High and large formwork cast-in-place construction monitoring and deformation early warning system based on logistics park
By using splicing components and traction components in cast-in-place construction of tall supporting formwork, the flatness and deformation of the supporting formwork are monitored and warned, and the problems of low efficiency and high cost in the existing technology are solved, and fast and accurate early warnings and prompts are achieved.
Patent Information
- Application Number
- CN202510383360.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-28
- Publication Date
- 2025-05-23
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
The prior art is inefficient and costly when monitoring and early warning of flatness and deformation in cast-in-place construction of tall supporting molds, and is prone to misjudgment.
The splicing components are used to fit the supporting formwork. The traction components are used to drive the monitoring and early warning components to move along the outer surface of the supporting formwork. The displacement change of the contact plate is used to determine the flatness and deformation, and quickly make early warnings and prompts.
Efficient monitoring and early warning are achieved, the misjudgment rate of human monitoring is reduced, and the cost is reduced by optimizing sensor layout.
Smart Images

Figure CN120027708A_ABST
Abstract
Description
Technical Field
[0001] The monitoring and early warning system of the present invention is specifically a cast-in-place construction monitoring and deformation early warning system for high and large formwork in a logistics park. Background Technique
[0002] In the construction of a logistics park, some large buildings are usually built, and high and large formwork is required. The high and large formwork support system refers to a formwork support system in the construction site of a construction project where the formwork support height of concrete components exceeds 8m, or the erection span exceeds 18m, or the total construction load is greater than 15kN / m2, or the concentrated line load is greater than 20kN / m.
[0003] During the installation of formwork and the pouring of cement, it is necessary to monitor its flatness and deformation. The existing manual monitoring method has low efficiency and is prone to misjudgment. The method of monitoring through sensors is more accurate, but because the formwork of high and large formwork is generally long, more sensors need to be arranged, resulting in higher costs. Summary of the Invention
[0004] Aiming at the deficiencies of the existing technology, the purpose of the present invention is to provide a cast-in-place construction monitoring and deformation early warning system for high and large formwork in a logistics park to solve the problems raised in the above background technique. The structure of the present invention is novel. The splicing components are used to install according to the length of the formwork and fit with the formwork. The traction components drive the monitoring and early warning components to move along the outer surface of the formwork. The flatness and deformation of the formwork are judged by the displacement change of the contact plate, so as to quickly give early warning and prompt, which is convenient for manual repair in time.
[0005] In order to achieve the above-mentioned purpose, the present invention is implemented through the following technical scheme: a high-rise formwork cast-in-place construction monitoring and deformation early warning system based on a logistics park, including a splicing component, the splicing component is installed on the outer surface of the formwork, and the splicing component includes a plurality of contact plates, two groups of the contact plates are spliced and installed, and the top and bottom of the contact plates are fixed with side plates, and driving components are arranged at both ends of the splicing component, and the driving component includes a movable angle frame, the outer end of the contact plate is provided with a screw hole, and the position of the movable angle frame corresponding to the screw hole is plugged with a locking bolt, and the locking bolt is threadedly inserted into the screw hole, and the movable angle frame Moving along the outermost side of the supporting template, a traction component is provided on the outer surface of the contact plate, and the traction component includes a threading ring. Two groups of threading rings are provided on the two ends and the middle surface of the contact plate, and a fixed block is fixed on the back of the threading ring. The fixed block is fixedly connected to the contact plate, and the interior of the fixed block slides through the traction rope. A monitoring and early warning component is installed on the surface of the traction rope, and the monitoring and early warning component includes a vertical plate, and the top and bottom of the vertical plate are fixed with a fixed plate, and the fixed plate is fixed on the traction rope, an infrared rangefinder is installed on the inner surface of the vertical plate, and an alarm light is installed on the outer surface of the vertical plate.
[0006] Furthermore, the splicing assembly also includes an insert plate, an insert plate is arranged on the outside of one end of the contact plate, and an insert frame is fixed on the outside of the other end of the contact plate, the two groups of contact plates are slidably plugged in through the insert plate and the insert frame, and the internal threads of the insert frame are plugged with connecting bolts, and the insert plate is locked and connected to the insert frame through the connecting bolts.
[0007] Furthermore, the contact plate corresponds to the plug plate and has two receiving grooves therein, a plug post is slidably inserted into the receiving groove, and the outer end of the plug post is fixedly connected to the plug plate, a first spring is sleeved on the surface of the plug post, and both ends of the first spring are fixedly connected to the inner wall of the receiving groove and the plug post.
