A system for recycling residual cement paste of electric pole
By designing a cement residue recycling system for utility poles, the problem of difficult recycling of spilled cement mortar has been solved, achieving efficient recycling and reuse, improving production efficiency and equipment lifespan, and reducing environmental pollution.
Patent Information
- Application Number
- CN202510942616.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-09
- Publication Date
- 2025-12-12
- Estimated Expiration
- 2045-07-09
AI Technical Summary
In the existing pole manufacturing process, cement mortar spills onto the edge of the mold during grouting, which is difficult to recover, resulting in material waste and environmental pollution, and also increases the labor intensity of workers.
A cement slurry recycling system for utility poles was designed, comprising a gantry frame, a recycling bin, a lifting frame, a tossing mechanism, and a conveying mechanism. The system uses the lifting frame and the tossing mechanism to toss spilled cement slurry into the recycling bin, and the conveying mechanism to collect it.
It enables efficient recycling and reuse of cement mortar, reduces material waste and manual cleaning workload, improves production efficiency, reduces environmental impact and safety hazards, and extends equipment service life.
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Figure CN120552210B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of pole processing technology, specifically to a pole cement residue recycling system. Background Technology
[0002] The current mainstream production process for utility poles (electric poles) adopts centrifugal molding, which involves placing a steel cage in a mold consisting of an upper and lower mold, adding cement mortar to the mold, locking the mold after it is closed, and placing it on a centrifuge. The centrifuge drives the mold to rotate at high speed, thereby forming a hollow utility pole, which is then cured and shaped.
[0003] Molds for utility poles, such as Figure 6 As shown, it consists of an upper mold and a lower mold. The upper and lower molds are connected by bolts to form a connecting plate. Multiple semi-circular support platforms are welded to the upper and lower molds respectively. After the upper and lower molds are connected, the two semi-circular support platforms form a ring structure. This ring structure is the part with the largest outer diameter of the entire mold. The mold is supported on the rotating wheel through the ring structure, thus realizing the rotation of the mold.
[0004] During grouting, the reinforcing cage is placed in the lower formwork with an upper opening, and cement mortar is injected into the lower formwork. Currently, mobile grouting machines are commonly used to inject cement mortar into the lower formwork from above. During grouting, some cement mortar will spill onto the connecting plate of the lower formwork. The current routine operation is for workers to clean up this excess cement mortar. Some workers also recycle the mortar, but because the mortar is heavy, recycling it is labor-intensive. Most workers simply sweep the mortar on the connecting plate onto the ground, resulting in mortar waste and pollution of the factory environment. Finally, the mortar on the ground also needs to be cleaned up. Summary of the Invention
[0005] This invention addresses the shortcomings of existing technologies by providing a system for recycling residual cement slurry from utility poles.
[0006] The application is realized by the technical scheme, and provides a cement residual slurry recycling system for electric poles, which comprises a portal frame moving along the length direction of a lower mold and a recycling box fixed to the portal frame, the portal frame is provided with recycling mechanisms on both sides of the lower mold, the recycling mechanism comprises mounting plates slidably connected to the portal frame and lifting frames vertically slidably connected to the mounting plates, the lifting frames are provided with upper positioning wheels and a poking mechanism for poking the cement mortar on the lower mold connecting plate to the outside, the mounting plates are provided with side positioning wheels on the side of the lower mold connecting plate; when the cement mortar on the lower mold connecting plate is recycled, the mounting plates drive the lifting frames to move to the direction of the lower mold until the side positioning wheels are pressed against the side of the lower mold connecting plate, and then the lifting frames are lowered to make the upper positioning wheels and the poking mechanism fall to the upper end surface of the lower mold connecting plate; the mounting plates are provided with a conveying mechanism, and the conveying mechanism conveys the cement mortar poked out by the poking mechanism to the recycling box.
