Gap grouting device for power plant building construction
By designing a gap grouting device with a storage mechanism, a conveying mechanism and a detachable grouting nozzle, the problem of difficulty in filling high gaps in the existing technology is solved, and efficient grouting and improved sealing of the power plant building structure are achieved.
Patent Information
- Application Number
- CN202423011329.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-06
- Publication Date
- 2025-10-21
- Estimated Expiration
- 2034-12-06
AI Technical Summary
Existing gap grouting devices used in power plant construction are difficult to effectively fill gaps outside the ground, especially high gaps between components such as walls, columns, and beams.
A gap grouting device consisting of a storage mechanism, a conveying mechanism and a grouting device was designed. A stirring motor was used to drive a scraper to turn the grouting material, and a conveying motor was used to control the speed of the spiral blade. Combined with a detachable grouting nozzle and a hose, efficient grouting of gaps in different positions was achieved.
It achieves efficient filling of gaps in various locations, improves the sealing and stability of the building structure, and ensures construction quality and safety.
Smart Images

Figure CN223459182U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of power plant building construction, specifically relates to a gap grouting device for power plant building construction. BACKGROUND
[0002] In the power plant building construction, there are usually many concrete structures and wall masonry, which need to ensure the sealing and stability to ensure the normal operation and safe operation of the power plant equipment and machines. In order to fill the gap in the building structure, improve the overall performance of the building structure, the gap grouting device is introduced and widely used in the power plant building construction. By using the gap grouting device, the problems existing in the building structure of the power plant can be effectively solved, and the construction efficiency and quality are improved.
[0003] But at present in the power plant building construction, it is often necessary to fill the gap between the wall, column, beam and other components to improve the sealing and stability of the building structure, and the gap grouting device for power plant building construction is not convenient for grouting the gap outside the ground. UTILITY MODEL CONTENTS
[0004] To solve the above technical problems, the technical scheme adopted by the utility model is:
[0005] A gap grouting device for power plant building construction, comprising a carrier, a storage mechanism is fixedly installed on the carrier, a conveying mechanism is through connected to the bottom of the right end of the storage mechanism, and a grouting device is through connected to the right end of the conveying mechanism.
[0006] The further improvement of the technical scheme of the utility model is that a stirring motor is fixedly installed at the left end of the storage tank, a transmission shaft is drivenly installed on the stirring motor, and a scraper is fixedly installed on the transmission shaft.
[0007] The further improvement of the technical scheme of the utility model is that the scraper is attached to the inner wall of the storage tank.
[0008] The further improvement of the technical scheme of the utility model is that the scraper and the transmission shaft are arranged in the interior of the storage tank, and the conveying mechanism is through connected to one side of the bottom of the storage tank.
[0009] The further improvement of the technical scheme of the utility model is that a conveying motor is arranged at the top of the conveying pipe, and a helical blade is drivenly installed at the bottom of the conveying motor.
[0010] The further improvement of the technical scheme of the utility model is that the helical blade is arranged in the interior of the conveying pipe.
[0011] The further improvement in the technical scheme of the utility model lies in that the grouting nozzle is inserted on one side of the grouting device, a valve is arranged on the grouting nozzle, and a hose is connected through the top of the grouting nozzle.
[0012] The further improvement in the technical scheme of the utility model lies in that the grouting nozzle is connected through the hose and the grouting device.
[0013] Thanks to the above technical scheme, the utility model has the following technical progress compared with the prior art:
[0014] 1. The utility model provides a kind of gap grouting device for power plant construction, and the grouting material needed for single grouting is poured and stored in storage tank, then stirring motor drives transmission shaft to rotate, drives scraper to rotate, and the scraper is attached to the inner wall of storage tank when rotating, and the stored grouting material is stirred, to prevent solidification, and simultaneously, the grouting material adhered on the inner wall of storage tank is scraped off, to ensure that grouting material is used more thoroughly, and to reduce subsequent cleaning and maintenance effort.
[0015] 2. The utility model provides a kind of gap grouting device for power plant construction, and conveying motor drives the rotation of spiral blade inside conveying pipe, the left end of conveying pipe is connected through storage mechanism, and the right end is connected through grouting device, and the grouting material in storage mechanism is conveyed to grouting device by the rotation of spiral blade and sprayed, to carry out grouting, and by adjusting the rotating speed of spiral blade driven by conveying motor, the spraying rate of grouting material can be controlled, to control grouting speed and pressure, to ensure uniform and dense filling, to ensure the quality and safety of building structure.