[0008] Furthermore, the driving assembly also includes a fixed angle block, the bottom of the movable angle frame is provided with a fixed angle block, and the outer surface of the fixed angle block is inserted with a fixing bolt, and the fixed angle block is fixed to the side plate surface of the supporting formwork by the fixing bolt.
[0009] Furthermore, a hydraulic push rod is fixed to the outer surface of the fixed corner block, and the extended end of the hydraulic push rod is fixedly connected to the outer side of the movable corner frame, and pulleys are equidistantly rotatably installed on the inner surface of the movable corner frame.
[0010] Furthermore, the traction assembly also includes a winding seat, a winding seat is fixed on the surface of the movable corner frame, and a motor is fixed on the top of the winding seat, the output end of the motor is fixedly connected to the winding shaft of the winding seat, the two ends of the traction rope are wound on the two winding shafts, a movable notch is opened on the outer surface of the threading ring, and the fixed plate slides through the movable notch.
[0011] Furthermore, the monitoring and early warning component also includes a control box, the control box is fixed on the outer surface of the vertical plate, and the alarm light is fixedly installed on the outer side of the control box.
[0012] Furthermore, the top and bottom of the vertical plate are slidably plugged with horizontal plates, and a roller is rotatably installed on one end of the horizontal plate close to the contact plate, and the roller is in sliding contact with the side plate, and a second spring is fixed to the other end of the horizontal plate, and the second spring is fixedly connected to the vertical plate, and outer plates are fixed on the top and bottom surfaces of the control box, and contact modules are installed at the relative positions of the horizontal plate and the outer plate.
[0013] Furthermore, a hollow sliding groove is provided on the surface of the fixed plate, and a push plate is slidably connected inside the sliding groove. The fixed plate is located at the front end of the sliding groove and is slidably plugged with two movable plates, and the movable plates pass through the upper and lower ends of the fixed plate respectively. Slots are provided on the upper and lower side surfaces of the movable notch of the threading ring. A connecting rod is rotatably installed on the surface of the push plate corresponding to the positions of the two movable plates through a rotating shaft, and the other end of the connecting rod is rotatably connected to the movable plate through a rotating shaft.
[0014] Furthermore, the top and bottom of the vertical plate located in the slide slot are fixed with limit frames, and a pull rope passes through the inside of the limit frame, and the top and bottom of the pull rope are fixedly connected to the horizontal plate and the push plate respectively.
[0015] Beneficial effects of the present invention: The two contact plates of the present invention are inserted into the interior of the insertion frame through the insertion plate and locked with connecting bolts to form a whole. When the supporting template at the bottom of one contact plate is deformed, the contact plate will be squeezed and moved outward, thereby driving the insertion column of the contact plate on the other side to move out of the storage groove, and will not interfere with the adjacent contact plates and the supporting template to maintain contact.
[0016] The present invention installs the hydraulic push rod on the outer edge of the supporting formwork through the fixed corner block, pushes the movable corner frame to slide along the side of the supporting formwork through the hydraulic push rod, drives the splicing component to move, adjusts the monitoring position, and can monitor the supporting formwork within the range.
[0017] The present invention drives the winding seat to reel in and unreel the two traction ropes through a motor. Due to the setting of the threading ring, the movement of the traction rope is linear and the same as the trajectory of the splicing component. The two groups of winding seats, one for unwinding and the other for winding, maintain the smooth movement of the monitoring and early warning component. The pre-released length of the traction rope can be adjusted according to the length of the splicing component to adapt to the splicing component.
[0018] When the monitoring and early warning component of the present invention moves from one contact plate to the first threading ring of another contact plate, a displacement is generated, and the displacement exceeds the expected error, the cross plate moves backward and contacts the outer plate, and at the same time moves along the limit frame through the pull rope, pushing the push plate forward along the slide groove, and then the push plate drives the moving plate through two connecting rods to pass through the fixed plate and insert into the slot of the moving notch of the threading ring, so as to lock the device and determine the point where the displacement occurs, so that the staff can find it easily.
[0019] The present invention uses an infrared rangefinder to directly shine on the surface of the contact plate. When passing through two contact plates, the difference between the two is compared. If it is within the error range, it is flat and there is no deformation. If the error is large, it means that the installation is uneven or deformed. The signal is transmitted to the staff through the wireless module and the control module in the control box, and the alarm light flashes.
