CN215236244U - Electronic ceramic waste recovery device - Google Patents

Electronic ceramic waste recovery device Download PDF

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Publication number
CN215236244U
CN215236244U CN202121135382.0U CN202121135382U CN215236244U CN 215236244 U CN215236244 U CN 215236244U CN 202121135382 U CN202121135382 U CN 202121135382U CN 215236244 U CN215236244 U CN 215236244U
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China
Prior art keywords
cleaning
crushing roller
pipe
box
ceramic waste
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CN202121135382.0U
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Chinese (zh)
Inventor
张晓云
方豪杰
贺亦文
李明晓
方美玲
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Hunan Chengxiang New Material Technology Co ltd
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Hunan Chengxiang New Material Technology Co ltd
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Abstract

The utility model discloses an electronic ceramic waste recovery device, which comprises a cleaning component, a recovery component, a base and an electric control cabinet; in the utility model, through the arrangement of the cleaning component, the electronic ceramic waste enters the cleaning box from the inlet pipe, the booster pump conveys tap water into the cleaning pipe, the tap water is sprayed to the electronic ceramic waste through the cleaning spray head, the purpose of cleaning the electronic ceramic waste is achieved, the electronic ceramic waste is convenient to clean, the subsequent recycling of the electronic ceramic waste is facilitated, the impurities and the tap water which are cleaned fall below the inside of the cleaning box through the filter screen, the impurities and the tap water are convenient to be regularly discharged through the drain pipe, and the normal operation of the cleaning component is ensured; electronic ceramic waste recovery device simple structure, convenient operation is swift, the marketing and the application of being convenient for.

