Building template flatness detection equipment for construction engineering
By designing the conveying, testing, and display mechanism for the building formwork flatness testing equipment, the problem of existing equipment being unable to immediately sign off and archive the results was solved. This enabled the immediate display and archiving of test results, improving testing efficiency and the convenience of data management.
Patent Information
- Application Number
- CN202520190795.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-07
- Publication Date
- 2026-02-06
- Estimated Expiration
- 2035-02-07
AI Technical Summary
Existing formwork flatness testing equipment cannot perform immediate signature confirmation and archiving during testing, resulting in the inability to save and manage test data in a timely manner.
A building formwork flatness testing device was designed, comprising a fixed base plate, a conveying mechanism, a testing mechanism, and a display mechanism. The conveying mechanism moves the formwork to a designated position, the testing mechanism uses measuring rollers and a writing pen to directly draw the test results on paper, and the display mechanism uses clamps and spring structures to achieve instant data signing and archiving.
It enables the real-time display of test results on paper during the testing process, facilitating on-site signature confirmation and archiving, solving the problem of data not being saved in time, and improving testing efficiency and the convenience of data management.
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Figure CN223882914U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application relates to the technical field of construction engineering, in particular to a building formwork flatness detection device for construction engineering. BACKGROUND
[0002] The building formwork is widely used in construction engineering and is used for forming a predetermined shape and size structure during concrete pouring. It is not only used for manufacturing structural components such as floor slabs, walls and staircases, but also suitable for external wall thermal insulation and indoor decoration, and in the fields of water conservancy engineering, bridge and road, power engineering and municipal engineering. The flatness of the building formwork has an important influence on the quality, appearance and subsequent construction of the concrete structure. The flat formwork can reduce the finishing workload after concrete pouring, improve the construction efficiency, improve the smoothness of the concrete surface, reduce the stress concentration caused by unevenness and reduce the possibility of concrete cracking.
[0003] Before the building formwork material enters the site, the construction unit needs to conduct material inspection on the building formwork entering the site together with the supervision, detect the surface flatness of the building formwork, so as to ensure that the building formwork used can meet the required flatness. The infrared emitter-receiver is used to judge the flatness of the plate surface by emitting and receiving infrared light signals, so as to realize the flatness detection of the building formwork.
[0004] Because the supervision needs to keep the paper detection data after the material inspection, and sign the confirmation on the paper data, the detection data of the batch of materials is archived. In the detection process by the infrared emitter-receiver, the detection data is only stored in the internal of the equipment, and cannot be signed and confirmed on the spot during the detection. Practical new type content
[0005] The application aims to provide a building formwork flatness detection device for construction engineering, so as to solve the problem that because the supervision needs to keep the paper detection data after the material inspection, and sign the confirmation on the paper data, the detection data of the batch of materials is archived, and in the detection process by the infrared emitter-receiver, the detection data is only stored in the internal of the equipment, and cannot be signed and confirmed on the spot during the detection.
[0006] To achieve the above object, the application provides the following technical scheme: a kind of building engineering building template flatness detection equipment, comprising: fixed bottom plate, conveying mechanism, detection mechanism and display mechanism, the inside of the fixed bottom plate is equidistantly provided with bearing, the conveying mechanism is arranged in the inside of fixed bottom plate, the detection mechanism is arranged at the top of fixed bottom plate, the detection mechanism includes the fixed block fixed at the top of fixed bottom plate two sides, rectangular through-hole is formed in the inside of fixed block, measurement roller is rotatably connected in the rectangular through-hole of fixed block, the measurement roller can be vertically slid in the rectangular through-hole of fixed block, writing pen is arranged at one end of measurement roller, the display mechanism is arranged at one side of writing pen, the display mechanism includes the mounting block arranged on one group of fixed blocks, the plug-in box is rotatably connected in the mounting block, recess is formed in the top of plug-in box, fixed plate is vertically inserted in the recess of plug-in box and clamp is clamped on the outer wall of fixed plate.
[0007] By adopting the above technical scheme, the detection method can directly display the detected structure on the paper, thereby facilitating subsequent signature and archiving work.
[0008] Preferably, the display mechanism further includes a first mounting column welded at one end of one group of fixed blocks and a second mounting column welded at one end of the plug-in box.