[0020] Compared with the prior art, the present invention installs the splicing components according to the length of the supporting formwork and fits with the supporting formwork, drives the monitoring and early warning components to move along the outer surface of the supporting formwork through the traction component, and judges the flatness and deformation of the supporting formwork by the displacement change of the contact plate, thereby quickly issuing early warnings and prompts, facilitating timely manual repairs. BRIEF DESCRIPTION OF THE DRAWINGS
[0021] Figure 1 It is a system flow diagram of the high-rise formwork cast-in-place construction monitoring and deformation early warning system based on the logistics park of the present invention; Figure 2 It is a schematic diagram of the overall structure of the high-rise formwork cast-in-place construction monitoring and deformation early warning system based on the logistics park of the present invention; Figure 3 It is a schematic diagram of the structure of the driving components of the high-rise formwork cast-in-place construction monitoring and deformation early warning system based on the logistics park of the present invention; Figure 4 It is a schematic diagram of the connection between the driving component, the traction component and the splicing component of the high-rise formwork cast-in-place construction monitoring and deformation early warning system based on the logistics park of the present invention; Figure 5 It is a schematic diagram of the splicing and installation of contact plates of the high-rise formwork cast-in-place construction monitoring and deformation early warning system based on the logistics park of the present invention; Figure 6 It is a schematic diagram of contact plate separation of the high-rise formwork cast-in-place construction monitoring and deformation early warning system based on the logistics park of the present invention; Figure 7 It is a schematic diagram of the connection between the monitoring and early warning components and the traction components of the high-rise formwork cast-in-place construction monitoring and deformation early warning system based on the logistics park of the present invention; Figure 8 It is a schematic diagram of the structure of the monitoring and early warning components of the high-rise formwork cast-in-place construction monitoring and deformation early warning system based on the logistics park of the present invention.
[0022] In the figure: 1. Splicing assembly; 11. Contact plate; 12. Side plate; 13. Insert plate; 14. Insert frame; 15. Connecting bolt; 16. Storage slot; 17. First spring; 18. Insert column; 19. Screw hole; 2. Driving assembly; 21. Fixed angle block; 22. Fixed bolt; 23. Hydraulic push rod; 24. Moving angle frame; 25. Pulley; 26. Locking bolt; 3. Traction assembly; 31. Traction rope; 32. Winding seat; 33. Motor; 3 4. Threading ring; 35. Fixed block; 36. Moving notch; 37. Slot; 4. Monitoring and early warning component; 41. Fixed plate; 42. Vertical plate; 43. Control box; 44. Alarm light; 45. Infrared rangefinder; 46. Horizontal plate; 47. Roller; 48. Second spring; 49. Contact module; 410. Outer plate; 411. Pull rope; 412. Limit frame; 413. Push plate; 414. Slide groove; 415. Moving plate; 416. Connecting rod. DETAILED DESCRIPTION
[0023] In order to make the technical means, creative features, objectives and effects achieved by the present invention easy to understand, the present invention is further explained below in conjunction with specific implementation methods.
[0024] See also Figures 1 to 8The present invention provides a technical solution: a high-rise formwork cast-in-place construction monitoring and deformation early warning system based on a logistics park, comprising a splicing component 1, the splicing component 1 is installed on the outer surface of the support formwork, and the splicing component 1 includes a plurality of contact plates 11, two groups of the contact plates 11 are spliced and installed, and the top and bottom of the contact plates 11 are fixed with side plates 12, and driving components 2 are arranged at both ends of the splicing component 1, and the driving component 2 includes a movable angle frame 24, and the outer end of the contact plate 11 is provided with a screw hole 19, and the movable angle frame 24 is inserted with a locking bolt 26 at the position corresponding to the screw hole 19, and the locking bolt 26 is threadedly inserted in the screw hole 19, and the movable angle frame 24 moves along the outermost side of the support formwork, and the outer surface of the contact plate 11 is provided with a traction component 3, and the traction component 3 includes a threading ring 34, and two groups of threading rings 34 are arranged on both ends and the middle surface of the contact plate 11, and the threading ring 34 is provided. A fixed block 35 is fixed to the back of the wire loop 34, and the fixed block 35 is fixedly connected to the contact plate 11. The inside of the fixed block 35 slides through the traction rope 31. A monitoring and early warning component 4 is installed on the surface of the traction rope 31. The monitoring and early warning component 4 includes a vertical plate 42. The top and bottom of the vertical plate 42 are fixed with fixed plates 41, and the fixed plate 41 is fixed on the traction rope 31. An infrared rangefinder 45 is installed on the inner surface of the vertical plate 42, and an alarm light 44 is installed on the outer surface of the vertical plate 42. When using the device, according to the length of the supporting template to be monitored, the contact plates 11 of corresponding lengths are spliced, and the contact plate 11 is installed on the supporting template by using the driving component 2, and the supporting template is divided into multiple areas. The monitoring and early warning component 4 is driven to move by the traction component 3 to monitor the position of the contact plate 11. When the contact plate 11 produces a displacement change, it stops moving and sends a warning signal.
