Vibrating and surface trowelling integrated device for transformer substation ground concrete pouring

The combination of sprocket chain transmission and electric telescopic rod solves the problems of slow discharge speed and uneven vibration of the substation ground concrete pouring device, realizes the rapid disassembly and assembly of the guide plate and the automatic adjustment of the vibrating rod, and improves construction efficiency and adaptability.

CN120701129APending Publication Date: 2025-09-26SICHUAN POWER TRANSMISSION & TRANSFORMATION CONSTR
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Patent Information

Application Number
CN202511090686.2
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-08-05
Publication Date
2025-09-26

AI Technical Summary

Technical Problem

The existing substation ground concrete pouring equipment has problems such as slow discharge speed, easy blockage, difficulty in precise vibration on uneven ground, and cumbersome disassembly and assembly of the vibrating rod, which affects construction progress and cost.

Method used

The sprocket chain drive is used to drive the guide plate to move back and forth. The electric telescopic rod and the adjustment motor are used to adjust the depth of the vibrating rod, so that the guide plate can be quickly disassembled and assembled and the vibrating rod can be automatically compensated and adjusted to adapt to construction on uneven ground.

Benefits of technology

It improves the concrete discharge speed, avoids blockage, enhances the adaptability and maintenance efficiency of the device, adapts to the construction needs of different areas, and reduces construction costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention provides a vibrating and surface trowelling integrated device for transformer substation ground concrete pouring, and relates to the technical field of concrete pouring. A group of pouring tanks are fixedly mounted at the top of the base, a group of guide plates are slidably mounted in a discharging cavity, the outer end of an outer rotating shaft is in transmission connection with the outer end of a stirring shaft, and the inner end of the outer rotating shaft is in transmission connection with the guide plates; the outer rotating shaft rotates along with the stirring shaft through transmission of a chain wheel and a chain to drive the guide plate to reciprocate so as to increase the discharging speed; the depth of the vibrating rod can be adjusted, and automatic compensation and adjustment can be conducted on uneven ground of the transformer substation; the vibrating rod is quickly disassembled and assembled through the limiting plate and other structures, and maintenance is convenient to adapt to construction in different areas; the problems that during concrete discharging, discharging is slow, and blockage is prone to occurring are solved; in the vibrating operation, the vibrating depth is difficult to accurately adjust aiming at the ground of a transformer substation, such as a cable trench, the periphery of an embedded part and other uneven foundation areas; and in addition, the vibration rod and the scraper are tedious to disassemble and assemble, and the construction progress is affected.
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Description

Technical Field

[0001] The invention relates to the technical field of concrete pouring, and in particular to an integrated device for vibrating and surface smoothing for pouring concrete on the ground of a transformer station. Background Art

[0002] In large-scale infrastructure construction projects such as substations, ground concrete pouring is a crucial construction link, and its construction quality is directly related to the stability, safety and service life of the subsequent operation of the substation. Among them, ensuring the flatness of the surface after concrete pouring is one of the key indicators of construction quality. A flat ground not only facilitates the installation and operation of equipment, but also reduces problems such as water accumulation and dust accumulation, thereby improving the overall operating environment of the substation. During the flat concrete pouring construction process, in order to make the concrete reach an ideal dense state and avoid quality defects such as honeycombs, rough surfaces, and holes, the concrete usually needs to be vibrated first. Therefore, a vibrating and surface smoothing integrated device for substation ground concrete pouring is needed.

[0003] As for the existing integrated vibration and surface smoothing device for substation floor concrete pouring, during the concrete discharging process, due to the lack of an effective guide plate driving mechanism, the discharge speed is often slow, and the guide plate is easily blocked by concrete; in terms of vibration operations, the substation floor usually has an uneven foundation, such as cable trenches, areas around embedded parts, etc.; the device is difficult to accurately adjust the vibration depth in these special areas; the device's vibrating rod and scraper disassembly and assembly process is cumbersome and complicated, requiring a lot of time and manpower, which increases construction costs and affects construction progress. Summary of the Invention

[0004] An embodiment of the present invention relates to an integrated vibrating and surface smoothing device for pouring concrete on the ground of a substation. The device rotates the outer rotating shaft along with the stirring shaft through a sprocket chain transmission, driving the guide plate to move back and forth to increase the discharge speed and avoid blockage; the mounting frame is slidably connected to the guide rod, and the electric telescopic rod and the adjustment motor can adjust the depth of the vibrating rod, which can automatically compensate for the unevenness of the substation ground; the vibrating rod can be quickly disassembled and assembled through structures such as limit plates, and the scraper mounting structure is the same as it, which is convenient for maintenance to adapt to construction in different areas.

