A building curtain wall detection device
By designing a building curtain wall detection equipment including positioning modules, detection panels and telescopic mechanisms, the accuracy problem caused by thickness differences during curved curtain wall detection in the prior art is solved, and a higher detection accuracy and a wider detection range are achieved.
Patent Information
- Application Number
- CN202510011935.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-06
- Publication Date
- 2025-05-06
- Estimated Expiration
- 2045-01-06
AI Technical Summary
When detecting curved curtain walls, the thickness of the curtain wall corresponding to the contact point is different due to the feeding of the top rod or vertical rod along a straight line, and when it abuts with the curved curtain wall, there is a difference in the thickness of the curtain wall corresponding to the contact point, which affects the detection accuracy.
Design a building curtain wall inspection equipment, including a base, a positioning disk, a bearing plate, a positioning module, a detection plate and a telescopic mechanism. The curved curtain wall is positioned through the positioning module, and the detection plate and the telescopic mechanism are used to make the detection probe abut the curved curtain wall, and the angle of the detection plate is adjusted by rotating the module to ensure that the contact points of each detection probe and the horizontal connection line of the center of the curved curtain wall are the same straight line.
It is realized that when detecting curved curtain walls, the thickness of the curtain wall at the contact point of each detection probe is always the actual thickness, avoiding detection deviations caused by thickness differences and improving detection accuracy. At the same time, by adjusting the angle of the detection plate multiple times, multiple directions of the curved curtain wall can be detected, and the detection range is wider and more uniform.
Smart Images

Figure CN119394583B_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of curtain wall detection, and in particular to a building curtain wall detection device. Background Art
[0002] The curtain wall is the exterior wall of a building. It is non-load-bearing and is hung like a curtain. It is a lightweight wall with decorative effects commonly used in modern large and high-rise buildings. It is composed of panels and a supporting structure system. The building curtain wall has wind pressure deformation, rainwater leakage, air infiltration, in-plane deformation, thermal properties (insulation, heat insulation), air sound insulation and impact resistance. In order to detect the wind pressure resistance of the building curtain wall, it is generally necessary to conduct a wind pressure capacity test on the building curtain wall.
[0003] In order to improve the decorative beauty of the curtain wall, curved curtain walls are usually used to connect the flat curtain walls on both sides at the corners of the building. For details, please refer to the attached drawings in the specification. Figure 1 This type of curved curtain wall is usually a quarter-circle structure.
[0004] In the prior art, in order to ensure the structural stability of such curved curtain walls, it is also necessary to perform a compression test on them. For example, the patent document with the publication number CN118090134B discloses a wind pressure resistance on-site detection device for building curtain walls, and also discloses that when performing wind pressure resistance detection on building curtain walls with a curvature, an inclination or a protruding shape, the distance between each top rod and the depth of each top rod can be adjusted according to the actual size and shape of the curtain wall;
[0005] For example, the patent document with the announcement number CN213714229U discloses a lifting detection device for curved glass, and also discloses that it includes a fixed frame, the lower end of which is provided with a lifting upper plate and a lifting lower plate, the lifting lower plate is provided with a retractable vertical rod, the lower end of the vertical rod is provided with a head, the lifting upper plate is provided with a retractable detection square rod, the vertical rod is connected to the detection square rod, and the vertical rod and the detection square rod are both multiple;
[0006] In the actual application of the two prior arts, since the top rod or the vertical rod always feeds along a straight line, when it contacts the curved curtain wall, there is a difference in the thickness of the curtain wall corresponding to the contact point between the two. For details, please refer to the accompanying drawings. Figure 2 , when the top rod abutting the center of the curved curtain wall applies force, the corresponding curtain wall thickness is recorded as a, which is also the actual thickness of the curved curtain wall. When the top rod abutting the two sides of the center of the curved curtain wall applies force, the corresponding curtain wall thickness is recorded as b, which is calculated by Figure 2 From the structure of the enlarged part, it can be seen that the thickness b is greater than the thickness a. Therefore, even if the forces applied by each top rod are the same, the actual stress conditions at each stress point of the curved curtain wall are different, which in turn affects the accuracy of the detection. Summary of the invention
[0007] The purpose of the present invention is to provide a building curtain wall detection device to solve the following technical problems:
[0008] Currently, when testing curved curtain walls, even if the forces applied by each top rod are the same, the actual stress conditions at each stress point of the curved curtain wall are different, which in turn affects the accuracy of the test.
