Building curtain wall construction flatness detection device
By designing a building curtain wall inspection device for clamping components and translation components, the problems of small detection range and low efficiency are solved, and fast and automated curtain wall flatness detection is achieved, which is suitable for curtain walls of various sizes.
Patent Information
- Application Number
- CN202422481063.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-14
- Publication Date
- 2025-08-26
- Estimated Expiration
- 2034-10-14
AI Technical Summary
The existing architectural curtain wall inspection device has a small detection range and needs to be removed and reinstalled multiple times, resulting in low detection efficiency and time-consuming and labor-consuming.
A detection device including a clamping component, a translation component and an installation component is designed. The clamping component is fixed to the curtain wall and the installation component is driven to move through the translation component. The detection component in the installation component includes a detection wheel and a display panel. The detection wheel is adjusted with the concave and convex changes on the surface of the curtain wall. The display panel displays flatness, and the flatness is monitored in real time with the displacement sensor.
It realizes rapid and automated inspection of curtain walls, improves inspection efficiency, is suitable for curtain walls of various sizes, and improves inspection accuracy and efficiency.
Smart Images

Figure CN223271820U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of building curtain wall detection, in particular to a building curtain wall construction flatness detection device. Background Art
[0002] A building curtain wall is an exterior wall guardrail used to decorate the exterior facade of a large or high-rise building. The building curtain wall is usually made of materials such as glass, metal plates, stone plates, and ceramic plates. Therefore, the building curtain wall mainly plays a decorative role after installation. However, the building curtain wall will deform after a period of use, and then the flatness of the building curtain wall needs to be tested. If the flatness is poor, it needs to be repaired or replaced in time. However, the current building curtain wall detection device usually requires the building curtain wall to be removed for detection, which has the problem of low detection efficiency. Therefore, a building curtain wall construction flatness detection device is needed to solve the above problems.
[0003] A Chinese patent with publication number CN221259850U discloses a device for detecting the flatness of building curtain wall construction, including a connecting plate, a movable sleeve and an automatic starting mechanism. Outer sleeves are fixedly installed at both ends of the connecting plate, and the connecting plate is provided with a guide hole. A movable sleeve is slidably installed in the guide hole. The movable sleeve is slidably installed in the guide hole. A light alarm is fixedly installed on one side of the movable sleeve, and the automatic starting mechanism is located on the movable sleeve. The device for detecting the flatness of building curtain wall construction uses atmospheric pressure to install the device on the surface of the curtain wall, making it convenient for the device to detect the surface of the curtain wall. Through the automatic starting mechanism, the surface flatness of the curtain wall can be detected during the movement of the movable sleeve, and the uneven position of the curtain wall can be measured, making it convenient for the staff to repair the uneven position of the curtain wall.
[0004] In this patent, the automatic starting mechanism drives the movable sleeve to move, and the movable sleeve is used to detect the flatness of the curtain wall. However, in actual use, the detection range of the movable sleeve is small. Therefore, when inspecting a building curtain wall, it is necessary to remove the sealing ring and the fixing box multiple times and install them in the next inspection position horizontally, resulting in low inspection efficiency and time-consuming and labor-intensive problems. Utility Model Content
[0005] The utility model aims to provide a device for detecting the flatness of a building curtain wall during construction. The device can quickly detect the flatness of the building curtain wall and has the advantages of high detection efficiency and high practicality.
[0006] The purpose of the utility model is to provide a building curtain wall construction flatness detection device, which includes a curtain wall body, both ends of the curtain wall body are movably connected with clamping components, the clamping components are fixedly connected to the translation components, the translation components are slidably provided with an installation component, and a plurality of detection components are arranged in the installation component.
[0007] Furthermore, the installation component includes an installation box, a connecting block is fixedly provided on the top of the installation box, a threaded hole is provided on the connecting block, the installation box is slidably set on the translation component through the connecting block and the threaded hole, a plurality of partitions are fixedly provided in the installation box, limiting grooves are provided on both sides of the partitions, a through hole is provided on the top of the limiting groove, and the detection component is slidably set in the limiting groove and the installation box.
[0008] Furthermore, the detection component includes a detection wheel, a rotating shaft is fixedly provided on both sides of the detection wheel, a bearing sleeve is fixedly provided on the rotating shaft, the bearing sleeve is slidably set in the limit groove, a connecting rod is fixedly provided on the top of the bearing sleeve, a display board is fixedly provided on the connecting rod through the through hole, a second telescopic spring is provided on the connecting rod, one end of the second telescopic spring is fixedly connected to the top of the bearing sleeve, and the other end is fixedly connected to the top of the limit groove.
