CN221014607U - Oil-water separation device for chemical treatment - Google Patents

Oil-water separation device for chemical treatment Download PDF

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Publication number
CN221014607U
CN221014607U CN202322688219.2U CN202322688219U CN221014607U CN 221014607 U CN221014607 U CN 221014607U CN 202322688219 U CN202322688219 U CN 202322688219U CN 221014607 U CN221014607 U CN 221014607U
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oil
fixed
spur gear
output shaft
rod
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CN202322688219.2U
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Chinese (zh)
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任传龙
高晓梅
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Linyi Hanhai Environmental Consulting Co ltd
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Linyi Hanhai Environmental Consulting Co ltd
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Abstract

The utility model belongs to the technical field of oil-water separation, in particular to a chemical treatment oil-water separation device, which comprises a separation body, a separation cover plate arranged above the separation body through a locking mechanism and a driving motor fixed on the lower surface of the separation body, wherein an output shaft is fixed at the output end of the driving motor, a rejecting assembly is arranged on the output shaft and comprises a stepping motor arranged on the output shaft, two groups of connecting plates arranged above the stepping motor in a symmetrical arrangement and oil absorbing cotton fixed on two sides of the connecting plates, a protective shell is fixed at the top end of the output shaft, the stepping motor is fixed on the inner side wall of the protective shell, and the output end of the stepping motor penetrates through the inside of the protective shell.

