Waterproof concrete slope roof pouring device convenient to build

By using a lifting tower system and automated pouring equipment, the problems of low efficiency and uneven quality in pouring concrete on slopes have been solved, achieving efficient and uniform concrete delivery and spreading, ensuring the adhesion of concrete and preventing it from falling off, thus improving construction quality and efficiency.

CN115637856BActive Publication Date: 2025-12-23WENZHOU ZHONGHAI CONSTRUCT CO LTD
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Patent Information

Application Number
CN202211284943.2
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-10-17
Publication Date
2025-12-23
Estimated Expiration
2042-10-17

AI Technical Summary

Technical Problem

Existing technologies for pouring concrete on sloping surfaces suffer from low efficiency and uneven quality due to manual operation, which can easily lead to concrete cracks and falls, while equipment performance is unsatisfactory.

Method used

The system employs a lifting tower system and an automated pouring device, including a mixing tank, mud conveying pipe, pouring nozzle, and pouring slab. Combined with a mixing auger, mud conveying auger, water supply nozzle, anti-slip components, and a recycling tank, it achieves automated concrete delivery and spreading, and has automatic detection and heating drying functions.

Benefits of technology

It improves the efficiency and quality of slope pouring, avoids concrete settling and falling, enhances the adhesion and uniformity of concrete, increases utilization, and reduces manual intervention and quality problems.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The application discloses a waterproof concrete slope roof pouring device convenient to build, and belongs to the technical field of concrete pouring. The pouring device comprises a lifting tower, an installation channel is arranged in the lifting tower, an upper rack opening is arranged in the installation channel, a mud conveying pipe is arranged on the lifting tower, a stirring tank is arranged at one end of the mud conveying pipe, a pouring gun head is arranged on the side of the mud conveying pipe away from the stirring tank, a pouring box is arranged on the pouring gun head, a pouring plate is arranged in the pouring box, the pouring box is in communication with the pouring gun head, the pouring plate is rotatably connected with the pouring box, an anti-skid assembly is arranged at the lower end of the pouring box, the anti-skid assembly is slidably connected with the pouring box, a control chamber is arranged on the lifting tower, the control chamber is connected with the pouring box and the anti-skid assembly through wires, and stable supporting legs are arranged at the bottom end of the lifting tower. The application has the functions of building roof pouring, and can realize the effects of preventing slag from falling and quick solidification.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of concrete pouring, in particular to a waterproof concrete slope roof pouring device convenient to build. BACKGROUND

[0002] In the process of infrastructure development, various types of infrastructure equipment are set up, and the construction direction of the building is also different. For example, concrete pouring, which is a construction process of pouring mixed concrete into a warehouse, leveling the warehouse, and tamping and compacting. The pouring requires continuity, uniformity and prevention of concrete segregation. The warehouse is evenly spread and filled with concrete by manual or mechanical methods. A complete production line has been presented in front of us, and the work efficiency and quality are impeccable.

[0003] However, in the actual production process, the buildings that need concrete pouring are not only flat, but also often used in some slope buildings. There are many corresponding devices, but the use effect is not satisfactory. Manual pouring will greatly slow down the work efficiency and greatly waste labor. The quality of the concrete laid by manual is uneven, and often causes a large number of cracks after the concrete pouring is completed. These cracks will cause concrete chunks to fall off. SUMMARY

[0004] The present application provides a waterproof concrete slope roof pouring device convenient to build, which can effectively solve the problems in the background art.

[0005] To achieve the above purpose, the present application provides the following technical scheme:

[0006] The pouring device comprises a lifting tower, a mounting channel is arranged in the lifting tower, an upper rack opening is arranged in the mounting channel, a mud conveying pipe is arranged on the lifting tower, a stirring tank is arranged at one end of the mud conveying pipe, a pouring gun head is arranged on the side of the mud conveying pipe away from the stirring tank, a pouring box is arranged on the pouring gun head, a pouring plate is arranged in the pouring box, the pouring box is in communication with the pouring gun head, the pouring plate is rotatably connected with the pouring box, an anti-skid assembly is arranged at the lower end of the pouring box, the anti-skid assembly is slidably connected with the pouring box, a control room is arranged on the lifting tower, the control room is connected with the pouring box and the anti-skid assembly through wires, and stable supporting legs are arranged at the bottom end of the lifting tower. The lifting tower is installed beside the building to be poured, and is fixed to the ground by the stable supporting legs. The lifting auxiliary frame is installed into the mounting channel through the upper rack opening, enters the lifting tower through the mounting channel, and then position adjustment is performed. The concrete slurry in the stirring tank will be connected to the injection gun head through the mud conveying pipe. The injection gun head disperses the conveyed slurry into the pouring box. The pouring box disperses the slurry onto the roof of the building. The pouring plate then performs leveling. Finally, the anti-skid assembly performs fixing and impurity removal. The operator in the control room controls and regulates the entire process.