[0005] In a first aspect, the present invention provides an integrated vibrating and surface smoothing device for pouring concrete on the ground of a substation, specifically comprising: a base;

[0006] A group of pouring tanks are fixedly installed on the top of the base, a group of feeding ports are opened on the top of the pouring tank, a stirring shaft is rotatably installed on the inner end of the pouring tank, a driving motor is fixedly installed on the side end of the base, and a group of mounting brackets are slidably installed on the transmission shaft of the driving motor at the outer end of the stirring shaft. The outer end of the base is also fixedly installed with an electric telescopic rod, and the bottom of the transmission shaft of the electric telescopic rod is fixedly installed on the mounting bracket. Four groups of mounting seats are equidistantly threaded on the outer end of the mounting bracket, and a vibrating rod is clamped and installed at the bottom of the mounting seat. A group of scrapers are also clamped and installed on the right end of the mounting bracket, and the vibrating rod and The top of the scraper is fixedly installed with a positioning seat, and the installation structure of the vibrating rod and the scraper is the same. A group of limit plates are slidably installed on the outer end of the mounting seat, a group of limit grooves are opened on the side end of the positioning seat, and the limit plates are plugged into the limit grooves on the side end of the positioning seat. A group of discharge cavities are also fixedly installed on the left end of the base. The top of the discharge cavity is connected to the interior of the pouring tank through a discharge hose. A group of outer rotating shafts are rotatably installed on the outer end of the discharge cavity, and a group of guide plates are slidably installed inside the discharge cavity. The outer end of the outer rotating shaft is transmission connected to the outer end of the stirring shaft, and the inner end of the outer rotating shaft is transmission connected to the guide plate.

[0007] In at least some embodiments, a set of sprockets is fixedly mounted on the outer end of the outer rotating shaft, a set of sprockets is fixedly mounted on the outer end of the stirring shaft, and the sprockets at the outer end of the outer rotating shaft and the sprockets at the outer end of the stirring shaft are connected via a chain drive.

[0008] In at least some embodiments, the mounting frame is also provided with an adjustment screw rotatably installed at equal intervals, an adjustment motor is fixedly installed on the top of the mounting frame, the top of the adjustment screw is fixedly installed on the transmission shaft of the adjustment motor, a group of adjustment screw holes are opened on the mounting seat, and the adjustment screw holes on the mounting seat are threadedly installed on the adjustment screw of the mounting frame.

[0009] In at least some embodiments, two sets of guide rods are fixedly mounted on the right end of the base, two sets of guide holes are opened on the inner side of the mounting frame, and the guide holes on the inner side of the mounting frame are respectively slidably mounted on the guide rods on the right end of the base.

[0010] In at least some embodiments, a group of positioning blocks are fixedly mounted on the top of the positioning seat, a group of positioning grooves are opened on the bottom of the mounting seat, and the positioning blocks on the vibrating rod are snap-fitted and mounted on the positioning grooves at the bottom of the mounting seat.

[0011] In at least some embodiments, a group of drive grooves are opened at the outer end of the guide plate, a group of turntables are fixedly installed on the inner end of the outer shaft, a group of drive rods are fixedly installed on the inner side of the turntable, and the drive rods on the inner side of the turntable are slidably installed on the drive grooves at the outer end of the guide plate.

[0012] In at least some embodiments, a group of support plates are fixedly installed on the side ends of the mounting seat, a group of sliding holes are opened on the support plates, a group of connecting rods are fixedly installed on the outer ends of the limiting plates, and the connecting rods at the outer ends of the limiting plates are slidably installed on the sliding holes of the support plates.

[0013] In at least some embodiments, guide grooves are equidistantly formed on the mounting frame, a guide plate is fixedly mounted on the inner end of the mounting seat, and the guide plate at the inner end of the mounting seat is slidably mounted on the guide grooves of the mounting frame.

[0014] In at least some embodiments, a group of elastic members are respectively sleeved and mounted on the connecting rods at the outer ends of the limiting plates, and the outer ends of the elastic members are in contact with the inner end surfaces of the support plates on the mounting seat.