Description

Oil-water separation device for chemical treatment
Technical Field
The utility model belongs to the technical field of oil-water separation, and particularly relates to a chemical treatment oil-water separation device.
Background
The oil chemical industry is short for the oil chemical industry, also comprises an oil chemical process and an oil chemical engineering, and refers to the industry of performing simpler chemical processing by taking oil as a raw material, and oil-water separation mainly utilizes the gravity sedimentation principle or other physicochemical reactions to remove impurities or complete the separation of oil and water according to the difference of density or chemical properties of water and oil;
Through checking the public (bulletin) number; CN215439915U discloses an oil-water separator for oil chemical production treatment, this technology discloses "including separating the main part, the top of separating the main part is provided with separating the lid, the center fixedly connected with injection pipe at separating the lid top, the center of separating the lid is provided with the filter, the center of separating the main part top both sides all is provided with the block mechanism corresponding with separating the lid, the center fixedly connected with driving motor etc. technical scheme of separating the main part bottom has the technical scheme that can filter some be difficult to adsorb the massive grease granule in advance to avoid influencing subsequent oil-water separation effect, can fix separating the lid on separating the main part through two block mechanisms simultaneously, also can be convenient dismantle it, thus can open separating the lid after separating the operation is accomplished, so as to clear up the technical effects such as inside the device and the filter;
When the design is used, although the large grease particles can be filtered, the inside of the device and the filter plate are cleaned conveniently, but the oil layer on the water surface is adsorbed and scraped through the adsorption plate, so that the oil on the adsorption plate is not removed conveniently in the long-time use process, and the oil is also required to be cleaned manually, so that the operation is troublesome, the labor intensity of personnel is increased, and the actual use effect is required;
In order to solve the problems, the application provides an oil-water separation device for chemical treatment.
Disclosure of utility model
To solve the problems set forth in the background art. The utility model provides a chemical treatment oil-water separation device which has the characteristics of automatically removing oil adsorbed along with the oil, reducing the labor intensity of workers without manual cleaning, along with simple operation and meeting the actual use requirement.
In order to achieve the above purpose, the present utility model provides the following technical solutions: the oil-water separation device for chemical treatment comprises a separation body, a separation cover plate arranged above the separation body through a locking mechanism and a driving motor fixed on the lower surface of the separation body, wherein an output shaft is fixed at the output end of the driving motor, and a rejecting assembly is arranged on the output shaft;
the rejecting assembly comprises a stepping motor arranged on the output shaft, two groups of connecting plates arranged above the stepping motor in a symmetrical mode and oil absorbing cotton fixed on two sides of the connecting plates.
As a preferable mode of the chemical treatment oil-water separation device, the top end of the output shaft is fixedly provided with a protective shell, the stepping motor is fixed on the inner side wall of the protective shell, the output end of the stepping motor penetrates through the inner part of the protective shell and extends to the outer part of the protective shell and is fixedly connected with a spur gear A outside the protective shell, the connecting plate is rotationally connected to the upper surface of the protective shell through rotating rods, the surface of one group of rotating rods is fixedly provided with a spur gear B, the surface of the other group of rotating rods is fixedly provided with a spur gear D, the spur gear A is in meshed connection with the spur gear B, the output end of the stepping motor is fixedly provided with a spur gear C, the spur gear C is positioned outside the protective shell, and a chain is in meshed connection between the spur gear D and the spur gear C.
As the preferential selection of the oil-water separation device for chemical treatment, one side of the separation body is provided with the oil receiving box, one side of the surface of the separation body, which is close to the oil receiving box, is provided with the sliding groove, the oil receiving box is in sliding connection with the separation body through the sliding groove, one side, which is close to the output shaft, of the surface of the oil receiving box is fixedly provided with the plugging plate, one side, which is close to the protective shell, of the surface of the output shaft is fixedly provided with the magnet B, one side, which is close to the output shaft, of the plugging plate is provided with the arc groove matched with the magnet B, and the magnet A is arranged in the arc groove and is fixedly connected with the plugging plate.