[0007] A stirring screw rod is arranged in the stirring tank, a plurality of stirring branches are arranged on the stirring screw rod, a stirring fan wheel is arranged on each stirring branch, a stirring motor is arranged on the stirring tank, the stirring screw rod is arranged on the output end of the stirring motor, a feeding box is arranged in the stirring tank, a feeding plate is arranged in the feeding box, the feeding plate is in sliding contact with the stirring screw rod, the feeding plate is slidably connected with the feeding box, and the feeding box is in communication with the mud conveying pipe. In order to avoid the situation that the concrete dries and solidifies, the concrete slurry in the stirring tank needs to be kept in a moving state to maintain the moisture level of the concrete. The stirring motor drives the stirring screw rod to rotate. The rotation of the stirring screw rod drives the stirring fan wheel to rotate. The stirring fan wheel changes the movement direction of the concrete, so that the concrete in the stirring tank is more uniform and avoids precipitation. With the rotation of the stirring screw rod, the concrete enters the feeding box through the stirring screw rod, and then enters the mud conveying pipe under the action of the feeding plate.

[0008] The mud conveying pipe is provided with a mud conveying screw rod, the mud conveying screw rod is rotationally connected with the inner wall of the mud conveying pipe, the mud conveying screw rod is arranged on the output end of a mud conveying motor, the mud conveying motor is arranged on the mud conveying pipe, the end of the mud conveying screw rod away from the mud conveying motor is located in the feeding box, the mud conveying screw rod is slidably connected with the feeding plate, the side of the mud conveying pipe away from the feeding box is communicated with the pouring box, the mud conveying motor is connected with the control chamber through wires, the mud conveying pipe is provided with a water supplementing nozzle, the water supplementing nozzle is connected with the water tank through a conduit, when the concrete slurry enters the feeding box, the mud conveying screw rod in the mud conveying pipe rotates under the driving of the mud conveying motor, so that the concrete slurry in the mud conveying pipe is sent into the pouring box, in the conveying process, the water supplementing nozzle supplies water for the concrete slurry, reduces the water loss of the concrete slurry in the conveying process, and thus the cohesiveness of the concrete slurry is maintained.

[0009] The pouring box is provided with a receiving cavity, the receiving cavity is communicated with the pouring gun head, the side of the pouring gun head away from the receiving cavity is communicated with the mud conveying pipe, the receiving cavity is provided with a filter plate, the upper end of the filter plate is provided with a scraping frame, the scraping frame is in sliding contact with the filter plate, the scraping frame is slidably connected with the receiving cavity, the scraping frame is provided with a transmission connecting rod set, the transmission connecting rod set is rotationally connected with the scraping frame, the end of the transmission connecting rod set away from the scraping frame is rotationally connected with the output end of the mud conveying motor, the pouring plate is arranged on the side away from the receiving cavity, the lifting tower is provided with a lifting sub-tower, the lifting sub-tower is provided with a lifting motor, the output end of the lifting motor is engaged with the lifting teeth on the lifting tower, the pouring box is arranged on the lifting sub-tower, after the concrete slurry enters the receiving cavity, the concrete slurry falls on the filter plate, and then is spread on the roof of the building after passing through the filter plate, after the spreading is completed, the pouring plate that has been adjusted is used for compacting and flattening, in this process, the mud conveying motor drives the transmission connecting rod set to rotate, drives the scraping frame to reciprocate, so that the concrete slurry on the filter plate can smoothly pass through the filter plate, at the same time, the scraping frame can disperse the slurry, so that the slurry can be more uniformly dropped on the roof of the building, and the lifting motor drives the lifting sub-tower to move up and down, and the control chamber controls the position of the pouring box, so that the effect of roof pouring is realized.