[0009] The purpose of the present invention can be achieved through the following technical solutions:
[0010] A building curtain wall detection device comprises a base, a positioning plate is fixedly arranged on the base, two groups of bearing plates for bearing the curved curtain wall are fixedly arranged on the side edges of the positioning plate, and the bearing plates on both sides are arranged perpendicularly to each other;
[0011] It also includes a positioning module arranged on the bearing plate, which is used to position the curved curtain wall;
[0012] The first detection plate and the second detection plate are respectively arranged on the carrying plates at both sides, and a plurality of groups of detection probes are fixedly arranged in an array on the side of the first detection plate and the second detection plate away from the axis of the positioning plate, and the side of the first detection plate and the second detection plate close to the axis of the positioning plate is respectively fixed to the driving end of the telescopic mechanism;
[0013] The positioning plate is fixedly provided with a support shaft, and the support shaft is respectively provided with a first rotating module for driving the first detection plate to rotate around the axis of the support shaft and a second rotating module for driving the second detection plate to rotate around the axis of the support shaft.
[0014] Preferably, the first rotating module comprises a first sleeve rotatably arranged on the support shaft, a first gear is fixedly arranged on the first sleeve, a first U-shaped frame is fixedly arranged on a side of the first sleeve away from the support shaft, a positioning plate is fixedly arranged on a side of the first U-shaped frame away from the support shaft, and a telescopic mechanism connected to the first detection plate is fixed on one side of the positioning plate;
[0015] The first gear is meshed with the first rack, and the first rack is connected to a driving part that drives it to move linearly in a horizontal direction.
[0016] Preferably, the second rotating module comprises a second sleeve rotatably arranged on the support shaft, a second gear is fixedly arranged on the second sleeve, a second U-shaped frame is fixedly arranged on a side of the second sleeve away from the support shaft, a positioning plate is fixedly arranged on a side of the second U-shaped frame away from the support shaft, and a telescopic mechanism connected to the second detection plate is fixed on one side of the positioning plate;
[0017] The second gear is meshed with the second rack, and the second rack is connected to a driving part that drives it to move linearly in a horizontal direction.
[0018] Preferably, the positioning module includes baffles respectively fixedly arranged on the carrying plates.
[0019] Preferably, L-shaped limit plates are slidably arranged on the bearing plates on both sides, and the L-shaped limit plates are close to the positioning plate to form limit grooves for clamping with the two ends of the curved curtain wall;
[0020] Wherein, the L-shaped limiting plates on both sides are connected to the adjusting parts which synchronously drive them to move toward or away from the positioning plate.
[0021] Preferably, a slide groove is provided on the baffle plate, and a sliding seat slidably connected to the slide groove is fixedly arranged at the bottom of the L-shaped limiting plate.
[0022] Preferably, a support plate is fixedly arranged on one side of the positioning plate, and the adjustment part includes a driving cylinder fixedly arranged on the support plate, the driving end of the driving cylinder is fixed to the driving seat, and driving rods are rotatably arranged at both ends of the driving seat, and the other ends of the driving rods on both sides are respectively hinged to the adjusting rods, and the adjusting rods are fixed to one side of the L-shaped limiting plate.
[0023] Preferably, the pushing part includes a limit frame fixedly arranged on the support plate, a servo motor is fixedly arranged on the side of the limit frame away from the support shaft, the output end of the servo motor is fixed to a screw rod, a nut is spirally sleeved on the screw rod, connecting plates are fixedly arranged on both sides of the nut, one side of the connecting plate is fixed to the first rack through a first driving frame, and the other side of the connecting plate is fixed to the second rack through a second driving frame.
[0024] Preferably, the first sleeve is arranged on a side of the first support shaft away from the positioning plate, the second sleeve is arranged on a side of the first support shaft close to the positioning plate, and the first rack and the second rack are arranged in parallel and staggered manner;
[0025] The first rack is arranged on a side of the first gear close to the second detection plate, and the second rack is arranged on a side of the second gear close to the first detection plate.