[0007] As an optimization, two front and rear arranged push-pull shafts are slidably connected to the mounting plates, one end of the push-pull shaft is fixedly connected with a side positioning wheel seat, the other end of the push-pull shaft is connected with the extension shaft of a push-pull cylinder, the side positioning wheels are provided with two and are respectively connected with the two side positioning wheel seats, the push-pull shaft is fixedly connected with a boss, the mounting plate is driven to move to the direction of the lower mold by the boss when the push-pull cylinder is extended, the mounting plate is driven to retract by the pulling force of the spring when the two push-pull cylinders are retracted, the side positioning wheel is retracted by the retraction of the push-pull cylinder when the side positioning wheel passes through the lower mold support table, and the other side positioning wheel is pressed against the side of the lower mold connecting plate at this time.
[0008] As an optimization, a forwardly extending switch support is fixedly connected to the upper end of the side positioning wheel seat, and a sensing switch is fixedly connected to the front end of the switch support.
[0009] As an optimization, the poking mechanism is located in front of the two side positioning wheels, and the upper positioning wheel is located between the two side positioning wheels.
[0010] As an optimization, the lifting frame comprises two vertical lifting guides, the mounting plate is fixedly connected with lifting guide sleeves matched with the lifting guides, and the mounting plate is provided with a lifting cylinder for driving the lifting frame to lift and lower.
[0011] As an optimization, the conveying mechanism comprises an auger fixed to the mounting plate, a collecting hopper located below the lower mold connecting plate is fixed to the lower end inlet of the auger, and a downwardly inclined discharge pipe is fixed to the upper end outlet of the auger.
[0012] As an optimization, the portal frame comprises a top frame at the top and side frames at both sides, the lower end of the side frame is provided with a walking wheel and a walking motor for driving the walking wheel to rotate.
[0013] As optimization, the dialing mechanism comprises a rolling brush seat fixed at the lower end of the lifting frame, a rolling brush shaft-connected at one side of the rolling brush seat, and a rolling brush motor driving the rolling brush to rotate.
[0014] As optimization, the rolling brush is horizontally arranged and is obliquely arranged along the length direction of the lower mold.
[0015] As optimization, the rotating shaft of the side positioning wheel is vertically arranged, and the vertical height of the side positioning wheel is greater than the outer diameter thereof.
[0016] The electric pole cement residual slurry recycling system can capture the cement mortar spilled at the edge of the mold in the pouring process in real time and efficiently, and recycle the cement mortar. First, the waste of cement mortar raw materials is greatly reduced, and the originally discarded materials are converted into useful products, directly reducing the production cost. Second, the workload and time of manual cleaning of spilled cement mortar are significantly reduced, improving the automation degree and overall operation efficiency of the production line. Third, the generation amount of solid waste is effectively reduced, the influence on the environment is reduced, and the corresponding waste treatment cost is reduced, meeting the requirements of green manufacturing and sustainable development. Fourth, the working environment of the workshop is improved, the safety hidden danger caused by wet and slippery cement mortar is reduced, and the equipment and mold are kept clean, reducing equipment failure or mold damage caused by hardened residual cement mortar, indirectly prolonging the service life of the equipment. BRIEF DESCRIPTION OF DRAWINGS
[0017] Figure 1 is a front view of the present application;
[0018] Figure 2 is a right view of the left recovery mechanism of the present application;
[0019] Figure 3 is a top view of two recovery mechanisms of the present application;
[0020] Figure 4 is a top view of two recovery mechanisms when the first side positioning wheel avoids the lower mold support table of the present application;
[0021] Figure 5 is a top view of two recovery mechanisms when the second side positioning wheel avoids the lower mold support table of the present application;
[0022] Figure 6 is a structure schematic view of the mold of the present application;
[0023] shown in the figure:
[0024] 1 gantry, 2 walking wheel, 3 mounting plate, 4 mounting plate guide rail, 5 auger, 6 collecting hopper, 7 discharge pipe, 8 recycling box, 9 push-pull shaft, 10 push-pull cylinder, 11 boss, 12 side positioning wheel seat, 13 side positioning wheel, 14 lifting frame, 15 lifting cylinder, 16 upper positioning wheel, 17 roller brush, 18 roller brush motor, 19 switch support, 20 inductive switch, 21 lower mold, 22 lower mold connecting plate, 23 lower mold support table. DETAILED DESCRIPTION
[0025] In order to clearly illustrate the technical features of the present scheme, the present scheme will be described below through specific embodiments.
