CN214811743U - Scalable flotation cell - Google Patents

Scalable flotation cell Download PDF

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Publication number
CN214811743U
CN214811743U CN202120968692.4U CN202120968692U CN214811743U CN 214811743 U CN214811743 U CN 214811743U CN 202120968692 U CN202120968692 U CN 202120968692U CN 214811743 U CN214811743 U CN 214811743U
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CN
China
Prior art keywords
plate
plates
support frame
scalable
splice
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Expired - Fee Related
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CN202120968692.4U
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Chinese (zh)
Inventor
彭斌彬
刘建东
何贤龙
郭毅
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University of South China
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University of South China
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Priority to CN202120968692.4U priority Critical patent/CN214811743U/en
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Publication of CN214811743U publication Critical patent/CN214811743U/en
Expired - Fee Related legal-status Critical Current
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Abstract

The utility model discloses a scalable flotation cell, including folding support frame, folding long-pending pocket has been cup jointed to the inside of support frame, and the curb plate of long-pending pocket is equipped with the turn-ups of outside upset with the inner wall laminating of support frame and upper end, and one side of long-pending pocket is equipped with the domatic that is used for water conservancy diversion foam product, and the support frame includes two fixed plates, and both sides between two fixed plates are equipped with folding curb plate respectively, the utility model discloses can take off long-pending pocket and fold alone to through rotating the bracket to vertical state and rotate the bottom plate to the laminating on the splice plate, promote two fixed plates relatively, cause two fixed plate relative slip, and the curb plate is the wave form and folds together, thereby has reduced the volume of support frame, has saved storage space, reduces equipment cost of transportation.