[0026] A detection method for building curtain wall detection equipment comprises the following steps:
[0027] S1. Overlap both sides of the curved curtain wall on the bearing plate, and the two side edges of the curved curtain wall are respectively in contact with the baffle plate;
[0028] S2. Start the driving cylinder to drive the driving seat to move. The driving seat drives the adjusting rod to move through the driving rods on both sides. The adjusting rod drives the L-shaped limit plate to move synchronously, so that the two ends of the curved curtain wall are embedded in the limit grooves.
[0029] S3, the first rotating module and the second rotating module drive the first detection plate and the second detection plate to rotate to the detection position on one side of the curved curtain wall, and the telescopic mechanism drives the detection plate to move toward the curved curtain wall, so that the detection probe abuts against the curved curtain wall, and the pressure detection value is obtained through the detection probe;
[0030] S4. A detector or a camera device detects the deformation of the curved curtain wall;
[0031] S5, the first rotating module and the second rotating module adjust the angles of the first detection plate and the second detection plate multiple times to detect multiple directions of the curved curtain wall.
[0032] Beneficial effects of the present invention:
[0033] After the curved curtain wall of the present invention is positioned, the first detection plate and the second detection plate are first driven to rotate to the position to be detected on one side of the curved curtain wall by the first rotating module and the second rotating module, and then the detection plate is driven to move toward the curved curtain wall by the telescopic mechanism, so that the detection probe abuts against the curved curtain wall. Since the center of the curved curtain wall is located on the axis line of the positioning plate, the horizontal connection line between the abutment point of each detection probe and the center of the curved curtain wall and the horizontal connection line with the axis line of the positioning plate are the same straight line, and the straight line is perpendicular to the tangent of the curved curtain wall at the abutment point. Therefore, when the telescopic mechanism applies a force to the abutment point, the thickness of the curtain wall subjected to force at the abutment point is always the actual thickness of the curved curtain wall, and there will be no deviation, and the detection accuracy is higher.
[0034] The first detection plate and the second detection plate of the present invention can rotate around the axis of the support shaft, so the present invention can adjust the angles of the first detection plate and the second detection plate multiple times through the first rotating module and the second rotating module to detect multiple directions of the curved curtain wall, and the detection range is wider and more uniform, and the detection accuracy is improved. The present invention does not need to adjust the spacing of the top rods in real time like the prior art, and effectively improves the detection efficiency;
[0035] In the present invention, after the curved curtain wall is placed on the bearing plates on both sides and abutted against the baffle plates, the adjustment part drives the L-shaped limit plates on both sides to move toward the direction of the positioning plate, so that the two ends of the curved curtain wall can be embedded in the limit grooves. On the one hand, the positioning of the curved curtain wall can be improved. On the other hand, when the first detection plate and the second detection plate apply force to the curved curtain wall, the L-shaped limit plates can limit the curved curtain wall to prevent the curved curtain wall from sliding, and the stability is higher. BRIEF DESCRIPTION OF THE DRAWINGS
[0036] The present invention will be further described below in conjunction with the accompanying drawings.
[0037] Figure 1 It is a structural diagram of the curved curtain wall installation;
[0038] Figure 2 It is a structural schematic diagram of the existing technology for pressure detection of curved curtain wall;
[0039] Figure 3It is a structural schematic diagram of a building curtain wall detection device of the present invention when detecting a curved curtain wall;
[0040] Figure 4 It is a structural schematic diagram of a building curtain wall detection device of the present invention;
[0041] Figure 5 It is a structural schematic diagram of a bearing plate in a building curtain wall detection device of the present invention;
[0042] Figure 6 It is a structural schematic diagram of a rotating module in a building curtain wall detection device of the present invention;
[0043] Figure 7 It is a structural schematic diagram of a telescopic mechanism in a building curtain wall detection device of the present invention;
[0044] Figure 8 The utility model is a schematic diagram of the top view structure of a building curtain wall detection device of the present invention.