As the chemical treatment oil-water separation device, preferably, a fixed block is fixed at the center of one side of the lower surface of the oil receiving and pumping box, which is far away from the separation body, a rod body and a sleeve are respectively arranged between the fixed block and the separation body, the sleeve is sleeved on the outer surface of the rod body, a spring A is fixed between the rod body and the sleeve, a jack A is formed on one side of the surface of the fixed block, which is close to the rod body, and one end of the rod body is inserted into the jack A, a jack B is formed on one side of the surface of the separation body, which is close to the sleeve, and one end of the sleeve, which is far away from the spring A, is inserted into the jack B.
As a preferable mode of the chemical treatment oil-water separation device, a sealing gasket is fixed on one side of the surface of the plugging plate, which is far away from the output shaft.
The oil-water separation device for chemical treatment is characterized by comprising a scraping component which is arranged on the oil receiving and pumping box, wherein the scraping component comprises moving blocks arranged on two sides of the oil receiving and pumping box and connecting rods fixed on the upper surfaces of the moving blocks, a fixed plate is arranged between the two groups of connecting rods, a through hole is formed in one side, close to the connecting rods, of the surface of the fixed plate, the fixed plate is in sliding connection with the connecting rods through the through hole, a spring B is sleeved on the surface of the connecting rods, two ends of the spring B are fixedly connected with the fixed plate and the moving blocks respectively, and scraping plates are fixed on the lower surface of the fixed plate.
As the chemical treatment oil-water separation device, a grip is fixed at the center of the upper surface of the fixed plate, a moving groove is formed in the surface of the oil receiving and pumping box, which is close to one side of the moving block, a limiting rod is arranged in the moving groove and is fixedly connected with the oil receiving and pumping box, a moving hole is formed in the surface of the moving block, which is close to one side of the limiting rod, and the moving block is in sliding connection with the limiting rod through the moving hole.
Compared with the prior art, the utility model has the beneficial effects that:
Through having set up the rejection subassembly to can reject along with absorbing oil automatically, need not the manual work and clear up, reduce staff's intensity of labour, easy operation satisfies the in-service use demand, and added the scraping subassembly on this mechanism, take out the box through connecing oil when the oil of clearance and discharge, thereby can strike off the oil that is attached to connecing oil and take out the box surface, thereby clear up more cleanly.
Drawings
The accompanying drawings are included to provide a further understanding of the utility model and are incorporated in and constitute a part of this specification, illustrate the utility model and together with the embodiments of the utility model, serve to explain the utility model. In the drawings:
FIG. 1 is a schematic view of the overall structure of the present utility model;
FIG. 2 is a cross-sectional view of the overall structure of the present utility model;
Fig. 3 is a schematic structural view of a connecting plate, oil absorbing cotton and other connecting pieces in the utility model;
FIG. 4 is an enlarged schematic view of the structure of FIG. 3A according to the present utility model;
FIG. 5 is a schematic structural view of the connecting piece such as the oil receiving extraction box and the plugging plate;
FIG. 6 is an enlarged schematic view of the structure of FIG. 5B according to the present utility model;
FIG. 7 is a cross-sectional view of the sleeve of the present utility model;
In the figure: 1. separating the body; 2. separating the cover plate; 3. a driving motor; 4. an output shaft; 5. removing the components; 51. a protective housing; 52. a stepping motor; 53. a connecting plate; 54. oil absorbing cotton; 55. spur gear a; 56. spur gear B; 57. spur gear C; 58. spur gear D; 59. a chain; 511. receiving an oil pumping box; 512. a plugging plate; 513. a sealing gasket; 514. a magnet A; 515. a magnet B; 516. a fixed block; 517. a rod body; 518. a sleeve; 519. a spring A; 6. a scraping assembly; 61. a moving groove; 62. a limit rod; 63. a moving block; 64. a connecting rod; 65. a spring B; 66. a fixing plate; 67. a scraper.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
Example 1
As shown in fig. 1:
The utility model provides a chemical treatment oil water separator, includes separation body 1 and sets up the separation apron 2 and the driving motor 3 of fixing at separation body 1 lower surface in separation body 1 top through locking mechanical system, and driving motor 3's output is fixed with output shaft 4.