[0026] As shown in Figures 1-6 , a cement slurry recycling system for electric poles of the present application comprises a gantry 1 moving along the length direction of a lower mold 21 and a recycling box 8 fixed to the gantry 1, as shown in Figure 1 , the gantry 1 comprises a top frame at the top and side frames at both sides, the lower end of the side frame is provided with a walking wheel 2 and a walking motor driving the walking wheel 2 to rotate, thereby realizing the walking of the gantry, in order to improve the consistency of the walking direction with the length direction of the lower mold 21, guide rails can be laid on both sides of the lower mold 21, and the walking wheel 2 is arranged as a groove wheel, thereby realizing the guidance of the walking.
[0027] The recycling box 8 is fixed to the lower end of the top frame through a connecting rod and is located at the middle position in the left-right direction of the gantry 1 and at the front end position in the front-back direction of the gantry 1, the lower end of the recycling box 8 is conical and the lowermost end is provided with a discharge port, and a valve is arranged on the discharge port, thereby facilitating the direct discharge and utilization of the collected cement mortar.
[0028] The gantry 1 is provided with recycling mechanisms located on both sides of the lower mold 21, the two recycling mechanisms are respectively connected to the inner sides of the two side frames of the gantry 1, and the two recycling mechanisms are symmetrically arranged and respectively used to realize the recycling of the cement mortar on the lower mold connecting plates 22 on both sides of the lower mold 21.
[0029] The recycling mechanism comprises a mounting plate 3 slidingly connected to the gantry 1 and a lifting frame 14 vertically slidingly connected to the mounting plate 3, the mounting plate 3 is vertically arranged, one side faces the lower mold 21 and the other side faces the side frame of the gantry 1, and a plurality of horizontal mounting plate guide rails 4 are fixed to the back of the mounting plate 3, and a guide sleeve corresponding to the mounting plate guide rail 4 is fixed to the side frame of the gantry 1, thereby realizing the left-right sliding guidance of the mounting plate 3.
[0030] The back of the mounting plate 3 refers to the side away from the lower mold 21, the front of the mounting plate 3 refers to the side facing the lower mold 21, and the lifting frame 14 is located at the front of the mounting plate 3, as shown in Figure 2As shown, the lifting frame 14 includes two vertical lifting rails, the mounting plate 3 is fixed with lifting bushings matched with the lifting rails, the lifting bushings are used to realize the vertical guidance of the lifting rails, the upper ends of the two lifting rails are connected through an upper connecting rod, the lower ends of the two lifting rails are connected through a lower connecting rod, and the mounting plate 3 is provided with a lifting cylinder 15 for driving the lifting of the lifting frame 14. The telescopic shaft of the lifting cylinder 15 is downwardly connected with the middle part of the upper connecting rod, so that the lifting of the lifting frame 14 is driven by the telescopic movement of the lifting cylinder 15, and in the present application, the telescopic movement is realized by the lifting cylinder 15, so that the effective contact of the upper positioning wheel 16 with the lower die connecting plate 22 is realized by the air pressure, and the height change of the upper end surface of the lower die connecting plate 22 is adapted.
[0031] As shown, the lifting frame 14 is provided with the upper positioning wheel 16 and a pushing mechanism for pushing the cement mortar on the lower die connecting plate 22 outwardly, the wheel shaft of the upper positioning wheel 16 extends leftward and rightward and is fixed at the lower end of the lifting frame 14, after the upper positioning wheel 16 is attached to the lower die connecting plate 22, with the movement of the gantry 1, the upper positioning wheel 16 is realized to walk on the lower die connecting plate 22, and the positioning of the pushing mechanism is realized.
