A verticality automatic alarm device for high pier roller form construction

The monitoring box, which combines a float system and a conductive column, enables automatic verticality measurement and alarm for the outer frame formwork during the construction of high pier roller formwork. This solves the problems of cumbersome measurement and errors in existing technologies, and improves measurement accuracy and construction safety.

CN115094757BActive Publication Date: 2026-02-27CHINA FIRST HIGHWAY ENGINEERING CO LTD +1
View PDF 3 Cites 0 Cited by

Patent Information

Application Number
CN202210553872.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-05-19
Publication Date
2026-02-27
Estimated Expiration
2042-05-19

AI Technical Summary

Technical Problem

In the current construction of high pier roller formwork, the verticality measurement of the outer frame formwork is cumbersome and prone to observation errors, and the alarm is easily affected by concrete slag, which may cause false triggering.

Method used

The system employs a float system and alarm combined with conductive columns within the monitoring box. The connection status of the conductive columns is controlled by the position change of the float to achieve automatic alarm. Water cooling through conduits and scraping of concrete debris by scrapers ensure measurement accuracy and normal equipment operation.

Benefits of technology

It simplifies the verticality measurement process, improves measurement accuracy, avoids observation errors and false alarm triggering, and ensures construction safety and efficiency.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN115094757B_ABST
    Figure CN115094757B_ABST
Patent Text Reader

Abstract

The application belongs to the technical field of bridge construction, in particular to a verticality automatic alarm device for high-pier roller form construction, which comprises an outer frame formwork, a monitoring box and an alarm; the monitoring box is internally provided with a water storage cavity, and a floating ball is placed in the water storage cavity; a flexible pad is fixedly connected to the top of the water storage cavity; a No.1 sliding groove is formed in the top of the monitoring box; a conductive plate is slidably connected in the No.1 sliding groove; a pair of conductive columns are fixedly connected to the bottom end of the No.1 sliding groove; the verticality of the outer frame formwork is measured by the monitoring box; if the outer frame formwork remains vertical, the floating ball is located at the top of the water storage cavity, and the flexible pad and the connecting rod are extruded, the conductive plate is pushed to move upwards, and the pair of conductive columns are in the disconnected state, so that the alarm does not send an alarm signal; if the outer frame formwork is not vertical, the floating ball is separated from the flexible pad, the spring pushes the conductive plate to move downwards, and the pair of conductive columns are connected, so that the alarm sends an alarm signal; the verticality measurement operation is simplified, and the measurement accuracy is improved.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The present application belongs to the technical field of bridge construction, in particular to a verticality automatic alarm device for high-pier roller form construction. BACKGROUND

[0002] The process principle of high-pier roller form construction is mainly that the whole is slid along the steel pipe column, the lining formwork is turned up, the outer frame formwork is rolled along the surface of the lining formwork, and the rolling of the roller avoids disturbance to the newly poured concrete during the lifting process; the turning and rolling are combined, that is, during the sliding process, the concrete in the mold does not move relative to the mold, so as to achieve the purpose of not affecting the pouring quality of the concrete, and the pouring speed is fast and the construction safety is high.

[0003] A patent with publication number CN103147403B discloses a bridge high-pier roller form construction method, which uses a roller form device, after one section of the pier body is completed, the roller form computer control lifting system is used to accurately lift the formwork, the outer frame is rolled on the outer surface of the lining form during the lifting process, the lining form and the concrete surface are kept stationary, after being lifted to the specified position, the lining form is reinstalled on the inner side of the outer frame, the release agent is brushed, the reinforcement is bound, and the concrete is poured, then the formwork is lifted again, and the operation is repeated until the pier column construction is completed. Using the method for bridge high-pier construction, the computer control automatic lifting system is used to accurately lift the formwork, without waiting for the concrete to form strength, the repeated removal and installation of the formwork are avoided, the construction progress is improved, and a speed of more than 4 meters per day can be achieved; and since the lining form is stationary relative to the concrete surface, the appearance quality of the concrete is good, the progress of the sliding form construction is achieved, and the quality of the concrete is ensured.