[0025] In this embodiment, the splicing assembly 1 also includes an insert plate 13, an insert plate 13 is arranged on the outside of one end of the contact plate 11, and an insert frame 14 is fixed on the outside of the other end of the contact plate 11, two groups of the contact plates 11 are slidably plugged in through the insert plate 13 and the insert frame 14, and the internal thread of the insert frame 14 is plugged with a connecting bolt 15, the insert plate 13 is locked and connected with the insert frame 14 through the connecting bolt 15, and the contact plate 11 is provided with two receiving grooves 16 inside the corresponding insert plate 13, and the inside of the receiving groove 16 is slidably plugged with an insert column 18, and the insert column 18 is externally screwed. The first end is fixedly connected to the plug plate 13, and a first spring 17 is sleeved on the surface of the plug column 18, and the two ends of the first spring 17 are fixedly connected to the inner wall of the receiving groove 16 and the plug column 18. After the two contact plates 11 are inserted into the plug frame 14 through the plug plate 13, they are locked by connecting bolts 15 to form a whole. When the supporting template at the bottom of one contact plate 11 is deformed, the contact plate 11 will be squeezed and moved outward, thereby driving the plug column 18 of the contact plate 11 on the other side to move out of the receiving groove 16, and will not interfere with the adjacent contact plates 11 to maintain contact with the supporting template.
[0026] In this embodiment, the driving component 2 also includes a fixed angle block 21, and the bottom of the movable angle frame 24 is provided with a fixed angle block 21, and the outer surface of the fixed angle block 21 is inserted with a fixing bolt 22, and the fixed angle block 21 is fixed to the surface of the side plate 12 of the supporting formwork by the fixing bolt 22, and the outer surface of the fixed angle block 21 is fixed with a hydraulic push rod 23, and the extended end of the hydraulic push rod 23 is fixedly connected to the outer side of the movable angle frame 24, and a pulley 25 is equidistantly installed on the inner surface of the movable angle frame 24. The hydraulic push rod 23 is installed on the outer edge of the supporting formwork through the fixed angle block 21, and the movable angle frame 24 is pushed by the hydraulic push rod 23 to slide along the side of the supporting formwork, thereby driving the splicing component 1 to move and adjust the monitoring position, so as to monitor the supporting formwork within the range.
[0027] In this embodiment, the traction component 3 also includes a winding seat 32, a winding seat 32 is fixed on the surface of the movable corner frame 24, and a motor 33 is fixed on the top of the winding seat 32, the output end of the motor 33 is fixedly connected to the winding shaft of the winding seat 32, and the two ends of the traction rope 31 are wound on the two winding shafts, and a movable notch 36 is opened on the outer surface of the threading ring 34, and the fixed plate 41 slides through the movable notch 36, and the motor 33 drives the winding seat 32 to wind and unwind the two traction ropes 31 accordingly. Due to the setting of the threading ring 34, the movement of the traction rope 31 is linear and has the same trajectory as the splicing component 1. The two groups of winding seats 32 are used to keep the monitoring and early warning component 4 moving smoothly, and the pre-released length of the traction rope 31 can be adjusted according to the length of the splicing component 1 to adapt to the splicing component 1.
