Leveling equipment for later-stage UHP-ECC self-fluid reinforcement of brick wall body

CN120042375APending Publication Date: 2025-05-27FUJIAN JIANGXIA UNIV
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Patent Information

Application Number
CN202510205590.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-02-24
Publication Date
2025-05-27

AI Technical Summary

Technical Problem

When using UHP-ECC materials to reinforce brick walls in the prior art, there are problems such as insufficient accuracy, high labor intensity for construction workers and high experience requirements during the leveling process.

Method used

A leveling equipment including a leveling mechanism, an air drying mechanism, a storage mechanism and a movable mechanism is designed. The leveling mechanism drives the leveling plate to automatically level through an electric telescopic rod and a rotating threaded column. The air-drying mechanism accelerates the airflow through the rotating fan blade to promote UHP-ECC self-fluid solidification. The storage mechanism provides tool storage space, and the movable mechanism facilitates the movement and fixation of the equipment.

Benefits of technology

Automatic leveling of brick walls has been achieved, accuracy and construction efficiency have been improved, labor intensity of construction workers has been reduced, and overall construction efficiency has been improved.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of building construction, and discloses leveling equipment for later-stage UHP-ECC self-fluid reinforcement of brick masonry, the leveling equipment comprises a leveling mechanism, the leveling mechanism comprises a leveling frame arranged in a U-shaped structure, and the bottom of the leveling frame is connected with a lower motor; an output shaft of the lower motor is fixedly connected with a rotating threaded column through a coupler, the rotating threaded column is vertically arranged in the leveling frame, the outer wall of the rotating threaded column is in threaded connection with a movable block, the movable block moves along the rotating threaded column when the rotating threaded column rotates, and one side of the movable block is fixedly connected with an electric telescopic rod extending out of the leveling frame; the end, away from the movable block, of the electric telescopic rod is connected with a leveling plate. The leveling mechanism is arranged, manual leveling is replaced with a mechanical leveling mode, and the leveling device has the advantages of being easy to operate, high in leveling precision and capable of reducing the labor intensity of constructors.
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Description

Technical Field

[0001] The present invention relates to a leveling device for post - UHP - ECC self - flowing reinforcement of brick walls, belonging to the technical field of building construction. Background Art

[0002] Building construction is a process of turning various lines on the design drawings into physical objects at a specified location. It includes foundation engineering construction, main structure construction, roofing engineering construction, decoration engineering construction, etc. The place where construction operations are carried out is called a "building construction site" or "construction site". Building construction is a production activity in which people use various building materials and construction machinery and equipment, in accordance with a specific design blueprint, within a certain space and time to build various building products.

[0003] UHP - ECC material, also known as ultra - high - performance engineered cementitious composite, is a new type of building material with excellent properties developed on the basis of ECC material. UHP - ECC material has the performance characteristics of ultra - high strength, good ductility and toughness, high durability and excellent self - healing ability, and is currently widely used in fields such as building engineering and bridge engineering.

[0004] In the prior art, when using UHP - ECC material to reinforce brick walls, it is necessary to level the UHP - ECC material applied to the brick walls. Currently, most traditional leveling methods use a straightedge made of materials such as aluminum alloy and wood. Construction workers lean the straightedge against the plane to be leveled, and then judge the flatness of the plane by observing the size of the gap between the straightedge and the plane. Then, by using a scraper, the corresponding scraping work can be carried out to complete the leveling. However, this method has the following problems in actual use: it requires high practical experience of construction workers, otherwise it is easy to have the situation that the leveled surface is still skewed after leveling. At the same time, the manual leveling method also has problems such as insufficient accuracy and high labor intensity of construction workers. Summary of the Invention

[0005] In order to solve the above problems existing in the prior art, the present invention provides a leveling device for post - UHP - ECC self - flowing reinforcement of brick walls.

[0006] The technical solution of the present invention is as follows: A leveling device for post - UHP - ECC self - flowing reinforcement of brick walls, including a leveling mechanism. The leveling mechanism includes a leveling frame arranged in a "C" - shaped structure. A lower motor is connected to the bottom of the leveling frame. The output shaft of the lower motor is fixedly connected through a coupling to a rotating threaded column vertically arranged inside the leveling frame. An active block is threadedly connected to the outer wall of the rotating threaded column. When the rotating threaded column rotates, the active block moves along the rotating threaded column. One side of the active block is fixedly connected to an electric telescopic rod that extends out of the leveling frame. The end of the electric telescopic rod away from the active block is connected to a leveling plate.