[0004] At present, in the high-pier roller form construction process, the outer frame formwork needs to be lifted, in order to ensure the verticality of the outer frame formwork after lifting, lead hammers are usually hung around the outer frame formwork to measure the verticality, but this way is relatively cumbersome to operate, and needs to be observed by the naked eye, which is easy to produce observation errors.

[0005] Therefore, the present application provides a verticality automatic alarm device for high-pier roller form construction. SUMMARY

[0006] In order to make up for the deficiencies of the prior art and solve at least one technical problem proposed in the background art.

[0007] The technical scheme adopted by the present application to solve its technical problems is: the verticality automatic alarm device for high-pier roller form construction, comprising an outer frame formwork; a monitoring box is fixedly connected to one side of the outer frame formwork; an alarm is fixedly connected to one side of the monitoring box; a spherical water storage cavity is arranged in the monitoring box, and the water storage cavity is filled with clean water; a floating ball is arranged in the water storage cavity; a flexible pad is fixedly connected to the top of the water storage cavity; a No. 1 sliding groove is formed in the top of the monitoring box; a conductive plate is slidably connected in the No. 1 sliding groove; a spring is fixedly connected between the upper side of the conductive plate and the top end of the No. 1 sliding groove; a connecting rod is fixedly connected between the lower side of the conductive plate and the flexible pad, and the connecting rod is slidably and sealingly connected with the monitoring box; a pair of conductive columns are fixedly connected to the bottom end of the No. 1 sliding groove, and the conductive columns are electrically connected with the alarm through a power supply; in the prior art, the outer frame formwork needs to be lifted in the high-pier roller form construction process, in order to ensure the verticality of the lifted outer frame formwork, lead hammers are usually hung around the outer frame formwork to measure the verticality, but this way is relatively complicated to operate, and needs to be observed by the naked eye, which is easy to cause observation errors; at this time, the present application can measure the verticality of the outer frame formwork through the monitoring box after lifting the outer frame formwork, if the outer frame formwork remains vertical, the floating ball is located at the top of the water storage cavity, and presses the flexible pad and the connecting rod, pushes the conductive plate upward, so that the pair of conductive columns are in a disconnected state, and the alarm does not send an alarm signal, if the outer frame formwork is not vertical, the floating ball is separated from the flexible pad, and then the spring pushes the conductive plate downward, and connects the pair of conductive columns, so that the alarm sends an alarm signal, which simplifies the verticality measurement operation and improves the measurement accuracy.

[0008] Preferably, a catheter is wound around the outside of the conductive column, and both ends of the catheter are in communication with the water storage cavity; by arranging the catheter, the water in the water storage cavity enters the catheter, thereby providing water cooling effect for the conductive column when the conductive column is connected, avoiding the problem that the overheating of the conductive column affects the normal work of the alarm.

[0009] Preferably, a water storage groove is formed in the position close to the flexible pad at the top of the water storage cavity, and one end of the catheter is in communication with the water storage groove; a sealing film is fixedly connected to the opening of the water storage groove; a spring is fixedly connected between the sealing film and the water storage groove; by arranging the water storage groove and the sealing film, if the outer frame formwork is not vertical, the floating ball is separated from the flexible pad and presses the sealing film, and then the water in the water storage groove enters one end of the catheter, and the water in the catheter is squeezed into the water storage groove through the other end of the catheter, when the outer frame formwork is adjusted to be vertical later, the floating ball is separated from the sealing film, and then the spring pushes the sealing film to reset and bulge, thereby reabsorbing the water in the water storage cavity into the catheter, which can replace the cooling water in the catheter, avoiding the problem that the overheating of the cooling water in the catheter leads to poor heat dissipation effect of the conductive column.