[0010] The pouring plate is provided with a plurality of transmission rollers, each of which is rotatably connected with the pouring plate, and each of the transmission rollers is provided with a transmission gear, and the pouring plate is provided with a plurality of elastic switches, each of the transmission gears is intermittently attached to the elastic switches, the elastic switches are connected with the control chamber through wires, and the pouring plate is provided with an adjusting bolt which is threadedly connected with the pouring box and the pouring plate, after the receiving cavity receives the concrete slurry, the pouring will be performed on the top of the building, at this time, the pouring plate is adjusted to indirectly adjust the pouring thickness, the transmission roller will rotate during the movement of the pouring plate, the transmission gears on the transmission roller will intermittently hit the elastic switches, and the elastic switches will intermittently transmit electric current to the control chamber, when a fault or defect occurs in the pouring, the transmission roller will not contact the pouring surface, so that the rotation no longer occurs, and the electric current transmitted to the control chamber will also change, which is adjusted by the operator.

[0011] The anti-skid assembly comprises an anti-skid cover which is rotatably connected with the pouring box, and is provided with air inlet holes on both sides thereof, an air suction exhaust is arranged on the anti-skid cover, heating plates are arranged on both sides of the anti-skid cover, a filter screen is arranged on the air suction exhaust, a recovery groove is arranged at the lower end of the anti-skid cover, the anti-skid cover is connected with the pouring plate through a chain, the anti-skid cover and the pouring plate are parallel structures, an adjusting hydraulic rod is arranged on the anti-skid cover and rotatably connected with the pouring box and the anti-skid cover at both ends thereof, after the pouring is completed, the anti-skid cover will pass over the top of the building which has been poured, in order to prevent the concrete on the top of the building from falling due to incomplete drying, the height of the anti-skid cover is adjusted by adjusting the contraction length of the adjusting hydraulic rod, and the anti-skid cover and the pouring plate maintain the same inclination angle, so that the anti-skid cover can be closely attached to the pouring surface and moved, the heating plates work during the movement, and the air pump on the air suction exhaust works to make the air in the anti-skid cover flow, so that the pouring surface can be quickly dried and shaped to prevent the problem of falling caused by incomplete drying of the pouring surface.

[0012] The recovery groove is rotatably connected with the anti-skid cover through a support, a crushing spiral rod is arranged in the recovery groove, the crushing spiral rod is rotatably connected with the recovery groove, a crushing motor is arranged on the recovery groove, the crushing spiral rod is arranged on the output end of the crushing motor, and the end of the recovery groove away from the crushing motor is communicated with the stirring tank, when the debris cleaned by the anti-skid cover enters the recovery groove, the crushing motor will work to drive the crushing spiral rod to rotate, the crushing spiral rod will crush and transport the residues and debris in the recovery groove out of the recovery groove, and then the crushed residues and debris will enter the stirring tank for recycling and reuse.

[0013] The plurality of telescopic supporting legs are respectively in sliding connection with the stable supporting leg, the telescopic supporting leg is provided with a fixing bolt, the stable supporting leg is provided with a plurality of fixing holes, the fixing bolt is corresponding with the position and aperture of the fixing hole on the stable supporting leg, the telescopic supporting leg is provided with a base column, the base column is provided with a positioning column, the positioning column is in threaded rotary connection with the base column, after the installation of the lifting tower is completed, the stable supporting leg is in contact with the ground, then the distance between the telescopic supporting leg and the stable supporting leg is adjusted, after the adjustment is completed, the fixing bolt is used for fixing, so that the ground is more adapted, then the base column is drilled into the ground bottom, and the positioning column is rotated, so that the position of the positioning column is changed, until the positioning column cannot be sent in any more.

[0014] Compared with the prior art, the present application has the following advantages: 1. The present application adopts a structure of stirring and feeding at the same time, so that the stirred concrete can be directly used and directly sent to the place where it is needed. During transportation, the concrete slurry maintains a certain viscosity under the action of the water supplementing nozzle, so that the concrete can better adhere to the surface of the building during pouring, and the problem of incomplete adhesion of the concrete due to the slope of the building is avoided.

[0015] 2. The present application adopts a pouring box with automatic detection function. During pouring, the pouring surface is treated by the pouring plate in the pouring box, and the transmission roller on the pouring plate detects the surface of the poured concrete, so that the problem of intermittent pits and depressions on the pouring surface during pouring is avoided, and the pouring quality is affected.