In this embodiment: existing device { public (announcement) number }: CN215439915U discloses an oil-water separator for oil chemical production treatment, and regarding this existing main body, the present application is further improved, and details refer to the following disclosure technology; in order to solve the technical problem in the prior art, as disclosed in the background art, the above design can filter the massive grease particles, and is convenient for clean the inside of the device and the filter plate, but the oil layer on the water surface is adsorbed and scraped through the adsorption plate, and in the long-time use process, the oil on the adsorption plate is inconvenient to be removed, and the oil layer also needs to be manually cleaned, so that the operation is troublesome, the labor intensity of personnel is increased, the actual use effect is needed, and the problem is obviously the problems which are actually present and are difficult to solve in combination with use, and in order to solve the technical problem, the rejecting assembly 5 and the scraping assembly 6 are added on the file of the application, and the electric power equipment involved in the product is powered by an external power supply.
It should be noted that: the fittings used in the locking mechanism are disclosed by publication number CN215439915U, and the use effect thereof can be referred to publication number CN215439915U (i.e. "snap-in chute, telescopic rod, spring, slide rod, U-shaped clip block, limit chute member" disclosed in this prior art).
It should be noted that: a filter plate is also arranged in the separation cover plate 2, so that large-particle grease can be filtered.
Further, the method comprises the following steps:
As shown in fig. 1-7:
A rejecting assembly 5 is mounted on the output shaft 4, and the rejecting assembly 5 comprises a stepping motor 52 arranged on the output shaft 4, two groups of connecting plates 53 arranged above the stepping motor 52 in a symmetrical arrangement, and oil absorbing cotton 54 fixed on two sides of the connecting plates 53.
The top of output shaft 4 is fixed with protective housing 51, step motor 52 is fixed at protective housing 51 inside wall, step motor 52's output runs through protective housing 51 inside to extend to protective housing 51 outside, and with the outside spur gear A55 fixed connection of protective housing 51, connecting plate 53 passes through the dwang and rotates the connection at protective housing 51 upper surface, and the fixed surface of a set of dwang has spur gear B56, the fixed surface of another set of dwang has spur gear D58, spur gear A55 and spur gear B56 meshing are connected, step motor 52's output is fixed with spur gear C57, spur gear C57 is located protective housing 51's outside, the meshing is connected with chain 59 between spur gear D58 and the spur gear C57.
In this embodiment: this chemical treatment oil water separator, when using, drive output shaft 4 through driving motor 3 and rotate, drive connecting plate 53 through output shaft 4 and rotate in step, and then drive oil absorption cotton 54 and rotate, come to adsorb the oil that floats on the surface of water through oil absorption cotton 54, when needs clear up absorbed oil, start step motor 52 this moment, and then drive spur gear A55 and rotate, because spur gear A55 and spur gear B56 meshing are connected, and then drive spur gear B56 and rotate, drive a set of connecting plate 53 through spur gear B56 and rotate, along with the output of step motor 52 rotates, and drive spur gear C57 and rotate in step, because spur gear C57 and spur gear D58 mesh through the chain 59 and connect, and then drive spur gear D58 and rotate, drive another set of connecting plate 53 through spur gear D58 and rotate, rotate to the direction that is close to each other through two sets of connecting plates 53, and extrude oil absorption cotton 54, thereby can remove along with absorbing oil automatically, reduce the manual work intensity of labour, the manual work is simple, the actual operating requirement is satisfied.
It should be noted that: the protective housing 51 can be internally provided with a rechargeable battery to supply power to the stepper motor 52, and the stepper motor 52 and the driving motor 3 are controlled by a controller, so that the output ends of the stepper motor 52 and the driving motor 3 realize different angular rotations.
It should be noted that: the stepping motor 52 drives the two groups of connecting plates 53 to relatively move towards the other side direction, so that the other group of oil absorbing cotton 54 is extruded.
Further, the method comprises the steps of;
In an alternative embodiment, an oil receiving and pumping box 511 is arranged on one side of the separating body 1, a sliding groove is formed on one side, close to the oil receiving and pumping box 511, of the surface of the separating body 1, the oil receiving and pumping box 511 and the separating body 1 are in sliding connection through the sliding groove, a plugging plate 512 is fixed on one side, close to the output shaft 4, of the surface of the output shaft 4, a magnet B515 is fixed on one side, close to the protective shell 51, of the surface of the plugging plate 512, an arc groove matched with the magnet B515 is formed on one side, close to the output shaft 4, of the surface of the plugging plate 512, a magnet A514 is arranged in the arc groove, and the magnet A514 is fixedly connected with the plugging plate 512.
