CN211328244U - Environment-friendly dewatering device for chemical production - Google Patents

Environment-friendly dewatering device for chemical production Download PDF

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Publication number
CN211328244U
CN211328244U CN201922021714.1U CN201922021714U CN211328244U CN 211328244 U CN211328244 U CN 211328244U CN 201922021714 U CN201922021714 U CN 201922021714U CN 211328244 U CN211328244 U CN 211328244U
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China
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dewatering
box
side wall
dehydration
block
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CN201922021714.1U
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Chinese (zh)
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茆正伟
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Yancheng Yuanda Environmental Protection Equipment Co ltd
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Yancheng Yuanda Environmental Protection Equipment Co ltd
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Abstract

The utility model discloses an environment-friendly dehydration device for chemical production, which comprises a base, wherein a dehydration outer box is arranged above the base, a dehydration inner box is fixed inside the dehydration outer box by the upper part, mounting grooves are arranged inside the upper side walls of the dehydration outer box and the dehydration inner box, an upper cover is arranged above the mounting grooves, and external threads are arranged on the outer side wall of the upper cover, the utility model realizes the function of cleaning the residue of the previous dehydration chemical product attached on the side wall of the dehydration inner box before the dehydration of the other chemical product is carried out by arranging the structures of the mounting grooves, a first sealing gasket, a connecting plate, the upper cover, a driven gear, a cylinder, a driving gear, a rotating motor, external threads, internal threads, a brush and the like, thereby effectively ensuring the dehydration quality of the other chemical product and simultaneously facilitating the cleaning of the brush, to ensure its operating efficiency.