[0015] In at least some embodiments, a group of guide blocks are fixedly installed at both ends of the discharge cavity, a group of guide grooves are opened at both ends of the guide plate, and the guide grooves at both ends of the guide plate are slidably installed on the guide blocks at both ends of the discharge cavity.

[0016] The present invention provides an integrated device for vibrating and smoothing the surface of a transformer substation for pouring concrete on the ground, which has the following beneficial effects:

[0017] The present invention is a kind of invention that realizes the mixing of concrete by the outer rotating shaft and the mixing shaft through the sprocket chain, and the driving motor drives the mixing shaft to mix the concrete while rotating the outer rotating shaft, thereby driving the guide plate to move back and forth, thereby improving the discharging speed, avoiding blockage and enhancing the smoothness of concrete discharging; the mounting frame is slidably connected to the guide rod through the guide hole, and the electric telescopic rod can adjust the vibration depth of the vibrating rod, and the adjustment motor drives the adjustment screw to rotate so that the individual vibrating rod can automatically compensate and adjust the vibration depth according to the unevenness of the substation ground foundation (such as cable trenches and the surrounding areas of embedded parts), improving the adaptability and adjustment performance; the limit plate is connected to the support plate sliding hole through the connecting rod, and the limit plate is pulled outward to clamp the vibrating rod positioning block and install it in the positioning slot of the mounting seat and then release it, and under the action of the elastic member, the limit plate is inserted into the limit slot to fix the vibrating rod, and the vibrating rod and the scraper have the same mounting structure, which is convenient for quick disassembly and maintenance, thereby improving the maintenance and use efficiency and adapting to the construction needs of different areas of the substation.

[0018] In addition, the sprocket at the outer end of the outer shaft is connected to the sprocket at the outer end of the stirring shaft through a chain transmission. The driving motor drives the stirring shaft to rotate to stir the concrete while driving the outer shaft to rotate. The guide grooves at both ends of the guide plate are respectively slidably installed on the guide blocks at both ends of the discharge cavity. The driving rod on the inner side of the turntable is slidably installed on the driving groove at the outer end of the guide plate to drive the guide plate to automatically reciprocate, thereby increasing the discharge speed of the device during concrete pouring, avoiding the concrete material clogging the guide plate during pouring and affecting the working efficiency of the device, and further improving the smoothness of the concrete discharge of the device.

[0019] In addition, the guide holes on the inner side of the mounting frame are respectively slidably installed on the guide rods at the right end of the base, and the electric telescopic rod drives the mounting frame and the vibrating rod thereon to facilitate adjustment of the vibration depth according to the vibration needs. The guide plate at the inner end of the mounting seat is slidably installed on the guide groove of the mounting frame, and the adjustment screw hole on the mounting seat is threadedly installed on the adjustment screw of the mounting frame. The adjustment motor drives the adjustment screw to rotate, so as to drive the separate vibrating rod to automatically compensate for the uneven foundation of the substation ground (such as cable trenches, around embedded parts), etc., to adjust the vibration depth separately, which effectively improves the adaptability and adjustment performance of the device.

[0020] In addition, the connecting rod at the outer end of the limit plate is slidably installed on the sliding hole of the support plate, and the limit plate is pulled outward to clamp the positioning block on the vibrating rod and install it on the positioning groove at the bottom of the mounting seat. After the vibrating rod moves to a fixed position, the limit plate is released. Under the action of the elastic part on the connecting rod, the limit plate moves inward, and the limit plate is plugged and installed on the limiting groove at the side end of the positioning seat to fix the vibrating rod. The installation structure of the vibrating rod and the scraper are the same. Similarly, the vibrating rod and scraper of this device are easy to quickly disassemble and maintain, which effectively improves the maintenance and use efficiency of the device and adapts to the construction needs of different areas of the substation. BRIEF DESCRIPTION OF THE DRAWINGS

[0021] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings of the embodiments are briefly introduced below.

[0022] The drawings described below only relate to some embodiments of the present invention, but are not intended to limit the present invention.

[0023] In the attached figure:

[0024] Figure 1 It is a front axial schematic diagram of an integrated vibrating and surface smoothing device for pouring substation floor concrete according to the present invention.

[0025] Figure 2 It is a rear axial schematic diagram of the integrated vibrating and surface smoothing device for pouring substation ground concrete according to the present invention.