The oil receiving pumping box 511 is characterized in that a fixed block 516 is fixed at the center of one side, far away from the separation body 1, of the lower surface of the oil receiving pumping box 511, a rod body 517 and a sleeve 518 are respectively arranged between the fixed block 516 and the separation body 1, the sleeve 518 is sleeved on the outer surface of the rod body 517, a spring A519 is fixed between the rod body 517 and the sleeve 518, a jack A is formed in the surface, close to the rod body 517, of the fixed block 516, one end of the rod body 517 is spliced in the jack A, a jack B is formed in the surface, close to the sleeve 518, of the separation body 1, and one end, far away from the spring A519, of the sleeve 518 is spliced in the jack B.
In this embodiment: when the absorbed oil needs to be cleaned, the sleeve 518 is pulled first, then slides on the surface of the rod body 517, meanwhile, the sleeve 518 extrudes the spring A519 to compress, until the sleeve 518 moves out of the jack B formed in the separation body 1, the rod body 517 and the sleeve 518 are removed, then the position locking of the abutting oil suction box 511 is released, then the abutting oil suction box 511 is pushed to approach in the direction of the output shaft 4 until the magnet A514 and the magnet B515 approach, the generated magnetism absorbs the abutting oil suction box 511 to primarily fix the abutting oil suction box 511, then an oil receiving barrel (not shown in the drawing) is placed outside the separation body 1 and below the abutting oil suction box 511, oil water generated by extrusion of the oil absorbing cotton 54 is discharged through the abutting oil suction box 511, after the discharge is completed, the abutting oil suction box 511 is pulled to move out to the outside the separation body 1 until the abutting oil suction box 511 drives the sealing plate 512 to be attached to the inner side wall of the separation body 1, then the abutting oil suction box 511 is locked in the direction of the abutting oil suction box 511 through the rod body 517 and the sleeve 518, then the elastic force of the spring A519 is used for attracting the fixing block 516, and an oil suction box 511 is driven to move in the direction of the abutting oil suction box 511 to be tightly attached to the inner side wall of the separation body 512.
Further, the method comprises the steps of;
In an alternative embodiment, a gasket 513 is secured to the side of the surface of the closure plate 512 remote from the output shaft 4.
In this embodiment: the sealing property between the plugging plate 512 and the separation body 1 is increased by the sealing gasket 513, and the outflow of the water from the gap between the separation body 1 and the plugging plate 512 in the later stage is avoided.
Further, the method comprises the steps of;
This chemical treatment oil water separator, still including installing the striking off subassembly 6 on connecing the oil to take out the box 511, strike off subassembly 6 including setting up the movable block 63 that connects the oil to take out the box 511 both sides and fix the connecting rod 64 at movable block 63 upper surface, be provided with fixed plate 66 between two sets of connecting rods 64, the through-hole has been seted up to the surface of fixed plate 66 near connecting rod 64 one side, fixed plate 66 and connecting rod 64 pass through this through-hole sliding connection, the surface cover of connecting rod 64 is equipped with spring B65, the both ends of spring B65 respectively with fixed plate 66 and movable block 63 fixed connection, the lower surface of fixed plate 66 is fixed with scraper blade 67.
The center of the upper surface of the fixing plate 66 is fixedly provided with a handle, a moving groove 61 is formed in the surface of the oil receiving and pumping box 511, which is close to one side of the moving block 63, a limiting rod 62 is arranged in the moving groove 61, the limiting rod 62 is fixedly connected with the oil receiving and pumping box 511, a moving hole is formed in the surface of the moving block 63, which is close to one side of the limiting rod 62, and the moving block 63 is slidably connected with the limiting rod 62 through the moving hole.
In this embodiment: when the oil left on the surface of the oil suction box 511 needs to be cleaned, the handle (not shown in the figure) is held by hand, the fixing plate 66 is driven to move downwards, the fixing plate 66 slides on the connecting rod 64 and compresses the spring B65, then the scraping plate 67 is driven to move downwards through the fixing plate 66 until the scraping plate 67 contacts with the surface of the oil suction box 511, the handle is pulled at the moment, the moving block 63 is driven to slide on the surface of the limiting rod 62, the limiting rod 62 is used for limiting the moving block 63, so that the moving block 63 is more stable in the moving process, the scraping plate 67 is driven to move along with the movement of the fixing plate 66, and the oil attached to the surface of the oil suction box 511 is scraped through the scraping plate 67, so that the cleaning is cleaner.