Description

Scalable flotation cell
Technical Field
The utility model relates to a flotation cell designs technical field, specifically is a scalable flotation cell.
Background
The development and application of flotation equipment are more than 100 years, the flotation technology is greatly developed, the flotation tank is gradually developed in the directions of diversification, serialization, maximization and automation, the application field is continuously expanded, and the application requirements of nonferrous metals, ferrous metals, water treatment, biological separation and other aspects are basically met; however, the existing common flotation cell has the defects of large occupied area and high equipment transportation cost, so a telescopic flotation cell is provided.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a scalable flotation cell to solve the problem that proposes among the above-mentioned background art.
In order to achieve the above object, the utility model provides a following technical scheme: the utility model provides a scalable flotation cell, includes folding support frame, folding long-pending pocket has been cup jointed to the inside of support frame, the curb plate of long-pending pocket is equipped with the turn-ups of outside upset with the inner wall laminating and the upper end of support frame, and it has the inlet pipe to open on the lateral wall of long-pending pocket, and the inlet pipe plays the effect of connecting long-pending pocket and main cell body, causes the mineral liquid to flow between main cell body and long-pending pocket, one side of long-pending pocket is equipped with domatic that is used for water conservancy diversion foam product, the support frame includes two fixed plates, and both sides between two fixed plates are equipped with respectively and are the folding curb plate of wave form and be used for realizing reducing the volume of support frame.
Preferably, the side plate comprises a plurality of splicing plates, two adjacent splicing plates are rotatably connected, and the splicing plate at the outermost edge is rotatably connected with the fixed plate.
Preferably, connect through a plurality of between two adjacent splice plates and rotate the connection, connect the piece including the splint of two symmetries more, the middle part of two splint is through bolt fixed connection, and both ends all form the hoop groove that is used for hooping the splice plate after two splint amalgamations, and the lateral wall hoop of two adjacent splice plates realizes rotating the connection in hoop inslot portion, and the splice plate at most marginal also rotates through connecting piece and fixed plate and is connected.
Preferably, be located and be equipped with on the curb plate of domatic one side and be used for supporting domatic bracket, the bracket includes a plurality of swash plates, and two adjacent swash plates rotate through the articulated elements and connect, the swash plate lower extreme passes through the articulated elements and is connected with the splice plate rotation, it is connected with branch to rotate on the lateral wall of splice plate, the upper end activity joint of branch is used for realizing the angle of fixed swash plate on the lateral wall of swash plate.
Preferably, the lower ends of the splice plates on any side are rotatably connected with a bottom plate used for supporting the bottom of the material accumulation bag, one end, away from the rotating point, of the bottom plate is connected with a clamping hook, and the clamping hook is movably clamped on the splice plate on the other side and used for fixing the side plate in the unfolded state.
Preferably, the upper ends of the two fixing plates are respectively provided with an installation position for supporting the stirring device, and the material accumulation bag is provided with a notch on the side wall of the installation position.
Compared with the prior art, the beneficial effects of the utility model are that: the utility model discloses can take off long-pending material bag and fold alone to through rotating the bracket to vertical state and rotating the bottom plate to the laminating on the splice plate, promote two fixed plates relatively, cause two fixed plate relative slip, and the curb plate is the wave form and folds together, thereby has reduced the volume of support frame, has saved storage space, reduces equipment cost of transportation.
Drawings
Fig. 1 is a schematic view of the overall structure of the present invention;
FIG. 2 is an exploded view of the support frame and the material accumulation bag of the present invention;
fig. 3 is an enlarged view of the point a of fig. 2 according to the present invention;
fig. 4 is a semi-folding schematic view of the support frame, the side plate and the sloping plate of the present invention;
fig. 5 is a folding schematic view of the support frame, the side plate and the sloping plate of the present invention;
FIG. 6 is an exploded view of the splice plate, clamping plate and bolt of the present invention;
FIG. 7 is a schematic structural diagram I of the fixing plate, the splicing plate, the bottom plate and the sloping plate of the present invention;
fig. 8 is a schematic structural diagram II of the fixing plate, the splicing plate, the bottom plate and the inclined plate of the present invention.
In the figure: 1. the support frame, 101, the fixed plate, 102, the curb plate, 1021, the splice plate, 103, the installation position, 104, the bottom plate, 1041, the pothook, 2, long-pending material bag, 201, the turn-ups, 202, the inlet pipe, 203, domatic, 204, breach, 3, the union piece, 301, splint, 302, the bolt, 4, the bracket, 401, the swash plate, 402, branch.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
Referring to fig. 1-8, the present invention provides a technical solution: a telescopic flotation tank comprises a foldable support frame 1, a foldable material accumulation bag 2 is sleeved inside the support frame 1, the side plate of the material accumulation bag 2 is attached to the inner wall of the support frame 1, the upper end of the material accumulation bag is provided with a flanging 201 which turns outwards, the side wall of the material accumulation bag 2 is provided with a feeding pipe 202, the feeding pipe 202 plays a role in connecting the material accumulation bag 2 with the main groove body, so that mineral liquid can flow between the main groove body and the material accumulation bag 2, as shown in fig. 1, a plurality of pulling ropes are connected to the flange 201, the flange 201 can be connected with the supporting frame 1 by using the pulling ropes, thereby playing the role of fixing the opening part of the material accumulation bag 2, one side of the material accumulation bag 2 is provided with a slope 203 for guiding the foam product, the support frame 1 comprises two fixing plates 101, and two sides between the two fixing plates 101 are respectively provided with a side plate 102 folded in a wave shape for reducing the volume of the support frame 1.