[0007] Further, a vertically arranged limiting long column is also arranged inside the leveling frame, and the limiting long column movably penetrates through the active block.

[0008] Further, a drying mechanism is arranged on one side of the leveling mechanism. The drying mechanism includes a connecting block fixedly connected to the active block by setting connecting bolts. An active plate is arranged at the end of the connecting block away from the active block. The connecting block and the active plate move along with the active block. A side motor is arranged on the side wall of the active plate away from the connecting block. The output shaft of the side motor is fixedly connected through a coupling to a rotating fan blade. The rotating fan blade is located on the side wall of the active plate close to the connecting block and is arranged facing the leveling plate.

[0009] Further, a storage mechanism is also arranged on one side of the leveling mechanism. The storage mechanism includes a weight - adding frame fixedly connected to the bottom position of the leveling frame. The end of the weight - adding frame away from the leveling frame is of an open - ended structure. A frame door is hinged to the open - ended part of the weight - adding frame through hinges. The frame door covers the open - ended part of the weight - adding frame, and a door handle is also arranged on the frame door.

[0010] Further, a moving mechanism is arranged on the weight - adding frame. The moving mechanism includes bottom long blocks symmetrically arranged on the bottom of the weight - adding frame, and moving wheels are arranged at the bottoms of both side bottom long blocks.

[0011] Further, a lifting cylinder with a piston rod vertically downward is also arranged at the bottom of the weight - adding frame. The lifting cylinders are symmetrically arranged at the bottom of the weight - adding frame. Support plates are arranged on the piston rod parts of both side lifting cylinders.

[0012] Further, the electric telescopic rod and the leveling plate are connected through a first adjustment mechanism. The first adjustment mechanism includes a connecting block connected to the end of the electric telescopic rod away from the active block. The cross - section of the connecting block is arranged in a "C" - shaped structure. An adjustment block is rotatably connected to the inside of the connecting block through a first rotating shaft. The end of the adjustment block away from the electric telescopic rod penetrates out of the connecting block. The penetrating end of the adjustment block is connected to the leveling plate. A first adjustment motor is also arranged on the connecting block. The output shaft of the first adjustment motor movably penetrates into the connecting block and is connected to the first rotating shaft.

[0013] Furthermore, a second adjustment mechanism is provided between the adjustment block and the leveling plate. The second adjustment mechanism includes mounting blocks symmetrically arranged on the wall of the leveling plate close to the adjustment block. A second rotating shaft is fixedly connected between the two mounting blocks. The protruding end of the adjustment block is rotatably connected to the second rotating shaft. A second adjustment motor is further provided on one of the mounting blocks. The output shaft of the second adjustment motor passes through this mounting block and is connected to the second rotating shaft.

[0014] Furthermore, insertion slots corresponding to the mounting blocks are provided on the wall of the leveling plate close to the adjustment block. The bottoms of the two mounting blocks are inserted into the corresponding insertion slots. First limiting slots penetrating through the mounting blocks are provided on both mounting blocks. When the mounting blocks are inserted into the insertion slots, the first limiting slots are located within the insertion slots. A second limiting slot penetrating through the leveling plate is provided on the leveling plate. The second limiting slot is communicated with the insertion slot. When the mounting blocks are inserted into the insertion slots, the cross-sections of the first limiting slots coincide with the cross-sections of the second limiting slots. A limiting plate is further provided on the leveling plate. The limiting plate is inserted into the first limiting slot and the second limiting slot.

[0015] Furthermore, symmetrically arranged third limiting slots are provided on the wall of the leveling plate close to the adjustment block. Both third limiting slots are communicated with the corresponding insertion slots. Limiting blocks corresponding to the corresponding third limiting slots are further provided on both mounting blocks. When the mounting blocks are inserted into the insertion slots, the limiting blocks are inserted into the third limiting slots.