[0032] As shown, Figure 2 , 3 As shown, the pushing mechanism includes a rolling brush seat fixed at the lower end of the lifting frame 14, a rolling brush 17 shaft-connected at one side of the rolling brush seat, and a rolling brush motor 18 for driving the rotation of the rolling brush 17. The rolling brush seat is fixed at the front end position of the lower end of the lifting frame 14, the rolling brush 17 is horizontally arranged and is inclined along the length direction of the lower die 21. One end of the rolling brush 17 away from the lower die 21 is rotationally connected with the rolling brush seat, and the rolling brush motor 18 is mounted on the rolling brush seat to drive the rotation of the rolling brush 17.
[0033] The mounting plate 3 is provided with side positioning wheels 13 located at the side of the lower die connecting plate 22, the side positioning wheels 13 are arranged in two and arranged in front and back, the rotation shafts of the side positioning wheels 13 are vertically arranged, and the vertical height of the side positioning wheels 13 is greater than the outer diameter, so that the height of the lower die connecting plate 22 in the mold of different sizes is adapted, and the side positioning wheels 13 can always be attached to the side of the lower die connecting plate 22. As shown, Figure 3 As shown, the pushing mechanism is located in front of the two side positioning wheels 13, and the upper positioning wheel 16 is located between the two side positioning wheels 13.
[0034] When the cement mortar on the lower die connecting plate 22 is recycled, the mounting plate 3 drives the lifting frame 14 to move towards the lower die 21 until the side positioning wheels 13 are pressed against the side of the lower die connecting plate 22, and then the lifting frame 14 is lowered so that the upper positioning wheel 16 and the pushing mechanism fall on the upper end surface of the lower die connecting plate 22.
[0035] The mounting plate 3 is slidably connected with two front and back arranged push-pull shafts 9 on the left and right, the push-pull shaft 9 extends left and right and penetrates the mounting plate 3, one end of the push-pull shaft 9 is fixedly connected with a side positioning wheel seat 12, the other end of the push-pull shaft 9 is connected with the telescopic shaft of the push-pull cylinder 10, the push-pull cylinder 10 is fixed on the portal frame 1, the push-pull shaft 9 is driven to move axially by the telescopic of the push-pull cylinder 10, two side positioning wheels 13 are respectively shaft-connected on the two side positioning wheel seats 12, the front and back spacing of the two side positioning wheels 13 is greater than the front and back dimension of the lower mold support table 23.
[0036] The mounting plate 3 is connected with the portal frame 1 through a spring, the spring in the embodiment is a tension spring, so as to pull the mounting plate 3 away from the lower mold 21. The push-pull shaft 9 is fixedly connected with a boss 11, the boss in the embodiment is circular and larger than the penetrating hole of the push-pull shaft 9 on the mounting plate 3, the mounting plate 3 is driven to move towards the lower mold 21 by the boss 11 when the push-pull cylinder 10 is elongated, the mounting plate 3 is driven to retract by the pulling force of the spring after the two push-pull cylinders 10 are all retracted, the side positioning wheel 13 is retracted by the retraction of the push-pull cylinder 10 when passing through the lower mold support table 23, and the other side positioning wheel 13 is pressed against the side of the lower mold connecting plate 22 at this time.
[0037] In order to realize the control of the retraction of the side positioning wheel 13, the side positioning wheel seat 12 is fixedly connected with a forward extending switch bracket 19 at the upper end, the switch bracket 19 is fixedly connected with a sensing switch 20 at the front end, the sensing switch 20 faces downward, the sensing area is located outside the lower mold connecting plate 22, and the sensing area can detect the lower mold support table 23 in the movement of the portal frame 1, and the corresponding side positioning wheel 13 is retracted when the sensing switch 20 detects the lower mold support table 23.