In order to realize the folding of the side panel 102, specifically, the side panel 102 includes a plurality of splicing plates 1021, two adjacent splicing plates 1021 are rotatably connected, and the outermost splicing plate 1021 is rotatably connected with the fixing plate 101.
In order to realize that two adjacent splicing plates 1021 can rotate, specifically, the two adjacent splicing plates 1021 are rotatably connected through a plurality of connecting pieces 3, each connecting piece 3 comprises two symmetrical clamping plates 301, the middle parts of the two clamping plates 301 are fixedly connected through bolts 302, and two ends of each of the two clamping plates 301 after being spliced form hoop grooves for hooping the splicing plates 1021, as shown in fig. 6, annular grooves are formed in the positions of the side walls of the splicing plates 1021 hooped by the clamping plates 301, so that the clamping plates 301 are prevented from shifting on the splicing plates 1021, the side walls of the two adjacent splicing plates 1021 are hooped in the hoop grooves to realize the rotary connection, and the splicing plate 1021 at the outermost edge is also rotatably connected with the fixing plate 101 through the connecting pieces 3;
take two adjacent splice plates 1021 as an example: lean on two adjacent splice plate 1021 one side that need connect together, then detain two splint 301 in the both sides of splice plate 1021 lateral wall, connect two splint 301 taut with bolt 302 this moment, can realize rotating two adjacent splice plate 1021 and connect like this, the splice plate 1021 at the most marginal is the same with the connected mode of fixed plate 101 and the mode that two adjacent splice plate 1021 are connected.
As shown in fig. 1-3, in order to support the slope 203 and prevent the slope 203 from deforming during foam diversion, specifically, a bracket 4 for supporting the slope is disposed on the side plate 102 on one side of the slope 203, the bracket 4 includes a plurality of sloping plates 401, two adjacent sloping plates 401 are rotatably connected by hinges 3, the lower ends of the sloping plates 401 are rotatably connected to a splice plate 1021 through the hinges 3, a support rod 402 is rotatably connected to the side wall of the splice plate 1021, the upper end of the support rod 402 is movably connected to the side wall of the sloping plate 401 to fix the angle of the sloping plate 401, as shown in fig. 7, the end of the support rod 402 is provided with a top groove, the support rod 402 pushes the top groove against the side wall of the sloping plate 401, and at this time, the sloping plate 401 can be fixed, so that the sloping plate 401 supports the slope 203 and prevents the slope 203 from deforming.
As shown in fig. 7-8, in order to support the bottom of the material accumulation bag 2 and fix the unfolded side plate 102, thereby preventing the side plate 102 from being deformed by the supporting force of the mineral liquid inside the material accumulation bag 2, specifically, the lower end of the splice plate 1021 on any side is rotatably connected with a bottom plate 104 for supporting the bottom of the material accumulation bag 2, one end of the bottom plate 104 far from the rotation point is connected with a hook 1041, and the hook 1041 is movably clamped on the splice plate 1021 on the other side for fixing the side plate 102 in the unfolded state;
when the support frame 1 is unfolded, the clamping hooks 1041 on the bottom plate 104 are fixedly clamped on the splicing plates 1021 on the other side, the side plates 102 on two sides are connected through the bottom plate 104, and when mineral liquid is filled in the material accumulation bag 2, the adjacent splicing plates 1021 are prevented from rotating due to the limitation of the bottom plate 104, so that the effect of fixing the side plates 102 is achieved.
In order to facilitate the fixed installation of the stirring device, specifically, the upper ends of the two fixing plates 101 are respectively provided with an installation position 103 for supporting the stirring device, and the material accumulation bag 2 is provided with a notch 204 on the side wall of the installation position 103.
The working principle is as follows: during installation, the device is transported to a placement area in a state shown in fig. 5, then the two fixing plates 101 are pulled to pull open the folded side plates 102, so that the splicing plates 1021 are in a vertical state, the bottom plate 104 is rotated to a tiled state and then is clamped on the splicing plates 1021 on the other side by the clamping hooks 1041, then the inclined plates 401 are propped up by the supporting rods 402 to unfold the material accumulation bags 2, so that the material accumulation bags 2 are sleeved inside the supporting frame 1, at the moment, the upper end openings of the material accumulation bags 2 are fixed by the pull ropes on the flanging 201, at the moment, the stirring device is suspended above the material accumulation bags 2 through the external crane equipment and is fixedly installed on the installation position 103, and at the moment, the installation is finished; during disassembly, after the stirring device is disassembled from the installation position 103, the material accumulation bag 2 is taken down and folded independently, then the bottom plate 104 is rotated to be in a state of being attached to the splicing plate 1021, the inclined plate 401 is rotated to be flush with the splicing plate 1021, the two fixing plates 101 are pushed to extrude the side plate 102, the side plate 102 is folded in a wave shape state (as shown in fig. 4), and finally the support frame 1 can be folded to be in a state shown in fig. 5, so that the state is convenient to transport and store;
in addition, the fixing plate 101, the splice plate 1021, the sloping plate 401 and the bottom plate 104 can be in the shape of a grid spliced by steel bars, or in the shape of a flat plate, and the grid can reduce the weight of the support frame 1, thereby being beneficial to better transportation.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.