[0010] Preferably, the floating ball is fixedly connected with a magnetic ball inside; the sealing film is provided with a through hole on the surface; the elastic film is fixedly connected with a magnetic block in the middle; when the floating ball does not contact the sealing film, the water in the water storage cavity can enter the water storage tank through the through hole; when the floating ball contacts and extrudes the sealing film, the magnetic block is attracted by the magnetic ball, the elastic film is tightly attached to the surface of the through hole and is sealed, so that the water in the elastic film can be smoothly extruded into the conduit, and the operation makes the water form a one-way flow effect in the conduit, thereby improving the heat dissipation effect of the conductive column.

[0011] Preferably, a group of rotating grooves are arranged on the inner side of the outer frame template; rollers are rotatably connected in the rotating grooves; a scraping piece is arranged at the bottom of the rotating groove, and the tip of the scraping piece is close to the surface of the roller; the surface of the roller is easy to adhere to concrete residues during construction, and when the outer frame template is lifted, the roller rolls on the surface of the inner lining template, the concrete residues cause the roller and the outer frame template to shake violently, causing certain safety risks, and the shaking also affects the position of the floating ball in the water storage cavity, causing the alarm to be triggered incorrectly; the scraping piece can effectively remove the concrete residues on the surface of the roller during rotation, reducing the problem of violent shaking of the outer frame template and incorrect triggering of the alarm.

[0012] Preferably, a control module is arranged at the bottom of the rotating groove; a motor is installed on the outer frame template at one end of the roller, and the motor is connected with the control module; the output shaft of the motor is connected with the roller through a rotating shaft; if the concrete residues on the surface of the roller are hard, the scraping piece cannot remove them, at this time the roller is stuck and cannot rotate, and the roller slides and rubs on the surface of the inner lining template, causing problems such as increased lifting resistance and serious wear of the surface of the inner lining template; the control module detects the concrete residues; if the concrete residues are hard, the roller is stuck and cannot rotate, at this time the motor is controlled to start, and the motor drives the roller to rotate forcibly, thereby forcibly removing the concrete residues.

[0013] Preferably, the control module comprises a No. 2 sliding groove; a conductive block is slidably connected in the No. 2 sliding groove, and the scraping piece is fixedly connected to the upper side of the conductive block; a spring is fixedly connected between the lower side of the conductive block and the bottom end of the No. 2 sliding groove; a pair of contacts are fixedly connected to the surface of the bottom side wall of the No. 2 sliding groove, and the contacts are electrically connected with the motor through a power supply; the control module detects the concrete residues; if the concrete residues are hard, the spring's elastic force is overcome, and the scraping piece and the conductive block are pushed to slide downward, thereby connecting the pair of contacts, and then the motor is automatically started to drive the roller to rotate forcibly; after the concrete residues are forcibly removed, the spring pushes the conductive block and the scraping piece to reset, disconnects the pair of contacts, and the motor is automatically stopped.

[0014] Preferably, the outer frame template under the rotating groove is internally provided with a slag storage groove, and the slag storage groove is provided in an inclined structure; a slag blocking plate is arranged at the inlet of the slag storage groove; and a plugging cover is threadedly connected at the outlet of the slag storage groove; after the scraped concrete slag falls, the slag storage groove and the slag blocking plate are arranged to enable the concrete slag to enter the slag storage groove from the slag blocking plate, so that the concrete slag is collected, the problem of workers being injured by the falling concrete slag is avoided, and the concrete slag in the slag storage groove can be cleaned by periodically unscrewing the plugging cover.

[0015] Preferably, the outer frame template is provided with a guide groove near the plugging cover; a guide rod is slidably connected in the guide groove; one end of the guide rod is attached to the surface of the plugging cover, and the other end is fixedly connected with a movable ball; a spring is fixedly connected between the movable ball and the end of the guide groove; and a plurality of elastic strips are uniformly distributed on the surface of the side wall of the guide groove; when the plugging cover is unscrewed outward, the guide rod and the movable ball slide outward under the pushing force of the spring, and the movable ball intermittently drives the plurality of elastic strips, so that the elastic strips vibrate when they swing back, promoting the concrete slag in the slag storage groove to flow along the inclined bottom to the outlet of the slag storage groove, and facilitating the rapid cleaning of the concrete slag.

