Receiving and processing device for residual slurry of electric pole

By designing a pole residual slurry receiving and processing device, the problem of residual slurry not being effectively recycled and utilized was solved, and efficient recycling and reuse of residual slurry was achieved, reducing environmental pollution and production costs, and improving production efficiency.

CN223383625UActive Publication Date: 2025-09-26GUANGXI ZHONGJIU ELECTRIC POWER TECH CO LTD
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Patent Information

Application Number
CN202422308932.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-23
Publication Date
2025-09-26
Estimated Expiration
2034-09-23

AI Technical Summary

Technical Problem

The waste slurry generated during the existing production of electric poles has not been effectively recycled, resulting in environmental pollution and waste of resources. Traditional treatment methods are inefficient and costly.

Method used

A device for receiving and processing residual slurry from electric poles is designed, which includes a residual slurry receiving mechanism, a residual slurry processing mechanism and a residual slurry storage mechanism. By cooperating with a weighing system and a monitoring instrument, water, a retarder and a defoaming agent are added to achieve the reuse of the residual slurry.

Benefits of technology

The efficient recovery and reuse of waste slurry is achieved, which reduces environmental pollution and production costs, while improving production efficiency and resource utilization.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an electric pole residual slurry receiving and processing device, which relates to the technical field of electric pole manufacturing and particularly comprises a residual slurry receiving mechanism which is arranged below one pouring end of a steel mould and is used for receiving residual slurry poured out after centrifugal operation is completed, and a residual slurry processing mechanism which is arranged below a discharge hole of the residual slurry receiving mechanism, the residual slurry treated by the residual slurry treatment mechanism is pumped and input into the residual slurry storage mechanism through a pump system for storage and standby application, the residual slurry storage mechanism is mounted above a concrete stirring tank, and the residual slurry in the residual slurry storage mechanism is pumped and supplied into the concrete stirring tank through a residual slurry conveying pipeline; according to the receiving and processing device, a perfect closed loop is formed for collecting, re-proportioning and re-preparing, storing or supplying the residual slurry, the residual slurry generated in the production process of the electric pole is collected and re-applied to the production of the electric pole, the original waste residual slurry is turned into wealth, the environmental pollution is reduced, and meanwhile, the cost investment can be reduced.
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Description

Technical Field

[0001] The utility model belongs to the technical field of electric pole manufacturing, in particular to an electric pole residual slurry receiving and processing device. Background Art

[0002] Concrete poles are typically produced using a centrifugal molding process, which produces concrete slurry. This slurry, known in the industry as residual slurry, is a suspension of cement admixtures, other cementitious materials, and water that is squeezed out during the concrete forming process due to centrifugal force. Uncontrolled discharge of this slurry can pollute the environment and clog waterways. If not promptly handled, it will solidify over time and become construction waste.

[0003] Generally speaking, pole manufacturers have traditional methods for handling excess slurry. One approach is to allow the slurry to solidify and then be transported and disposed of as solid waste. However, this method consumes significant manpower and material resources, and the excess slurry contains over 50% cementitious materials. Directly discarding it is undoubtedly a huge waste and can cause irreversible environmental pollution. Another approach is to allow the centrifuged pole to rest for a period of time before centrifuging it again, allowing the excess slurry to solidify within the pole to form a thicker wall. However, this method of repeated centrifugation reduces production efficiency and increases employee workload. A third approach is to use the excess slurry for low-value tasks such as making floor tiles and paving. Utility Model Content

[0004] The purpose of this utility model is to provide a device for receiving and processing residual slurry from electric poles. By collecting the residual slurry generated during the production of electric poles and reusing it in the production of electric poles, waste is turned into treasure. This method saves production costs, reduces the expenses incurred by cleaning the residual slurry, and reduces environmental pollution caused by the discharge of the residual slurry. The specific technical solution is as follows:

[0005] A device for receiving and processing residual slurry of an electric pole, comprising:

[0006] The residual slurry receiving mechanism is located below the tilting end of the steel mold to receive the residual slurry;

[0007] A residual slurry processing mechanism, located below the discharge port of the residual slurry receiving mechanism;

[0008] The residual slurry storage mechanism is connected to the residual slurry processing mechanism through a pump system. The residual slurry storage mechanism is installed above the concrete mixing tank and supplies the residual slurry to the concrete mixing tank through a residual slurry conveying pipeline.