[0016] 3. The present application adopts a fastening assembly after pouring. While the pouring surface is dried, an air suction assembly is used to suck the excess water, which avoids the influence of air blowing on the pouring surface. Meanwhile, a recycling groove structure is adopted to recycle the excess concrete or concrete fragments that are not completely adhered on the pouring surface for secondary use, which reduces accidents and improves the utilization rate of concrete. DETAILED DESCRIPTION

[0017] The accompanying drawings are used to provide a further understanding of the present application, and constitute a part of the specification, which is used together with the embodiments of the present application to explain the present application, and do not constitute a limitation on the present application. In the drawings:

[0018] Figure 1 is a three-dimensional structure schematic view of the present application;

[0019] Figure 2 is a front view structure diagram of the present application;

[0020] Figure 3 is a stirring tank internal structure schematic view of the present application;

[0021] Figure 4 is the schematic diagram of the cooperation structure of the mud conveying pipe and the pouring box of the present application;

[0022] Figure 5 is the schematic diagram of the cooperation structure of the pouring box and the anti-skid assembly of the present application;

[0023] Figure 6 is the schematic diagram of the longitudinal section structure of the pouring plate of the present application;

[0024] Figure 7 is the schematic diagram of the internal structure of the anti-skid cover of the present application;

[0025] Figure 8 is the schematic diagram of the internal structure of the recycling tank of the present application;

[0026] Figure 9 is the schematic diagram of the internal structure of the stabilizing leg of the present application;

[0027] Figure 10 is the schematic diagram of the internal structure of the priming column of the present application;

[0028] In the figure, 1 is the lifting tower, 101 is the lifting sub-tower, 102 is the lifting motor, 2 is the installation channel, 3 is the upper rack opening, 4 is the mud conveying pipe, 401 is the mud conveying spiral rod, 402 is the mud conveying motor, 403 is the water replenishing nozzle, 5 is the stirring tank, 501 is the stirring spiral rod, 502 is the stirring branch, 503 is the stirring fan wheel, 504 is the stirring motor, 505 is the feeding box, 506 is the feeding plate, 6 is the pouring gun head, 7 is the pouring box, 701 is the receiving cavity, 702 is the filter plate, 703 is the scraping frame, 704 is the transmission connecting rod set, 8 is the pouring plate, 801 is the transmission roller, 802 is the elastic switch, 803 is the adjusting bolt, 9 is the anti-skid assembly, 901 is the anti-skid cover, 902 is the air suction exhaust, 903 is the heating plate, 904 is the recycling tank, 905 is the adjusting hydraulic rod, 906 is the crushing spiral rod, 907 is the crushing motor, 10 is the control room, 11 is the stabilizing leg, 1101 is the telescopic leg, 1102 is the fixing bolt, 1103 is the priming column, and 1104 is the positioning column. DETAILED DESCRIPTION

[0029] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the protection scope of the present application.

[0030] As Figure 1 , Figure 2As shown, the pouring device comprises a lifting tower 1, an installation channel 2 is arranged in the lifting tower 1, an upper rack opening 3 is arranged in the installation channel 2, a mud conveying pipe 4 is arranged on the lifting tower 1, one end of the mud conveying pipe 4 is provided with a stirring tank 5, the side away from the stirring tank 5 of the mud conveying pipe 4 is provided with a pouring gun head 6, the pouring gun head 6 is provided with a pouring box 7, the pouring box 7 is provided with a pouring plate 8, the pouring box 7 is communicated with the pouring gun head 6, the pouring plate 8 is rotatably connected with the pouring box 7, the lower end of the pouring box 7 is provided with an anti-skid assembly 9, the anti-skid assembly 9 is slidably connected with the pouring box 7, a control room 10 is arranged on the lifting tower 1, the control room 10 is connected with the pouring box 7 and the anti-skid assembly 9 through wires, and a stabilizing leg 11 is arranged at the bottom end of the lifting tower 1. The lifting tower 1 is installed beside the building to be poured, and is fixed to the ground by the stabilizing leg 11. The lifting auxiliary frame is installed into the installation channel 2 through the upper rack opening 3. The lifting auxiliary frame will enter the lifting tower 1 through the installation channel 2, and then the position is adjusted. The concrete slurry in the stirring tank 5 will be conveyed to the injection gun head through the mud conveying pipe 4. The injection gun head disperses the conveyed slurry into the pouring box 7. The pouring box 7 disperses the slurry onto the roof of the building. Then the pouring plate 8 is used for leveling. Finally, the anti-skid assembly 9 is used for fixing and removing impurities. The operator in the control room 10 controls and regulates the whole process.