[0016] Preferably, a plurality of elastic pieces are uniformly distributed on the upper side of the slag blocking plate, and the elastic pieces are provided in an arc-shaped protruding structure; the scraped concrete slag falls onto the upper side of the slag blocking plate and is bounced by the elastic pieces, so that the concrete slag is bounced to the outlet of the slag storage groove, further facilitating the subsequent cleaning of the concrete slag.

[0017] The beneficial effects of the present application are as follows:

[0018] 1. The high-pier roller form construction verticality automatic alarm device can measure the verticality of the outer frame template through the monitoring box after lifting the outer frame template, if the outer frame template remains vertical, the float ball is located at the top of the water storage cavity, and the flexible pad and the connecting rod are squeezed, the conductive plate is pushed upward, a pair of conductive columns are in a disconnected state, and the alarm does not emit an alarm signal, if the outer frame template is not vertical, the float ball is separated from the flexible pad, the spring pushes the conductive plate downward, and a pair of conductive columns are connected, and the alarm emits an alarm signal, thereby simplifying the verticality measurement operation and improving the measurement accuracy.

[0019] 2. The high-pier roller form construction verticality automatic alarm device is provided with a guide pipe, so that the water in the water storage cavity enters the guide pipe, thereby providing water cooling effect for the conductive column when the conductive column is connected, and avoiding the problem that the overheating of the conductive column affects the normal work of the alarm. BRIEF DESCRIPTION OF DRAWINGS

[0020] The present application will be further described below with reference to the accompanying drawings.

[0021] Figure 1 is a perspective view of the present application;

[0022] Figure 2 is a structural schematic view of the monitoring box in the present application;

[0023] Figure 3 is a perspective view of the present application; Figure 2 is a partial enlarged view at A in the present application;

[0024] Figure 4 is a perspective view of the present application; Figure 3 is a partial enlarged view at B in the present application;

[0025] Figure 5 is a structural schematic view of the roller in the present application;

[0026] Figure 6 is a perspective view of the present application; Figure 5 is a partial enlarged view at C in the present application;

[0027] Figure 7 is a perspective view of the present application; Figure 5 is a partial enlarged view at D in the present application;

[0028] Figure 8 is a structural schematic view of the slag baffle in the present application;

[0029] In the figure: outer frame template 1, monitoring box 2, alarm 3, water storage cavity 4, floating ball 5, flexible pad 6, No. 1 sliding chute 7, conductive plate 8, connecting rod 9, conductive column 10, conduit 11, water storage tank 12, sealing film 13, magnetic ball 14, through hole 15, elastic film 16, magnetic block 17, rotating groove 18, roller 19, scraping piece 20, No. 2 sliding chute 21, conductive block 22, contact 23, slag storage tank 24, slag baffle 25, plugging cover 26, guide groove 27, guide rod 28, movable ball 29, elastic strip 30, elastic piece 31. DETAILED DESCRIPTION

[0030] In order to make the technical means, creative features, purposes and effects realized by the present application easy to understand, the present application is further described below in combination with specific embodiments.