[0045] In the figure: 1, base; 2, curved curtain wall; 3, bearing plate; 4, first detection plate; 5, first rotating module; 6, driving cylinder; 101, positioning plate; 102, support shaft; 103, support plate; 104, limit frame; 301, baffle; 302, slide groove; 303, L-shaped limit plate; 304, limit groove; 305, adjustment rod; 306, driving rod; 307, driving seat; 308, slide seat; 401, second detection plate; 402, connecting plate ; 403, detection probe; 404, telescopic mechanism; 405, positioning plate; 406, second U-shaped frame; 407, second gear; 408, second sleeve; 501, second rotating module; 601, servo motor; 602, screw; 603, nut; 604, first drive frame; 605, second drive frame; 606, first rack; 607, second rack; 608, first sleeve; 609, first gear; 610, first U-shaped frame. DETAILED DESCRIPTION
[0046] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in 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 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.
[0047] Example 1
[0048] See also Figure 3 and Figure 8As shown, the present invention is a building curtain wall detection equipment, including a base 1, a positioning plate 101 is fixedly arranged on the base 1, and two groups of bearing plates 3 for supporting the curved curtain wall 2 are fixedly arranged on the side edges of the positioning plate 101; specifically, the bearing plates 3 on both sides are arranged perpendicular to each other, and before the curved curtain wall 2 is detected, the curved curtain wall 2 is placed on the bearing plates 3 on both sides to achieve a supporting effect.
[0049] In addition, since the bearing plate 3 of this embodiment has a certain length, it can bear the curved curtain walls 2 with different radii, and thus can realize pressure detection of the curved curtain walls 2 with different radii, and has a wider application range.
[0050] It also includes a positioning module arranged on the supporting plate 3, which is used to position the curved curtain wall 2; specifically, after the curved curtain wall 2 is placed on the supporting plate 3, it is positioned and fixed by the positioning module to avoid deviation during the detection process. After the positioning is completed, the center of the curved curtain wall 2 is located on the axis line of the positioning plate 101.
[0051] See also Figure 4 and Figure 6-Figure 7 , a first detection plate 4 and a second detection plate 401 are respectively arranged on the two side bearing plates 3, and a plurality of detection probes 403 are fixedly arranged in an array on the side of the first detection plate 4 and the second detection plate 401 away from the axis of the positioning plate 101, and the first detection plate 4 and the second detection plate 401 are respectively fixed to the driving end of the telescopic mechanism 404 on the side close to the axis of the positioning plate 101; it can be explained that, in this embodiment, when the pressure detection is performed on the curved curtain wall 2, the telescopic mechanism 404 can be used to drive the detection plate to move toward the direction of the curved curtain wall 2, so that the detection probe 403 is in contact with the curved curtain wall 2, and the telescopic mechanism 404 can apply a force to the curved curtain wall 2 to simulate wind pressure;
[0052] Correspondingly, the telescopic mechanism 404 of this embodiment can be a hydraulic cylinder or an electric telescopic rod, etc., which is not limited in this embodiment, so as to drive the detection plate to move in a straight line. Among them, the detection probe 403 can adopt a pressure sensor. When the detection probe 403 abuts against the curved curtain wall 2, pressure is applied through the telescopic mechanism 404. The pressure size can be displayed in real time through the detection probe 403, and the detection is more intuitive.
[0053] See also Figure 3 and Figure 4, a support shaft 102 is fixedly arranged on the positioning plate 101, and a first rotating module 5 for driving the first detection plate 4 to rotate around the axis of the support shaft 102 and a second rotating module 501 for driving the second detection plate 401 to rotate around the axis of the support shaft 102 are arranged on the support shaft 102; it can be explained that after the curved curtain wall 2 is positioned, the first detection plate 4 and the second detection plate 401 are first driven to rotate to the position to be detected on one side of the curved curtain wall 2 by the first rotating module 5 and the second rotating module 501, and then the detection plate is driven toward the curved surface by the telescopic mechanism 404. The curtain wall 2 moves in the direction of the detection probe 403 so that the detection probe 403 abuts against the curved curtain wall 2. Since the center of the curved curtain wall 2 is located on the axis of the positioning plate 101, the horizontal connection line between the abutment point of each detection probe 403 and the center of the curved curtain wall 2 and the horizontal connection line with the axis of the positioning plate 101 are the same straight line, and the straight line is perpendicular to the tangent of the curved curtain wall 2 at the abutment point. Therefore, when the telescopic mechanism 404 applies a force to the abutment point, the thickness of the curtain wall subjected to the force at the abutment point is always the actual thickness of the curved curtain wall 2, and there will be no deviation, and the detection accuracy is higher.