Description

Electronic ceramic waste recovery device
Technical Field
The utility model relates to an electron pottery technical field especially relates to an electron pottery waste recovery device.
Background
The electronic ceramic is ceramic capable of utilizing electricity and magnetism in the electronic industry, is ceramic with new functions finally obtained by precisely controlling the surface, crystal boundary and size structure, and is widely applied to the aspects of energy sources, household appliances, automobiles and the like;
electronic ceramic waste material needs recovery processing, is convenient for carry out the recycle of waste material, and current electronic ceramic waste material recovery unit is not convenient for wash the waste material, is unfavorable for the follow-up recycle that carries out the waste material, consequently urgently needs to develop an electronic ceramic waste material recovery unit to solve above-mentioned problem, and the marketing and the application of being convenient for.
SUMMERY OF THE UTILITY MODEL
The utility model aims at solving current electronic ceramic waste recovery device and be not convenient for wash the waste material, be unfavorable for the follow-up recycle that carries out the waste material, and an electronic ceramic waste recovery device who provides.
In order to achieve the above purpose, the utility model adopts the following technical scheme: an electronic ceramic waste recovery device comprises a cleaning component, a recovery component, a base and an electric control cabinet, wherein the cleaning component is arranged on one side above the base, the recovery component is arranged on the other side above the base, and the electric control cabinet is arranged on one side of the recovery component, which is far away from the cleaning component;
the cleaning component comprises a cleaning box, a feeding pipe, a filter screen, a mounting plate, a cleaning pipe, a cleaning spray head, a booster pump, a drain pipe and a discharge hole, the cleaning box is arranged at one side above the base, the feeding pipe is arranged at one side of the upper part of the cleaning box, which is far away from the recovery component, the filter screen is arranged in the cleaning box, the mounting plate is arranged in the middle position above the cleaning box, the cleaning pipes are arranged below the mounting plate, a plurality of cleaning spray heads are adopted, the cleaning spray heads are arranged below the cleaning pipes, the cleaning spray head is positioned above the filter screen, the booster pump is arranged above the cleaning box, the water outlet of the booster pump is connected with the cleaning pipe through a pipeline, the drain pipe is installed and is being kept away from the below of retrieving subassembly one side at wasing the case, the discharge gate is seted up and is being close to the one side of retrieving the subassembly at wasing the case, and the lower extreme of discharge gate and filter screen are close to the one end parallel and level of retrieving the subassembly.
Preferably, the electric control cabinet passes through the wire and links to each other with the commercial power, the size of filter screen matches with the size of wasing the case, and the filter screen adopts the slope setting, and this filter screen deviates from the one end that retrieves the subassembly and is higher than the one end that the filter screen is close to the recovery subassembly.
Preferably, the cleaning nozzles are uniformly distributed below the cleaning pipe, the booster pump is connected with the electric control cabinet through a wire, a water inlet of the booster pump is connected with a tap water source through a pipeline, and the drain pipe is provided with a valve.
Preferably, the recycling assembly comprises a recycling box, a feeding hole, material guide plates, a first crushing roller, a second crushing roller, a discharging pipe, a guide plate and a driving motor, the recycling box is arranged on one side, away from the cleaning box, above the base, the feeding hole is formed in one side, close to the cleaning box, of the recycling box, the two material guide plates are arranged on two sides inside the recycling box, and the material guide plates are located below the feeding hole; first crushing roller and second crushing roller pass through the axle sleeve and install the intermediate position in the inside of collection box, and first crushing roller and second crushing roller are located the below of stock guide, install the driving gear on the main shaft of this first crushing roller, wherein install driven gear on the main shaft of second crushing roller, driving motor installs the front side at the collection box, and driving motor's output shaft passes through the shaft coupling and links to each other with the main shaft of first crushing roller, the guide plate adopts two, and the guide plate is installed in the inside both sides of below of collection box, the intermediate position in collection box below is installed to the discharging pipe, and the lower extreme of discharging pipe runs through to the below of base.
Preferably, the feed inlet is aligned with the discharge outlet, the size of the feed inlet is matched with that of the discharge outlet, the material guide plate is arranged in an inclined mode, one end, close to the material guide plate, of the material guide plate inclines downwards, and the driving gear of the first crushing roller is meshed with the driven gear of the second crushing roller.
Preferably, the guide plate adopts the slope to set up, and the top that the guide plate deviates from discharging pipe one end is higher than the top that the guide plate is close to discharging pipe one end, driving motor passes through the wire and links to each other with automatically controlled cabinet.