[0009] Furthermore, the translation assembly includes a horizontal plate and a threaded rod, both ends of the horizontal plate are fixedly connected to the clamping assembly, a movable groove is opened through the horizontal plate, one end of the threaded rod is rotatably set in the movable groove, a driving motor is fixedly set on one side of the horizontal plate, the other end of the threaded rod passes through the movable groove and is fixedly connected to the output end of the driving motor, the connecting block is slidably set in the movable groove, and the threaded hole on the movable block is rotatably set on the threaded rod.
[0010] Furthermore, the clamping assembly includes a telescopic plate and two stretching plates, both ends of the telescopic plate are provided with sliding grooves, one end of the two stretching plates are respectively slidably set in the sliding grooves at both ends of the telescopic plate, a first telescopic spring is fixedly connected between the telescopic plate and the sliding groove, the other ends of the two stretching plates are fixedly provided with a clamping block, the inner side of the clamping block is provided with a clamping groove, and the edges of the curtain wall body are movably clamped in the clamping groove.
[0011] Furthermore, a vertical plate is fixedly provided on the top of the connecting block, and displacement sensors are fixedly installed on both sides of the vertical plate.
[0012] Furthermore, a handle is fixedly connected between the two clamping blocks.
[0013] The working principle and use principle of the utility model are as follows: the device first clamps the entire device on the curtain wall body through the clamping assembly, and a first telescopic spring is provided in the clamping assembly. The first telescopic spring can not only increase the clamping effect of the curtain wall body, but also can clamp curtain wall bodies of various sizes. Then, the threaded rod is controlled to rotate by the driving motor in the translation assembly, and the rotating threaded rod drives the installation assembly connected to it to move on the surface of the curtain wall body. During the movement, the detection assembly provided in the installation assembly compresses the second telescopic spring when it contacts and fits with the surface of the curtain wall body. When the component moves left and right, if the detection component encounters a raised or recessed position in the curtain wall body, the second telescopic spring will release or compress the elastic force to a certain extent according to the degree of the projection or recess of the curtain wall body, so that the detection wheel in the detection component can fit the surface of the curtain wall body as much as possible. At the same time, when the detection wheel moves to the concave and convex part of the curtain wall body, the detection wheel will move up and down following the concave and convex shape, and at the same time, the display board on its top will also be raised and lowered as the detection wheel moves on the uneven surface of the curtain wall body. The displacement sensor can detect the movement trajectory of multiple display boards, thereby realizing the detection of the flatness of the curtain wall body.
[0014] Compared with the prior art, the beneficial effects of the present invention are: the device can not only increase the clamping effect of the curtain wall body through the clamping component, but also enable the device to perform clamping detection on curtain wall bodies of various sizes. The combination of the translation component and the installation component enables it to automatically detect the curtain wall body. At the same time, the multiple detection components set in the installation component effectively increase the detection efficiency of the device. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 This is a schematic diagram of the overall structure of a building curtain wall construction flatness detection device of the utility model;
[0016] Figure 2 This is a schematic structural diagram of a clamping component and a translation component of a building curtain wall construction flatness detection device according to the present invention;
[0017] Figure 3 This is a cross-sectional view of the installation box structure of a building curtain wall construction flatness detection device of the utility model;
[0018] Figure 4 The utility model is a schematic diagram of the detection wheel structure of a building curtain wall construction flatness detection device.
[0019] Explanation of the accompanying reference numerals: 1. Curtain wall body; 2. Clamping assembly; 21. Telescopic plate; 22. Stretching plate; 23. Block; 24. Slide; 25. First telescopic spring; 26. Slot; 3. Translation assembly; 31. Horizontal plate; 32. Moving slot; 33. Threaded rod; 34. Drive motor; 4. Mounting assembly; 41. Mounting box; 42. Connecting block; 43. Threaded hole; 44. Partition; 45. Limiting slot; 46. Through hole; 51. Detection wheel; 52. Rotating shaft; 53. Bearing sleeve; 54. Display board; 55. Connecting rod; 56. Second telescopic spring; 6. Vertical plate; 7. Displacement sensor; 8. Handle. DETAILED DESCRIPTION
[0020] according to Figure 1 As shown, a building curtain wall construction flatness detection device includes a curtain wall body 1, both ends of the curtain wall body 1 are movably connected with a clamping component 2, the clamping component 2 is fixedly connected to a translation component 3, the translation component 3 is slidably provided with an installation component 4, and a plurality of detection components are arranged in the installation component 4.