[0016] The present invention has the following beneficial effects: 1. By providing a leveling mechanism in the present invention, when wall leveling is required, the electric telescopic rod is controlled to start working, so as to drive the leveling plate to reach the required leveling position. Then, the lower motor is controlled to start working. The rotation of the output shaft of the lower motor can drive the rotating threaded column to start rotating, so that the movable block starts to move up and down along the rotating threaded column, so that the leveling plate can move up and down. This enables the leveling plate to complete the automatic wall leveling work required. Compared with the prior art, the wall can be automatically leveled. The overall operation is simple. It only requires manual measurement of the distance between the leveling plate and the plane to be leveled, and there is no great requirement for the experience of construction workers. At the same time, the mechanical leveling has higher precision and is not prone to phenomena such as skewing. Compared with the prior art, it has the advantages of simple operation, high leveling precision, and reduced labor intensity of construction workers.

[0017] 2. By setting up an air-drying mechanism in the present invention, when the leveling equipment starts to level, the side motor is controlled to start working. The output shaft of the side motor rotates to drive the rotating fan blades to start rotating. The rotation of the rotating fan blades can accelerate the flow of the gas around the wall during the leveling process, so that the UHP-ECC self-flowing body on the wall can solidify quickly, which can improve the construction speed of subsequent construction and reduce the overall construction time required. Compared with the prior art, it has the advantage of improving the overall construction work efficiency.

[0018] 3. By setting up a storage mechanism in the present invention, when it is necessary to store the working tools, the frame door is opened through the doorknob, and the tools to be stored are placed in the weighted frame, so that the tools that are not needed during the leveling work can be stored. The setting of the storage mechanism provides a storage space for the whole leveling equipment, and at the same time can increase the weight on one side of the leveling equipment to stabilize the overall center of gravity of the leveling equipment, so as to ensure the stability and reliability of the leveling equipment during the leveling work.

[0019] 4. By setting up a moving mechanism in the present invention, when the leveling equipment needs to be moved, the leveling equipment can be pushed to make the moving wheels roll, so as to achieve the effect of rapid movement. When the equipment does not need to be moved, the lifting cylinder is controlled to start working, so that it contacts the ground with the support plate and at the same time lifts the moving wheels off the ground, that is, the equipment can be fixed. Compared with the prior art, it has the advantage of being convenient for construction workers to use. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] Figure 1 It is an isometric view of Embodiment 1 of the present invention; Figure 2 It is a front view structure diagram of Embodiment 1 of the present invention; Figure 3 It is a bottom view structure diagram of Embodiment 1 of the present invention; Figure 4 It is a top view structure diagram of Embodiment 1 of the present invention; Figure 5 It is a right view structure diagram of Embodiment 1 of the present invention; Figure 6 It is a schematic connection structure diagram of the electric telescopic rod and the leveling plate in Embodiment 2 of the present invention; Figure 7 It is a schematic structure diagram of the second adjustment mechanism in Embodiment 2 of the present invention; Figure 8 It is a schematic internal structure diagram of the leveling plate in Embodiment 2 of the present invention Figure 9 It is a schematic external structure diagram of the leveling plate in Embodiment 2 of the present invention; Figure 10 It is an enlarged view of A.

[0021] The reference signs in the figures are shown as follows: 1. Leveling mechanism; 101. Leveling frame; 102. Lower motor; 103. Rotating threaded column; 104. Movable block; 105. Electric telescopic rod; 106. Leveling plate; 107. Limit long column 2. Air-drying mechanism; 201. Connecting bolt; 202. Connecting block; 203. Movable plate; 204. Side motor; 205. Rotating fan blade 3. Storage mechanism; 301. Weighting frame; 302. Hinge; 303. Frame door; 304. Door handle 4. Movable mechanism; 401. Bottom long block; 402. Movable wheel; 403. Lifting cylinder; 404. Support plate 5. First adjustment mechanism; 501. Connecting block; 502. First rotating shaft; 503. Adjusting block; 504. First adjustment motor 6. Second adjustment mechanism; 601. Mounting block; 602. Second rotating shaft; 603. Second adjustment motor; 604. Insertion slot; 605. First limiting slot; 606. Second limiting slot; 607. Limiting plate; 608. Third limiting slot; 609. Limiting block Detailed implementation mode