The working principle and the using flow of the utility model are as follows: when the chemical treatment oil-water separation device is used, the driving motor 3 drives the output shaft 4 to rotate, the output shaft 4 drives the connecting plate 53 to synchronously rotate, the oil absorbing cotton 54 is driven to rotate, the oil floating on the water surface is absorbed by the oil absorbing cotton 54, when the absorbed oil needs to be cleaned, the sleeve 518 is pulled firstly, the surface of the rod 517 slides, the sleeve 518 extrudes the spring A519 to compress until the sleeve 518 moves out of the jack B formed by the separation body 1, the rod 517 and the sleeve 518 are taken down, then the position locking of the oil suction box 511 is released, then the oil suction box 511 is pushed to approach to the direction of the output shaft 4 until the magnet A514 and the magnet B515 approach, the generated magnetism is absorbed, the oil suction box 511 is preliminarily fixed, then an oil receiving barrel (not shown in the figure) is arranged outside the separation body 1 and below the oil suction box 511, at the moment, the stepping motor 52 is started, the spur gear A55 is driven to rotate, the spur gear A55 is meshed with the spur gear B56, the spur gear B56 is driven to rotate, the spur gear B56 drives a group of connecting plates 53 to rotate, as the output end of the stepping motor 52 rotates and drives the spur gear C57 to synchronously rotate, the spur gear C57 and the spur gear D58 are meshed and connected through the chain 59, so that the spur gear D58 is driven to rotate, the other group of connecting plates 53 is driven to rotate through the spur gear D58, the two groups of connecting plates 53 rotate towards directions close to each other until the two groups of connecting plates 53 are contacted, the oil absorbing cotton 54 is extruded, the oil absorbed by the oil absorbing cotton 54 is extruded and falls on the oil receiving pumping box 511, and is discharged into an oil receiving barrel through the oil receiving pumping box 511, so that the oil absorbed along with the oil can be automatically removed, the cleaning is not needed manually, the labor intensity of workers is reduced, the operation is simple, the actual use requirement is met, the two groups of connecting plates 53 are driven by the stepping motor 52 to relatively move to the other side direction, the other group of oil absorbing cotton 54 is extruded, the two groups of connecting plates 53 are controlled to be just above the oil receiving and pumping box 511 when being contacted with each other by the driving motor 3, after the extrusion is finished, the two groups of connecting plates 53 are driven by the stepping motor 52 to reset, the oil receiving and pumping box 511 is pulled to move out of the separating body 1 until the oil receiving and pumping box 511 drives the sealing plate 512 to be attached to the inner side wall of the separating body 1, meanwhile, the sealing property between the plugging plate 512 and the separating body 1 is improved through the sealing gasket 513, the later water is prevented from flowing out from the gap between the separating body 1 and the plugging plate 512, then the oil suction box 511 is locked in position through the rod body 517 and the sleeve 518, then the fixing block 516 is driven to move towards the direction away from the separating body 1 through the resilience force of the spring A519, meanwhile, the oil suction box 511 is driven to tightly adhere the plugging plate 512 to the inner side wall of the separating body 1, when the oil remained on the surface of the oil suction box 511 needs to be cleaned, a handle (not shown in the figure) is held, and then the fixing plate 66 is driven to move downwards, the fixed plate 66 slides on the connecting rod 64 and compresses the spring B65, then the scraper 67 is driven to move downwards through the fixed plate 66 until the scraper 67 contacts with the surface of the oil suction box 511, the handle is pulled at the moment, so that the movable block 63 is driven to slide on the surface of the limiting rod 62, the movable block 63 is limited through the limiting rod 62, the movable block 63 is more stable in the moving process, the scraper 67 is driven to move along with the movement of the fixed plate 66, and the oil attached to the surface of the oil suction box 511 is scraped through the scraper 67, so that the cleaning is cleaner.
Finally, it should be noted that: the foregoing description is only a preferred embodiment of the present utility model, and the present utility model is not limited thereto, but it is to be understood that modifications and equivalents of some of the technical features described in the foregoing embodiments may be made by those skilled in the art, although the present utility model has been described in detail with reference to the foregoing embodiments. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present utility model should be included in the protection scope of the present utility model.