[0031] As shown in the figure, Figure 3 The stirring tank 5 is provided with a stirring screw rod 501, a plurality of stirring branches 502 are arranged on the stirring screw rod 501, a stirring fan wheel 503 is arranged on each stirring branch 502, a stirring motor 504 is arranged on the stirring tank 5, the stirring screw rod 501 is arranged on the output end of the stirring motor 504, the stirring tank 5 is provided with a feeding box 505, the feeding box 505 is provided with a feeding plate 506, the feeding plate 506 is in sliding contact with the stirring screw rod 501, the feeding plate 506 is slidably connected with the feeding box 505, and the feeding box 505 is communicated with the mud conveying pipe 4. In order to avoid the situation that the concrete dries and shapes, it is necessary to keep the concrete slurry in the stirring tank 5 in a moving state to maintain the moisture content of the concrete. The stirring motor 504 drives the stirring screw rod 501 to rotate. The rotation of the stirring screw rod 501 drives the stirring fan wheel 503 to rotate. The stirring fan wheel 503 increases the movement direction of the concrete, so that the concrete in the stirring tank 5 is more uniform to avoid precipitation. With the rotation of the stirring screw rod 501, the concrete will enter the feeding box 505 along the stirring screw rod 501, and then enter the mud conveying pipe 4 under the action of the feeding plate 506.

[0032] As shown in the figure, Figure 4As shown, the mud conveying pipe 4 is provided with a mud conveying screw rod 401, which is rotationally connected with the inner wall of the mud conveying pipe 4, and is arranged on the output end of a mud conveying motor 402, which is arranged on the mud conveying pipe 4. The mud conveying screw rod 401 is located in the feeding box 505 at the end away from the mud conveying motor 402, and is slidably connected with the feeding plate 506. The mud conveying pipe 4 is in communication with the pouring box 7 at the side away from the feeding box 505. The mud conveying motor 402 is connected with the control room 10 through wires. The mud conveying pipe 4 is provided with a water supplementing nozzle 403, which is connected with a water tank through a conduit. When the concrete slurry enters the feeding box 505, the mud conveying screw rod 401 in the mud conveying pipe 4 rotates under the driving of the mud conveying motor 402, so that the concrete slurry in the mud conveying pipe 4 is sent into the pouring box 7. In the process of conveying, the water supplementing nozzle 403 supplies water for the concrete slurry, reduces the water loss of the concrete slurry in the conveying process, and thus maintains the cohesiveness of the concrete slurry.

[0033] As shown in Figure 4 , Figure 5 , the pouring box 7 is provided with a receiving cavity 701, which is in communication with the pouring gun head 6. The pouring gun head 6 is in communication with the mud conveying pipe 4 at the side away from the receiving cavity 701. The receiving cavity 701 is provided with a filter plate 702. The upper end of the filter plate 702 is provided with a scraping frame 703, which is in sliding contact with the filter plate 702 and is slidably connected with the receiving cavity 701. The scraping frame 703 is provided with a transmission link set 704, which is rotationally connected with the scraping frame 703. The transmission link set 704 is rotationally connected with the output end of the mud conveying motor 402 at the end away from the scraping frame 703. The pouring plate 8 is arranged at the side away from the receiving cavity 701. The lifting tower 1 is provided with a lifting sub-tower 101, which is provided with a lifting motor 102. The output end of the lifting motor 102 is engaged with the lifting teeth on the lifting tower 1. The pouring box 7 is arranged on the lifting sub-tower 101. When the concrete slurry enters the receiving cavity 701, it will fall on the filter plate 702, and then will be spread on the roof of the building after passing through the filter plate 702. After the spreading is completed, the pouring plate 8, which has been adjusted, will be used for compacting and flattening, etc. In this process, the mud conveying motor 402 will drive the transmission link set 704 to rotate, drive the scraping frame 703 to reciprocate, so that the concrete slurry on the filter plate 702 can smoothly pass through the filter plate 702. At the same time, the scraping frame 703 can also disperse the slurry, so that the slurry can be more uniformly dropped on the roof of the building. The lifting motor 102 will drive the lifting sub-tower 101 to move up and down. The control room 10 will also control the position of the pouring box 7, so as to realize the effect of pouring on the roof.