[0054] At the same time, the first detection plate 4 and the second detection plate 401 of the present embodiment can rotate around the axis of the support shaft 102. Therefore, the present embodiment can adjust the angles of the first detection plate 4 and the second detection plate 401 multiple times through the first rotating module 5 and the second rotating module 501 to detect multiple directions of the curved curtain wall 2. The detection range is wider and more uniform, and the detection accuracy is improved. The present embodiment does not need to adjust the spacing of the top rods in real time like the prior art, which effectively improves the detection efficiency.
[0055] It should also be noted that, during the detection process, the present embodiment can detect the deformation degree of the curved curtain wall 2 by means of a detector or a camera device.
[0056] Example 2
[0057] Based on Example 1, please refer to Figure 4-Figure 6The first rotating module 5 includes a first sleeve 608 rotatably arranged on the support shaft 102, a first gear 609 fixedly arranged on the first sleeve 608, a first U-shaped frame 610 fixedly arranged on the side of the first sleeve 608 away from the support shaft 102, a positioning plate 405 fixedly arranged on the side of the first U-shaped frame 610 away from the support shaft 102, and a telescopic mechanism 404 connected to the first detection plate 4 is fixed on one side of the positioning plate 405, wherein the first gear 609 is meshed with the first rack 606, and the first rack 606 is meshed with the driving It is connected to a pushing part that performs linear motion in a horizontal direction; it can be explained that, in this embodiment, the first rack 606 is first driven by the pushing part to perform linear motion in a horizontal direction, and the first rack 606 can synchronously drive the first gear 609 to rotate during the movement, and then the first sleeve 608 is driven to rotate on the support shaft 102 through the first gear 609. The first sleeve 608 can drive the positioning plate 405 and the telescopic mechanism 404 to rotate through the first U-shaped frame 610, thereby driving the first detection plate 4 to rotate.
[0058] The second rotating module 501 includes a second sleeve 408 rotatably arranged on the support shaft 102, a second gear 407 is fixedly arranged on the second sleeve 408, a second U-shaped frame 406 is fixedly arranged on the side of the second sleeve 408 away from the support shaft 102, a positioning plate 405 is fixedly arranged on the side of the second U-shaped frame 406 away from the support shaft 102, and a telescopic mechanism 404 connected to the second detection plate 401 is fixed on one side of the positioning plate 405, wherein the second gear 407 is meshed with the second rack 607, and the second rack 607 is meshed with the driving It is connected to a pushing part that performs linear motion in a horizontal direction; it can be explained that, in this embodiment, the second rack 607 is first driven by the pushing part to perform linear motion in a horizontal direction, and the second rack 607 can synchronously drive the second gear 407 to rotate during the movement, and then the second sleeve 408 is driven to rotate on the support shaft 102 through the second gear 407, and the second sleeve 408 can drive the positioning plate 405 and the telescopic mechanism 404 to rotate through the second U-shaped frame 406, thereby driving the second detection plate 401 to rotate.
[0059] Also, see Figure 4-Figure 6 The first sleeve 608 is arranged on the side of the first support shaft 102 away from the positioning plate 101, the second sleeve 408 is arranged on the side of the first support shaft 102 close to the positioning plate 101, and the first rack 606 and the second rack 607 are arranged in parallel and staggered manner; wherein, the first rack 606 is arranged on the side of the first gear 609 close to the second detection plate 401, and the second rack 607 is arranged on the side of the second gear 407 close to the first detection plate 4; specifically, when the first detection plate 4 and the second detection plate 401 are driven to rotate in a direction approaching each other, the setting orientation of the first rack 606 and the second rack 607 can avoid interfering with the movement of the first U-shaped frame 610 and the second U-shaped frame 406.
[0060] As a further solution of this embodiment, please refer to Figure 3-Figure 5 The positioning module includes baffles 301 respectively fixedly arranged on the supporting plates 3; specifically, when the curved curtain wall 2 is placed, both sides of the curved curtain wall 2 are overlapped on the supporting plates 3, and both side edges of the curved curtain wall 2 are respectively abutted against the baffles 301. The baffles 301 can limit the curved curtain wall 2 on the one hand, and can position the curved curtain wall 2 on the other hand to ensure that the center of the curved curtain wall 2 is located on the axis line of the positioning plate 101.