[0022] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0023] Embodiment 1: Please refer to Figures 1 to 5 , this embodiment provides a leveling device for the later UHP-ECC self-fluid reinforcement of brick walls, including a leveling mechanism 1. The leveling mechanism includes a leveling frame 101 arranged in a "C" shape. A lower motor 102 is fixedly connected to the bottom of the leveling frame 101. The output shaft of the lower motor 102 is fixedly connected to a rotating threaded column 103 arranged vertically in the leveling frame 101 through a coupling. The two ends of the rotating threaded column 103 are respectively rotatably connected to the corresponding side walls of the leveling frame 101. An outer wall of the rotating threaded column 103 is threadedly connected with a movable block 104. When the rotating threaded column 103 rotates, the movable block 104 can move up and down adaptively along the rotating threaded column 103 according to the rotation direction of the rotating threaded column 103. An electric telescopic rod 105 extending out of the leveling frame 101 is fixedly connected to the left side wall of the movable block 104. A leveling plate 106 is fixedly connected to the end of the electric telescopic rod 105 away from the movable block 104. The plate surface of the leveling plate 106 is parallel to the required leveling surface.

[0024] Through the foregoing settings, when it is necessary to level the wall surface, the construction worker measures the distance between the leveling plate 106 and the surface to be leveled, and then, according to this distance, controls the electric telescopic rod 105 to start working, so that it drives the leveling plate 106 to the required leveling position. After that, the construction worker controls the lower motor 102 to start working. The rotation of the output shaft of the lower motor 102 can drive the rotating threaded column 103 to start rotating, so that the movable block 104 starts to move up and down along the rotating threaded column 103. After the movable block 104 drives, it can drive the leveling plate 106 to move up and down. At this time, the leveling plate 106 can complete the required automatic leveling work on the wall surface.

[0025] In order to make the movement of the movable block 104 in the leveling frame 101 more stable, in this embodiment, a vertically arranged limiting long column 107 is further arranged in the leveling frame 101. The two end parts of the limiting long column 107 are respectively fixedly connected to the corresponding side walls of the leveling frame 101, and the limiting long column 107 is also movably penetrated through the movable block 104. Through the setting of the limiting long column 107, when the movable block 104 moves under the rotation of the rotating threaded column 103, the movable block 104 will also move up and down adaptively along the limiting long column 107. The limiting long column 107 plays a role in restricting the movement of the movable block 104 to avoid its deviation phenomenon, so that the movement of the movable block 104 in the leveling frame 101 can be more stable.

[0026] In order to improve the working efficiency of the overall construction, in this embodiment, a drying mechanism 2 is arranged on one side of the leveling mechanism 1. The drying mechanism 2 includes a connecting block 202 fixedly connected to the movable block 104 by setting a connecting bolt 201. The connecting block 202 is arranged on both side walls of the movable block 104, and both connecting blocks 202 are located outside the leveling frame 101. Movable plates 203 are fixedly arranged at the ends of both connecting blocks 202 far away from the movable block 104. The movable plates 203 are horizontally arranged, and the connecting block 202 and the movable plate 203 can move adaptively outside the leveling frame 101 following the movable block 104. Side motors 204 are symmetrically arranged on the side walls of the movable plates 203 far away from the connecting blocks 202. Rotating fan blades 205 are fixedly connected to the output shafts of both side motors 204 through couplings. Both rotating fan blades 205 are located on the side walls of the movable plates 203 close to the connecting blocks 202 and are both arranged facing the leveling plate 106.

[0027] With the foregoing settings, when the leveling of the flat plate 106 starts, the construction workers can control the side motor 204 to start working according to actual needs, such as controlling the side motor 204 to start working when the leveling is about to reach the required target. The rotation of the output shaft of the side motor 204 drives the rotating fan blade 205 to start rotating. The rotation of the rotating fan blade 205 can accelerate the gas flow around the wall during the leveling process, so that the UHP-ECC self-flowing body on the wall can solidify quickly, thereby improving the construction speed of subsequent construction and further improving the overall construction efficiency.