Description

Environment-friendly dewatering device for chemical production
Technical Field
The utility model belongs to the technical field of chemical production device, concretely relates to environment-friendly dewatering device for chemical production.
Background
In the production process of chemical products, the chemical products of part first production water content is higher, and the various products that obtain after the rectifying column rectification in addition, its inside still contains certain moisture, can't reach the index requirement of moisture content regulation, influences the quality of product, so need use environment-friendly dewatering device to dewater it, but, current environment-friendly dewatering device for chemical production still has some defects.
The environment-friendly dehydration device for chemical production in the prior art has the following problems: 1. the interior of a dehydration inner box of the existing environment-friendly dehydration device for chemical production is not provided with a perfect cleaning device, and when dehydration operation is carried out, partial residues can be attached to the inner wall, so that the quality of subsequent dehydration operation of other different types of chemical products is influenced; 2. the existing purification device in the environment-friendly dehydration device for chemical production is not convenient for regular replacement and affects the purification quality of water after long-term use.
SUMMERY OF THE UTILITY MODEL
To solve the problems set forth in the background art described above. The utility model provides an environment-friendly dewatering device for chemical production, perfect cleaning device has, before carrying out the dehydration of another chemical product, can wash the residue that the last dehydration chemical product was attached to the dehydration inner box lateral wall, and then can effectively ensure the dehydration quality of another chemical product, be convenient for regularly clear up the brush simultaneously to ensure its work efficiency, and purifier is convenient for regularly change, and then can effectively ensure the purification quality's of water characteristics.
In order to achieve the above object, the utility model provides a following technical scheme: an environment-friendly dehydration device for chemical production comprises a base, wherein a dehydration outer box is placed above the base, a dehydration inner box is fixed inside the dehydration outer box by the upper part, mounting grooves are formed in the upper side walls of the dehydration outer box and the dehydration inner box, an upper cover is arranged above the mounting grooves, external threads are arranged on the outer side wall of the upper cover, internal threads are arranged on the inner side wall of the mounting grooves and at positions corresponding to the external threads, a first sealing gasket is fixed below the upper cover by the outer side, first sealing grooves are formed in the inner parts of the upper side walls of the dehydration outer box and the dehydration inner box and at positions corresponding to the first sealing gasket, an air cylinder is placed at the middle position above the upper cover, a driven gear is fixed above the air cylinder, a driving gear is meshed on the right side of the driven gear, and a rotating motor is arranged below the driving gear, a connecting plate is arranged at the position below the upper cover and inside the inner dewatering box, brushes are fixed on the left side and the right side of the connecting plate, liquid inlets are arranged at the right sides of the inner dewatering box and the outer dewatering box, a plurality of springs are uniformly fixed between the inner dewatering box and the outer dewatering box, two vibrators are symmetrically fixed between the inner dewatering box and the outer dewatering box by the lower side, a liquid outlet is arranged below the inner dewatering box, a first outlet is arranged below the liquid outlet by the left side, a second outlet is arranged below the liquid outlet by the right side, a water purifying device is arranged below the first outlet and the second outlet and at the position inside the outer dewatering box, a placing block is arranged outside the water purifying device, a placing groove is arranged inside the side wall of the inner dewatering box and at the position corresponding to the placing block, and the right side of the placing block extends to the outside of the right side wall of the outer dewatering box, the inner part of the placing block is provided with a handle close to the right side, the outer side of the right side of the placing block is fixed with a connecting block, one side of the connecting block close to the right side wall of the dewatering outer box is fixed with a first locating block, the inner part of the right side wall of the dewatering outer box and the position corresponding to the first locating block are provided with a first locating groove, the connecting block is close to one side of the right side wall of the dewatering outer box and the position corresponding to the inner side of the first locating block is fixed with a second sealing gasket, the inner part of the right side wall of the dewatering outer box and the position corresponding to the second sealing gasket are provided with a second sealing groove, the right side of the placing block is provided with a fastening plate, the upper side and the lower side of the fastening plate are fixedly connected with the dewatering outer box through first bolts, the left side and the right side of the fastening plate and the position close to the connecting block are provided with, a second positioning groove is formed in the inner parts of the front side wall and the rear side wall of the dewatering outer box and corresponds to the position of the second positioning block, the fastening plate, the second positioning block and the dewatering outer box are fixed through a second bolt, and a water outlet is formed in the right side of the dewatering outer box close to the lower side;
the water purifying device comprises a sieve plate, an active carbon adsorption layer and an ion exchange resin layer, wherein the active carbon adsorption layer is arranged below the sieve plate, and the ion exchange resin layer is arranged on one side, far away from the sieve plate, of the active carbon adsorption layer.