[0021] In specific implementation, the device clamps the curtain wall body 1 through two clamping components 2, and then controls the installation component 4 to move left and right on the surface of the curtain wall body 1 through the translation component 3. During the movement of the installation component 4, the multiple detection components arranged in the installation component 4 can be used to detect the flatness of the curtain wall body 1 when the translation component 3 controls the installation component 4 to move from left to right, thereby effectively increasing the detection efficiency of the device.
[0022] according to Figure 2 As shown, the translation assembly 3 includes a transverse plate 31 and a threaded rod 33. Both ends of the transverse plate 31 are fixedly connected to the clamping assembly 2. A movable groove 32 is opened on the transverse plate 31. One end of the threaded rod 33 is rotatably set in the movable groove 32. A driving motor 34 is fixedly set on one side of the transverse plate 31. The other end of the threaded rod 33 passes through the movable groove 32 and is fixedly connected to the output end of the driving motor 34. The connecting block 42 is slidably set in the movable groove 32. A first telescopic spring is fixedly connected between the telescopic plate 21 and the slide groove 24. 25. The threaded hole 43 on the movable block is rotatably set on the threaded rod 33. The clamping assembly 2 includes a telescopic plate 21 and two stretching plates 22. Both ends of the telescopic plate 21 are provided with a slide groove 24. One end of the two stretching plates 22 is respectively slidably set in the slide groove 24 at both ends of the telescopic plate 21. The other ends of the two stretching plates 22 are fixedly provided with a clamping block 23. The inner side of the clamping block 23 is provided with a clamping groove 26. The edges of the curtain wall body 1 are movably clamped in the clamping groove 26; a handle 8 is fixedly connected between the two clamping blocks 23.
[0023] When the cam 32 is in the state of being moved, the cam 32 is moved in the direction of rotation, and the cam 32 is moved in the direction of rotation.
[0024] according to Figure 3 and Figure 4 As shown, the installation component 4 includes an installation box 41, a connecting block 42 is fixedly provided on the top of the installation box 41, a threaded hole 43 is provided on the connecting block 42, the installation box 41 is slidably set on the translation component 3 through the connecting block 42 and the threaded hole 43, a plurality of partitions 44 are fixedly provided in the installation box 41, and limiting grooves 45 are provided on both sides of the partitions 44, and through holes 46 are provided on the top of the limiting grooves 45. The detection component is slidably set in the limiting grooves 45 and the installation box 41; a vertical plate 6 is fixedly provided on the top of the connecting block 42, and both sides of the vertical plate 6 are A displacement sensor 7 is fixedly installed, and the detection component includes a detection wheel 51. A rotating shaft 52 is fixedly set on both sides of the detection wheel 51. A bearing sleeve 53 is fixedly sleeved on the rotating shaft 52. The bearing sleeve 53 is slidably set in the limit groove 45. A connecting rod 55 is fixedly set on the top of the bearing sleeve 53. A display board 54 is fixedly set on the connecting rod 55 through the through hole 46. A second telescopic spring 56 is sleeved on the connecting rod 55. One end of the second telescopic spring 56 is fixedly connected to the top of the bearing sleeve 53, and the other end is fixedly connected to the top of the limit groove 45.
[0025] In a specific implementation, a plurality of partitions 44 are provided in the installation box 41, and a detection wheel 51 is rotatably provided between every two partitions 44, and the detection wheels 51 are slidably set in the limit grooves 45 between the partitions 44 through the bearing sleeves 53 at both ends, and the connecting rods 55 fixedly connected to the tops of the bearing sleeves 53 pass through the installation box 41 and are connected to the display board 54. When in use, the second telescopic spring 56 is used to make the detection wheel 51 fit as much as possible with the surface of the curtain wall body 1. When the installation box 41 is moving, a plurality of detection wheels 51 roll on the surface of the curtain wall body 1 at the same time. When the detection wheel 51 encounters the concave and convex part of the curtain wall body 1, the second telescopic spring 56 will adjust according to the curtain wall body 1. The degree of convexity or concavity of the curtain wall body 1 is determined by releasing or compressing the elastic force to a certain extent, so that the detection wheel 51 is always in contact with the surface of the curtain wall body 1. At this time, when the detection wheel 51 moves to the concave and convex part of the surface of the curtain wall body 1, the detection wheel 51 is affected by the concave and convex part to move up and down. The up and down moving detection wheel 51 drives the display board 54 set on the top of the installation box 41 to move up and down. At this time, the flatness of the surface of the curtain wall body 1 can be understood by manually observing the display board 54. At the same time, the LK-G5000 model displacement sensor 7 can be used to monitor the up and down movement trajectory and height difference of multiple display boards 54 in real time, thereby more accurately detecting the flatness of the curtain wall body 1.