[0028] In this embodiment, the monitoring and early warning component 4 also includes a control box 43, a control box 43 is fixed on the outer surface of the vertical plate 42, and an alarm light 44 is fixedly installed on the outer side of the control box 43, and a horizontal plate 46 is slidably inserted at the top and bottom of the vertical plate 42, and a roller 47 is rotatably installed at one end of the horizontal plate 46 close to the contact plate 11, and the roller 47 is in sliding contact with the side plate 12, and a second spring 48 is fixed at the other end of the horizontal plate 46, and the second spring 48 is fixedly connected to the vertical plate 42, and an outer plate 410 is fixed on the top and bottom surfaces of the control box 43, and a contact module 49 is installed at the relative positions of the horizontal plate 46 and the outer plate 410, and a hollow slide groove 414 is opened on the surface of the fixed plate 41, and the inside of the slide groove 414 A push plate 413 is slidably connected, and the fixed plate 41 is located at the front end of the slide groove 414 and is slidably plugged with two movable plates 415, and the movable plates 415 are respectively inserted from the upper and lower ends of the fixed plate 41, and slots 37 are provided on the upper and lower surfaces of the movable notch 36 of the threading ring 34. A connecting rod 416 is rotatably installed on the surface of the push plate 413 corresponding to the position of the two movable plates 415 through a rotating shaft, and the other end of the connecting rod 416 is rotatably connected to the movable plate 415 through a rotating shaft, and the top and bottom of the vertical plate 42 located in the slide groove 414 are fixed with a limit frame 412, and the limit frame 412 passes through the pull rope 411, and the top and bottom of the pull rope 411 are respectively fixedly connected to the horizontal plate 46 and the push plate 413, and the pull rope 3 is connected to the fixed plate 41 through the fixed plate 41 1, while the traction rope 31 moves along the threading ring 34, the vertical plate 42 is driven to move along the surface of the contact plate 11. There are two sets of ways to monitor deformation and flatness in this structure. The first is to directly illuminate the surface of the contact plate 11 through the infrared rangefinder 45. When passing through the two contact plates 11, the difference between the two is compared. If it is within the error range, it is flat and there is no deformation. If the error is large, it means that the installation is uneven or deformed. The signal is transmitted to the staff through the wireless module and the control module in the control box 43, and unless the alarm light 44 flashes, the other is that the roller 47 of the horizontal plate 46 slides along the side plate 12. When encountering unevenness, the horizontal plate 46 will move backward. The position where the outer plate 410 is set can be the maximum error value The position, that is, the contact module 49 of the horizontal plate 46 does not contact the contact module 49 of the outer plate 410, is within the error range. Once in contact, the alarm system is immediately triggered. At the same time, because there are three threading rings 34 on the surface of the contact plate 11, if displacement occurs during the process from one contact plate 11 to another contact plate 11, it will also be counted from the threading rings 34 at both ends of the contact plate 11. In short, when the monitoring and early warning component 4 moves from one contact plate 11 to the first threading ring 34 of another contact plate 11, the displacement is generated, and the displacement exceeds the error prediction, the horizontal plate 46 moves backward to contact the outer plate 410, and at the same time moves along the limit frame 412 through the pull rope 411, and pushes the push plate 413 forward along the slide groove 414.Then the push plate 413 drives the moving plate 415 through the two connecting rods 416 to pass through the fixed plate 41 and insert into the slot 37 of the moving notch 36 of the threading ring 34, so as to lock the device and determine the point where the displacement occurs, so as to facilitate the staff to find it.
[0029] When using the device, according to the length of the supporting template to be monitored, the contact plates 11 of the corresponding length are spliced, and the two contact plates 11 are inserted into the plug frame 14 through the plug plate 13 and then locked with the connecting bolts 15 to form a whole. When the supporting template at the bottom of one contact plate 11 is deformed, the contact plate 11 will be squeezed and moved outward, thereby driving the plug column 18 of the contact plate 11 on the other side to move out of the storage groove 16, and will not interfere with the adjacent contact plates 11 and maintain contact with the supporting template. The hydraulic push rod 23 is installed on the outer edge of the supporting template through the fixed angle block 21, and the movable angle frame 24 is pushed by the hydraulic push rod 23 to slide along the side of the supporting template, driving the splicing component 1 to move, and adjusting the monitoring position. The supporting template within the range can be monitored and the supporting template can be adjusted. The plate is divided into multiple areas, and the motor 33 drives the winding seat 32 to wind and unwind the two traction ropes 31. Due to the setting of the threading ring 34, the movement of the traction rope 31 is linear and has the same trajectory as the splicing component 1. The two sets of winding seats 32 are used to unwind and rewind one by one to keep the monitoring and early warning component 4 moving smoothly. The length of the traction rope 31 released in advance can be adjusted according to the length of the splicing component 1. It is adapted to the splicing component 1, and