[0028] For the convenience of the construction workers, in this embodiment, a storage mechanism 3 is further provided on one side of the leveling mechanism 1. The storage mechanism 3 includes a weight frame 301 fixedly connected to the right side position at the bottom of the leveling frame 101. The end of the weight frame 301 away from the leveling frame 101 is provided with an open structure. A frame door 303 is hinged on the end of the open structure of the weight frame 301 through a hinge 302. The frame door 303 covers the end of the open structure of the weight frame 301, and a door handle 304 is further provided on the frame door 303. With the foregoing settings, the storage mechanism 3 can provide a storage space. That is, in actual use, when it is necessary to store relevant construction tools, the construction workers open the frame door 303 through the door handle 304, and then place the tools to be stored in the weight frame 301, and the corresponding storage can be completed. At the same time, the storage mechanism 3 is fixedly arranged at the right side position at the bottom of the leveling frame 101, and can also increase the weight on the right side of the leveling device to stabilize the overall center of gravity of the leveling device and ensure the stability and reliability of the leveling device during the leveling work. For the convenience of the construction workers, in this embodiment, a moving mechanism 4 is further provided on the weight frame 301. The moving mechanism 4 includes bottom long blocks 401 symmetrically arranged on the bottom of the weight frame 301. Moving wheels 402 are arranged at the bottoms of the two bottom long blocks 401. The moving wheels 402 are arranged in a rectangle on the bottom of the weight frame 301, that is, two moving wheels 402 are arranged at the bottom of each bottom long block 401. At the same time, a lifting cylinder 404 with a piston rod portion vertically downward is arranged at the bottom of the weight frame 301. The lifting cylinders 404 are symmetrically arranged at the bottom of the weight frame 301. Support plates 404 are arranged on the piston rod portions of the two lifting cylinders 404. With the foregoing settings, when the leveling device needs to be moved, the construction workers can push the leveling device to make the moving wheels 402 roll, so as to achieve the effect of quick movement. When the device does not need to be moved, the construction workers control the lifting cylinder 402 to start working, so that it ejects the support plate 404 to make the support plate 404 contact the ground, and at the same time lift the moving wheels 402 to make them not contact the ground, that is, the device can be fixed.

[0029] The working principle of this embodiment is as follows. When the UHP-ECC self-fluid needs to be leveled after being applied to the wall surface, the construction worker can easily push this leveling device to the required position by rolling the movable wheels 402. Then, the construction worker controls the lifting cylinder 402 to start working, making the support plate 404 contact the ground and lift the movable wheels 402 so that they are not in contact with the ground. After that, the construction worker measures the distance between the leveling plate 106 and the required leveling surface, and then controls the electric telescopic rod 105 to start working according to this distance, making it drive the leveling plate 106 to the required leveling position. Then, the construction worker controls the lower motor 102 to start working, and the leveling plate 106 can perform the required automatic leveling work on the wall surface. During the leveling work of the leveling plate 106, the construction worker can also control the side motor 204 to start working according to actual needs, so that the two side rotating fan blades 205 rotate to generate air flow, which can accelerate the solidification speed of the UHP-ECC self-fluid on the wall surface, thereby reducing the overall construction time required.

[0030] During the leveling process, if the thickness of the self-fluid on the surface to be leveled is relatively thick, multiple leveling operations are required to complete the required leveling work. When the leveling device provided in Embodiment 1 is used for leveling work, the angle of the leveling plate 106 cannot be adjusted. Therefore, when the leveling plate 106 is performing leveling work, its plate surface is straight up and down. This makes the movement resistance of the leveling plate 106 relatively large when dealing with the leveling work of relatively thick self-fluid, and there are certain difficulties. At the same time, since the angle of the leveling plate 106 of the leveling device provided in Embodiment 1 cannot be adjusted, it is also difficult to deal with the leveling work of some curved walls, such as the leveling work of an arc wall. For this reason, on the basis of Embodiment 1, Embodiment 2 is proposed.

[0031] Embodiment 2: Please refer to Figures 6 to 10 , this embodiment provides a leveling device for the late-stage UHP-ECC self-fluid reinforcement of a brick wall, including all the structures in Embodiment 1. Further, a first adjustment mechanism 5 is provided between the electric telescopic rod 105 and the leveling plate 106. The first adjustment mechanism 5 includes a connection block 501 fixedly connected to the end of the electric telescopic rod 105 away from the movable block 104. The cross-section of the connection block 501 is arranged in a "C" shape. A regulating block 503 is rotatably connected to the connection block 501 through a first rotating shaft 502. The end of the regulating block 503 away from the electric telescopic rod 105 passes out of the connection block 501, and the passing-out end of the regulating block 503 is connected to the leveling plate. A first adjustment motor 504 is also provided on the top surface of the connection block 501. The output shaft of the first adjustment motor 504 passes through the connection block 501 movably and is connected to the first rotating shaft 502.