Claims (7)

1. The utility model provides a chemical treatment oil water separator, is in including separation body (1) and setting up through locking mechanical system separation apron (2) of separation body (1) top and fix driving motor (3) of separation body (1) lower surface, the output of driving motor (3) is fixed with output shaft (4), its characterized in that: the output shaft (4) is provided with a rejecting component (5);
The rejecting assembly (5) comprises a stepping motor (52) arranged on the output shaft (4), two groups of connecting plates (53) symmetrically arranged above the stepping motor (52) and oil absorbing cotton (54) fixed on two sides of the connecting plates (53).
2. The chemical treatment oil-water separation device according to claim 1, wherein: the top of output shaft (4) is fixed with protective housing (51), step motor (52) are fixed protective housing (51) inside wall, the output of step motor (52) runs through protective housing (51)'s inside, and extend to protective housing (51) outside, and with protective housing (51) outside spur gear A (55) fixed connection, connecting plate (53) are in through dwang rotation connection protective housing (51) upper surface, and the fixed surface of a set of dwang has spur gear B (56), and the fixed surface of another set of dwang has spur gear D (58), spur gear A (55) with spur gear B (56) meshing is connected, step motor (52) output is fixed with spur gear C (57), spur gear C (57) are located protective housing (51) outside, spur gear D (58) with meshing between spur gear C (57) is connected with chain (59).
3. The chemical treatment oil-water separation device according to claim 2, wherein: separation body (1) one side is provided with connects oil to take out box (511), separation body (1) surface is close to connect oil to take out box (511) one side seted up the spout, connect oil to take out box (511) with separation body (1) are through this spout sliding connection, connect oil to take out box (511) surface to be close to output shaft (4) one side is fixed with shutoff board (512), the surface of output shaft (4) is close to protection casing (51) one side is fixed with magnet B (515), the surface of shutoff board (512) is close to output shaft (4) one side seted up with the arc groove of magnet B (515) looks adaptation, and be provided with magnet A (514) in the arc groove, magnet A (514) with shutoff board (512) fixed connection.
4. A chemical treatment oil-water separation device according to claim 3, wherein: connect oily box (511) lower surface to keep away from separation body (1) one side center department is fixed with fixed block (516), fixed block (516) with be provided with body of rod (517) and sleeve (518) between separation body (1) respectively, sleeve (518) cover is established the surface of body of rod (517), body of rod (517) with be fixed with spring A (519) between sleeve (518), the surface of fixed block (516) is close to body of rod (517) one side has seted up jack A, just the one end of body of rod (517) is pegged graft in jack A's inside, separation body (1) surface is close to sleeve (518) one side has seted up jack B, sleeve (518) are kept away from the one end of spring A (519) is pegged graft in jack B inside.
5. The chemical treatment oil-water separation device according to claim 4, wherein: a sealing gasket (513) is fixed on one side of the surface of the plugging plate (512) away from the output shaft (4).
6. The chemical treatment oil-water separation device according to claim 5, wherein: still including installing connect strike off subassembly (6) on oily box (511) of taking out, strike off subassembly (6) including setting up connect movable block (63) of oily box (511) both sides and fix connecting rod (64) of movable block (63) upper surface are provided with fixed plate (66) between two sets of connecting rod (64), the surface of fixed plate (66) is close to connecting rod (64) one side has seted up the through-hole, fixed plate (66) with connecting rod (64) are through this through-hole sliding connection, the surface cover of connecting rod (64) is equipped with spring B (65), the both ends of spring B (65) respectively with fixed plate (66) with movable block (63) fixed connection, the lower surface of fixed plate (66) is fixed with scraper blade (67).
7. The chemical treatment oil-water separation device according to claim 6, wherein: the oil-receiving oil-pumping device is characterized in that a grip is fixed at the center of the upper surface of the fixed plate (66), a moving groove (61) is formed in the surface of the oil-receiving oil-pumping box (511) close to one side of the moving block (63), a limiting rod (62) is arranged in the moving groove (61), the limiting rod (62) is fixedly connected with the oil-receiving oil-pumping box (511), a moving hole is formed in the surface of the moving block (63) close to one side of the limiting rod (62), and the moving block (63) is in sliding connection with the limiting rod (62) through the moving hole.
CN202322688219.2U 2023-10-08 2023-10-08 Oil-water separation device for chemical treatment Active CN221014607U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202322688219.2U CN221014607U (en) 2023-10-08 2023-10-08 Oil-water separation device for chemical treatment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202322688219.2U CN221014607U (en) 2023-10-08 2023-10-08 Oil-water separation device for chemical treatment

Publications (1)

Publication Number Publication Date
CN221014607U true CN221014607U (en) 2024-05-28

Family

ID=91138005

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202322688219.2U Active CN221014607U (en) 2023-10-08 2023-10-08 Oil-water separation device for chemical treatment

Country Status (1)

Country Link
CN (1) CN221014607U (en)

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