Compared with the prior art, the beneficial effects of the utility model are that:
1. the utility model discloses, through the setting of washing subassembly, electron ceramic waste material gets into the washing incasement from the inlet pipe, and the booster pump is carried the running water to the washing intraductal, sprays the running water to electron ceramic waste material through washing shower nozzle, reaches the mesh of washing electron ceramic waste material, is convenient for carry out the washing of electron ceramic waste material, is favorable to follow-up recycle of carrying out electron ceramic waste material, and impurity and running water under the washing fall to the below of washing incasement portion through the filter screen, are convenient for regularly discharge impurity and running water through the drain pipe, guarantee to wash the subassembly normal operating;
2. the utility model discloses, through the setting of retrieving the subassembly, the electronic ceramic waste material that washs passes through in discharge gate and the feed inlet entering collection box, the stock guide carries out the water conservancy diversion to the electronic ceramic waste material, make the electronic ceramic waste material fall to between first crushing roller and the second crushing roller, driving motor drives first crushing roller and rotates, the driving gear of first crushing roller drives second crushing roller and driven gear rotation, smash the electronic ceramic waste material through first crushing roller and second crushing roller, be convenient for follow-up recycle that carries out the electronic ceramic waste material, the guide plate carries out the water conservancy diversion to kibbling electronic ceramic waste material, make kibbling electronic ceramic waste material all discharge from the discharging pipe.
Drawings
Fig. 1 is a schematic view of the overall structure of the present invention;
FIG. 2 is a schematic structural view of the cleaning assembly of the present invention;
FIG. 3 is a schematic structural view of the recycling assembly of the present invention;
fig. 4 is a schematic structural view of the first crushing roller, the second crushing roller and the driving motor of the present invention.
In the figure: 1. cleaning the assembly; 11. a cleaning tank; 12. a feed pipe; 13. filtering with a screen; 14. mounting a plate; 15. cleaning the tube; 16. cleaning the spray head; 17. a booster pump; 18. a drain pipe; 19. a discharge port; 2. a recovery assembly; 21. a recycling bin; 22. a feed inlet; 23. a material guide plate; 24. a first crushing roller; 25. a second crushing roller; 26. a discharge pipe; 27. a baffle; 28. a drive motor; 3. a base; 4. an electric control cabinet.
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.
In the description of the present invention, it is to be understood that the terms "upper", "lower", "front", "rear", "left", "right", "top", "bottom", "inner", "outer", and the like indicate orientations or positional relationships based on the orientations or positional relationships shown in the drawings, and are only for convenience of description and simplicity of description, and do not indicate or imply that the device or element being referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore, should not be construed as limiting the present invention.
Referring to fig. 1-4, an electronic ceramic waste recovery device comprises a cleaning component 1, a recovery component 2, a base 3 and an electric control cabinet 4, wherein the cleaning component 1 is arranged on one side above the base 3, the recovery component 2 is arranged on the other side above the base 3, and the electric control cabinet 4 is arranged on one side of the recovery component 2, which is far away from the cleaning component 1;
in this embodiment, the cleaning assembly 1 includes a cleaning box 11, a feeding pipe 12, a filter screen 13, a mounting plate 14, a cleaning pipe 15, a cleaning nozzle 16, a booster pump 17, a drain pipe 18 and a discharge port 19, the cleaning box 11 is mounted on one side above the base 3, the feeding pipe 12 is mounted on one side of the cleaning box 11 away from the recovery assembly 2, the filter screen 13 is mounted inside the cleaning box 11, the mounting plate 14 is mounted at the middle position above the cleaning box 11, the cleaning pipe 15 is mounted below the mounting plate 14, the cleaning nozzles 16 are multiple, the cleaning nozzle 16 is mounted below the cleaning pipe 15, the cleaning nozzle 16 is located above the filter screen 13, the booster pump 17 is mounted above the cleaning box 11, the discharge port of the booster pump 17 is connected with the cleaning pipe 15 through a pipeline, the drain pipe 18 is mounted below the side of the cleaning box 11 away from the recovery assembly 2, the discharge port 19 is opened on one side of the cleaning box 11 close to the recovery assembly 2, the lower end of the discharge port 19 is flush with one end of the filter screen 13 close to the recovery component 2, the electronic ceramic waste enters the cleaning box 11 from the feed pipe 12, tap water is conveyed into the cleaning pipe 15 by the booster pump 17 and is sprayed to the electronic ceramic waste through the cleaning spray head 16, so that the purpose of cleaning the electronic ceramic waste is achieved, the electronic ceramic waste is convenient to clean, and the subsequent recycling of the electronic ceramic waste is facilitated; the electric control cabinet 4 is connected with a mains supply through a wire, the size of the filter screen 13 is matched with that of the cleaning box 11, the filter screen 13 is arranged in an inclined mode, and one end, away from the recovery assembly 2, of the filter screen 13 is higher than one end, close to the recovery assembly 2, of the filter screen 13; wash shower nozzle 16 in the below evenly distributed of scavenge pipe 15, booster pump 17 passes through the wire and links to each other with automatically controlled cabinet 4, and booster pump 17's water inlet passes through the pipeline and links to each other with water source, and drain pipe 18 is provided with the valve, and impurity and the running water under the washing fall to the inside below of washing case 11 through filter screen 13, are convenient for regularly discharge impurity and running water through drain pipe 18, guarantee to wash subassembly 1 normal operating.