[0032] With the above settings, when the first adjustment motor 504 starts to work, the rotation of its output shaft can drive the first rotating shaft 502 to rotate, so that the adjustment block 503 can perform a corresponding rotational movement within the connecting block 501. After the adjustment block 503 moves, it can drive the leveling plate 106 to move, so that an angle in the horizontal direction can appear between the leveling plate 106 and the leveling surface to be leveled, that is, the leveling plate 106 can be adapted to the leveling work of walls with curved surfaces such as arc walls, so as to improve the applicability of this leveling device.

[0033] At the same time, the adjustment block 503 and the leveling plate 106 are also connected by a second adjustment mechanism 6. The second adjustment mechanism 6 includes mounting blocks 601 symmetrically arranged on the plate wall of the leveling plate 106 close to the adjustment block 503. A second rotating shaft 602 is fixedly connected between the two mounting blocks 601. The protruding end of the adjustment block 503 is rotatably connected to the second rotating shaft 602. A second adjustment motor 603 is also provided on one of the mounting blocks 601. The output shaft of the second adjustment motor 603 passes through this mounting block 601 movably and is connected to the second rotating shaft 602.

[0034] With the above settings, when the second adjustment motor 603 starts to work, the rotation of its output shaft can drive the second rotating shaft 602 to rotate. Since the adjustment block 503 and the second rotating shaft 602 are in a rotational connection relationship, when the second rotating shaft 602 rotates, the adjustment block 503 does not move correspondingly, and the two mounting blocks 601 will perform corresponding rotational movements following the rotation of the second rotating shaft 602, so as to drive the leveling plate 106 to move, so that an angle in the vertical direction can appear between the leveling plate 106 and the leveling surface to be leveled, that is, when the leveling plate 106 is dealing with leveling work with a relatively thick self-fluid thickness, by adjusting the angle in the vertical direction between it and the leveling surface to be leveled, the movement resistance during the leveling work can be reduced, thereby improving the applicability of this leveling device.

[0035] To further improve the applicability of this leveling device, in this embodiment, plug-in slots 604 corresponding to the mounting blocks 601 are provided on the plate wall of the leveling plate 106 close to the adjustment block 503. The bottoms of the two mounting blocks 601 are inserted into the corresponding plug-in slots 604. The two mounting blocks 601 are detachably connected to the leveling plate by being inserted into the plug-in slots 604, so that it is convenient to replace the leveling plate 106 with different shapes and sizes for corresponding leveling work when needed, so as to improve the applicability of this leveling device.

[0036] On both sides of the mounting blocks 601, first limiting grooves 605 are formed through the mounting blocks 601. When the mounting blocks 601 on both sides are inserted into the insertion grooves 604, the first limiting grooves 605 on both sides are located in the corresponding insertion grooves 604 on each side. On the leveling plate 106, a second limiting groove 606 is formed horizontally through the leveling plate 106. The second limiting groove 606 is communicated with the insertion grooves 604 on both sides. When the mounting blocks 601 on both sides are inserted into the insertion grooves 604, the cross-sections of the first limiting grooves 605 on both sides coincide with the cross-section of the second limiting groove 606. A limiting plate 607 is further provided on the leveling plate 106. The limiting plate 607 is inserted into the first limiting groove 605 and the second limiting groove 606. Through the settings of the first limiting groove 605, the second limiting groove 606 and the limiting plate 607, when the mounting blocks 601 on both sides are inserted into the insertion grooves 604, by inserting the limiting plate 607 into and passing through the first limiting grooves 605 on both sides from one side of the second limiting groove 606 and then exiting from the other side of the second limiting groove 606, the mounting blocks 601 on both sides can be fixed on the leveling plate 106, making it not easy to fall off or the like.