[0016] 3. The utility model provides a kind of gap grouting device for power plant construction, and fixed nozzle is provided with multiple groups located at the front end of carrier, to carry out grouting pouring when carrier passes through the gap of ground, and when facing the gap between high places such as wall, column, beam and other components, by removing grouting nozzle inserted on grouting device, opening valve, grouting material is conveyed to hose and sprayed through grouting nozzle, and worker can hold grouting nozzle to carry out grouting on gap at high position, not on ground, to effectively fill the gap at various positions, to improve the overall performance of building structure. ACCURACY OF DRAWINGS
[0017] Figure 1 It is the structure schematic view of the gap grouting device for power plant construction of the utility model;
[0018] Figure 2 It is the structure schematic view of another view of the gap grouting device for power plant construction of the utility model;
[0019] Figure 3 It is the structure schematic view of the storage mechanism of the utility model;
[0020] Figure 4 It is a structure schematic view of the conveying mechanism of the utility model;
[0021] Figure 5 It is a structure schematic view of the grouting device of the utility model.
[0022] In the figure: 1, carrier; 2, storage mechanism; 3, conveying mechanism; 4, grouting device; 21, stirring motor; 22, scraper; 23, transmission shaft; 24, storage tank; 31, spiral blade; 32, conveying motor; 33, conveying pipe; 41, hose; 42, valve; 43, grouting nozzle; 44, fixed nozzle. DETAILED DESCRIPTION
[0023] The utility model will be further explained in detail in connection with examples:
[0024] As Figures 1-2 Indicated, the utility model provides a gap grouting device for power plant construction, including carrier 1, carrier 1 is fixedly installed with storage mechanism 2, and the right end bottom of storage mechanism 2 is connected with conveying mechanism 3, and the right end of conveying mechanism 3 is connected with grouting device 4.
[0025] As Figure 3 Indicated, the utility model provides a technical scheme: preferably, storage mechanism 2 includes storage tank 24, and the left end of storage tank 24 is fixedly installed with stirring motor 21, and stirring motor 21 is driven to be installed with transmission shaft 23, and transmission shaft 23 is fixedly installed with scraper 22, and scraper 22 is attached to the inner wall of storage tank 24, and scraper 22 and transmission shaft 23 are arranged in the inside of storage tank 24, and conveying mechanism 3 is connected with the bottom side of storage tank 24.
[0026] In the embodiment, the grouting material needed for single grouting is stored in storage tank 24, then stirring motor 21 drives transmission shaft 23 to rotate, drives scraper 22 to rotate, scraper 22 is attached to the inner wall of storage tank 24 when rotating, and the stored grouting material is stirred, to prevent solidification, and at the same time, the grouting material attached to the inner wall of storage tank 24 can be scraped off, to ensure that the grouting material is used more thoroughly, and to reduce subsequent cleaning and maintenance effort.
[0027] As Figure 4 Indicated, the utility model provides a technical scheme: preferably, conveying mechanism 3 includes conveying pipe 33, and the top of conveying pipe 33 is provided with conveying motor 32, and the bottom of conveying motor 32 is driven to be installed with spiral blade 31, and spiral blade 31 is arranged in the inside of conveying pipe 33.
[0028] In the embodiment, the conveying motor 32 drives the spiral blade 31 inside the conveying pipe 33 to rotate, the left end of the conveying pipe 33 is connected with the storage mechanism 2, the right end is connected with the grouting device 4, the grouting material in the storage mechanism 2 is conveyed to the grouting device 4 through the rotation of the spiral blade 31 and sprayed out, grouting is carried out, and the spraying rate of the grouting material can be controlled by adjusting the rotating speed of the spiral blade 31 driven by the conveying motor 32, so that the grouting speed and pressure are controlled, the filling is uniform and dense, and the quality and safety of the building structure are ensured.
[0029] As Figure 5 The utility model provides a technical scheme: preferably, the front end of the grouting device 4 is provided with a fixed nozzle 44, one side of the grouting device 4 is inserted with a grouting nozzle 43, the grouting nozzle 43 is provided with a valve 42, the top of the grouting nozzle 43 is connected with a hose 41 in a penetrating mode, and the grouting nozzle 43 is connected with the grouting device 4 in a penetrating mode through the hose 41.