[0031] Embodiment one

[0032] As Figures 1 to 7As shown, the verticality automatic alarm device for high pier roller form construction provided by the embodiment of the present application comprises an outer frame formwork 1; a monitoring box 2 is fixedly connected to one side of the outer frame formwork 1; an alarm 3 is fixedly connected to one side of the monitoring box 2; a spherical water storage cavity 4 is arranged inside the monitoring box 2, and the water storage cavity 4 is filled with clean water; a floating ball 5 is placed inside the water storage cavity 4; a flexible pad 6 is fixedly connected to the top of the water storage cavity 4; a No. 1 sliding groove 7 is formed in the top of the monitoring box 2; a conductive plate 8 is slidingly connected inside the No. 1 sliding groove 7; a spring is fixedly connected between the upper side of the conductive plate 8 and the top end of the No. 1 sliding groove 7; a connecting rod 9 is fixedly connected between the lower side of the conductive plate 8 and the flexible pad 6, and the connecting rod 9 is slidingly and sealingly connected with the monitoring box 2; a pair of conductive columns 10 are fixedly connected to the bottom end of the No. 1 sliding groove 7, and the conductive columns 10 are electrically connected with the alarm 3 through a power supply; in the prior art, the outer frame formwork 1 needs to be lifted in the high pier roller form construction process, in order to ensure the verticality of the outer frame formwork 1 after being lifted, lead hammers are usually hung around the outer frame formwork 1 to measure the verticality, but this way is relatively complicated to operate, and needs to be observed by the naked eye, which is easy to cause observation errors; at this time, the verticality of the outer frame formwork 1 can be measured by the monitoring box 2 after the outer frame formwork 1 is lifted, if the outer frame formwork 1 remains vertical, the floating ball 5 is located at the top of the water storage cavity 4, and presses the flexible pad 6 and the connecting rod 9, pushes the conductive plate 8 to move upwards, so that the pair of conductive columns 10 are in a disconnected state, and the alarm 3 does not send an alarm signal, if the outer frame formwork 1 is not vertical, the floating ball 5 is separated from the flexible pad 6, and then the spring pushes the conductive plate 8 to move downwards, and connects the pair of conductive columns 10, so that the alarm 3 sends an alarm signal, which simplifies the verticality measurement operation and improves the measurement accuracy.

[0033] A catheter 11 is wound outside the conductive column 10, and both ends of the catheter 11 are in communication with the water storage cavity 4; by arranging the catheter 11, the water inside the water storage cavity 4 enters the catheter 11, thereby providing a water cooling effect when the conductive column 10 is connected, avoiding the problem that the conductive column 10 overheats and affects the normal work of the alarm 3.

[0034] The water storage tank 4 is provided with a water storage groove 12 near the flexible pad 6, and one end of the conduit 11 is communicated with the water storage groove 12; the opening of the water storage groove 12 is fixedly connected with a sealing film 13; the sealing film 13 and the water storage groove 12 are fixedly connected with a spring; by setting the water storage groove 12 and the sealing film 13, if the outer frame template 1 is not perpendicular, the floating ball 5 is separated from the flexible pad 6 and presses the sealing film 13, and then the water in the water storage groove 12 enters one end of the conduit 11, and the water in the conduit 11 is squeezed into the water storage groove 12 through the other end of the conduit 11, and when the subsequent outer frame template 1 is adjusted to be vertical, the floating ball 5 is separated from the sealing film 13, and then the spring pushes the sealing film 13 to reset and swell, so as to reabsorb the water in the water storage tank 4 into the conduit 11, which can replace the cooling water in the conduit 11, avoid overheating of the cooling water in the conduit 11, and solve the problem of poor heat dissipation effect of the conductive column 10.

[0035] The floating ball 5 is fixedly connected with a magnetic ball 14; the sealing film 13 is provided with a through hole 15; the sealing film 13 is fixedly connected with an elastic film 16 near the through hole 15; the elastic film 16 is fixedly connected with a magnetic block 17; when the floating ball 5 is not in contact with the sealing film 13, the water in the water storage tank 4 can enter the water storage groove 12 through the through hole 15, and when the floating ball 5 contacts and presses the sealing film 13, the magnetic block 17 is attracted by the magnetic ball 14, the elastic film 16 is tightly attached to the surface of the through hole 15 and seals it, so that the water in the elastic film 16 can be smoothly squeezed into the conduit 11, which makes the water in the conduit 11 form a one-way flow effect, and improves the heat dissipation effect of the conductive column 10.