[0037] To avoid the phenomenon of the mounting blocks 601 on both sides shifting, in this embodiment, symmetrically arranged third limiting grooves 608 are further formed on the plate wall of the leveling plate 106 close to the adjusting block 503. The third limiting grooves 608 on both sides are communicated with the corresponding insertion grooves 604. The setting of the third limiting grooves 608 does not interfere with the first limiting grooves 605. Limiting blocks 609 corresponding to the third limiting grooves 608 on the corresponding sides are further provided on the mounting blocks 601 on both sides. The setting of the limiting blocks 609 does not interfere with the limiting plate 607. When the mounting blocks 601 are inserted into the insertion grooves 604, the limiting blocks 609 are inserted into the third limiting grooves 608. Through the settings of the limiting blocks 609 and the third limiting grooves 608, the third limiting grooves 608 can limit the limiting blocks 609 from moving up and down and can only move left and right, so that the mounting blocks 601 on both sides cannot move up and down, thereby avoiding the phenomenon of the mounting blocks 601 on both sides shifting.

[0038] Before the leveling equipment performs the leveling work, the construction personnel can, according to actual needs, control the first adjusting motor 504 and the second adjusting motor 603 to start working to adjust the leveling plate 106 to a suitable posture. Then, the construction personnel can control the electric telescopic rod 105 and the lower motor 102 to start working to make the leveling plate 106 perform the corresponding leveling work.

[0039] It should be noted that, in this text, relational terms such as "first" and "second" are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the terms "comprise", "include" or any other variant thereof are intended to cover non-exclusive inclusion, such that a process, method, article or device comprising a series of elements not only includes those elements but also includes other elements not expressly listed, or elements inherent to such process, method, article or device.

[0040] It should be noted that the orientation or positional relationship indicated by terms such as "center", "longitudinal", "transverse", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", etc. is based on the orientation or positional relationship shown in the drawings. It is only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and thus should not be construed as a limitation of the present invention.

[0041] In addition, the terms "first" and "second" are only used for descriptive purposes and should not be construed as indicating or implying relative importance or implicitly specifying the quantity of the indicated technical features. Thus, features defined with "first" and "second" may explicitly or implicitly include one or more of such features. In the description of the present invention, "a plurality of" means two or more unless otherwise specifically defined.

[0042] Although embodiments of the present invention have been shown and described, it will be understood by those of ordinary skill in the art that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A leveling device for late-stage UHP-ECC self-fluid reinforcement of brick walls, characterized by: It includes a leveling mechanism (1). The leveling mechanism includes a leveling frame (101) arranged in a "C" - shaped structure. A lower motor (102) is connected to the bottom of the leveling frame (101). The output shaft of the lower motor (102) is fixedly connected through a coupling to a rotating threaded column (103) arranged vertically inside the leveling frame (101). An active block (104) is thread - connected to the outer wall of the rotating threaded column (103). When the rotating threaded column (103) rotates, the active block (104) moves along the rotating threaded column (103). One side of the active block (104) is fixedly connected to an electric telescopic rod (105) that extends out of the leveling frame (101). A leveling plate (106) is connected to the end of the electric telescopic rod (105) far from the active block (104).

2. A leveling device for late-stage UHP-ECC self-fluid reinforcement of brick walls according to claim 1, characterized in that: A vertically - arranged limiting long column (107) is also arranged inside the leveling frame (101), and the limiting long column (107) is movably penetrated through the active block (104).

3. The leveling device for late-stage UHP-ECC self-fluid reinforcement of brick walls according to claim 1, characterized in that: A drying mechanism (2) is arranged on one side of the leveling mechanism (1). The drying mechanism (2) includes a connecting block (202) fixedly connected to the active block (104) by setting connecting bolts (201). An active plate (203) is arranged at the end of the connecting block (202) far from the active block (104). The connecting block (202) and the active plate (203) move along with the active block (104). A side motor (204) is arranged on the side wall of the active plate (203) far from the connecting block (202). The output shaft of the side motor (204) is fixedly connected through a coupling to a rotating fan blade (205). The rotating fan blade (205) is located on the side wall of the active plate (203) close to the connecting block (202) and is arranged towards the leveling plate (106).

4. The leveling device for late-stage UHP-ECC self-fluid reinforcement of brick walls according to claim 1, characterized in that: A storage mechanism (3) is also arranged on one side of the leveling mechanism (1). The storage mechanism (3) includes a weighting frame (301) fixedly connected to the bottom position of the leveling frame (101). The end of the weighting frame (301) far from the leveling frame (101) is of an open - ended structure. A frame door (303) is hinged to the open - ended part of the weighting frame (301) by setting hinges (302). The frame door (303) covers the open - ended part of the weighting frame (301). A door handle (304) is also arranged on the frame door (303).