[0009] Preferably, the residual slurry receiving mechanism includes a residual slurry receiving guide groove, a filter screen and a water adding pipe. The residual slurry receiving guide groove is installed below the tilting end of the steel mold and is arranged at an angle. The filter screen is installed at the slurry outlet of the residual slurry receiving guide groove. The water adding pipe is installed on the residual slurry receiving guide groove. One end of the water adding pipe is connected to an external water supply source, and the other end faces the groove of the residual slurry receiving guide groove.

[0010] Preferably, the slurry processing mechanism includes a mounting bracket, a stirring motor, a slurry processing tank, a weighing system, a monitor, a distance meter and a solvent delivery component. The weighing system is mounted on the bottom surface of the mounting bracket, the slurry processing tank is mounted on the mounting bracket and abuts against the weighing system. The slurry outlet of the slurry guide groove faces the tank mouth of the slurry processing tank. The stirring motor is mounted on the mounting bracket. A stirring blade is provided on the output end of the stirring motor, and the stirring blade is used to stir the slurry in the slurry processing tank. The monitor and the distance meter are mounted on the mounting bracket. The monitor, the distance meter and the weighing system are electrically connected. The solvent delivery component is mounted on the mounting bracket.

[0011] Preferably, the solvent delivery assembly includes a small pump, a retarder delivery pipe, a defoaming agent delivery pipe, a retarder input pipe and a defoaming agent input pipe. The small pump is installed on the mounting bracket. The retarder delivery pipe and the defoaming agent delivery pipe are respectively connected from the small pump and directed toward the residual slurry processing tank. One end of the retarder input pipe and the defoaming agent delivery pipe are connected to the small pump, and the other end is connected to the corresponding external supply source.

[0012] Preferably, the mixing amount of the retarder output by the retarder delivery pipe is 0.1‰ to 1‰, and the mixing amount of the defoamer output by the defoamer delivery pipe is 1‰ to 6‰.

[0013] Preferably, the pump system includes an inlet pipe, a pump and an outlet pipe, one end of the inlet pipe is connected to the pump, and the other end is connected to the bottom of the slurry processing tank, one end of the outlet pipe is connected to the pump, and the other end is connected to the slurry storage mechanism.

[0014] Preferably, the residual slurry storage mechanism includes a mounting frame, a storage layer and a supply layer, and the mounting frame is provided with a storage layer and a supply layer from top to bottom.

[0015] Preferably, the storage layer includes a slurry storage tank, a second stirring motor, a second stirring blade, a second weighing system and a connecting hook. The slurry storage tank is installed on the mounting frame. The second stirring motor is installed on the mounting frame. The second stirring blade is provided on the output end of the second stirring motor. The second weighing system is installed on the mounting frame and is located in the storage layer. The second weighing system is connected to the slurry storage tank through the connecting hook. A valve is provided at the bottom of the slurry storage tank. The valve is electrically connected to the weighing system, and a pipe is connected to the valve.

[0016] Preferably, the supply layer includes a slurry weighing tank, a weighing system three and a connecting hook two, the pipe one extends into the slurry weighing tank, the slurry weighing tank is installed on the mounting frame, the weighing system three is installed on the mounting frame and is located in the supply layer, the weighing system three is connected to the slurry weighing tank through the connecting hook two, and a confluence main pipe is provided on the bottom of the slurry weighing tank, and valve two and valve three are respectively installed on the confluence main pipe, the valve two and the valve three are respectively electrically connected to the weighing system three, the valve two is connected to the sewage pipe, and the valve three is connected to the slurry conveying pipe.

[0017] Preferably, a cleaning water pipe is further provided on the mounting frame, one end of the cleaning water pipe is directed toward the residual slurry storage tank, and the other end is connected to an external water supply source.

[0018] Compared with the existing technology, the utility model has the following beneficial effects:

[0019] 1. The utility model provides a receiving and processing device for residual slurry from electric poles. The receiving and processing device monitors and adjusts the received residual slurry through a weighing system and a control system, and recycles it to a concrete mixer for utilization, thereby reducing environmental pollution and cost investment.