[0009] By adopting the above technical scheme, a structure can be provided on the first mounting column and the second mounting column.
[0010] Preferably, the other end of the first mounting column and the second mounting column is integrally formed with a protrusion.
[0011] By adopting the above technical scheme, the structure can be avoided from being offset and falling off on the first mounting column and the second mounting column.
[0012] Preferably, the display mechanism further includes a spring with hooks integrally formed at both ends of the spring, and the spring is sleeved on the first mounting column and the second mounting column at both ends.
[0013] By adopting the above technical scheme, the spring can be reset to the specified position by the elastic force of the spring.
[0014] Preferably, the conveying mechanism includes a rotating roller clamped and fixed in the bearing of the fixed bottom plate, and the rotating roller is composed of a plurality of groups equidistantly arranged.
[0015] By adopting the above technical scheme, the building template can be placed on the rotating roller, so as to drive the building template to move by rotating the rotating roller.
[0016] Preferably, the conveying mechanism further comprises a driving motor fixed on the outer wall of the fixed base plate, and an output end of the driving motor is connected with one end of the outermost rotating rollers inside the fixed base plate.
[0017] By adopting the above technical scheme, the structure connected with the output end can realize persistent rotation.
[0018] Preferably, the conveying mechanism further comprises a belt pulley fixed on the outermost rotating rollers at both ends inside the fixed base plate, the number of the belt pulleys is two, and a wide belt is sleeved on the two belt pulleys.
[0019] By adopting the above technical scheme, the synchronous rotation work can be realized through the connection of the wide belt.
[0020] In summary, the present application has at least one of the following beneficial effects:
[0021] (1) By setting the conveying mechanism, the detection mechanism and the display mechanism, the conveying mechanism can facilitate the conveying of the building template to the specified detection position. When the building template moves to the specified position, the building template moves at the bottom of the measuring roller. When the surface of the building template has an arc-shaped depression, the measuring roller placed above will be vertically displaced, so that the trajectory is drawn on the paper placed on the outer wall of the fixed plate by the writing pen. When the difference between the trajectories on the outer wall of the fixed plate is within the qualified range, it can be quickly judged whether the building template is flat. The paper clamped on the outer wall of the fixed plate can be quickly taken off by the clamp, so that the detected data can be signed and archived in the process of on-site detection.
[0022] (2) By setting the first mounting column, the second mounting column and the spring, the fixed plate can be rotated to make the paper on the outer wall of the fixed plate adhere to the surface of the writing pen, so as to avoid the writing pen from smearing and polluting the paper on the outer wall of the fixed plate during the detection process. BRIEF DESCRIPTION OF DRAWINGS
[0023] Figure 1 It is a first side view three-dimensional structure schematic diagram of the present application;
[0024] Figure 2 It is a second side view three-dimensional structure schematic diagram of the present application;
[0025] Figure 3 It is a detection mechanism three-dimensional structure schematic diagram of the present application;
[0026] Figure 4 It is a Figure 1 Partial enlarged A three-dimensional structure schematic diagram.
[0027] In the figure: 1, fixed bottom plate; 2, conveying mechanism; 201, rotating roller; 202, driving motor; 203, belt pulley; 204, wide belt; 3, detection mechanism; 301, fixed block; 302, measuring roller; 303, writing pen; 4, display mechanism; 401, mounting block; 402, plug-in box; 403, fixed plate; 404, clamp; 405, first mounting column; 406, second mounting column; 407, spring. DETAILED DESCRIPTION
[0028] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, not all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.
[0029] The following will be described in detail with reference to the drawings in the embodiments of the present application. Figures 1-4 The embodiments of the present application will be further described in detail.
[0030] Embodiment 1
[0031] Please refer to Figures 1-4 The present embodiment provides a technical solution: a building template flatness detection device for construction engineering, comprising: a fixed bottom plate 1, a conveying mechanism 2, a detection mechanism 3 and a display mechanism 4.
[0032] The inside of the fixed bottom plate 1 is provided with bearings equidistantly on both sides, which can provide the structure inside the bearing to realize fixation, and does not affect the rotation of the fixed structure, the conveying mechanism 2 is arranged inside the fixed bottom plate 1, the conveying mechanism 2 can place the building template on the top, so as to drive the building template to move.