[0034] As shown in Figure 6As shown, the pouring plate 8 is provided with a plurality of transmission rollers 801, each of which is rotatably connected with the pouring plate 8, and the transmission rollers 801 are provided with transmission teeth, and the pouring plate 8 is provided with a plurality of elastic switches 802, each of which is intermittently attached with the elastic switch 802, and the elastic switch 802 is connected with the control chamber 10 through a wire, and the pouring plate 8 is provided with an adjusting bolt 803, which is connected with the pouring plate 8 through the pouring box 7 by screwing, and after the receiving cavity 701 receives the concrete slurry, the pouring will be carried out on the top of the building slope, at this time, the pouring plate 8 is adjusted to indirectly adjust the pouring thickness, and the transmission roller 801 will rotate during the wandering process of the pouring plate 8, and the transmission teeth on the transmission roller 801 will intermittently hit the elastic switch 802, and the elastic switch 802 will intermittently transmit current to the control chamber 10, when the pouring appears fault or defect, the transmission roller 801 will not contact the pouring surface, so that the rotation no longer occurs, and the current transmitted to the control chamber 10 will also change, which is adjusted by the operator.

[0035] As shown in Figure 5 , Figure 7 , the anti-skid assembly 9 includes an anti-skid cover 901, which is rotatably connected with the pouring box 7, and the anti-skid cover 901 is provided with air inlet holes on both sides, and the anti-skid cover 901 is provided with an air suction exhaust 902, and the anti-skid cover 901 is provided with a heating plate 903 on both sides, and the air suction exhaust 902 is provided with a filter screen, and the anti-skid cover 901 is provided with a recovery groove 904 at the lower end, and the anti-skid cover 901 is connected with the pouring plate 8 through a chain, and the anti-skid cover 901 and the pouring plate 8 are parallel structures, and the anti-skid cover 901 is provided with an adjusting hydraulic rod 905, and the adjusting hydraulic rod 905 is rotatably connected with the pouring box 7 and the anti-skid cover 901 at both ends, and after the pouring is completed, the anti-skid cover 901 will sweep across the slope top which has been poured, in order to prevent the concrete on the slope top from falling due to not being dry, the contraction length of the adjusting hydraulic rod 905 is adjusted to adjust the height of the anti-skid cover 901, and the anti-skid cover 901 maintains the same inclination angle with the pouring plate 8, so that the anti-skid cover 901 can be closely attached to the pouring surface for movement, and the heating sheet works during the movement process, and the air pump on the air suction exhaust 902 works to make the air in the anti-skid cover 901 flow, so that the pouring surface can be quickly dried and shaped to prevent the problem of falling caused by incomplete drying of the pouring surface.

[0036] As shown in Figure 8As shown, the recovery tank 904 is rotatably connected with the anti-skid cover 901 through a support, a crushing screw rod 906 is arranged in the recovery tank 904, the crushing screw rod 906 is rotatably connected with the recovery tank 904, a crushing motor 907 is arranged on the recovery tank 904, the crushing screw rod 906 is arranged on an output end of the crushing motor 907, and an end of the recovery tank 904 away from the crushing motor 907 is in communication with the stirring tank 5. When the sundries cleaned by the anti-skid cover 901 enter into the recovery tank 904, the crushing motor 907 will work to drive the crushing screw rod 906 to rotate, the crushing screw rod 906 will stir and transport out the sundries in the recovery tank 904, and then the crushed sundries will enter into the stirring tank 5 for recycling.

[0037] As shown in Figure 9 , Figure 10 As shown, a plurality of telescopic legs 1101 are arranged in the stabilizing leg 11, each telescopic leg 1101 is slidably connected with the stabilizing leg 11, a fixing bolt 1102 is arranged on the telescopic leg 1101, a plurality of fixing holes are arranged on the stabilizing leg 11, the fixing bolt 1102 corresponds to the position and hole diameter of the fixing hole on the stabilizing leg 11, a base column 1103 is arranged on the telescopic leg 1101, a positioning column 1104 is arranged in the base column 1103, and the positioning column 1104 is threadedly rotatably connected with the base column 1103. After the lifting tower 1 is installed, the stabilizing leg 11 will be in contact with the ground, then the distance between the telescopic leg 1101 and the stabilizing leg 11 is adjusted, and after the adjustment is completed, the fixing bolt 1102 is used for fixing, so as to be more adaptive to the ground, then the base column 1103 is drilled into the ground, and the positioning column 1104 is rotated to change the position of the positioning column 1104 until the positioning column 1104 cannot be sent in any more.