Claims (6)

1. A scalable flotation cell characterized by: including folding support frame (1), folding long-pending pocket (2) have been cup jointed to the inside of support frame (1), the curb plate of long-pending pocket (2) is laminated with the inner wall of support frame (1) and the upper end is equipped with turn-ups (201) of outside upset, one side of long-pending pocket (2) is equipped with domatic (203) that are used for water conservancy diversion foam product, support frame (1) includes two fixed plates (101), and both sides between two fixed plates (101) are equipped with folding curb plate (102) respectively.
2. A scalable flotation cell according to claim 1, wherein: the side plate (102) comprises a plurality of splicing plates (1021), two adjacent splicing plates (1021) are rotatably connected, and the splicing plate (1021) at the edge is rotatably connected with the fixing plate (101).
3. A scalable flotation cell according to claim 2, wherein: rotate through a plurality of articulated elements (3) between two adjacent splice plates (1021) and connect, articulated element (3) include splint (301) of two symmetries, bolt (302) fixed connection is passed through at the middle part of two splint (301), and both ends all form the hoop groove that is used for hooping splice plate (1021) after two splint (301) amalgamation, and the lateral wall hoop of two adjacent splice plates (1021) is being connected in the inside rotation of hoop groove realization, and splice plate (1021) of most marginal also rotate with fixed plate (101) through articulated element (3) and be connected.
4. A scalable flotation cell according to claim 3, wherein: be located and be equipped with on curb plate (102) of domatic (203) one side and be used for supporting domatic bracket (4), bracket (4) include a plurality of swash plates (401), and two adjacent swash plates (401) rotate through articulated elements (3) and connect, swash plate (401) lower extreme is passed through articulated elements (3) and is rotated with splice plate (1021) and be connected, it is connected with branch (402) to rotate on the lateral wall of splice plate (1021), the upper end activity joint of branch (402) is used for realizing the angle of fixed swash plate (401) on the lateral wall of swash plate (401).
5. A scalable flotation cell according to claim 2, 3 or 4, wherein: the lower end of the splice plate (1021) on any side is rotatably connected with a bottom plate (104) used for supporting the bottom of the material accumulation bag (2), one end of the bottom plate (104) far away from the rotating point is connected with a clamping hook (1041), and the clamping hook (1041) is movably clamped on the splice plate (1021) on the other side.
6. A scalable flotation cell according to claim 1, wherein: the upper ends of the two fixing plates (101) are respectively provided with an installation position (103) for supporting the stirring device, and the side wall of the material accumulation bag (2) which is located on the installation position (103) is provided with a notch (204).
CN202120968692.4U 2021-05-08 2021-05-08 Scalable flotation cell Expired - Fee Related CN214811743U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202120968692.4U CN214811743U (en) 2021-05-08 2021-05-08 Scalable flotation cell

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202120968692.4U CN214811743U (en) 2021-05-08 2021-05-08 Scalable flotation cell

Publications (1)

Publication Number Publication Date
CN214811743U true CN214811743U (en) 2021-11-23

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CN202120968692.4U Expired - Fee Related CN214811743U (en) 2021-05-08 2021-05-08 Scalable flotation cell

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115518774A (en) * 2022-09-28 2022-12-27 昆明理工大学 Flotation machine for improving flotation quality
CN117358798A (en) * 2023-12-04 2024-01-09 山东高速德建集团有限公司 Auxiliary device for bending metal pipe

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115518774A (en) * 2022-09-28 2022-12-27 昆明理工大学 Flotation machine for improving flotation quality
CN115518774B (en) * 2022-09-28 2024-04-26 昆明理工大学 Flotation machine for improving flotation quality
CN117358798A (en) * 2023-12-04 2024-01-09 山东高速德建集团有限公司 Auxiliary device for bending metal pipe
CN117358798B (en) * 2023-12-04 2024-03-12 山东高速德建集团有限公司 Auxiliary device for bending metal pipe

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Granted publication date: 20211123