[0020] 2. The utility model uses a weighing system, a monitor and a rangefinder to add an appropriate amount of water, a retarder and a defoaming agent to the collected (recovered) residual slurry to improve the storage time of the residual slurry and reduce the foam in the collected residual slurry. The weighing system can also supply and add the residual slurry according to the required amount during the concrete mixing process.

[0021] 3. The residual slurry receiving and processing device provided by the present invention can adjust the residual slurry collected each time to a suitable usage density by adding water, a weighing system and a water adding system. BRIEF DESCRIPTION OF THE DRAWINGS

[0022] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the following is a brief introduction to the drawings required for describing the embodiments. In all drawings, similar elements or parts are generally identified by similar reference numerals. In the drawings, the elements or parts are not necessarily drawn according to the actual scale.

[0023] Figure 1 It is a schematic diagram of the overall structure of the utility model.

[0024] Figure 2 It is a structural schematic diagram of the residual slurry processing mechanism of the present utility model.

[0025] Figure 3 It is a structural schematic diagram of the residual slurry storage mechanism of the present utility model.

[0026] Description of main reference numerals:

[0027] 100 - Residual slurry receiving mechanism, 110 - Residual slurry receiving guide trough, 120 - Filter screen, 130 - Water supply pipe, 200 - Residual slurry processing mechanism, 210 - Mounting bracket, 220 - Stirring motor 1, 221 - Stirring blade, 230 - Residual slurry processing tank, 240 - Weighing system 1, 250 - Monitor, 260 - Distance meter, 270 - Solvent feeding assembly, 271 - Small pump, 272 - Retarder delivery pipe, 273 - Defoaming agent delivery pipe, 274 - Retarder input pipe, 275 - Defoaming agent input pipe, 300 - Residual slurry storage mechanism, 310 - Mounting bracket, 311-cleaning water pipe, 320-storage layer, 321-residual slurry storage tank, 322-stirring motor 2, 323-stirring blade 2, 324-weighing system 2, 325-connecting hook, 326-valve 1, 327-pipeline 1, 330-supply layer, 331-residual slurry weighing tank, 332-weighing system 3, 333-connecting hook 2, 334-confluence main pipe, 335-valve 2, 336-valve 3, 337-sewage pipe, 400-pump system, 410-inlet pipe, 420-pump machine, 430-outlet pipe, 500-residual slurry conveying pipeline. DETAILED DESCRIPTION

[0028] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0029] In the description of the present invention, it should be noted that the terms "center", "longitudinal", "lateral", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "top", "bottom", "top surface", "bottom surface", "inside", "outside", "inside", "outside" and the like indicate orientations or positional relationships based on the orientations or positional relationships shown in the accompanying drawings, and are only for the convenience of describing the present invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation to the present invention.

[0030] In the description of this utility model, "several" means one or more, "more" means more than two, "greater than," "less than," and "exceed" are understood to exclude the number itself, while "above," "below," and "within" are understood to include the number itself. The terms "first," "second," and "third" are used solely for descriptive purposes and to distinguish technical features, and are not to be construed as indicating or implying relative importance, or implicitly specifying the number or order of the technical features indicated.

[0031] In the description of the present invention, it should be noted that, unless otherwise expressly specified or limited, the terms "installed," "connected," "connected," and "set" should be understood in a broad sense. For example, they can refer to fixed connections, detachable connections, or integral connections; they can refer to mechanical connections or electrical connections; they can refer to direct connections or indirect connections through an intermediate medium, or they can refer to internal connections between two components. Those skilled in the art will understand the specific meanings of the above terms in the present invention based on the specific circumstances. The following describes an embodiment of the present invention based on its overall structure.

[0032] Example

[0033] like Figures 1 to 3 As shown, a device for receiving and processing residual slurry of an electric pole specifically includes a residual slurry receiving mechanism 100 arranged below one end of the steel mold for receiving the residual slurry dumped out after the centrifugal operation is completed, and a residual slurry processing mechanism 200 is provided below the discharge port of the residual slurry receiving mechanism 100. The residual slurry processed by the residual slurry processing mechanism 200 is extracted by a pump system 400 and input into a residual slurry storage mechanism 300 for storage and standby use, wherein the residual slurry storage mechanism 300 is installed above the concrete mixing tank, and the residual slurry in the residual slurry storage mechanism 300 is extracted and supplied to the concrete mixing tank through a residual slurry conveying pipe 500.