[0061] For further information, see Figure 1 and Figure 3 When the first detection plate 4 and the second detection plate 401 apply a force to the curved curtain wall 2, in order to improve the stability of the curved curtain wall 2, in this embodiment, L-shaped limit plates 303 are slidably arranged on the two side bearing plates 3, and the L-shaped limit plates 303 are close to the direction of the positioning plate 101 to form limit grooves 304 for clamping with the two ends of the curved curtain wall 2, wherein the L-shaped limit plates 303 on both sides are connected to the adjustment part that synchronously drives them to move toward or away from the positioning plate 101; it can be explained that in the initial state, the adjustment part drives the L-shaped limit plates 303 on both sides. 03 is located far away from the positioning plate 101. After the curved curtain wall 2 is placed on the supporting plates 3 on both sides and abutted against the baffle 301, the adjustment part drives the L-shaped limit plates 303 on both sides to move toward the direction of the positioning plate 101, so that the two ends of the curved curtain wall 2 can be embedded in the limit grooves 304. On the one hand, the positioning of the curved curtain wall 2 can be improved. On the other hand, when the first detection plate 4 and the second detection plate 401 apply force to the curved curtain wall 2, the L-shaped limit plates 303 can limit the curved curtain wall 2 to prevent the curved curtain wall 2 from sliding, and the stability is higher.
[0062] In this embodiment, please refer to Figure 3 and Figure 5 In order to improve the sliding stability of the L-shaped limit plate 303, a slide groove 302 is opened on the baffle 301, and a slide seat 308 slidably connected to the slide groove 302 is fixedly arranged at the bottom of the L-shaped limit plate 303; specifically, when the L-shaped limit plate 303 moves, it can synchronously drive the slide seat 308 to slide in the slide groove 302, which can guide the movement of the L-shaped limit plate 303 on the one hand, and improve its stability during movement on the other hand.
[0063] Specifically, a support plate 103 is fixedly arranged on one side of the positioning disk 101, and the adjustment part includes a driving cylinder 6 fixedly arranged on the support plate 103, and the driving end of the driving cylinder 6 is fixed to the driving seat 307, and driving rods 306 are rotatably arranged at both ends of the driving seat 307, and the other ends of the driving rods 306 on both sides are respectively hinged to the adjusting rods 305, and the adjusting rods 305 are fixed on one side of the L-shaped limiting plate 303; it can be explained that when the L-shaped limiting plate 303 is driven to move, the driving cylinder 6 is started to drive the driving seat 307 to move, and the driving seat 307 drives the adjusting rod 305 to move through the driving rods 306 on both sides, and the adjusting rod 305 can drive the L-shaped limiting plate 303 to move synchronously.
[0064] In this embodiment, please refer to Figure 4-Figure 6 The pushing part includes a limit frame 104 fixedly arranged on the support plate 103, a servo motor 601 is fixedly arranged on one side of the limit frame 104 away from the support shaft 102, an output end of the servo motor 601 is fixed to a screw rod 602, a nut 603 is spirally sleeved on the screw rod 602, connecting plates 402 are fixedly arranged on both sides of the nut 603, one side of the connecting plate 402 is fixed to the first rack 606 through a first driving frame 604, and the other side of the connecting plate 402 is fixed to the second rack 607 through a second driving frame 605; it can be explained that, in this embodiment, when driving the first detection plate 4 and the second detection plate 401 to move synchronously, the servo motor 601 is started to drive the screw rod 602 to rotate, and the nut 603 can drive the first driving frame 604 and the second driving frame 605 to move through the connecting plate 402 during the movement of the screw rod 602, thereby driving the first rack 606 and the second rack 607 to move.
[0065] In addition, this embodiment can synchronously drive the first rack 606 and the second rack 607 to move while driving the connecting plate 402 to ensure that the first detection plate 4 and the second detection plate 401 can achieve synchronous rotation, with higher stability.