[0026] Figure 3 The invention is a schematic diagram of the installation of the outer rotating shaft of the integrated device for vibrating and smoothing the ground concrete of a transformer substation.

[0027] Figure 4 The present invention is a schematic diagram of the assembly and disassembly of the guide plate of the integrated device for vibrating and smoothing the ground concrete of a transformer substation.

[0028] Figure 5 The present invention is a schematic diagram of the disassembly and assembly of a mounting frame of the integrated vibrating and surface smoothing device for pouring substation ground concrete.

[0029] Figure 6 The present invention is a schematic diagram of the disassembly and assembly of a mounting base of an integrated vibrating and surface smoothing device for pouring concrete on the ground of a transformer station.

[0030] Figure 7 The present invention is a schematic diagram of the installation of a vibrating rod of the integrated device for vibrating and smoothing the ground concrete of a transformer substation.

[0031] Figure 8 The present invention is a schematic diagram of the disassembly and assembly of a scraper of the integrated vibrating and surface smoothing device for pouring substation ground concrete.

[0032] Reference Signs List

[0033] 1. Base; 101. Drive motor; 102. Guide rod; 103. Electric telescopic rod; 2. Casting tank; 201. Feed port; 202. Mixing shaft; 3. Mounting frame; 301. Guide hole; 302. Guide groove; 303. Adjusting screw; 3031. Adjusting motor; 4. Mounting seat; 401. Guide plate; 402. Adjusting screw hole; 403. Positioning groove; 404. Limiting plate; 4041. Connecting rod; 4042. Elastic member; 405. Support plate; 5. Vibrating rod; 6. Scraper; 7. Discharge chamber; 701. Outer shaft; 702. Chain; 703. Turntable; 7031. Drive rod; 704. Guide plate; 7041. Drive groove; 7042. Guide groove; 705. Guide block; 8. Positioning seat; 801. Positioning block; 8011. Limiting groove. DETAILED DESCRIPTION

[0034] To make the purpose, technical solutions, and advantages of the embodiments of the present invention more clear, the technical solutions of the embodiments of the present invention will be clearly and completely described below in conjunction with the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the described embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.

[0035] Please refer to Figures 1 to 8 As shown:

[0036] Example 1:

[0037] The present invention provides an integrated device for vibrating and smoothing the surface of a transformer substation for pouring concrete on the ground, comprising a base 1;

[0038] A group of pouring tanks 2 are fixedly installed on the top of the base 1, and a group of feed ports 201 are opened on the top of the pouring tank 2. A stirring shaft 202 is rotatably installed on the inner end of the pouring tank 2. A driving motor 101 is fixedly installed on the side end of the base 1. The outer end of the stirring shaft 202 is driven on the transmission shaft of the motor 101. A group of mounting brackets 3 are slidably installed on the right end of the base 1. An electric telescopic rod 103 is also fixedly installed on the outer end of the base 1. The bottom of the transmission shaft of the electric telescopic rod 103 is fixedly installed on the mounting bracket 3. Four groups of mounting seats 4 are equidistantly threaded on the outer end of the mounting bracket 3. A vibrating rod 5 is clamped and installed at the bottom of the mounting seat 4. A group of scrapers 6 are also clamped and installed on the right end of the mounting bracket 3. The top of the vibrating rod 5 and the scraper 6 The parts are fixedly installed with a positioning seat 8, and the installation structure of the vibrating rod 5 and the scraper 6 is the same. A group of limit plates 404 are slidably installed on the outer end of the mounting seat 4, and a group of limit grooves 8011 are opened on the side end of the positioning seat 8, and the limit plates 404 are plugged and installed on the limit grooves 8011 on the side end of the positioning seat 8. A group of discharge cavities 7 are also fixedly installed on the left end of the base 1. The top of the discharge cavity 7 is connected to the interior of the pouring tank 2 through a discharge hose. A group of outer rotating shafts 701 are rotatably installed on the outer end of the discharge cavity 7, and a group of guide plates 704 are slidably installed inside the discharge cavity 7. The outer end of the outer rotating shaft 701 is transmission connected to the outer end of the stirring shaft 202, and the inner end of the outer rotating shaft 701 is transmission connected to the guide plate 704.