[0034] Preferably, the residual slurry receiving mechanism 100 includes a residual slurry receiving guide trough 110, a filter screen 120 and a water adding pipe 130. The residual slurry receiving guide trough 110 is installed below one end of the steel mold and is inclined to facilitate the received residual slurry to flow into the next mechanism. The filter screen 120 is installed at the slurry outlet of the residual slurry receiving guide trough 110. The water adding pipe 130 is installed on the residual slurry receiving guide trough 110. One end of the water adding pipe 130 is connected to an external water supply source, and the other end faces the groove of the residual slurry receiving guide trough 110.

[0035] One end of the steel mold is raised by the jacking and translation device, and the residual slurry inside the electric pole after centrifugal forming is poured out. The residual slurry flows out of the steel mold and falls into the residual slurry guide groove 110. After being guided by the residual slurry guide groove 110, it is filtered by the filter screen 120 (the filter screen 120 can effectively filter out fine stones and other debris in the residual slurry). The residual slurry flowing out of the steel mold enters the next processing mechanism. The purpose of setting the water pipe 130 is to be able to spray and flush the residual slurry guide groove 110 at the same time to prevent the residual slurry from settling and accumulating in the residual slurry guide groove 110 to cause blockage (residual slurry condensation).

[0036] Preferably, the slurry processing mechanism 200 includes a mounting bracket 210, a stirring motor 220, a slurry processing tank 230, a weighing system 240, a monitor 250, a rangefinder 260 and a solvent feeding assembly 270, wherein the weighing system 240 is mounted on the bottom surface of the mounting bracket 210, the slurry processing tank 230 is mounted on the mounting bracket 210 and is in contact with the weighing system 240, and the slurry processing tank 230 and the slurry are weighed by the weighing system 240, the slurry outlet of the slurry receiving guide groove 110 is toward the tank mouth of the slurry processing tank 230, the stirring motor 220 is mounted on the mounting bracket 210, and a stirring blade 221 is provided on the output end of the stirring motor 220, and the stirring blade 221 is used to stir the slurry in the slurry processing tank 230 to prevent the slurry from condensing (it should be noted that the slurry When the slurry processing tank 230 receives the residual slurry, the stirring motor 220 is turned on to drive the stirring blade 221 to stir, and a certain amount of water needs to be added during the stirring process). The monitor 250 and the rangefinder 260 are installed on the mounting bracket 210. The stirring motor 220, the monitor 250, the rangefinder 260 and the weighing system 240 are electrically connected. The solvent delivery assembly 270 is installed on the mounting bracket 210. Since the residual slurry poured out from the pole is relatively viscous, the surface cannot be automatically leveled. At this time, an appropriate amount of water needs to be added for dilution in order to measure the volume. The weight and liquid level of the residual slurry are respectively measured by the weighing system 240 and the rangefinder 260, and the density of the residual slurry is automatically calculated. Then, the system automatically calculates the amount of water to be added according to the designed dilution density. The water pumping equipment automatically adds water to the residual slurry processing tank 230 according to the calculated amount of water to make the residual slurry reach the diluted density.

[0037] The residual slurry in the residual slurry treatment tank 230 is monitored in real time by the monitor 250 and fed back to the control system. The control system coordinates the addition of solvent or the driving motor for stirring to prevent the residual slurry from condensing or the possibility of foaming. The liquid level of the residual slurry in the residual slurry treatment tank 230 is obtained by the rangefinder 260, thereby calculating the volume of the residual slurry in the residual slurry treatment tank 230 and feeding it back to the control system. Combined with the residual slurry mass obtained by the weighing system 240, the residual slurry density in the residual slurry treatment tank 230 is obtained through system calculation. Under the control of the control system, the solvent delivery component 270 is coordinated to deliver a certain dose of solvent to the residual slurry treatment tank 230 to achieve a suitable concentration of stored residual slurry. At the same time, because the pole length and diameter of the electric pole vary greatly, the residual slurry bulk density fluctuates greatly, and the homogenization treatment requires high requirements. To address this problem, by measuring the weight and volume of the residual slurry, the system can accurately calculate the concentration of the residual slurry at this time, and dilute it according to the designed dilution density, so that the residual slurry density at the outlet is constant, which is convenient for concrete mixing.

