with simple Slag Tool, closing down magnesium electrolysis bath in the slag of grabbing of magnesium eletrolysis industry development closing down magnesium electrolysis bath at initial stage
Operating environment of skimming all be high-temperature fusant, to there is labor intensity in such a instrument big during electrolytic cell is grabbed, malfunction,
Slagging-off is not clean, grabs that slag efficiency, safety coefficient are low, is unfavorable for the use of people.
Utility model content
The purpose of this utility model is to provide a kind of electrolytic cell silt displacement pneumatic bucket device possess electrolytic cell mud
Remove pneumatic bucket device and grab that low slag efficiency, malfunction, labor intensity are big, grab the advantages of slag operation safety coefficient is high, solve
Determined it is artificial grabbed with simple Slag Tool electrolytic cell during labor intensity to be present big, malfunction, slagging-off is not clean, grabs slag
The problem of efficiency, low safety coefficient.
To achieve the above object, the utility model provides following technical scheme:A kind of electrolytic cell silt displacement pneumatic bucket
Device, including cylinder, the top movable of the cylinder are connected with first flange, and the internal whorl of the cylinder is connected with the first spiral shell
Rasp bar, the top of first threaded rod sequentially pass through cylinder and first flange and extend to the outside of first flange, the gas
The bottom of cylinder is connected with second flange, and the internal whorl of the cylinder is connected with the second threaded rod, second threaded rod
Bottom sequentially pass through cylinder and second flange and extend to the outside of second flange, be fixedly connected at the top of the cylinder inner cavity
There is motion bar, the both sides of the second flange bottom have been fixedly connected with connecting rod, and the bottom of the connecting rod is fixedly connected with
Connecting plate, the both sides of the connecting plate bottom are fixedly connected with fixed block, and the back side of the fixed block is flexibly connected by bearing pin
There is the first nahlock, the back side of first nahlock is connected with pull bar by bearing pin, and the positive bottom of pull bar passes through pin
Axle is connected with the second nahlock, and the surface activity of second nahlock is connected with bucket body, and the bottom of the motion bar is passed through successively
Wear cylinder, second flange and connecting plate and extend to the external stability of connecting plate and be connected with the 3rd nahlock, the 3rd nahlock
Front is fixedly connected with fixed plate by bearing pin, and the top of two bucket bodies is flexibly connected with the bottom of fixed plate.
Preferably, the top movable of the first flange is connected with adapter sleeve, and the internal activity of the adapter sleeve is connected with
Link, the both sides of the link through adapter sleeve and extend to the outside of adapter sleeve.
Preferably, the surface activity of the adapter sleeve is connected with bearing, the bottom of the bearing and the top of first flange
It is fixedly connected.
Preferably, the surface of the link is fixedly connected with friction sleeve, and the friction sleeve is circle.
Preferably, the side of the bucket body is fixedly connected with non-slipping block, and the surface of the non-slipping block is provided with anti-slip veins.
Compared with prior art, the beneficial effects of the utility model are as follows:
1st, the utility model is by setting first flange, the first threaded rod, second flange, the second threaded rod, motion bar, company
Extension bar, connecting plate, fixed block, the first nahlock, pull bar, the second nahlock, bucket body and the 3rd nahlock, make electrolytic cell silt displacement pneumatic
Grab mechanisms grab that low slag efficiency, malfunction, labor intensity are big, grab slag operation safety coefficient height, are advantageous to the use of people.
2nd, the utility model makes electrolytic cell silt displacement pneumatic bucket device be easy to make by setting adapter sleeve and link
With by setting bearing, enabling link to rotate, by setting friction sleeve, increase the service life of link.
Brief description of the drawings
Fig. 1 is the utility model structure diagram;
Fig. 2 is the utility model structure pull bar connection diagram.
In figure:1 cylinder, 2 first flanges, 3 first threaded rods, 4 second flanges, 5 second threaded rods, 6 motion bars, 7 connections
Bar, 8 connecting plates, 9 fixed blocks, 10 first nahlocks, 11 second nahlocks, 12 bucket bodies, 13 the 3rd nahlocks, 14 bearings, 15 adapter sleeves, 16
Link, 17 non-slipping blocks, 18 friction sleeves, 19 pull bars, 20 fixed plates.