[0036] The inner side of the outer frame template 1 is provided with a group of rotating grooves 18; the rotating grooves 18 are rotatably connected with roller wheels 19; the rotating grooves 18 are provided with scraper blades 20, and the tips of the scraper blades 20 are close to the surfaces of the roller wheels 19; the surfaces of the roller wheels 19 are easy to adhere to concrete residues during construction, and then when the outer frame template 1 is lifted, the roller wheels 19 roll on the surface of the inner lining template, and the concrete residues will cause the roller wheels 19 and the outer frame template 1 to shake violently, causing certain safety risks, and the shaking will also affect the position of the floating ball 5 in the water storage tank 4, causing the alarm 3 to be triggered incorrectly; by setting the scraper blades 20, the concrete residues on the surfaces of the roller wheels 19 can be effectively scraped off during the rotation of the roller wheels 19, reducing the problem of violent shaking of the outer frame template 1 and incorrect triggering of the alarm 3.

[0037] The bottom of the rotating groove 18 is provided with a control module; the outer frame template 1 at one end of the roller 19 is provided with a motor, and the motor is connected with the control module; the output shaft of the motor is connected with the roller 19 through a rotating shaft; if the concrete slag on the surface of the roller 19 is relatively hard, the scraper 20 cannot scrape it off, at this time the roller 19 will be stuck and cannot rotate, and then the roller 19 slides and rubs on the surface of the lining template, which will cause the lifting resistance to increase, the surface of the lining template to be seriously worn and other problems; the control module detects the concrete slag, if the concrete slag is relatively hard, the roller 19 is stuck and cannot rotate, at this time the motor is controlled to start, and the motor drives the roller 19 to rotate forcibly, so that the concrete slag is scraped off forcibly.

[0038] The control module comprises a second chute 21; the second chute 21 is slidably connected with an electrically conductive block 22 inside, and the scraper 20 is fixedly connected to the upper side of the electrically conductive block 22; a spring is fixedly connected between the lower side of the electrically conductive block 22 and the bottom end of the second chute 21; a pair of contacts 23 are fixedly connected to the surface of the side wall at the bottom of the second chute 21, and the contacts 23 are electrically connected with the motor through a power supply; the control module detects the concrete slag, if the concrete slag is relatively hard, the spring elasticity will be overcome, and the scraper 20 and the electrically conductive block 22 will be pushed to slide downward, and then a pair of contacts 23 will be connected, so that the motor is automatically started to drive the roller 19 to rotate forcibly, and after the concrete slag is scraped off, the spring pushes the electrically conductive block 22 and the scraper 20 to reset, so that a pair of contacts 23 are disconnected, and the motor is automatically stopped.

[0039] A residue storage groove 24 is formed in the inner part of the outer frame template 1 below the rotating groove 18, and the residue storage groove 24 is provided as an inclined structure; a residue blocking plate 25 is arranged at the inlet of the residue storage groove 24; a sealing cover 26 is threadedly connected at the outlet of the residue storage groove 24; by arranging the residue storage groove 24 and the residue blocking plate 25, the scraped concrete slag will fall along the residue blocking plate 25 into the inner part of the residue storage groove 24, so that the concrete slag is collected, the problem of workers being injured by the falling concrete slag is avoided, and the concrete slag in the inner part of the residue storage groove 24 can be cleaned by regularly unscrewing the sealing cover 26.

[0040] A guide groove 27 is formed at the position close to the sealing cover 26 of the outer frame template 1; a guide rod 28 is slidably connected in the guide groove 27; the guide rod 28 is surface-adhered to the sealing cover 26 at one end and is fixedly connected with a movable ball 29 at the other end; a spring is fixedly connected between the movable ball 29 and the end of the guide groove 27; a group of elastic strips 30 are uniformly distributed on the surface of the side wall of the guide groove 27; when the sealing cover 26 is unscrewed outward, the guide rod 28 and the movable ball 29 slide outward under the pushing force of the spring, and then the movable ball 29 intermittently drives a plurality of elastic strips 30, and the elastic strips 30 produce a vibration effect when they swing back, so that the concrete slag in the inner part of the residue storage groove 24 is collected along the inclined bottom to the outlet of the residue storage groove 24, and the concrete slag can be quickly cleaned.