In this embodiment, the recycling assembly 2 includes a recycling bin 21, a feeding port 22, a material guiding plate 23, a first crushing roller 24, a second crushing roller 25, a discharging pipe 26, a material guiding plate 27 and a driving motor 28, the recycling bin 21 is installed on one side of the base 3 away from the washing bin 11, the feeding port 22 is opened on one side of the recycling bin 21 close to the washing bin 11, two material guiding plates 23 are adopted, the material guiding plates 23 are installed on two sides of the inside of the recycling bin 21, and the material guiding plates 23 are located below the feeding port 22; the first crushing roller 24 and the second crushing roller 25 are mounted at the middle position inside the recycling box 21 through shaft sleeves, the first crushing roller 24 and the second crushing roller 25 are positioned below the material guide plate 23, a driving gear is mounted on a main shaft of the first crushing roller 24, a driven gear is mounted on a main shaft of the second crushing roller 25, the driving motor 28 is mounted at the front side of the recycling box 21, output shafts of the driving motor 28 are connected with the main shaft of the first crushing roller 24 through shaft couplings, two guide plates 27 are adopted, the guide plates 27 are mounted at two sides of the lower part inside the recycling box 21, the discharge pipe 26 is mounted at the middle position below the recycling box 21, the lower end of the discharge pipe 26 penetrates below the base 3, cleaned electronic ceramic waste materials enter the recycling box 21 through the discharge port 19 and the feed port 22, the material guide plate 23 guides the electronic ceramic waste materials to enable the electronic ceramic waste materials to fall between the first crushing roller 24 and the second crushing roller 25, the driving motor 28 drives the first crushing roller 24 to rotate, the driving gear of the first crushing roller 24 drives the second crushing roller 25 and the driven gear to rotate, and the electronic ceramic waste is crushed by the first crushing roller 24 and the second crushing roller 25, so that the electronic ceramic waste can be conveniently recycled; the feed inlet 22 is aligned with the discharge outlet 19, the size of the feed inlet 22 is matched with that of the discharge outlet 19, the material guide plate 23 is obliquely arranged, one end, close to each other, of the material guide plate 23 is inclined downwards, and a driving gear of the first crushing roller 24 is meshed with a driven gear of the second crushing roller 25; guide plate 27 adopts the slope to set up, and guide plate 27 deviates from the top of discharging pipe 26 one end and is higher than the top that guide plate 27 is close to discharging pipe 26 one end, and driving motor 28 passes through the wire and links to each other with automatically controlled cabinet 4, and guide plate 27 carries out the water conservancy diversion to kibbling electron ceramic waste, makes kibbling electron ceramic waste all discharge from discharging pipe 26.
The working principle is as follows: in the utility model, when in use, the electric control cabinet 4 is connected with the commercial power to supply power for the recovery device, the electronic ceramic waste enters the cleaning box 11 from the inlet pipe 12, the booster pump 17 conveys the tap water into the cleaning pipe 15, the tap water is sprayed to the electronic ceramic waste through the cleaning spray head 16, the purpose of cleaning the electronic ceramic waste is achieved, the cleaning of the electronic ceramic waste is convenient, the subsequent recycling of the electronic ceramic waste is facilitated, the cleaned impurities and the tap water fall to the lower part inside the cleaning box 11 through the filter screen 13, the impurities and the tap water are conveniently and periodically discharged through the drain pipe 18, the normal operation of the cleaning component 1 is ensured, the cleaned electronic ceramic waste enters the recovery box 21 through the discharge port 19 and the feed port 22, the guide plate 23 guides the electronic ceramic waste, and the electronic ceramic waste falls between the first crushing roller 24 and the second crushing roller 25, the driving motor 28 drives the first crushing roller 24 to rotate, the driving gear of the first crushing roller 24 drives the second crushing roller 25 and the driven gear to rotate, the electronic ceramic waste is crushed by the first crushing roller 24 and the second crushing roller 25, the subsequent recycling of the electronic ceramic waste is facilitated, the guide plate 27 guides the crushed electronic ceramic waste, and the crushed electronic ceramic waste is discharged from the discharge pipe 26.
The above, only be the concrete implementation of the preferred embodiment of the present invention, but the protection scope of the present invention is not limited thereto, and any person skilled in the art is in the technical scope of the present invention, according to the technical solution of the present invention and the utility model, the concept of which is equivalent to replace or change, should be covered within the protection scope of the present invention.