[0066] A detection method for building curtain wall detection equipment comprises the following steps:
[0067] See also Figure 3-Figure 5 , S1, overlap both sides of the curved curtain wall 2 on the bearing plate 3, and the two side edges of the curved curtain wall 2 are respectively in contact with the baffle 301;
[0068] S2, start the driving cylinder 6 to drive the driving seat 307 to move, the driving seat 307 drives the adjusting rod 305 to move through the driving rods 306 on both sides, and the adjusting rod 305 drives the L-shaped limiting plate 303 to move synchronously, so that the two ends of the curved curtain wall 2 are embedded in the limiting groove 304;
[0069] S3, the first rotating module 5 and the second rotating module 501 drive the first detection plate 4 and the second detection plate 401 to rotate to the detection position on one side of the curved curtain wall 2, and the telescopic mechanism 404 drives the detection plate to move toward the curved curtain wall 2, so that the detection probe 403 abuts against the curved curtain wall 2, and the pressure detection value is obtained through the detection probe 403;
[0070] S4, a detector or a camera device detects the deformation of the curved curtain wall 2;
[0071] S5 , the first rotating module 5 and the second rotating module 501 adjust the angles of the first detection plate 4 and the second detection plate 401 multiple times to detect multiple directions of the curved curtain wall 2 .
[0072] In the description of the present invention, it should be understood that the terms "upper", "lower", "left", "right", etc. indicate directions or positional relationships based on the directions or positional relationships shown in the accompanying drawings, and are 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 direction, and a specific direction structure and operation, and therefore, cannot be understood as a limitation on the present invention. In addition, "first" and "second" are only for descriptive purposes, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of technical features indicated. Therefore, the features defined as "first" and "second" may explicitly or implicitly include one or more of the features. In the description of the present invention, unless otherwise specified, "multiple" means two or more.
[0073] In the description of the present invention, it should be noted that, unless otherwise clearly specified and limited, the terms "installed", "connected", "connected", etc. should be understood in a broad sense, for example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be a direct connection, or it can be an indirect connection through an intermediate medium, or it can be the internal communication of two components. For ordinary technicians in this field, the specific meanings of the above terms in the present invention can be understood according to specific circumstances.
[0074] The above is a detailed description of an embodiment of the present invention, but the content is only a preferred embodiment of the present invention and cannot be considered to limit the scope of implementation of the present invention. All equivalent changes and improvements made within the scope of the present invention should still fall within the scope of the patent coverage of the present invention.
Claims
1. A building curtain wall detection device, comprising a base (1), characterized in that: A positioning plate (101) is fixedly arranged on the base (1), and two groups of bearing plates (3) for bearing the curved curtain wall (2) are fixedly arranged on the side edges of the positioning plate (101), and the bearing plates (3) on both sides are arranged perpendicularly to each other; It also includes a positioning module arranged on the bearing plate (3) and used for positioning the curved curtain wall (2); A first detection plate (4) and a second detection plate (401) are respectively arranged on the carrier plates (3) on both sides; a plurality of groups of detection probes (403) are fixedly arranged in an array on the side of the first detection plate (4) and the second detection plate (401) away from the axis of the positioning plate (101); and the side of the first detection plate (4) and the second detection plate (401) close to the axis of the positioning plate (101) are respectively fixed to the driving end of the telescopic mechanism (404); The positioning plate (101) is fixedly provided with a support shaft (102), and the support shaft (102) is provided with a first rotating module (5) for driving the first detection plate (4) to rotate around the axis of the support shaft (102) and a second rotating module (501) for driving the second detection plate (401) to rotate around the axis of the support shaft (102). The first rotating module (5) comprises a first sleeve (608) rotatably provided on the support shaft (102), and a first gear (609) is fixedly provided on the first sleeve (608), and the first gear (609) is meshed with a first rack (606), and the first rack (606) is connected to a driving portion that drives it to perform linear motion in a horizontal direction. The second rotating module (501) comprises a second sleeve (408) rotatably provided on the support shaft (102), and a second gear (609) is fixedly provided on the second sleeve (408). The positioning plate (101) is provided with a support plate (103) fixedly arranged on one side of the positioning plate (101); the push portion comprises a limit frame (104) fixedly arranged on the support plate (103); a servo motor (601) is fixedly arranged on the side of the limit frame (104) away from the support shaft (102); an output end of the servo motor (601) is fixedly arranged on a screw rod (602); a nut (603) is spirally sleeved on the screw rod (602); connecting plates (402) are fixedly arranged on both sides of the nut (603); one side of the connecting plate (402) is fixedly arranged on the first rack (606) through the first drive frame (604); and the other side of the connecting plate (402) is fixedly arranged on the second rack (607) through the second drive frame (605).