[0041] Example Two

[0042] As shown in Figure 8 Comparative Example One, another embodiment of the present application is that a plurality of elastic pieces 31 are evenly distributed on the upper side of the slag dam 25, and the elastic pieces 31 are arranged as arc-shaped protruding structures. By arranging a plurality of elastic pieces 31, the scraped concrete slag falls onto the upper side of the slag dam 25 and is bounced by the elastic pieces 31, so that the concrete slag is bounced to the outlet of the slag storage groove 24, further facilitating the subsequent cleaning of the concrete slag.

[0043] Working principle: the verticality of the outer frame template 1 can be measured by monitoring box 2 after lifting the outer frame template 1, if the outer frame template 1 remains vertical, the float ball 5 is located at the top of the water storage cavity 4, and extrudes the flexible pad 6 and the connecting rod 9, pushes the conductive plate 8 upwards, so that a pair of conductive columns 10 are in the disconnected state, then the alarm 3 does not send an alarm signal, if the outer frame template 1 is not vertical, the float ball 5 is separated from the flexible pad 6, and then the spring pushes the conductive plate 8 downwards, and a pair of conductive columns 10 are connected, then the alarm 3 sends an alarm signal, which simplifies the verticality measurement operation and improves the measurement accuracy; by setting the conduit 11, the water in the water storage cavity 4 enters the inside of the conduit 11, thereby providing water cooling effect when the conductive column 10 is connected, avoiding the problem that the overheating of the conductive column 10 affects the normal work of the alarm 3; by setting the water storage tank 12 and the sealing film 13, if the outer frame template 1 is not vertical, the float ball 5 is separated from the flexible pad 6 and extrudes the sealing film 13, and then the water in the water storage tank 12 enters one end of the conduit 11, and the water in the conduit 11 is extruded into the inside of the water storage tank 12 through the other end of the conduit 11, when the subsequent outer frame template 1 is adjusted vertically, the float ball 5 is separated from the sealing film 13, and then the spring pushes the sealing film 13 to reset and bulge, thereby reabsorbing the water in the water storage cavity 4 into the conduit 11, which can replace the cooling water in the conduit 11, avoid the overheating of the cooling water in the conduit 11, and cause poor heat dissipation effect of the conductive column 10; when the float ball 5 does not contact the sealing film 13, the water in the water storage cavity 4 can enter the inside of the water storage tank 12 through the through hole 15, when the float ball 5 contacts and extrudes the sealing film 13, the magnetic block 17 is attracted by the magnetic ball 14, the elastic film 16 is tightly attached to the surface of the through hole 15 and seals it, so that the water in the elastic film 16 can be smoothly extruded into the conduit 11, which makes the water form a one-way flow effect in the conduit 11, improving the heat dissipation effect of the conductive column 10; the surface of the roller 19 is easy to adhere to concrete slag during construction, and then the roller 19 rolls on the surface of the inner lining template when lifting the outer frame template 1, the concrete slag causes the roller 19 and the outer frame template 1 to shake violently, causing certain safety risks, and the shaking also affects the position of the float ball 5 in the water storage cavity 4, causing the alarm 3 to be triggered incorrectly, the scraper 20 can effectively remove the concrete slag on the surface of the roller 19 during the rotation of the roller 19, reducing the problem of violent shaking of the outer frame template 1 and incorrect triggering of the alarm 3; if the concrete slag on the surface of the roller 19 is hard, the scraper 20 cannot remove it, at this time the roller 19 will be stuck and cannot rotate, and then the roller 19 slides and rubs on the surface of the inner lining template, which causes the lifting resistance to increase and the surface of the inner lining template to be severely worn, the control module detects the concrete slag, if the concrete slag is hard, the roller 19 is stuck and cannot rotate, at this time the control module starts the motor, the motor drives the roller 19 to rotate forcibly, thereby forcibly removing the concrete slag.The control module detects the concrete slag. If the slag is hard, it overcomes the spring's elastic force and pushes the scraper 20 and conductive block 22 downwards, connecting a pair of contacts 23. The motor then automatically starts, forcibly rotating the roller 19 to scrape away the concrete slag. Afterwards, the spring pushes the conductive block 22 and scraper 20 back to their original positions, disconnecting the contacts 23 and automatically stopping the motor. By setting up a slag storage tank 24 and a baffle plate 25, the scraped concrete slag falls into the storage tank 24 along the baffle plate 25, thus collecting the slag and preventing it from injuring workers. Furthermore, the seal can be periodically opened. Cover 26 is used to clean the concrete slag inside the slag storage tank 24. When the cover 26 is unscrewed outwards, the guide rod 28 and the movable ball 29 slide outwards under the push of the spring. The movable ball 29 then intermittently actuates multiple elastic strips 30. The elastic strips 30 vibrate as they swing back, promoting the collection of concrete slag inside the slag storage tank 24 along the bottom slope to the outlet of the slag storage tank 24, facilitating rapid cleaning of the concrete slag. Multiple elastic plates 31 are installed, causing the scraped concrete slag to fall onto the upper side of the baffle plate 25 and be bounced off by the elastic plates 31, thus propelling the concrete slag to the outlet of the slag storage tank 24, further facilitating subsequent cleaning of the concrete slag.