Embodiment
Below in conjunction with the accompanying drawing in the utility model embodiment, the technical scheme in the embodiment of the utility model is carried out
Clearly and completely describing, it is clear that described embodiment is only the utility model part of the embodiment, rather than whole
Embodiment.Based on the embodiment in the utility model, those of ordinary skill in the art are not under the premise of creative work is made
The every other embodiment obtained, belong to the scope of the utility model protection.
Refer to Fig. 1-2, a kind of electrolytic cell silt displacement pneumatic bucket device, including cylinder 1, the top movable of cylinder 1
First flange 2 is connected with, the top movable of first flange 2 is connected with adapter sleeve 15, and the internal activity of adapter sleeve 15 is connected with extension
Ring 16, the both sides of link 16 through adapter sleeve 15 and extend to the outside of adapter sleeve 15, by setting adapter sleeve 15 and link
16, it is easy to use electrolytic cell silt displacement pneumatic bucket device, the surface activity of adapter sleeve 15 is connected with bearing 14, bearing 14
Bottom be fixedly connected with the top of first flange 2, by setting bearing 14, link 16 is rotated, the surface of link 16
Friction sleeve 18 is fixedly connected with, friction sleeve 18 is circle, by setting friction sleeve 18, increases the service life of link 16, cylinder 1
Internal whorl be connected with the first threaded rod 3, the top of the first threaded rod 3 sequentially passes through cylinder 1 and first flange 2 and extended to
The outside of first flange 2, the bottom of cylinder 1 are connected with second flange 4, and the internal whorl of cylinder 1 is connected with the second screw thread
Bar 5, the bottom of the second threaded rod 5 sequentially pass through cylinder 1 and second flange 4 and the outside for extending to second flange 4, in cylinder 1
Motion bar 6 is fixedly connected with the top of chamber, the both sides of the bottom of second flange 4 have been fixedly connected with connecting rod 7, the bottom of connecting rod 7
End is fixedly connected with connecting plate 8, and the both sides of the bottom of connecting plate 8 are fixedly connected with fixed block 9, and the back side of fixed block 9 passes through bearing pin
The first nahlock 10 is connected with, the back side of the first nahlock 10 is connected with pull bar 19,19 positive bottom of pull bar by bearing pin
Portion is connected with the second nahlock 11 by bearing pin, and the surface activity of the second nahlock 11 is connected with bucket body 12, the side of bucket body 12
Non-slipping block 17 is fixedly connected with, the surface of non-slipping block 17 is provided with anti-slip veins, and the bottom of motion bar 6 sequentially passes through cylinder 1, second
Flange 4 and connecting plate 8 simultaneously extend to the external stability of connecting plate 8 and are connected with the 3rd nahlock 13, and the front of the 3rd nahlock 13 passes through
Bearing pin is fixedly connected with fixed plate 20, and the top of two bucket bodies 12 is flexibly connected with the bottom of fixed plate 20, by setting first
Flange 2, the first threaded rod 3, second flange 4, the second threaded rod 5, motion bar 6, connecting rod 7, connecting plate 8, fixed block 9, first
Nahlock 10, pull bar 19, the second nahlock 11, the nahlock 13 of bucket body 12 and the 3rd, make electrolytic cell silt displacement pneumatic bucket device grab slag
Efficiency is low, malfunction, labor intensity are big, grabs slag operation safety coefficient height, is advantageous to the use of people.
In use, link 16 is hung on lifting machine, electrolytic cell silt displacement pneumatic bucket is made by the davit of lifting machine
Device moves up and down, and reaches the startup control valve started after ideal position on lifting machine and carries out opening and closing work to bucket body 12
Make, grabbing electrolytic cell silt displacement pneumatic bucket device, low slag efficiency, malfunction, labor intensity are big, grab slag operation safety
Coefficient is high, is advantageous to the use of people.