[0039] A set of guide blocks 705 are fixedly installed at both ends of the discharge cavity 7, and a set of guide grooves 7042 are respectively opened at both ends of the guide plate 704, and the guide grooves 7042 at both ends of the guide plate 704 are respectively slidably installed on the guide blocks 705 at both ends of the discharge cavity 7.

[0040] In the embodiment of the present invention, Figure 3 and Figure 4As shown, a group of driving grooves 7041 are opened at the outer end of the guide plate 704, a group of turntables 703 are fixedly installed at the inner end of the outer shaft 701, a group of driving rods 7031 are fixedly installed on the inner side of the turntable 703, and the driving rods 7031 on the inner side of the turntable 703 are slidably installed on the driving grooves 7041 at the outer end of the guide plate 704, a group of sprockets are fixedly installed at the outer end of the outer shaft 701, and a group of sprockets are fixedly installed at the outer end of the stirring shaft 202, and the sprockets at the outer end of the outer shaft 701 and the sprockets at the outer end of the stirring shaft 202 are connected by a chain 702; specifically, the sprockets at the outer end of the outer shaft 701 and the stirring shaft 202 are connected by a chain 702. The sprocket at the outer end is connected through the chain 702, and the driving motor 101 drives the stirring shaft 202 to rotate to stir the concrete while driving the outer rotating shaft 701 to rotate. The guide grooves 7042 at both ends of the guide plate 704 are respectively slidably installed on the guide blocks 705 at both ends of the discharge chamber 7, and the driving rod 7031 on the inner side of the turntable 703 is slidably installed on the driving groove 7041 at the outer end of the guide plate 704 to drive the guide plate 704 to automatically reciprocate, thereby improving the discharge speed of the device during concrete pouring, avoiding the concrete material clogging the guide plate 704 during pouring and affecting the working efficiency of the device, and further improving the smoothness of the concrete discharge of the device.

[0041] Among them, Figure 5 and Figure 6 As shown, two groups of guide rods 102 are fixedly installed on the right end of the base 1, two groups of guide holes 301 are opened on the inner side of the mounting frame 3, and the guide holes 301 on the inner side of the mounting frame 3 are respectively slidably installed on the guide rods 102 at the right end of the base 1, and guide grooves 302 are equidistantly opened on the mounting frame 3, and a guide plate 401 is fixedly installed on the inner end of the mounting seat 4, and the guide plate 401 at the inner end of the mounting seat 4 is slidably installed on the guide groove 302 of the mounting frame 3, and an adjustment screw 303 is also equidistantly installed on the mounting frame 3, and an adjustment motor 3031 is fixedly installed on the top of the mounting frame 3, and the top of the adjustment screw 303 is fixedly installed on the transmission shaft of the adjustment motor 3031, and a group of adjustment screw holes 402 are opened on the mounting seat 4, and the adjustment screw holes 402 on the mounting seat 4 02 is threadedly installed on the adjusting screw 303 of the mounting frame 3; specifically, the guide holes 301 on the inner side of the mounting frame 3 are respectively slidably installed on the guide rod 102 at the right end of the base 1, and the electric telescopic rod 103 drives the mounting frame 3 and the vibrating rod 5 thereon to adjust the vibration depth according to the vibration needs. The guide plate 401 at the inner end of the mounting seat 4 is slidably installed on the guide groove 302 of the mounting frame 3, and the adjusting screw hole 402 on the mounting seat 4 is threadedly installed on the adjusting screw 303 of the mounting frame 3. The adjustment motor 3031 drives the adjusting screw 303 to rotate, so as to drive the separate vibrating rod 5 to automatically compensate for the uneven foundation of the substation ground, such as cable trenches, embedded parts, etc., to perform separate adjustment of the vibration depth, effectively improving the adaptability and adjustment performance of the device.