5. The leveling device for late-stage UHP-ECC self-fluid reinforcement of brick walls according to claim 4, characterized in that: An active mechanism (4) is arranged on the weighting frame (301). The active mechanism (4) includes bottom long blocks (401) symmetrically arranged on the bottom of the weighting frame (301). Active wheels (402) are arranged at the bottoms of both side bottom long blocks (401).

6. The leveling device for late-stage UHP-ECC self-fluid reinforcement of brick walls according to claim 5, characterized in that: A lifting cylinder (404) with its piston rod part vertically downward is also arranged at the bottom of the weighting frame (301). The lifting cylinders (404) are symmetrically arranged on the bottom of the weighting frame (301). Support plates (404) are arranged on the piston rod parts of both side lifting cylinders (404).

7. The leveling device for late-stage UHP-ECC self-fluid reinforcement of brick walls according to claim 1, characterized in that: The electric telescopic rod (105) and the leveling plate (106) are connected by a first adjusting mechanism (5). The first adjusting mechanism (5) includes a connecting block (501) connected to the end of the electric telescopic rod (105) on the side away from the movable block (104). The cross-section of the connecting block (501) is arranged in a "C" shape. An adjusting block (503) is rotatably connected to the inside of the connecting block (501) by a first rotating shaft (502). The end of the adjusting block (503) on the side away from the electric telescopic rod (105) penetrates outside the connecting block (501), and the penetrating end of the adjusting block (503) is connected to the leveling plate. A first adjusting motor (504) is further arranged on the connecting block (501). The output shaft of the first adjusting motor (504) movably penetrates into the connecting block (501) and is connected to the first rotating shaft (502).

8. The leveling device for late-stage UHP-ECC self-fluid reinforcement of brick walls according to claim 7, characterized in that: The adjusting block (503) and the leveling plate (106) are connected by a second adjusting mechanism (6). The second adjusting mechanism (6) includes mounting blocks (601) symmetrically arranged on the plate wall of the leveling plate (106) close to the adjusting block (503). A second rotating shaft (602) is fixedly connected between the two mounting blocks (601). The penetrating end of the adjusting block (503) is rotatably connected to the second rotating shaft (602). A second adjusting motor (603) is further arranged on one of the mounting blocks (601). The output shaft of the second adjusting motor (603) movably passes through this mounting block (601) and is connected to the second rotating shaft (602).

9. The leveling device for late-stage UHP-ECC self-fluid reinforcement of brick walls according to claim 8, characterized in that: Insertion slots (604) corresponding to the mounting blocks (601) are formed on the plate wall of the leveling plate (106) close to the adjusting block (503). The bottoms of the two mounting blocks (601) are inserted into the corresponding insertion slots (604). First limiting slots (605) penetrating through the mounting blocks (601) are formed on the two mounting blocks (601). When the mounting blocks (601) are inserted into the insertion slots (604), the first limiting slots (605) are located in the insertion slots (604). A second limiting slot (606) penetrating through the leveling plate (106) is formed on the leveling plate (106). The second limiting slot (606) is communicated with the insertion slots (604). When the mounting blocks (601) are inserted into the insertion slots (604), the cross-section of the first limiting slot (605) coincides with the cross-section of the second limiting slot (606). A limiting plate (607) is further arranged on the leveling plate (106). The limiting plate (607) is inserted into the first limiting slot (605) and the second limiting slot (606).

10. The leveling device for late-stage UHP-ECC self-fluid reinforcement of brick walls according to claim 9, characterized in that: The leveling plate (106) is provided with a symmetrically arranged third limiting groove (608) on the plate wall close to the adjustment block (503), and the third limiting grooves (608) on both sides are connected to the plug-in grooves (604) on the corresponding sides. The mounting blocks (601) on both sides are also provided with limiting blocks (609) corresponding to the third limiting grooves (608) on the corresponding sides. The limiting blocks (609) are inserted into the third limiting grooves (608) when the mounting blocks (601) are inserted into the plug-in grooves (604).