[0038] The mounting plate 3 is provided with a conveying mechanism, the conveying mechanism conveys the cement mortar pushed out by the pushing mechanism to the recycling box 8. Figure 1 As shown in the figure, the conveying mechanism comprises an auger 5 fixed on the mounting plate 3, the auger 5 is vertically arranged and fixed on the back of the mounting plate 3 through bolts, the front and back positions of the auger 5 correspond to the front and back positions of the roller brush 17 and are located in the front offset position of the roller brush 17, a collecting hopper 6 located below the lower mold connecting plate 22 is fixed on the lower end inlet of the auger 5, and the collecting hopper 6 is located in the front offset position of the roller brush 17. A downward inclined discharge pipe 7 is fixed on the upper end outlet of the auger 5, and the lower end of the discharge pipe 7 flows the cement mortar into the recycling box 8.
[0039] The use method of the application is as follows:
[0040] The application is used for recycling the cement mortar spilled on the lower mold connecting plate 22 on both sides of the lower mold 21 after the cement mortar is injected into the lower mold 21, so as to facilitate subsequent utilization.
[0041] As shown in the figure, Figure 6As shown, it is a split schematic diagram of the mold, in which the reinforcement cage and the cement mortar are injected into the lower mold, and horizontal lower mold connecting plates 22 are welded on both sides of the lower mold, and upper mold connecting plates are welded on both sides of the upper mold, and the connection of the upper mold and the lower mold is realized by the bolt connection of the lower mold connecting plates 22 and the upper mold connecting plates. Since the diameter of the lower end of the finished product is larger than that of the upper end, the size of the upper and lower molds is also conical structure, so when the cement mortar on the lower mold connecting plate 22 is recycled, the size of the lower mold needs to be recycled.
[0042] And a plurality of semicircular support tables are welded on the upper mold and the lower mold respectively, the support tables of the lower mold are called lower mold support tables 23, and after the upper mold and the lower mold are butt jointed, the two semicircular support tables form a ring structure, and the ring structure is the largest place of the outer diameter of the entire mold, so that the ring structure is supported on the rotating wheel to realize the rotation of the mold. When the cement mortar on the lower mold connecting plate 22 is recycled, attention should be paid to avoid the lower mold support table 23.
[0043] The recycling system is located at one end of the lower mold 21 when the lower mold is grouting, so as not to affect the grouting. After grouting is completed, the walking motor on the gantry 1 drives the walking wheel 2 to rotate, so that the recycling system moves along the length direction of the lower mold 21. After moving to the end of the lower mold 21, the two recycling mechanisms are respectively used to recycle the cement mortar on the two lower mold connecting plates 22.
[0044] The two push-pull cylinders 10 in the recycling mechanism are elongated, so as to drive the two side positioning wheels 13 in the recycling mechanism to press tightly on the side surface of the lower mold connecting plate 22. At the same time, since the push-pull shaft 9 passes through the mounting plate 3, the mounting plate 3 is moved to the direction of the lower mold 21 through the two bosses 11, so that the upper positioning wheel 16 and the rolling brush 17 on the mounting plate 3 are moved to the directly above of the lower mold connecting plate 22. Therefore, no matter the size of the lower mold, the upper positioning wheel 16 and the rolling brush 17 can be kept directly above the lower mold connecting plate 22. And during the movement of the gantry 1 along the length direction of the lower mold, the side positioning wheel 13 is pressed tightly on the side surface of the lower mold connecting plate 22 under the action of the gas pressure, so as to adapt to the size change of the lower mold, and keep the upper positioning wheel 16 and the rolling brush 17 directly above the lower mold connecting plate 22 during the entire recycling process.
[0045] Then the lifting cylinder 15 is elongated, driving the lifting frame 14 to move downward until the upper positioning wheel 16 is pressed tightly on the upper end surface of the lower mold connecting plate 22 to realize the positioning of the rolling brush 17. At this time, the lower end of the rolling brush 17 is attached to the upper end surface of the lower mold connecting plate 22, and the plan view is as shown in Figure 3 .