[0042] Example 2: Based on Example 1, Figure 7 and Figure 8 As shown, a group of positioning blocks 801 are fixedly installed on the top of the positioning seat 8, a group of positioning grooves 403 are opened at the bottom of the mounting seat 4, and the positioning blocks 801 on the vibrating rod 5 are snap-fitted and installed on the positioning grooves 403 at the bottom of the mounting seat 4, and a group of support plates 405 are fixedly installed on the side ends of the mounting seat 4, and a group of sliding holes are opened on the support plates 405. A group of connecting rods 4041 are fixedly installed on the outer ends of the limiting plates 404, and the connecting rods 4041 at the outer ends of the limiting plates 404 are slidably installed on the sliding holes of the support plates 405, and a group of elastic members 4042 are respectively sleeved and installed on the connecting rods 4041 at the outer ends of the limiting plates 404, and the outer ends of the elastic members 4042 are in contact with the inner end surfaces of the support plates 405 on the mounting seat 4; specifically, the limiting plates 40 4, the connecting rod 4041 at the outer end is slidably installed on the sliding hole of the support plate 405, and the limit plate 404 is pulled outward to clamp the positioning block 801 on the vibrating rod 5 into the positioning groove 403 at the bottom of the mounting seat 4. After the vibrating rod 5 moves to a fixed position, the limit plate 404 is released. Under the action of the elastic member 4042 on the connecting rod 4041, the limit plate 404 moves inward, and the limit plate 404 is plugged and installed on the limiting groove 8011 at the side end of the positioning seat 8 to fix the vibrating rod 5. The installation structure of the vibrating rod 5 and the scraper 6 is the same. Similarly, the vibrating rod 5 and the scraper 6 of the device are convenient for quick disassembly and maintenance, which effectively improves the maintenance efficiency of the device and adapts to the construction needs of different areas of the substation.

[0043] Specific usage and function of this embodiment: In the present invention, the driving motor 101 drives the stirring shaft 202 to rotate to stir the concrete while driving the outer rotating shaft 701 to rotate, so as to drive the guide plate 704 to automatically reciprocate, thereby improving the discharge speed of the device during concrete pouring, avoiding the blockage of the guide plate 704 by the concrete material during pouring and affecting the working efficiency of the device, and further improving the smoothness of the concrete discharge of the device; the electric telescopic rod 103 drives the mounting frame 3 and the vibrating rod 5 thereon to adjust the vibration depth according to the vibration needs, and the adjustment motor 3031 drives the adjustment screw 303 to rotate, so as to drive the separate vibrating rod 5 to automatically compensate for the uneven foundation of the substation ground, such as cable trenches, embedded parts, etc., to adjust the vibration depth separately, effectively improving the device Adaptable adjustment performance; the connecting rod 4041 at the outer end of the limit plate 404 is slidably installed on the sliding hole of the support plate 405, and the limit plate 404 is pulled outward to clamp the positioning block 801 on the vibrating rod 5 on the positioning groove 403 at the bottom of the mounting seat 4. After the vibrating rod 5 moves to a fixed position, the limit plate 404 is released, and under the action of the elastic member 4042 on the connecting rod 4041, the limit plate 404 moves inward, and the limit plate 404 is plugged and installed on the limiting groove 8011 at the side end of the positioning seat 8 to fix the vibrating rod 5, and the installation structure of the vibrating rod 5 and the scraper 6 is the same. Similarly, the vibrating rod 5 and the scraper 6 of this device are easy to quickly disassemble and maintain, which effectively improves the maintenance and use efficiency of the device and adapts to the construction needs of different areas of the substation.

Claims

1. An integrated device for vibrating and smoothing the surface of a substation floor concrete, characterized in that: comprising a base (1); A pouring tank (2) is fixed on the top of the base (1), a feed port (201) is provided on the top of the pouring tank (2), a stirring shaft (202) is rotatably mounted on the inner end of the pouring tank (2), a driving motor (101) is fixed on the side end of the base (1), a mounting frame (3) is slidably mounted on the right end of the base (1), an electric telescopic rod (103) is also fixedly mounted on the outer end of the base (1), the bottom of the transmission shaft of the electric telescopic rod (103) is fixedly mounted on the mounting frame (3), four groups of mounting seats (4) are equidistantly threaded on the outer end of the mounting frame (3), a vibrating rod (5) is clamped and mounted on the bottom of the mounting seat (4), a scraper (6) is also clamped on the right end of the mounting frame (3), and the tops of the vibrating rod (5) and the scraper (6) are both fixed with fixed screws. The positioning seat (8) is provided with a tamping rod (5) and a scraper (6) having the same installation structure. A limiting plate (404) is slidably mounted on the outer end of the mounting seat (4). A limiting groove (8011) is provided on the side end of the positioning seat (8), and the limiting plate (404) is plugged and installed on the limiting groove (8011) on the side end of the positioning seat (8). A discharge chamber (7) is also fixed on the left end of the base (1). The top of the discharge chamber (7) is connected to the pouring tank (2) through a discharge hose. An outer rotating shaft (701) is rotated at the outer end of the discharge chamber (7). A guide plate (704) is slidably mounted inside the discharge chamber (7). The outer end of the outer rotating shaft (701) is transmission-connected to the outer end of the stirring shaft (202), and the inner end of the outer rotating shaft (701) is transmission-connected to the guide plate (704).