[0033] The detection mechanism 3 is arranged on the top of the fixed bottom plate 1, the detection mechanism 3 comprises fixed blocks 301 fixed on both sides of the top of the fixed bottom plate 1, a rectangular through hole is formed in the inside of the fixed block 301, a measuring roller 302 is rotatably connected in the rectangular through hole of the fixed block 301, the measuring roller 302 can vertically slide in the rectangular through hole of the fixed block 301, and a writing pen 303 is arranged at one end of the measuring roller 302.
[0034] The display mechanism 4 is arranged on one side of the writing pen 303, the display mechanism 4 comprises a mounting block 401 arranged on one of the fixed blocks 301, a plug-in box 402 rotatably connected in the mounting block 401, a recess is formed in the top of the plug-in box 402, a fixed plate 403 vertically inserted in the recess of the plug-in box 402 and a clamp 404 clamped on the outer wall of the fixed plate 403.
[0035] The display mechanism 4 further comprises a first mounting column 405 welded at one end to one of the fixed blocks 301 and a second mounting column 406 welded at one end to the plug-in box 402, the other ends of the first mounting column 405 and the second mounting column 406 are integrally formed with lugs, springs 407 are sleeved on the first mounting column 405 and the second mounting column 406 at both ends respectively, and hooks are integrally formed at both ends of the springs 407.
[0036] The building template can be conveyed to the designated position by the conveying mechanism 2, and when the building template moves to the designated position, the measuring roller 302 is placed above the building template. When the building template is not flat, the measuring roller 302 above the building template will move vertically in the fixed block 301 during movement of the building template. At this time, the writing pen 303 connected at one end of the measuring roller 302 leaves marks on the paper held by the clamp 404 on the fixed plate 403, so that the writing pen 303 leaves marks on the paper. The marks on the paper are used to determine whether the building template is qualified. When it is necessary to remove the paper held by the clamp 404 on the fixed plate 403, the plug-in box 402 connected to the mounting block 401 through the shaft is rotated. At this time, the plug-in box 402 is no longer pulled by the springs 407 on the first mounting column 405 and the second mounting column 406, so that the plug-in box 402 is rotated and inclined from the vertical state. When the fixed plate 403 is removed from the plug-in box 402, the paper held by the clamp 404 on the fixed plate 403 will not be in contact with the writing pen 303 to cause pollution.
[0037] Embodiment 2
[0038] Please refer to Figures 1-4 The embodiment provides a technical scheme: a building template flatness detection device for construction engineering, comprising: a rotating roller 201, a driving motor 202, a belt pulley 203 and a wide belt 204.
[0039] The conveying mechanism 2 comprises rotating rollers 201 clamped and fixed in bearings of the fixed base plate 1, and the rotating rollers 201 are composed of a plurality of groups arranged at equal intervals. The driving motor 202 is fixedly arranged on the outer wall of the fixed base plate 1, and the output end of the driving motor 202 is connected to one end of the outermost rotating roller 201 in the fixed base plate 1. The belt pulleys 203 are fixedly arranged on the outermost rotating rollers 201 at both ends in the fixed base plate 1, and the number of the belt pulleys 203 is two. The wide belt 204 is sleeved on the two groups of belt pulleys 203.
[0040] The building template is placed above the rotating roller 201 of the fixed base plate 1, and one group of rotating rollers 201 is driven to rotate by starting the driving motor 202. The rotating roller 201 is connected to the other group of rotating rollers 201 through the belt pulley 203 and the wide belt 204, so as to provide rotating power to the other group of rotating rollers 201 to realize rotation, thereby stably realizing horizontal movement of the building template on the rotating roller 201.
[0041] The implementation principle of the building template flatness detection device for construction projects in the application is:
[0042] Firstly, the building template is conveyed to the specified position by the conveying mechanism 2, and the building template is placed above the rotating roller 201 of the fixed base plate 1. One group of rotating rollers 201 is driven to rotate by starting the driving motor 202. The rotating roller 201 is connected to the other group of rotating rollers 201 through the belt pulley 203 and the wide belt 204, so as to provide rotating power to the other group of rotating rollers 201 to realize rotation, thereby stably realizing horizontal movement of the building template on the rotating roller 201.