Preferably, a connecting shaft is arranged below the air cylinder, and penetrates through the upper cover and is fixedly connected with the connecting plate.
Preferably, the cross section of the outer dewatering box is of a square structure, and the cross section of the inner dewatering box is of a circular structure.
Preferably, the first sealing gasket, the second sealing gasket and the clamping block are all made of elastic rubber.
Preferably, the place block right side wall inside and corresponding handle position department seted up the hemisphere recess, the right surface of handle and place the block by the surface parallel and level.
Preferably, the inside wall of standing groove is provided with the fastening gasket, the fastening gasket sets up for the silica gel material.
Compared with the prior art, the beneficial effects of the utility model are that:
1. the utility model discloses a set up the mounting groove, first seal gasket, the connecting plate, the upper cover, driven gear, the cylinder, the driving gear, the rotating electrical machines, the external screw thread, internal thread and brush isotructure, realized before carrying out the dehydration of another kind of chemical products, can carry out abluent function to the residue that the last kind of dehydration chemical products was attached to the dehydration inner box lateral wall, and then can effectively ensure the dehydration quality of another kind of chemical products, be convenient for regularly clear up the brush simultaneously to ensure its work efficiency.
2. The utility model discloses a set up handle, mounting plate, place piece, standing groove, first bolt, connecting block, second seal groove, second seal gasket, first constant head tank, second bolt, press from both sides tight piece, second locating piece and second constant head tank isotructure, under the mutually supporting of these structures, realized when guaranteeing the leakproofness, purifier is convenient for the function of periodic replacement, and then can effectively ensure the purification quality of water.
Drawings
Fig. 1 is a schematic structural view of a cross section of the present invention;
FIG. 2 is a schematic structural view of the cross section of FIG. 1A-A of the present invention;
fig. 3 is an enlarged schematic structural view of fig. 1A of the present invention;
fig. 4 is an enlarged schematic structural view of fig. 2B of the present invention;
in the figure: 1. a base; 2. a first outlet; 3. a liquid outlet; 4. a dewatering outer box; 5. a spring; 6. mounting grooves; 7. a first seal groove; 8. a first sealing gasket; 9. a connecting plate; 10. an upper cover; 11. a driven gear; 12. a cylinder; 13. a driving gear; 14. a rotating electric machine; 15. an external thread; 16. a liquid inlet; 17. an internal thread; 18. a brush; 19. a dewatering inner box; 20. a vibrator; 21. a second outlet; 22. a handle; 23. a fastening plate; 24. a water outlet; 25. a water purification device; 251. a sieve plate; 252. an activated carbon adsorption layer; 253. an ion exchange resin layer; 26. placing the blocks; 27. a placement groove; 28. a first bolt; 29. connecting blocks; 30. a second seal groove; 31. a second sealing gasket; 32. a first positioning block; 33. a first positioning groove; 34. a second bolt; 35. a clamping block; 36. a second positioning block; 37. a second positioning groove.
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. 1-4, the present invention provides the following technical solutions: an environment-friendly dehydration device for chemical production comprises a base 1, a dehydration outer box 4 is placed above the base 1, a dehydration inner box 19 is fixed inside the dehydration outer box 4 by the upper part, a mounting groove 6 is arranged inside the upper side walls of the dehydration outer box 4 and the dehydration inner box 19, an upper cover 10 is arranged above the mounting groove 6, an external thread 15 is arranged on the outer side wall of the upper cover 10, an internal thread 17 is arranged on the inner side wall of the mounting groove 6 and corresponding to the external thread 15, a first sealing gasket 8 is fixed outside the lower part of the upper cover 10, a first sealing groove 7 is arranged inside the upper side walls of the dehydration outer box 4 and the dehydration inner box 19 and corresponding to the first sealing gasket 8, an air cylinder 12 is placed at the middle position above the upper cover 10, a driven gear 11 is fixed above the air cylinder 12, a driving gear 13 is meshed on the right side of the driven gear 11, a rotating motor 14 is arranged below the driving, a connecting plate 9 is arranged at the position which is arranged below the upper cover 10 and inside the inner dehydration box 19, the left and right sides of the connecting plate 9 are both fixed with brushes 18, the right sides of the inner dehydration box 19 and the outer dehydration box 4 are provided with liquid inlets 16, a plurality of springs 5 are evenly fixed between the inner dehydration box 19 and the outer dehydration box 4, two vibrators 20 are symmetrically fixed between the inner dehydration box 19 and the outer dehydration box 4 by the left and right sides below, a liquid outlet 3 is arranged below the inner dehydration box 19, a first outlet 2 is arranged below the liquid outlet 3 by the left side, a second outlet 21 is arranged below the liquid outlet 3 by the right side, a water purifying device 25 is arranged below the first outlet 2 and the second outlet 21 and at the position which is arranged inside the outer dehydration box 4, a placing block 26 is arranged outside the water purifying device 25, a placing groove 27 is arranged inside the side wall of the outer dehydration box 4 and at the position which corresponds to the placing block 26, the right side of the placing block 26 extends to the outside of the right side wall of the dewatering outer box 4, a handle 22 is arranged in the placing block 26 close to the right side, a connecting block 29 is fixed on the outer side of the right side of the placing block 26, a first positioning block 32 is fixed on one side of the connecting block 29 close to the right side wall of the dewatering outer box 4, a first positioning groove 33 is arranged in the inner part of the right side wall of the dewatering outer box 4 and corresponds to the position of the first