Claims
1. A building curtain wall construction flatness detection device, comprising a curtain wall body (1), characterized in that: Both ends of the curtain wall body (1) are movably connected with a clamping assembly (2), a translation assembly (3) is fixedly connected to the clamping assembly (2), a mounting assembly (4) is slidably arranged on the translation assembly (3), and a plurality of detection assemblies are arranged in the mounting assembly (4); The mounting assembly (4) includes a mounting box (41), a connecting block (42) is fixedly provided on the top of the mounting box (41), a threaded hole (43) is provided on the connecting block (42), the mounting box (41) is slidably provided on the translation assembly (3) through the connecting block (42) and the threaded hole (43), a plurality of partitions (44) are fixedly provided in the mounting box (41), both sides of the partitions (44) are provided with limiting grooves (45), the top of the limiting grooves (45) is provided with a through hole (46), and the detection assembly is slidably provided in the limiting grooves (45) and the mounting box (41); The detection assembly includes a detection wheel (51), a rotating shaft (52) is fixedly provided on both sides of the detection wheel (51), a bearing sleeve (53) is fixedly provided on the rotating shaft (52), the bearing sleeve (53) is slidably provided in the limiting groove (45), a connecting rod (55) is fixedly provided on the top of the bearing sleeve (53), the connecting rod (55) passes through the through hole (46) and is fixedly provided with a display board (54), a second telescopic spring (56) is sleeved on the connecting rod (55), one end of the second telescopic spring (56) is fixedly connected to the top of the bearing sleeve (53), and the other end is fixedly connected to the top of the limiting groove (45).
2. The device for detecting the flatness of a building curtain wall according to claim 1, wherein: The translation assembly (3) includes a transverse plate (31) and a threaded rod (33), both ends of the transverse plate (31) are fixedly connected to the clamping assembly (2), a movable groove (32) is provided through the transverse plate (31), one end of the threaded rod (33) is rotatably arranged in the movable groove (32), a driving motor (34) is fixedly arranged on one side of the transverse plate (31), the other end of the threaded rod (33) passes through the movable groove (32) and is fixedly connected to the output end of the driving motor (34), a connecting block (42) is slidably arranged in the movable groove (32), and a threaded hole (43) on the movable block is rotatably arranged on the threaded rod (33).
3. A building curtain wall construction flatness detection device according to claim 1 or 2, characterized in that: The clamping assembly (2) includes a telescopic plate (21) and two stretching plates (22), both ends of the telescopic plate (21) are provided with a slide groove (24), one end of the two stretching plates (22) is respectively slidably arranged in the slide groove (24) at both ends of the telescopic plate (21), a first telescopic spring (25) is fixedly connected between the telescopic plate (21) and the slide groove (24), and the other ends of the two stretching plates (22) are fixedly provided with a clamping block (23), the inner side of the clamping block (23) is provided with a clamping groove (26), and the edges of the curtain wall body (1) are movably clamped in the clamping groove (26).
4. A building curtain wall construction flatness detection device according to claim 1 or 2, characterized in that: A vertical plate (6) is fixedly provided on the top of the connecting block (42), and displacement sensors (7) are fixedly installed on both sides of the vertical plate (6).
5. The device for detecting the flatness of a building curtain wall according to claim 3, wherein: A vertical plate (6) is fixedly provided on the top of the connecting block (42), and displacement sensors (7) are fixedly installed on both sides of the vertical plate (6).
6. The device for detecting the flatness of a building curtain wall according to claim 3, wherein: A handle (8) is fixedly connected between the two clamping blocks (23).
7. The device for detecting the flatness of a building curtain wall according to claim 5, wherein: A handle (8) is fixedly connected between the two clamping blocks (23).
Citation Information
Patent Citations
Building curtain wall construction flatness detection device
CN221259850U