[0038] The working principle of the present application is as follows: the lifting tower 1 is installed beside the building to be poured, and is fixed to the ground by the stable supporting leg 11, and the lifting auxiliary frame is installed into the installation channel 2 through the upper installation opening 3, and will enter into the lifting tower 1 through the installation channel 2, and then position adjustment is carried out, before loading, the mud in the stirring tank 5 will be continuously stirred, and then the concrete mud in the stirring tank 5 will be connected to the injection gun head through the mud conveying pipe 4, the mud conveying motor 402 drives the mud conveying spiral rod 401 to rotate, the mud will enter into the pouring gun head 6 under the action of the mud conveying spiral rod 401, the pouring gun head 6 disperses the conveyed mud into the pouring box 7, the pouring box 7 will disperse the mud onto the roof of the building, the mud conveying motor 402 will also drive the scraping frame 703 to reciprocate through the transmission connecting rod group 704 while conveying the mud, so that the concrete mud is more dispersed, and then is scraped flat by the pouring plate 8, and finally is fixed and impurity-removed by the anti-skid cover 901, and the recovery groove 904 will send the non-adhered concrete mud back to the stirring tank 5, and the whole process is controlled and regulated by the operator in the control room 10.

[0039] It should be noted that the relational terms herein such as first and second and the like are used solely to distinguish one from another entity or action, without necessarily requiring or implying any such actual relationship or order between such entities or actions. Moreover, the terms "comprises", "comprising", or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but can include other elements not expressly listed or inherent to such process, method, article, or apparatus.

[0040] Finally, it should be noted that: the above only describes the preferred embodiments of the present application, and is not used to limit the present application, although the present application has been described in detail with reference to the foregoing embodiments, for those skilled in the art, the technical solutions recorded in the foregoing embodiments can be modified, or some technical features can be replaced equivalently. Any modification, equivalent replacement, improvement, etc. within the spirit and principles of the present application shall be included in the protection scope of the present application.

Claims

1. A waterproof and easy-to-assemble concrete slope roof pouring device, characterized in that: The pouring device comprises a lifting tower (1), a mounting channel (2) is arranged in the lifting tower (1), an upper rack opening (3) is arranged in the mounting channel (2), a mud conveying pipe (4) is arranged on the lifting tower (1), a stirring tank (5) is arranged at one end of the mud conveying pipe (4), a pouring gun head (6) is arranged on the side, away from the stirring tank (5), of the mud conveying pipe (4), a pouring box (7) is arranged on the pouring gun head (6), a pouring plate (8) is arranged in the pouring box (7), the pouring box (7) is in communication with the pouring gun head (6), the pouring plate (8) is rotatably connected with the pouring box (7), an anti-skid assembly (9) is arranged at the lower end of the pouring box (7), the anti-skid assembly (9) is slidably connected with the pouring box (7), a control chamber (10) is arranged on the lifting tower (1), the control chamber (10) is connected with the pouring box (7) and the anti-skid assembly (9) through wires, and a stabilizing supporting leg (11) is arranged at the bottom end of the lifting tower (1). The anti-skid assembly (9) comprises an anti-skid cover (901), the anti-skid cover (901) is rotatably connected with the pouring box (7), air inlet holes are arranged on the two sides of the anti-skid cover (901), an air suction exhaust (902) is arranged on the anti-skid cover (901), heating plates (903) are arranged on the two sides of the anti-skid cover (901), a filter screen is arranged on the air suction exhaust (902), a recovery groove (904) is arranged at the lower end of the anti-skid cover (901), the anti-skid cover (901) is connected with the pouring plate (8) through a chain, the anti-skid cover (901) and the pouring plate (8) are in parallel structure, an adjusting hydraulic rod (905) is arranged on the anti-skid cover (901), and the two ends of the adjusting hydraulic rod (905) are rotatably connected with the pouring box (7) and the anti-skid cover (901) respectively.