2. The integrated vibrating and surface smoothing device for substation floor concrete pouring according to claim 1 is characterized in that: A group of guide blocks (705) are fixedly mounted at both ends of the discharge cavity (7), a group of guide grooves (7042) are respectively opened at both ends of the guide plate (704), and the guide grooves (7042) at both ends of the guide plate (704) are respectively slidably mounted on the guide blocks (705) at both ends of the discharge cavity (7).

3. The integrated vibrating and surface smoothing device for substation floor concrete pouring according to claim 1 is characterized in that: The outer end of the guide plate (704) is provided with a group of driving grooves (7041), the inner end of the outer shaft (701) is fixedly mounted with a group of rotating disks (703), the inner side of the rotating disks (703) is fixedly mounted with a group of driving rods (7031), and the driving rods (7031) on the inner side of the rotating disks (703) are slidably mounted on the driving grooves (7041) on the outer end of the guide plate (704).

4. The integrated vibrating and surface smoothing device for pouring concrete on the substation floor according to claim 1 is characterized in that: A set of sprockets is fixedly mounted on the outer end of the outer rotating shaft (701), and a set of sprockets is fixedly mounted on the outer end of the stirring shaft (202), and the sprockets at the outer end of the outer rotating shaft (701) and the sprockets at the outer end of the stirring shaft (202) are connected by a chain (702).

5. The integrated vibrating and surface smoothing device for pouring concrete on the substation floor according to claim 1 is characterized in that: Two groups of guide rods (102) are fixedly mounted on the right end of the base (1), two groups of guide holes (301) are opened on the inner side of the mounting frame (3), and the guide holes (301) on the inner side of the mounting frame (3) are respectively slidably mounted on the guide rods (102) on the right end of the base (1).

6. The integrated vibrating and surface smoothing device for pouring concrete on the substation floor according to claim 1 is characterized in that: The mounting frame (3) is provided with guide grooves (302) at equal intervals, the inner end of the mounting seat (4) is fixedly provided with a guide plate (401), and the guide plate (401) at the inner end of the mounting seat (4) is slidably mounted on the guide grooves (302) of the mounting frame (3).

7. The integrated vibrating and surface smoothing device for pouring concrete on the substation floor according to claim 1 is characterized in that: An adjusting screw (303) is also equidistantly mounted on the mounting frame (3), an adjusting motor (3031) is fixedly mounted on the top of the mounting frame (3), and the top of the adjusting screw (303) is fixedly mounted on the transmission shaft of the adjusting motor (3031). A group of adjusting screw holes (402) are opened on the mounting seat (4), and the adjusting screw holes (402) on the mounting seat (4) are threadedly mounted on the adjusting screw (303) of the mounting frame (3).

8. The integrated vibrating and surface smoothing device for substation floor concrete pouring according to claim 1 is characterized in that: A group of positioning blocks (801) are fixedly mounted on the top of the positioning seat (8), a group of positioning grooves (403) are opened on the bottom of the mounting seat (4), and the positioning blocks (801) on the vibrating rod (5) are snap-fitted and mounted on the positioning grooves (403) at the bottom of the mounting seat (4).

9. The integrated vibrating and surface smoothing device for pouring concrete on the substation floor according to claim 1, characterized in that: A group of support plates (405) are fixedly mounted on the side ends of the mounting seat (4), a group of sliding holes are opened on the support plates (405), a group of connecting rods (4041) are fixedly mounted on the outer ends of the limiting plates (404), and the connecting rods (4041) at the outer ends of the limiting plates (404) are slidably mounted on the sliding holes of the support plates (405).

10. The integrated vibrating and surface smoothing device for pouring concrete on the substation floor according to claim 1, characterized in that: A group of elastic members (4042) are respectively sleeved and mounted on the connecting rods (4041) at the outer ends of the limiting plates (404), and the outer ends of the elastic members (4042) are in contact with the inner end surfaces of the support plates (405) on the mounting seat (4).