positioning block 32, a second sealing gasket 31 is fixed on one side of the connecting block 29 close to the right side wall of the dewatering outer box 4 and is positioned at the inner side of the first positioning block 32, a second sealing groove 30 is arranged in the inner part of the right side wall of the dewatering outer box 4 and corresponds to the position of the second sealing gasket 31, a fastening plate 23 is arranged on the right side of the placing block 26, the upper side and the lower side of the fastening plate 23 are fixedly connected with the dewatering outer box, a second positioning block 36 is fixed on one side of the fastening plate 23 close to the front and rear side walls of the dewatering outer box 4, a second positioning groove 37 is formed in the front and rear side walls of the dewatering outer box 4 and corresponds to the second positioning block 36, the fastening plate 23, the second positioning block 36 and the dewatering outer box 4 are fixed through a second bolt 34, and a water outlet 24 is formed in the right side of the dewatering outer box 4 and close to the lower side;
the water purifying device 25 comprises a sieve plate 251, an activated carbon adsorption layer 252 and an ion exchange resin layer 253, wherein the activated carbon adsorption layer 252 is arranged below the sieve plate 251, and the ion exchange resin layer 253 is arranged on one side, away from the sieve plate 251, of the activated carbon adsorption layer 252.
In order to facilitate the cylinder 12 to drive the connecting plate 9 to move, in this embodiment, preferably, a connecting shaft is arranged below the cylinder 12, and the connecting shaft penetrates through the upper cover 10 and is fixedly connected with the connecting plate 9.
In order to facilitate the normal placement and work of the inner structure thereof, in the embodiment, it is preferable that the cross section of the outer dewatering box 4 is set to be a square structure, and the cross section of the inner dewatering box 19 is set to be a circular structure.
In order to ensure the sealing performance of the device, in this embodiment, it is preferable that the first sealing gasket 8, the second sealing gasket 31 and the clamping block 35 are made of elastic rubber.
In order to facilitate the whole water purifying device 25 to be drawn out by the handle 22, in the embodiment, preferably, a hemispherical groove is formed inside the right sidewall of the placing block 26 and at a position corresponding to the handle 22, and the right surface of the handle 22 is flush with the surface of the placing block 26.
In order to facilitate stable placement of the water purifying device 25, in the embodiment, preferably, the inner side wall of the placing groove 27 is provided with a fastening gasket made of silica gel.
The utility model discloses a theory of operation and use flow: when the utility model is used, firstly, the chemical product to be dehydrated is introduced into the dehydrating outer box 4 through the liquid inlet 16, then the switch of the vibrator 20 is started, so that the dehydrating outer box 4 and the chemical product to be dehydrated in the dehydrating outer box start to vibrate, under the action of density difference, the liquid to be separated and the water are layered, then the control valve of the first outlet 2 can be opened, so that the liquid to be separated flows out through the liquid outlet 3 and the first outlet 2, then the control valve of the first outlet 2 is closed, the control valve of the second outlet 21 is started, so that the water above flows out to the second outlet 21 through the liquid outlet 3, and then flows to the sieve plate 251, the active carbon adsorption layer 252 and the ion exchange resin layer 253 respectively through the second outlet 21 (purification operation), finally, flows out through the water outlet 24, the dehydration process is finished, after the device works for a period of time, before the other chemical products are dehydrated, the inner side wall of the inner dewatering box 19 needs to be cleaned, at the moment, water is introduced into the inner dewatering box 19 through the liquid inlet 16, the switches of the air cylinder 12 and the rotating motor 14 are started, the driving gear 13 drives the driven gear 11 and further drives the air cylinder 12 to rotate under the action of the rotating motor 14, so that the connecting plate 9 drives the brush 18 to rotate, meanwhile, the brush 18 moves downwards under the action of the connecting shaft, in the process, attachments on the inner side wall of the inner dewatering box 19 can be cleaned, then, the control valve of the first outlet 2 is opened, so that cleaning liquid flows out through the first outlet 2, when the water purifying device 25 needs to be integrally replaced to ensure the working efficiency, only the first bolt 28 and the second bolt 34 need to be taken down, the fastening plate 23 is taken out along the right side (the clamping block 35 leaves the connecting block 29, the second positioning block 36 slides to be separated from the second positioning groove 37), handle 22 is pulled by hand again for first locating piece 32 is taken out along first locating slot 33, second seal gasket 31 breaks away from second seal groove 30, place piece 26 and be taken out along standing groove 27, again with new purifier 25 with place piece 26 reinstallate can, subsequent work efficiency has been ensured, in addition, if need clear up brush 18, only need under the effect of external screw thread 15 and internal thread 17, with upper cover 10 together with connecting plate 9 and brush 18, take out from the inside of mounting groove 6, first seal gasket 8 breaks away from first seal groove 7, clear up brush 18, after the clearance is accomplished, reinstallate can.