Claims (6)

1. The electronic ceramic waste recovery device is characterized by comprising a cleaning assembly (1), a recovery assembly (2), a base (3) and an electric control cabinet (4), wherein the cleaning assembly (1) is arranged on one side above the base (3), the recovery assembly (2) is arranged on the other side above the base (3), and the electric control cabinet (4) is arranged on one side, away from the cleaning assembly (1), of the recovery assembly (2);
the cleaning component (1) comprises a cleaning box (11), an inlet pipe (12), a filter screen (13), a mounting plate (14), a cleaning pipe (15), a cleaning spray head (16), a booster pump (17), a drain pipe (18) and a discharge hole (19), wherein the cleaning box (11) is arranged on one side above a base (3), the inlet pipe (12) is arranged on one side deviating from a recovery component (2) above the cleaning box (11), the filter screen (13) is arranged in the cleaning box (11), the mounting plate (14) is arranged at the middle position above the cleaning box (11), the cleaning pipe (15) is arranged below the mounting plate (14), the cleaning spray head (16) adopts a plurality of parts, the cleaning spray head (16) is arranged below the cleaning pipe (15), the cleaning spray head (16) is arranged above the filter screen (13), the booster pump (17) is arranged above the cleaning box (11), and the delivery port of booster pump (17) passes through the pipeline and links to each other with scavenge pipe (15), drain pipe (18) are installed and are being washed case (11) and deviate from the below of retrieving subassembly (2) one side, discharge gate (19) are seted up and are being washed case (11) one side near retrieving subassembly (2), and the lower extreme of discharge gate (19) and filter screen (13) are close to the one end parallel and level of retrieving subassembly (2).
2. The electronic ceramic waste recycling device according to claim 1, wherein the electric control cabinet (4) is connected to the mains supply through a wire, the size of the filter screen (13) matches the size of the cleaning box (11), the filter screen (13) is arranged in an inclined manner, and one end of the filter screen (13) away from the recycling assembly (2) is higher than one end of the filter screen (13) close to the recycling assembly (2).
3. The electronic ceramic waste recycling device as claimed in claim 1, wherein the cleaning nozzles (16) are uniformly distributed below the cleaning pipe (15), the booster pump (17) is connected with the electric control cabinet (4) through a wire, the water inlet of the booster pump (17) is connected with a tap water source through a pipeline, and the drain pipe (18) is provided with a valve.
4. The electronic ceramic waste recovery device according to claim 1, wherein the recovery assembly (2) comprises a recovery box (21), a feed inlet (22), a material guide plate (23), a first crushing roller (24), a second crushing roller (25), a material outlet pipe (26), a flow guide plate (27) and a driving motor (28), the recovery box (21) is installed on one side of the base (3) away from the washing box (11), the feed inlet (22) is arranged on one side of the recovery box (21) close to the washing box (11), the material guide plates (23) are two, the material guide plates (23) are installed on two sides of the interior of the recovery box (21), and the material guide plates (23) are located below the feed inlet (22); the utility model discloses a material recycling device, including first crushing roller (24) and second crushing roller (25), first crushing roller (24) and second crushing roller (25) are installed at the inside intermediate position of collection box (21) through the axle sleeve, and first crushing roller (24) and second crushing roller (25) are located the below of stock guide (23), install the driving gear on the main shaft of this first crushing roller (24), wherein install driven gear on the main shaft of second crushing roller (25), driving motor (28) are installed in the front side of collection box (21), and the output shaft of driving motor (28) links to each other with the main shaft of first crushing roller (24) through the shaft coupling, guide plate (27) adopt two, and guide plate (27) install the both sides of collection box (21) inside below, discharging pipe (26) are installed in the intermediate position of collection box (21) below, and the lower extreme of discharging pipe (26) runs through to the below of base (3).
5. The electronic ceramic waste recycling device of claim 4, wherein the feeding inlet (22) is aligned with the discharging outlet (19), the size of the feeding inlet (22) matches the size of the discharging outlet (19), the guiding plate (23) is disposed in an inclined manner, one end of the guiding plate (23) close to each other is inclined downwards, and the driving gear of the first crushing roller (24) is meshed with the driven gear of the second crushing roller (25).
6. The electronic ceramic waste recovery device according to claim 4, wherein the guide plate (27) is arranged obliquely, the upper part of one end of the guide plate (27) away from the discharge pipe (26) is higher than the upper part of one end of the guide plate (27) close to the discharge pipe (26), and the driving motor (28) is connected with the electric control cabinet (4) through a wire.
CN202121135382.0U 2021-05-25 2021-05-25 Electronic ceramic waste recovery device Active CN215236244U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202121135382.0U CN215236244U (en) 2021-05-25 2021-05-25 Electronic ceramic waste recovery device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202121135382.0U CN215236244U (en) 2021-05-25 2021-05-25 Electronic ceramic waste recovery device

Publications (1)

Publication Number Publication Date
CN215236244U true CN215236244U (en) 2021-12-21

Family

ID=79458194

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202121135382.0U Active CN215236244U (en) 2021-05-25 2021-05-25 Electronic ceramic waste recovery device

Country Status (1)

Country Link
CN (1) CN215236244U (en)

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