2. The waterproof and easy-to-assemble concrete sloping roof pouring device according to claim 1, characterized in that: The stirring tank (5) is provided with a stirring spiral rod (501), a plurality of stirring branches (502) are arranged on the stirring spiral rod (501), a stirring fan wheel (503) is arranged on each stirring branch (502), a stirring motor (504) is arranged on the stirring tank (5), the stirring spiral rod (501) is arranged on the output end of the stirring motor (504), a feeding box (505) is arranged in the stirring tank (5), a feeding plate (506) is arranged in the feeding box (505), the feeding plate (506) is in sliding contact with the stirring spiral rod (501), and the feeding plate (506) is slidably connected with the feeding box (505); and the feeding box (505) is in communication with the mud conveying pipe (4).

3. The waterproof and easily built concrete sloping roof pouring device according to claim 2, characterized in that: The mud conveying pipe (4) is provided with a mud conveying spiral rod (401), the mud conveying spiral rod (401) is rotatably connected with the inner wall of the mud conveying pipe (4), the mud conveying spiral rod (401) is arranged on the output end of a mud conveying motor (402), the mud conveying motor (402) is arranged on the mud conveying pipe (4), one end of the mud conveying spiral rod (401) away from the mud conveying motor (402) is located in the feeding box (505), the mud conveying spiral rod (401) is slidably connected with the feeding plate (506), one side of the mud conveying pipe (4) away from the feeding box (505) is communicated with the pouring box (7), the mud conveying motor (402) is connected with the control room (10) through wires, the mud conveying pipe (4) is provided with a water supplementing nozzle (403), the water supplementing nozzle (403) is connected with a water tank through a pipeline.

4. The waterproof and easily built concrete sloping roof pouring device according to claim 1, characterized in that: The pouring box (7) is provided with a receiving cavity (701), the receiving cavity (701) is communicated with the pouring gun head (6), one side of the pouring gun head (6) away from the receiving cavity (701) is communicated with the mud conveying pipe (4), the receiving cavity (701) is provided with a filter plate (702), the filter plate (702) is provided with a scraping frame (703) at the upper end, the scraping frame (703) is in sliding contact with the filter plate (702), the scraping frame (703) is slidably connected with the receiving cavity (701), the scraping frame (703) is provided with a transmission connecting rod set (704), the transmission connecting rod set (704) is rotatably connected with the scraping frame (703), one end of the transmission connecting rod set (704) away from the scraping frame (703) is rotatably connected with the output end of the mud conveying motor (402), the pouring plate (8) is arranged on one side away from the receiving cavity (701), the lifting tower (1) is provided with a lifting sub-tower (101), the lifting sub-tower (101) is provided with a lifting motor (102), the output end of the lifting motor (102) is engaged with the lifting teeth on the lifting tower (1), and the pouring box (7) is arranged on the lifting sub-tower (101).

5. The waterproof and easily-erected concrete sloping roof pouring device according to claim 4, characterized in that: The pouring plate (8) is provided with a plurality of transmission rollers (801), each transmission roller (801) is rotatably connected with the pouring plate (8), the transmission roller (801) is provided with a transmission tooth, the pouring plate (8) is provided with a plurality of elastic switches (802), each transmission tooth is intermittently attached to the elastic switch (802), the elastic switch (802) is connected with the control room (10) through wires, the pouring plate (8) is provided with an adjusting bolt (803), and the adjusting bolt (803) is connected with the pouring plate (8) through threads by penetrating the pouring box (7).

6. The waterproof and easily-erected concrete sloping roof pouring device according to claim 1, characterized in that: The recovery tank (904) is rotatably connected with the anti-skid cover (901) through a support, a crushing screw rod (906) is arranged in the recovery tank (904), the crushing screw rod (906) is rotatably connected with the recovery tank (904), a crushing motor (907) is arranged on the recovery tank (904), the crushing screw rod (906) is arranged on the output end of the crushing motor (907), and the end, away from the crushing motor (907), of the recovery tank (904) is communicated with the stirring tank (5).

7. The waterproof and easily-erected concrete sloping roof pouring device according to claim 1, characterized in that: A plurality of telescopic legs (1101) are arranged in the stable leg (11), each telescopic leg (1101) is slidably connected with the stable leg (11), a fixing bolt (1102) is arranged on the telescopic leg (1101), a plurality of fixing holes are arranged on the stable leg (11), the fixing bolt (1102) corresponds to the position and the hole diameter of the fixing hole on the stable leg (11), a base column (1103) is arranged on the telescopic leg (1101), and a positioning column (1104) is arranged in the base column (1103).

Citation Information

Patent Citations

  • Scraping and recycling device for PC prefabricated part production

    CN211640338U

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