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. The utility model provides an environment-friendly dewatering device for chemical production, includes base (1), its characterized in that: a dewatering outer box (4) is placed above the base (1), a dewatering inner box (19) is fixed inside the dewatering outer box (4) by the upper side, a mounting groove (6) is formed in the upper side wall of the dewatering outer box (4) and the dewatering inner box (19), an upper cover (10) is arranged above the mounting groove (6), external threads (15) are arranged on the outer side wall of the upper cover (10), internal threads (17) are arranged on the inner side wall of the mounting groove (6) and correspond to the external threads (15), a first sealing gasket (8) is fixed below the upper cover (10) by the outer side, a first sealing groove (7) is formed in the inner side wall of the dewatering outer box (4) and the dewatering inner box (19) and corresponds to the position of the first sealing gasket (8), and an air cylinder (12) is placed in the middle position of the upper side of the upper cover (10), a driven gear (11) is fixed above the cylinder (12), a driving gear (13) is meshed on the right side of the driven gear (11), a rotating motor (14) is arranged below the driving gear (13), a connecting plate (9) is arranged below the upper cover (10) and at the position inside the dewatering inner box (19), brushes (18) are fixed on the left side and the right side of the connecting plate (9), a liquid inlet (16) is arranged on the right side of the dewatering inner box (19) and the dewatering outer box (4), a plurality of springs (5) are uniformly fixed between the dewatering inner box (19) and the dewatering outer box (4), two vibrators (20) are fixed between the dewatering inner box (19) and the dewatering outer box (4) in a bilateral symmetry mode by the lower side, a liquid outlet (3) is arranged below the dewatering inner box (19), a first outlet (2) is arranged below the liquid outlet (3) by the left side, a second outlet (21) is arranged close to the right side below the liquid outlet (3), a water purifying device (25) is arranged below the first outlet (2) and the second outlet (21) and at a position inside the outer dewatering box (4), a placing block (26) is arranged outside the water purifying device (25), a placing groove (27) is formed in the inner side wall of the outer dewatering box (4) and at a position corresponding to the placing block (26), the right side of the placing block (26) extends to the outer side of the right side wall of the outer dewatering box (4), a handle (22) is arranged close to the right side inside the placing block (26), a connecting block (29) is fixed on the outer side of the right side of the placing block (26), a first positioning block (32) is fixed on one side of the connecting block (29) close to the right side wall of the outer dewatering box (4), a first positioning groove (33) is formed in the inner side wall of the outer dewatering box (4) and at a position corresponding to the first positioning block (32), a second sealing gasket (31) is fixed at a position, close to one side of the right side wall of the outer dewatering box (4), of the connecting block (29) and located at the inner side of the first positioning block (32), a second sealing groove (30) is formed in the position, corresponding to the second sealing gasket (31), of the inner side of the right side wall of the outer dewatering box (4), a fastening plate (23) is arranged at the right side of the placing block (26), the upper side and the lower side of the fastening plate (23) are fixedly connected with the outer dewatering box (4) through first bolts (28), clamping blocks (35) are arranged at the positions, close to the connecting block (29), of the left side and the right side of the fastening plate (23), second positioning blocks (36) are fixed at one sides, close to the front side wall and the rear side wall of the outer dewatering box (4), and second positioning grooves (37) are formed in the inner side of the front side wall and the rear side wall of the outer dewatering box (4) and, the fastening plate (23), the second positioning block (36) and the dewatering outer box (4) are fixed through a second bolt (34), and a water outlet (24) is formed in the lower portion of the right side of the dewatering outer box (4);
the water purifying device (25) comprises a sieve plate (251), an active carbon adsorption layer (252) and an ion exchange resin layer (253), wherein the active carbon adsorption layer (252) is arranged below the sieve plate (251), and the ion exchange resin layer (253) is arranged on one side, away from the sieve plate (251), of the active carbon adsorption layer (252).
2. The environment-friendly dehydration device for chemical production according to claim 1, characterized in that: and a connecting shaft is arranged below the air cylinder (12), and penetrates through the upper cover (10) and is fixedly connected with the connecting plate (9).
3. The environment-friendly dehydration device for chemical production according to claim 1, characterized in that: the cross section of the outer dehydrating box (4) is arranged in a square structure, and the cross section of the inner dehydrating box (19) is arranged in a circular structure.
4. The environment-friendly dehydration device for chemical production according to claim 1, characterized in that: the first sealing gasket (8), the second sealing gasket (31) and the clamping block (35) are all made of elastic rubber.
5. The environment-friendly dehydration device for chemical production according to claim 1, characterized in that: a hemispherical groove is formed in the position, corresponding to the handle (22), inside the right side wall of the placing block (26), and the right surface of the handle (22) is flush with the surface of the placing block (26).
6. The environment-friendly dehydration device for chemical production according to claim 1, characterized in that: the inside wall of standing groove (27) is provided with the fastening gasket, the fastening gasket sets up for the silica gel material.
CN201922021714.1U 2019-11-21 2019-11-21 Environment-friendly dewatering device for chemical production Active CN211328244U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201922021714.1U CN211328244U (en) 2019-11-21 2019-11-21 Environment-friendly dewatering device for chemical production

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201922021714.1U CN211328244U (en) 2019-11-21 2019-11-21 Environment-friendly dewatering device for chemical production

Publications (1)

Publication Number Publication Date
CN211328244U true CN211328244U (en) 2020-08-25

Family

ID=72134836

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201922021714.1U Active CN211328244U (en) 2019-11-21 2019-11-21 Environment-friendly dewatering device for chemical production

Country Status (1)

Country Link
CN (1) CN211328244U (en)

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