[0038] Among them, the solvent delivery component 270 includes a small pump 271, a retarder delivery pipe 272, a defoaming agent delivery pipe 273, a retarder input pipe 274 and a defoaming agent input pipe 275. The small pump 271 is installed on the mounting bracket 210. The retarder delivery pipe 272 and the defoaming agent delivery pipe 273 are respectively connected from the small pump 271 and directed to the residual slurry processing tank 230. One end of the retarder input pipe 274 and the defoaming agent delivery pipe 273 is connected to the small pump 271, and the other end is connected to the corresponding external supply source. The retarder and defoaming agent are extracted by the small pump 271 and delivered to the residual slurry processing tank 230. The retarder admixture output by the retarder delivery pipe 272 is 0.1‰~1‰, and the defoaming agent admixture output by the defoaming agent delivery pipe 273 is 1‰~6‰.

[0039] Before the residual slurry is treated, it has the defect of coagulation and is difficult to store. As time goes by, the adverse effect on the fluidity of the concrete gradually increases. To address this problem, by adding a retarder during the residual slurry treatment process, the coagulation time of the residual slurry can be delayed by 6-8 hours; there is a lot of foam on the surface of the residual slurry before treatment, which is not conducive to the measurement of the residual slurry concentration. To address this problem, by adding a defoaming agent during the residual slurry treatment process, the foam on the surface of the residual slurry can be effectively eliminated.

[0040] Preferably, the pump system 400 includes an inlet pipe 410, a pump 420 and an outlet pipe 430. One end of the inlet pipe 410 is connected to the pump 420, and the other end is connected to the bottom of the slurry processing tank 230. One end of the outlet pipe 430 is connected to the pump 420, and the other end is connected to the slurry storage mechanism 300. The new slurry with a good proportion is extracted from the slurry processing tank 230 and transported to the slurry storage mechanism 300 through the pump 420.

[0041] Preferably, the residual slurry storage mechanism 300 includes a mounting frame 310, a storage layer 320 and a supply layer 330, and the mounting frame 310 is provided with the storage layer 320 and the supply layer 330 from top to bottom.

[0042] In some preferred embodiments, the storage layer 320 includes a slurry storage tank 321, a second stirring motor 322, a second stirring blade 323, a second weighing system 324 and a connecting hook 325. The slurry storage tank 321 is installed on the mounting frame 310, and the second stirring motor 322 is installed on the mounting frame 310. The second stirring blade 323 is provided on the output end of the second stirring motor 322. When there is slurry in the slurry storage tank 321, the second stirring motor 322 is always in working state to stir the slurry in the tank to prevent the sedimentation and coagulation of the slurry. The second weighing system 324 is installed on the mounting frame 310 and is located in the storage layer 320. The second weighing system 324 is connected to the mounting frame 310. The connecting hook 325 is connected to the residual slurry storage tank 321, and a valve 1 326 is provided at the bottom of the residual slurry storage tank 321. The valve 1 326 is electrically connected to the weighing system 2 324, and the weight of the residual slurry in the residual slurry storage tank 321 is monitored in real time through the weighing system 2 324. A pipe 1 327 is connected to the valve 1 326. Moreover, a cleaning water pipe 311 is also provided on the mounting frame 310, and one end of the cleaning water pipe 311 faces the residual slurry storage tank 321, and the other end is connected to an external water supply source. When there is no residual slurry in the residual slurry storage tank 321, the residual slurry storage tank 321 can be flushed by the external water supply source to flush and discharge the sediment in the tank.