[0046] Then the gantry 1 moves along the length direction of the lower mold 21, and the upper positioning wheel 16 and the side positioning wheel 13 are always pressed on the upper end and the side of the lower mold connecting plate 22 during the moving process, so that the rolling brush 17 is kept in the appropriate position on the lower mold connecting plate 22, the rolling brush 17 is rotated by the rolling brush motor 18, the cement mortar on the lower mold connecting plate 22 is pushed to the outside of the front, and the cement mortar falls into the collecting hopper 6 at the lower end of the auger 5, the cement mortar is upwardly conveyed through the auger 5, and finally flows into the recycling box 8 through the discharge pipe 7 to be collected, and after a certain amount of collection, the discharge port at the lower end of the recycling box 8 can be opened to discharge the collected cement mortar.
[0047] During the collection process, when moving to the position of the lower mold support table 23, the lower mold support table 23 protrudes from the side of the lower mold connecting plate 22, thereby affecting the travel of the side positioning wheel 13, and the application is provided with two side positioning wheels 13, when the inductive switch 20 on the front side positioning wheel 13 detects the lower mold support table 23, the push-pull cylinder 10 of the front side positioning wheel 13 is retracted, driving the front side positioning wheel 13 to retract, thereby avoiding the lower mold support table 23, at this time, the rear side positioning wheel 13 is still pressed against the side of the lower mold connecting plate 22, and the top view is as shown in Figure 4 Therefore, the boss 11 on the push-pull shaft 9 of the rear side positioning wheel 13 still keeps the mounting plate 3 in the pushed-out state, and the upper positioning wheel 16 and the rolling brush 17 are still kept in the position directly above the lower mold connecting plate 22.
[0048] When the inductive switch 20 on the rear side positioning wheel 13 detects the lower mold support table 23, it proves that the front side positioning wheel 13 has passed the lower mold support table 23, at this time, the front push-pull cylinder 10 is elongated, so that the front side positioning wheel 13 is pressed against the side of the lower mold connecting plate 22 again, and the front boss keeps the mounting plate 3 in the pushed-out state, and the rear push-pull cylinder 10 is retracted, so that the rear side positioning wheel 13 is retracted, thereby avoiding the lower mold support table 23, and the top view is as shown in Figure 5 Therefore, the avoidance of the lower mold support table 23 is realized by the alternation of the two side positioning wheels 13, and the normal recycling work is not affected during the avoidance process.
[0049] After the recycling is completed, the lifting cylinder 15 is retracted, driving the lifting frame 14 upward, and the upper positioning wheel 16 and the rolling brush 17 are away from the lower mold connecting plate 22. Then the two push-pull cylinders 10 are retracted, and the mounting plate 3 is retracted by the pulling force of the spring, thereby completing the recycling work.
[0050] Of course, the above description is not limited to the above examples, and the technical features not described in the application can be implemented by or using the prior art, which will not be described here; the above examples and drawings are only used to illustrate the technical solutions of the application and are not a limitation on the application, and the application has been described in detail with reference to the preferred embodiments, and those skilled in the art should understand that changes, modifications, additions or substitutions made by those skilled in the art within the essential scope of the application do not deviate from the purpose of the application, and should also belong to the protection scope of the claims of the application.