2. A building curtain wall detection device according to claim 1, characterized in that: A first U-shaped frame (610) is fixedly arranged on a side of the first sleeve (608) away from the support shaft (102), a positioning plate (405) is fixedly arranged on a side of the first U-shaped frame (610) away from the support shaft (102), and a telescopic mechanism (404) connected to the first detection plate (4) is fixed on one side of the positioning plate (405).
3. A building curtain wall detection device according to claim 2, characterized in that: A second U-shaped frame (406) is fixedly arranged on a side of the second sleeve (408) away from the support shaft (102), a positioning plate (405) is fixedly arranged on a side of the second U-shaped frame (406) away from the support shaft (102), and a telescopic mechanism (404) connected to the second detection plate (401) is fixed on one side of the positioning plate (405).
4. A building curtain wall detection device according to claim 3, characterized in that: The positioning module comprises baffles (301) respectively fixedly arranged on the supporting plates (3).
5. A building curtain wall detection device according to claim 4, characterized in that: L-shaped limiting plates (303) are slidably arranged on the bearing plates (3) on both sides, and the L-shaped limiting plates (303) are close to the positioning plate (101) to form limiting grooves (304) for clamping with the two ends of the curved curtain wall (2); The L-shaped limiting plates (303) on both sides are connected to an adjusting portion that synchronously drives them to move towards or away from the positioning plate (101).
6. A building curtain wall detection device according to claim 5, characterized in that: The baffle plate (301) is provided with a sliding groove (302), and a sliding seat (308) slidably connected to the sliding groove (302) is fixedly arranged at the bottom of the L-shaped limiting plate (303).
7. A building curtain wall detection device according to claim 5, characterized in that: The adjustment portion comprises a driving cylinder (6) fixedly arranged on the support plate (103), the driving end of the driving cylinder (6) being fixed to the driving seat (307), driving rods (306) being rotatably arranged at both ends of the driving seat (307), the other ends of the driving rods (306) on both sides being hinged to the adjustment rods (305), and the adjustment rods (305) being fixed to one side of the L-shaped limiting plate (303).
8. The building curtain wall detection device according to claim 3, characterized in that: The first sleeve (608) is arranged on a side of the first support shaft (102) away from the positioning plate (101), the second sleeve (408) is arranged on a side of the first support shaft (102) close to the positioning plate (101), and the first rack (606) and the second rack (607) are arranged in parallel and offset; The first rack (606) is arranged on a side of the first gear (609) close to the second detection plate (401), and the second rack (607) is arranged on a side of the second gear (407) close to the first detection plate (4).
9. A building curtain wall detection device according to claim 8, characterized in that: The detection method of the detection device comprises the following steps: S1, overlapping both sides of the curved curtain wall (2) on the bearing plate (3), and abutting both side edges of the curved curtain wall (2) against the baffle plate (301) respectively; S2, starting the driving cylinder (6) to drive the driving seat (307) to move, the driving seat (307) drives the adjusting rod (305) to move through the driving rods (306) on both sides, and the adjusting rod (305) drives the L-shaped limiting plate (303) to move synchronously, so that the two ends of the curved curtain wall (2) are embedded in the limiting grooves (304); S3, the first rotating module (5) and the second rotating module (501) drive the first detection plate (4) and the second detection plate (401) to rotate to a position to be detected on one side of the curved curtain wall (2), and the telescopic mechanism (404) drives the detection plate to move in the direction of the curved curtain wall (2), so that the detection probe (403) abuts against the curved curtain wall (2), and a pressure detection value is obtained through the detection probe (403); S4, using a detector or a camera to detect the deformation of the curved curtain wall (2); S5, the first rotating module (5) and the second rotating module (501) adjust the angles of the first detection plate (4) and the second detection plate (401) multiple times, and detect multiple directions of the curved curtain wall (2).
Citation Information
Patent Citations
A wind pressure resistance on-site detection device for building curtain walls
CN118090134B
Lifting type detection device for curved glass
CN213714229U
Building curtain wall load testing device
CN118362410A
Aluminum alloy detection device
CN211718020U
Rapid positioning device for detecting light characteristics of curved-surface light guide plate
CN216050614U