[0043] Secondly, when the building template moves to the specified position, the measuring roller 302 is placed above the building template. When the building template is not flat, the measuring roller 302 above will move vertically in the fixed block 301 during the movement of the building template. At this time, the writing pen 303 connected to one end of the measuring roller 302 is attached to the surface of the paper held by the clamp 404 of the fixed plate 403, so that the writing pen 303 leaves marks on the paper. Whether the building template is qualified is determined by the marks on the paper.
[0044] Finally, when the paper held by the clamp 404 of the fixed plate 403 needs to be taken out, the plug-in box 402 connected to the mounting block 401 through the shaft is rotated. At this time, the plug-in box 402 is no longer pulled by the spring 407 on the first mounting column 405 and the second mounting column 406, so that the plug-in box 402 rotates from the vertical state to the inclined state. When the fixed plate 403 is taken out from the plug-in box 402, the paper held by the clamp 404 of the fixed plate 403 will not be in contact with the writing pen 303 to cause pollution.
[0045] It is obvious to those skilled in the art that the application is not limited to the details of the above exemplary embodiments, and can be implemented in other specific forms without departing from the spirit or essential characteristics of the application. Therefore, the embodiments should be regarded as exemplary and non-limiting, and the scope of the application is defined by the appended claims rather than the above description, and all changes falling within the meaning and scope of the equivalent elements of the claims are intended to be included in the application. Any reference signs in the claims should not be regarded as limiting the claims.
Claims
1. A construction work building template flatness detection device characterized by, The utility model relates to a kind of automatic book writing machine, including: Fixed base plate (1), the inside both sides of fixed base plate (1) are equidistantly provided with bearing; Conveying mechanism (2), conveying mechanism (2) is arranged in the inside of fixed base plate (1); Detection mechanism (3), detection mechanism (3) is arranged at the top of fixed base plate (1), and detection mechanism (3) includes fixed block (301) fixed at the top of fixed base plate (1) both sides, rectangular through-hole is opened in the inside of fixed block (301), and measuring roller (302) is rotatably connected in the rectangular through-hole of fixed block (301), measuring roller (302) can realize vertical sliding in the rectangular through-hole of fixed block (301), writing pen (303) is arranged at one end of measuring roller (302); Display mechanism (4), display mechanism (4) is arranged at one side of writing pen (303), and display mechanism (4) includes mounting block (401) arranged on one group of fixed block (301), and plug-in box (402) is rotatably connected in mounting block (401) by shaft, recess is opened at the top of plug-in box (402), and fixed plate (403) is vertically inserted in the recess of plug-in box (402) and clamp (404) is clamped on the outer wall of fixed plate (403).
2. The flatness detection device for building templates of construction works according to claim 1, characterized in that: The display mechanism (4) further includes a first mounting column (405) welded on one group of fixed blocks (301) and a second mounting column (406) welded on the plug-in box (402).
3. The flatness detection device for building templates of construction works according to claim 2, characterized in that: The other end of the first mounting column (405) and the second mounting column (406) is integrally formed with a protrusion.
4. The flatness detection device for a building template of a construction work according to claim 2, characterized in that: The display mechanism (4) further includes a spring (407) having hooks integrally formed at both ends thereof and sleeved on the first mounting column (405) and the second mounting column (406).
5. The flatness detection device for building templates of construction works according to claim 1, characterized in that: The conveying mechanism (2) includes rotating rollers (201) clamped and fixed in the bearings of the fixed base plate (1), and the rotating rollers (201) are composed of several groups equidistantly arranged.
6. The flatness detection device for a building template of a construction work according to claim 5, characterized in that: The conveying mechanism (2) further includes a drive motor (202) fixed on the outer wall of the fixed base plate (1), and the output end of the drive motor (202) is connected to one end of the outermost group of rotating rollers (201) in the inside of the fixed base plate (1).
7. The flatness detection device for building templates for construction works according to claim 6, characterized in that: The conveying mechanism (2) further includes pulleys (203) fixed on the outermost rotating rollers (201) at both ends in the inside of the fixed base plate (1), the number of the pulleys (203) is two groups, and a wide belt (204) is sleeved on the two groups of pulleys (203).