Claims
1. A system for recycling cement surplus slurry of electric poles, characterized in that: The gantry (1) moves along the length direction of the lower mold (21), and the recycling box (8) is fixed on the gantry (1). The gantry (1) is provided with recycling mechanisms on both sides of the lower mold (21). The recycling mechanism comprises a mounting plate (3) slidably connected to the gantry (1) and a lifting frame (14) vertically slidably connected to the mounting plate (3). The lifting frame (14) is provided with an upper positioning wheel (16) and a pushing mechanism for pushing the cement mortar on the lower mold connecting plate (22) outward. The mounting plate (3) is provided with a side positioning wheel (13) located on the side of the lower mold connecting plate (22). When the cement mortar on the lower mold connecting plate (22) is recycled, the mounting plate (3) drives the lifting frame (14) to move towards the lower mold (21) until the side positioning wheel (13) is pressed against the side of the lower mold connecting plate (22), and then the lifting frame (14) is lowered so that the upper positioning wheel (16) and the pushing mechanism fall onto the upper end surface of the lower mold connecting plate (22). The mounting plate (3) is provided with a conveying mechanism for conveying the cement mortar pushed outward by the pushing mechanism to the recycling box (8). The mounting plate (3) is provided with two front and rear arranged push-pull shafts (9) slidably connected to the mounting plate (3). One end of the push-pull shaft (9) is fixedly connected with a side positioning wheel seat (12), and the other end of the push-pull shaft (9) is connected with the extension shaft of a push-pull cylinder (10). The side positioning wheel (13) is provided with two side positioning wheel seats (12) and is axially connected to the two side positioning wheel seats (12). The push-pull shaft (9) is fixedly connected with a boss (11). When the push-pull cylinder (10) is extended, the mounting plate (3) is driven to move towards the lower mold (21) through the boss (11). When the two push-pull cylinders (10) are retracted, the mounting plate (3) is driven to retract by the pulling force of the spring. When the side positioning wheel (13) passes through the lower mold support table (23), the push-pull cylinder (10) is retracted to drive the side positioning wheel (13) to retract. At this time, the other side positioning wheel (13) is pressed against the side of the lower mold connecting plate (22).
2. The system for recycling cement surplus slurry of electric pole according to claim 1, characterized in that: The side positioning wheel seat (12) is fixedly connected with a forwardly extending switch bracket (19) at the upper end. The switch bracket (19) is fixedly connected with an inductive switch (20) at the front end. When the inductive switch (20) detects the lower mold support table (23), the corresponding side positioning wheel (13) is retracted.
3. The system for recycling cement surplus slurry of electric pole according to claim 1, characterized in that: The pushing mechanism is located in front of the two side positioning wheels (13), and the upper positioning wheel (16) is located between the two side positioning wheels (13).
4. The system for recycling cement surplus slurry of electric pole according to claim 1, characterized in that: The lifting frame (14) comprises two vertical lifting guide rails. The mounting plate (3) is fixedly connected with a lifting guide sleeve matched with the lifting guide rails. The mounting plate (3) is provided with a lifting cylinder (15) for driving the lifting frame (14) to lift.
5. The cement surplus slurry recycling system for electric poles according to claim 1, characterized in that: The conveying mechanism comprises an auger (5) fixedly connected to the mounting plate (3). The lower end of the auger (5) is fixedly connected with a collecting hopper (6) located below the lower mold connecting plate (22). The upper end of the auger (5) is fixedly connected with a downwardly inclined discharge pipe (7).
6. The cement surplus slurry recycling system for electric poles according to claim 1, characterized in that: The gantry (1) comprises a top frame at the top and side frames at both sides. The lower end of the side frame is provided with a walking wheel (2) and a walking motor for driving the walking wheel (2) to rotate.
7. The cement surplus slurry recycling system for electric poles according to claim 1, characterized in that: The toggle mechanism comprises a brush holder fixed to the lower end of the lifting frame (14), a brush (17) shaft-connected to one side of the brush holder, and a brush motor (18) for driving the brush (17) to rotate.
8. The cement surplus slurry recycling system for electric poles according to claim 7, characterized in that: The brush (17) is horizontally arranged and obliquely arranged along the length direction of the lower die (21). 9.The system according to claim 1, characterized in that: The rotation shaft of the side positioning wheel (13) is vertically arranged, and the vertical height of the side positioning wheel (13) is greater than the outer diameter thereof.
Citation Information
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