In summary:The electrolytic cell silt displacement pneumatic bucket device, pass through first flange 2, the first threaded rod 3, second
Flange 4, the second threaded rod 5, motion bar 6, connecting rod 7, connecting plate 8, fixed block 9, the first nahlock 10, pull bar 19, the second nahlock
11st, the cooperation of the nahlock 13 of bucket body 12 and the 3rd, solve during manually being grabbed at present with simple Slag Tool electrolytic cell and labor be present
Fatigue resistance is big, and malfunction, slagging-off is not clean, grabs slag efficiency, the problem of safety coefficient is low.
While there has been shown and described that embodiment of the present utility model, for the ordinary skill in the art,
It is appreciated that these embodiments can be carried out with a variety of changes in the case where not departing from principle of the present utility model and spirit, repaiied
Change, replace and modification, the scope of the utility model are defined by the appended claims and the equivalents thereof.
Claims (5)
1. a kind of electrolytic cell silt displacement pneumatic bucket device, including cylinder (1), it is characterised in that:The top of the cylinder (1)
First flange (2) is connected with, the internal whorl of the cylinder (1) is connected with the first threaded rod (3), first threaded rod
(3) top sequentially passes through cylinder (1) and first flange (2) and extends to the outside of first flange (2), the cylinder (1)
Bottom is connected with second flange (4), and the internal whorl of the cylinder (1) is connected with the second threaded rod (5), second spiral shell
The bottom of rasp bar (5) sequentially passes through cylinder (1) and second flange (4) and extends to the outside of second flange (4), the cylinder
(1) motion bar (6) is fixedly connected with the top of inner chamber, the both sides of second flange (4) bottom have been fixedly connected with connecting rod
(7), the bottom of the connecting rod (7) is fixedly connected with connecting plate (8), and the both sides of connecting plate (8) bottom are fixedly connected with
Fixed block (9), the back side of the fixed block (9) are connected with the first nahlock (10), first nahlock (10) by bearing pin
The back side pull bar (19) is connected with by bearing pin, the positive bottom of the pull bar (19) is connected with second by bearing pin
Nahlock (11), the surface activity of second nahlock (11) are connected with bucket body (12), and the bottom of the motion bar (6) sequentially passes through
Cylinder (1), second flange (4) and connecting plate (8) simultaneously extend to the external stability of connecting plate (8) and are connected with the 3rd nahlock (13),
The front of 3rd nahlock (13) is fixedly connected with fixed plate (20) by bearing pin, the top of two bucket bodies (12) and fixed plate
(20) bottom is flexibly connected.
A kind of 2. electrolytic cell silt displacement pneumatic bucket device according to claim 1, it is characterised in that:First method
The top movable of blue (2) is connected with adapter sleeve (15), and the internal activity of the adapter sleeve (15) is connected with link (16), the extension
The both sides of ring (16) through adapter sleeve (15) and extend to the outside of adapter sleeve (15).
A kind of 3. electrolytic cell silt displacement pneumatic bucket device according to claim 2, it is characterised in that:The adapter sleeve
(15) surface activity is connected with bearing (14), and the bottom of the bearing (14) at the top of first flange (2) with being fixedly connected.
A kind of 4. electrolytic cell silt displacement pneumatic bucket device according to claim 2, it is characterised in that:The link
(16) surface is fixedly connected with friction sleeve (18), and the friction sleeve (18) is circle.
A kind of 5. electrolytic cell silt displacement pneumatic bucket device according to claim 1, it is characterised in that:The bucket body
(12) side is fixedly connected with non-slipping block (17), and the surface of the non-slipping block (17) is provided with anti-slip veins.
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CN201720995226.9U CN207047338U (en) | 2017-08-10 | 2017-08-10 | A kind of electrolytic cell silt displacement pneumatic bucket device |
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CN201720995226.9U CN207047338U (en) | 2017-08-10 | 2017-08-10 | A kind of electrolytic cell silt displacement pneumatic bucket device |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN109761471A (en) * | 2018-12-10 | 2019-05-17 | 唐山冀油瑞丰化工有限公司 | Continuous ultrasound couples critical coprocessing oily sludge/sewage method and apparatus |
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2017
- 2017-08-10 CN CN201720995226.9U patent/CN207047338U/en active Active
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN109761471A (en) * | 2018-12-10 | 2019-05-17 | 唐山冀油瑞丰化工有限公司 | Continuous ultrasound couples critical coprocessing oily sludge/sewage method and apparatus |
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