[0043] In some preferred embodiments, the supply layer 330 includes a slurry weighing tank 331, a weighing system three 332 and a connecting hook two 333, the pipe one 327 extends into the slurry weighing tank 331, the slurry weighing tank 331 is installed on the mounting frame 310, the weighing system three 332 is installed on the mounting frame 310 and is located in the supply layer 330, the weighing system three 332 is connected to the slurry weighing tank 331 through the connecting hook two 333, and the extracted slurry in the slurry weighing tank 331 is weighed (the weight of the slurry required for concrete mixing) through the weighing system three 332, and a confluence main pipe 334 is provided on the bottom of the slurry weighing tank 331, and a valve two 335 and a valve three 336 are respectively installed on the confluence main pipe 334, and the valve two 335 and the valve three 336 are respectively connected to the weighing system three 332 Electrically connected, the valve 2 335 is connected to the sewage pipe 337, and the valve 3 336 is connected to the residual slurry conveying pipe 500. The residual slurry weighing tank 331 is arranged above the concrete mixing tank. When the concrete is mixed, the residual slurry is discharged from the residual slurry storage tank 321 to the residual slurry weighing tank 331 by gravity and waits for standby. When the weight of the residual slurry in the residual slurry weighing tank 331 reaches the set weight, the valve 1 326 closes the opening to stop unloading the residual slurry. When the concrete mixer starts mixing, the residual slurry in the residual slurry weighing tank 331 is discharged into the concrete mixer through the valve 3 336 opening under the action of its own weight. When the residual slurry is unloaded, the valve 3 336 closes the conveying channel. At this time, the cleaning water pipe 311 can be opened to flush the residual slurry storage tank 321 and the residual slurry weighing tank 331, and discharge the sewage from the sewage pipe 337.

[0044] In summary, the utility model provides a device for receiving and processing residual slurry from electric poles, which monitors and adjusts the received residual slurry through a weighing system and a control system, and recycles it to a concrete mixer for utilization, thereby reducing environmental pollution while also reducing cost investment; the utility model cooperates with a weighing system, a monitor and a rangefinder to add an appropriate amount of water, a retarder and a defoaming agent to the collected (recovered) residual slurry to improve the storage time of the residual slurry, while reducing the floating foam in the collected residual slurry; the weighing system can also be used to supply and add the residual slurry according to the required amount during the concrete mixing process.

[0045] The foregoing descriptions of specific exemplary embodiments of the present invention are for the purpose of illustration and description. These descriptions are not intended to limit the present invention to the precise form disclosed, and it is obvious that many changes and variations can be made based on the above teachings. Although embodiments of the present invention have been shown and described, these specific embodiments are merely explanations of the present invention and are not limitations on the present invention. The specific features, structures, materials or characteristics described can be combined in an appropriate manner in any one or more embodiments or examples. The purpose of selecting and describing the exemplary embodiments is to explain the specific principles of the present invention and its practical application, so that those skilled in the art can make modifications, substitutions, variations and various different choices and changes to the embodiments without creative contribution as needed after reading this specification without departing from the principles and purpose of the present invention, but as long as they are within the scope of the claims of the present invention, they are protected by patent law.

Claims

1. A device for receiving and processing residual slurry from electric poles, characterized in that: include: A residual slurry receiving mechanism (100) is provided below one end of the steel mold and is used to receive the residual slurry; A residual slurry processing mechanism (200) is located below the discharge port of the residual slurry receiving mechanism (100); The residual slurry storage mechanism (300) is connected to the residual slurry processing mechanism (200) through a pump system (400). The residual slurry storage mechanism (300) is installed above the concrete mixing tank and supplies the residual slurry to the concrete mixing tank through a residual slurry conveying pipe (500).

2. The device for receiving and processing residual slurry from electric poles according to claim 1, characterized in that: The residual slurry receiving mechanism (100) comprises a residual slurry receiving guide groove (110), a filter screen (120) and a water supply pipe (130); the residual slurry receiving guide groove (110) is installed below one end of the steel mold and is arranged in an inclined manner; the filter screen (120) is installed at the slurry outlet of the residual slurry receiving guide groove (110); the water supply pipe (130) is installed on the residual slurry receiving guide groove (110); one end of the water supply pipe (130) is connected to an external water supply source, and the other end faces the groove of the residual slurry receiving guide groove (110).