the connection between the fixed plate 41 and the traction rope 31 is used to drive the vertical plate 42 to move along the surface of the contact plate 11 while the traction rope 31 moves along the threading ring 34. There are two sets of ways to monitor deformation and flatness in this structure. The first is to directly illuminate the surface of the contact plate 11 with an infrared rangefinder 45. When passing through the two contact plates 11, the difference between the two is compared. If it is within the error range, it is flat and there is no deformation. If the error is large, it means that the installation is uneven or deformed. The signal is transmitted to the staff through the wireless module and the control module in the control box 43, and unless the alarm light 44 flashes, the roller 47 of the horizontal plate 46 slides along the side plate 12. When encountering unevenness, the horizontal plate 46 will move backward, and the position of the outer plate 410 can be the position of the maximum error value, that is, the contact module 49 of the horizontal plate 46 does not contact the contact module 49 of the outer plate 410. Both are within the error range. Once in contact, the alarm system is immediately triggered. At the same time, because there are three threading rings 34 on the surface of the contact plate 11, In the process of moving from one contact plate 11 to another contact plate 11, if displacement occurs, it will also be counted from the threading rings 34 at both ends of the contact plate 11. In short, when the monitoring and early warning component 4 moves from one contact plate 11 to the first threading ring 34 of another contact plate 11, the displacement occurs, and the displacement exceeds the error prediction, the cross plate 46 moves backward and contacts the outer plate 410, and at the same time moves along the limit frame 412 through the pull rope 411, and pushes the push plate 413 forward along the slide groove 414, and then the push plate 413 drives the moving plate 415 through the two connecting rods 416 to pass through the fixed plate 41 and insert into the slot 37 of the moving notch 36 of the threading ring 34, lock the device, and determine the point where the displacement occurs, so that the staff can find it easily.
[0030] The basic principles and main features of the present invention and the advantages of the present invention are shown and described above. For those skilled in the art, it is obvious that the present invention is not limited to the details of the above exemplary embodiments, and the present invention can be implemented in other specific forms without departing from the spirit or basic characteristics of the present invention.
[0031] In addition, it should be understood that although the present specification is described according to implementation modes, not every implementation mode contains only one independent technical solution. This description of the specification is only for the sake of clarity. Those skilled in the art should regard the specification as a whole. The technical solutions in each embodiment may also be appropriately combined to form other implementation modes that can be understood by those skilled in the art.
Claims
1. A high-rise formwork cast-in-place construction monitoring and deformation early warning system based on a logistics park, comprising a splicing component (1), characterized in that: The splicing assembly (1) is installed on the outer surface of the supporting formwork, and the splicing assembly (1) includes a plurality of contact plates (11), two groups of the contact plates (11) are spliced and installed, and the top and bottom of the contact plates (11) are fixed with side plates (12), the two ends of the splicing assembly (1) are provided with driving assemblies (2), the driving assembly (2) includes a movable angle frame (24), the outer end of the contact plate (11) is provided with a screw hole (19), the movable angle frame (24) is inserted with a locking bolt (26) at a position corresponding to the screw hole (19), and the locking bolt (26) is threadedly inserted in the screw hole (19), the movable angle frame (24) moves along the outermost side of the supporting formwork, the outer surface of the contact plate (11) is provided with a traction assembly (3), the traction assembly (3) ) comprises a threading ring (34), two groups of threading rings (34) are arranged on both ends and the middle surface of the contact plate (11), and a fixing block (35) is fixed on the back of the threading ring (34), the fixing block (35) is fixedly connected to the contact plate (11), the interior of the fixing block (35) slides through the traction rope (31), and a monitoring and early warning component (4) is installed on the surface of the traction rope (31), the monitoring and early warning component (4) comprises a vertical plate (42), the top and bottom of the vertical plate (42) are fixed with a fixing plate (41), and the fixing plate (41) is fixed on the traction rope (31), an infrared rangefinder (45) is installed on the inner surface of the vertical plate (42), and an alarm light (44) is installed on the outer surface of the vertical plate (42).
2. The high-rise formwork cast-in-place construction monitoring and deformation early warning system based on the logistics park according to claim 1 is characterized by: The splicing assembly (1) further comprises an insert plate (13), the insert plate (13) being arranged on the outside of one end of the contact plate (11), and an insert frame (14) being fixed on the outside of the other end of the contact plate (11), two groups of the contact plates (11) being slidably plugged in through the insert plate (13) and the insert frame (14), and a connecting bolt (15) being plugged in through the internal thread of the insert frame (14), and the insert plate (13) being locked and connected to the insert frame (14) through the connecting bolt (15).