[0030] In the embodiment, the fixed nozzle 44 is provided with multiple groups of nozzles located at the front end of the carrier 1, and the carrier 1 is grouted when passing through the gap on the ground, and when facing the gap between high-position components such as walls, columns and beams, the grouting nozzle 43 inserted on the grouting device 4 is removed, the valve 42 is opened, the grouting material is conveyed to the hose 41 and sprayed out through the grouting nozzle 43, and the worker can hold the grouting nozzle 43 to grout the gap at the high position and not on the ground, so that the gap at various positions can be effectively filled, and the overall performance of the building structure is improved.
[0031] The working principle of the gap grouting device for power plant construction will be described below.
[0032] As Figures 1-5As shown, the single grouting needs to use the grouting material pouring storage in the storage tank 24, and then the stirring motor 21 drives the transmission shaft 23 to rotate, drives the scraper 22 to rotate, the scraper 22 is attached to the inner wall of the storage tank 24 when rotating, and the stored grouting material is stirred to prevent solidification, and at the same time the grouting material attached to the inner wall of the storage tank 24 is scraped off, ensuring that the grouting material is used more thoroughly, reducing the subsequent cleaning and maintenance effort, the conveying motor 32 drives the spiral blade 31 inside the conveying pipe 33 to rotate, the left end of the conveying pipe 33 is connected with the storage mechanism 2, and the right end is connected with the grouting device 4, the grouting material in the storage mechanism 2 is conveyed to the grouting device 4 through the rotation of the spiral blade 31 and sprayed out, and grouting is carried out, and the rotation speed of the spiral blade 31 driven by the conveying motor 32 can control the spraying rate of the grouting material, so as to control the grouting speed and pressure, ensure uniform and dense filling, and thus ensure the quality and safety of the building structure, the fixed nozzle 44 is provided with a plurality of groups located at the front end of the carrier 1, and grouting pouring is carried out when the carrier 1 passes through the gap of the ground, and when facing the high gap between the wall, column, beam and other components, the grouting nozzle 43 inserted on the grouting device 4 is removed, the valve 42 is opened, the grouting material is conveyed to the hose 41 and sprayed out through the grouting nozzle 43, and the worker can hold the grouting nozzle 43 to grout the gap at high position not on the ground, which can effectively fill the gap at various positions and improve the overall performance of the building structure.
[0033] The above is a detailed description of the general application, but some modifications or improvements can be made on the basis of the application, which is obvious to those skilled in the art. Therefore, without departing from the spirit of the application, the modifications or improvements are within the scope of the application.
Claims
1. A gap grouting device for construction of a power plant building, comprising a carrier (1), characterized in that: The carrier (1) is fixedly installed with a storage mechanism (2), the right end bottom of the storage mechanism (2) is throughly connected with a conveying mechanism (3), the right end of the conveying mechanism (3) is throughly connected with a grouting device (4), the storage mechanism (2) comprises a storage tank (24); the conveying mechanism (3) comprises a conveying pipe (33); the front end of the grouting device (4) is provided with a fixed nozzle (44).
2. A gap grouting device for power plant construction according to claim 1, characterized in that: The left end of the storage tank (24) is fixedly installed with a stirring motor (21), the stirring motor (21) is drivenly installed with a transmission shaft (23), and the transmission shaft (23) is fixedly installed with a scraper (22).
3. A gap grouting device for power plant construction according to claim 2, characterized in that: The scraper (22) is attached to the inner wall of the storage tank (24).
4. The gap grouting device for power plant construction according to claim 2, characterized in that: The scraper (22) and the transmission shaft (23) are arranged in the inside of the storage tank (24), and the conveying mechanism (3) is throughly connected with one side of the bottom of the storage tank (24).
5. The gap grouting device for power plant construction according to claim 1, characterized in that: The top of the conveying pipe (33) is provided with a conveying motor (32), and the bottom of the conveying motor (32) is drivenly installed with a spiral blade (31).
6. A gap grouting device for power plant construction according to claim 5, characterized in that: The spiral blade (31) is arranged in the inside of the conveying pipe (33).
7. The gap grouting device for power plant construction according to claim 1, characterized in that: One side of the grouting device (4) is inserted with a grouting nozzle (43), the grouting nozzle (43) is provided with a valve (42), and the top of the grouting nozzle (43) is throughly connected with a hose (41).
8. A gap grouting device for power plant construction according to claim 7, characterized in that: The grouting nozzle (43) is throughly connected with the grouting device (4) through the hose (41).