3. The pole residual slurry receiving and processing device according to claim 2, characterized in that: The residual slurry processing mechanism (200) includes a mounting bracket (210), a stirring motor (220), a residual slurry processing tank (230), a weighing system (240), a monitoring instrument (250), a distance meter (260) and a solvent feeding assembly (270), wherein the weighing system (240) is mounted on the bottom surface of the mounting bracket (210), the residual slurry processing tank (230) is mounted on the mounting bracket (210) and is in contact with the weighing system (240), and the slurry outlet of the residual slurry guide groove (110) faces the tank of the residual slurry processing tank (230). The stirring motor (220) is mounted on the mounting bracket (210), and a stirring blade (221) is provided on the output end of the stirring motor (220). The stirring blade (221) is used to stir the residual slurry in the residual slurry processing tank (230). The monitor (250) and the distance meter (260) are mounted on the mounting bracket (210). The monitor (250), the distance meter (260) and the weighing system (240) are electrically connected. The solvent delivery assembly (270) is mounted on the mounting bracket (210).

4. The pole residual slurry receiving and processing device according to claim 3, characterized in that: The solvent delivery assembly (270) includes a small pump (271), a retarder delivery pipe (272), a defoamer delivery pipe (273), a retarder input pipe (274) and a defoamer input pipe (275). The small pump (271) is installed on the mounting bracket (210). The retarder delivery pipe (272) and the defoamer delivery pipe (273) are respectively connected from the small pump (271) and directed toward the residual slurry processing tank (230). One end of the retarder input pipe (274) and the defoamer delivery pipe (273) are connected to the small pump (271), and the other end is connected to the corresponding external supply source.

5. The pole residual slurry receiving and processing device according to claim 4, characterized in that: The mixing amount of the retarder outputted by the retarder delivery pipe (272) is 0.1‰ to 1‰, and the mixing amount of the defoamer outputted by the defoamer delivery pipe (273) is 1‰ to 6‰.

6. The pole residual slurry receiving and processing device according to claim 3, characterized in that: The pump system (400) includes an inlet pipe (410), a pump (420) and an outlet pipe (430). One end of the inlet pipe (410) is connected to the pump (420), and the other end is connected to the bottom of the residual slurry processing tank (230). One end of the outlet pipe (430) is connected to the pump (420), and the other end is connected to the residual slurry storage mechanism (300).

7. The pole residual slurry receiving and processing device according to claim 6, characterized in that: The residual pulp storage mechanism (300) comprises a mounting frame (310), a storage layer (320) and a supply layer (330), wherein the mounting frame (310) is provided with the storage layer (320) and the supply layer (330) from top to bottom.

8. The electric pole residual slurry receiving and processing device according to claim 7, characterized in that: The storage layer (320) includes a slurry storage tank (321), a second stirring motor (322), a second stirring blade (323), a second weighing system (324) and a connecting hook (325). The slurry storage tank (321) is mounted on the mounting frame (310), the second stirring motor (322) is mounted on the mounting frame (310), the second stirring blade (323) is provided on the output end of the second stirring motor (322), the second weighing system (324) is mounted on the mounting frame (310) and is located in the storage layer (320), the second weighing system (324) is connected to the slurry storage tank (321) through the connecting hook (325), a valve (326) is provided at the bottom of the slurry storage tank (321), the valve (326) is electrically connected to the weighing system (324), and the valve (326) is connected to a pipe (327).

9. The electric pole residual slurry receiving and processing device according to claim 8, characterized in that: The supply layer (330) includes a residual slurry weighing tank (331), a weighing system three (332) and a connecting hook two (333). The pipe one (327) extends into the residual slurry weighing tank (331). The residual slurry weighing tank (331) is installed on the mounting frame (310). The weighing system three (332) is installed on the mounting frame (310) and is located in the supply layer (330). The weighing system three (332) is connected to the residual slurry weighing tank (331) through the connecting hook two (333). The residual slurry weighing tank (331) is connected, and a confluence main pipe (334) is provided on the bottom of the residual slurry weighing tank (331). Valve two (335) and valve three (336) are respectively installed on the confluence main pipe (334). The valve two (335) and valve three (336) are respectively electrically connected to the weighing system three (332). The valve two (335) is connected to the sewage pipe (337), and the valve three (336) is connected to the residual slurry conveying pipe (500).

10. The electric pole residual slurry receiving and processing device according to claim 8, characterized in that: A cleaning water pipe (311) is also provided on the mounting frame (310), one end of the cleaning water pipe (311) faces the residual slurry storage tank (321), and the other end is connected to an external water supply source.