3. The high-rise formwork cast-in-place construction monitoring and deformation early warning system based on the logistics park according to claim 2 is characterized by: The contact plate (11) has two receiving grooves (16) formed inside the corresponding plug plate (13), a plug post (18) is slidably inserted inside the receiving groove (16), and the outer end of the plug post (18) is fixedly connected to the plug plate (13), a first spring (17) is sleeved on the surface of the plug post (18), and the two ends of the first spring (17) are fixedly connected to the inner wall of the receiving groove (16) and the plug post (18).
4. The high-rise formwork cast-in-place construction monitoring and deformation early warning system based on the logistics park according to claim 1 is characterized by: The driving assembly (2) further comprises a fixed corner block (21), the bottom of the movable corner frame (24) is provided with a fixed corner block (21), and a fixing bolt (22) is inserted into the outer surface of the fixed corner block (21), and the fixed corner block (21) is fixed to the surface of the side plate (12) of the supporting formwork by the fixing bolt (22).
5. The high-rise formwork cast-in-place construction monitoring and deformation early warning system based on the logistics park according to claim 4 is characterized by: A hydraulic push rod (23) is fixed to the outer surface of the fixed corner block (21), and the extended end of the hydraulic push rod (23) is fixedly connected to the outer side of the movable corner frame (24). Pulleys (25) are equidistantly rotatably mounted on the inner surface of the movable corner frame (24).
6. The high-rise formwork cast-in-place construction monitoring and deformation early warning system based on the logistics park according to claim 1 is characterized by: The traction assembly (3) further comprises a reeling seat (32), the reeling seat (32) being fixed on the surface of the movable corner frame (24), and a motor (33) being fixed on the top of the reeling seat (32), the output end of the motor (33) being fixedly connected to a reeling shaft of the reeling seat (32), the two ends of the traction rope (31) being reeled on two reeling shafts, a movable notch (36) being provided on the outer surface of the threading ring (34), and the fixed plate (41) slidingly passing through the movable notch (36).
7. The high-rise formwork cast-in-place construction monitoring and deformation early warning system based on the logistics park according to claim 1 is characterized by: The monitoring and early warning assembly (4) further comprises a control box (43), the control box (43) being fixed on the outer surface of the vertical plate (42), and the alarm light (44) being fixedly mounted on the outer side of the control box (43).
8. The high-rise formwork cast-in-place construction monitoring and deformation early warning system based on the logistics park according to claim 7 is characterized by: The top and bottom of the vertical plate (42) are both slidably connected with a horizontal plate (46); one end of the horizontal plate (46) close to the contact plate (11) is rotatably mounted with a roller (47), and the roller (47) is in sliding contact with the side plate (12); a second spring (48) is fixed to the other end of the horizontal plate (46), and the second spring (48) is fixedly connected to the vertical plate (42); an outer plate (410) is fixed to the top and bottom surfaces of the control box (43), and a contact module (49) is installed at a position opposite to the horizontal plate (46) and the outer plate (410).
9. The high-rise formwork cast-in-place construction monitoring and deformation early warning system based on the logistics park according to claim 8 is characterized by: A hollow slide groove (414) is provided on the surface of the fixed plate (41), and a push plate (413) is slidably connected inside the slide groove (414). Two movable plates (415) are slidably inserted at the front end of the slide groove (414) of the fixed plate (41), and the movable plates (415) are respectively inserted from the upper and lower ends of the fixed plate (41). Slots (37) are provided on the upper and lower surfaces of the movable notch (36) of the threading ring (34). A connecting rod (416) is rotatably installed on the surface of the push plate (413) at positions corresponding to the two movable plates (415) through a rotating shaft, and the other end of the connecting rod (416) is rotatably connected to the movable plate (415) through the rotating shaft.
10. The high-rise formwork cast-in-place construction monitoring and deformation early warning system based on the logistics park according to claim 9 is characterized by: The top and bottom of the vertical plate (42) located in the slide groove (414) are fixed with a limit frame (412), and a pull rope (411) passes through the inside of the limit frame (412), and the top and bottom of the pull rope (411) are fixedly connected to the horizontal plate (46) and the push plate (413) respectively.