[0044] The terms "front," "back," "left," "right," "top," and "bottom" all refer to the figures in the accompanying drawings. Figure 1 Based on the perspective of the observer, the side of the device facing the observer is defined as the front, the left side of the observer is defined as the left, and so on.

[0045] In the description of this invention, it should be understood that the terms "center", "longitudinal", "lateral", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limiting the scope of protection of this invention.

[0046] The foregoing has shown and described the basic principles, main features, and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited to the above embodiments. The embodiments and descriptions in the specification are merely illustrative of the principles of the invention. Various changes and modifications can be made to the invention without departing from its spirit and scope, and all such changes and modifications fall within the scope of the present invention as claimed. The scope of protection of the present invention is defined by the appended claims and their equivalents.

Claims

1. An automatic alarm device for the verticality of high-pier roller formwork construction, characterized in that: The utility model provides an outer frame template (1);The outer frame template (1) one side is fixedly connected with monitoring box (2);Monitoring box (2) one side is fixedly connected with alarm (3);Monitoring box (2) inside is equipped with spherical water storage cavity (4), and water storage cavity (4) is filled with clean water inside;Water storage cavity (4) places the float ball (5) inside;Water storage cavity (4) top is fixedly connected with flexible pad (6);Monitoring box (2) top is equipped with one no. The utility model relates to a kind of outer frame template (1);The outer frame template (1) one side is fixedly connected with monitoring box (2);Monitoring box (2) one side is fixedly connected with alarm (3);Monitoring box (2) inside is equipped with spherical water storage cavity (4), and water storage cavity (4) is filled with clean water inside;Water storage cavity (4) places the float ball (5) inside;Water storage cavity (4) top is fixedly connected with flexible pad (6);Monitoring box (2) top is equipped with one no. The utility model relates to a kind of outer frame template (1);The outer frame template (1) one side is fixedly connected with monitoring box (2);Monitoring box (2) one side is fixedly connected with alarm (3);Monitoring box (2) inside is equipped with spherical water storage cavity (4), and water storage cavity (4) is filled with clean water inside;Water storage cavity (4) places the float ball (5) inside;Water storage cavity (4) top is fixedly connected with flexible pad (6);Monitoring box (2) top is equipped with one no. The utility model relates to a kind of outer frame template (1);The outer frame template (1) one side is fixedly connected with monitoring box (2);Monitoring box (2) one side is fixedly connected with alarm (3);Monitoring box (2) inside is equipped with spherical water storage cavity (4), and water storage cavity (4) is filled with clean water inside;Water storage cavity (4) places the float ball (5) inside;Water storage cavity (4) top is fixedly connected with flexible pad (6);Monitoring box (2) top is equipped with one no.

2. The automatic verticality alarm device for high pier roller form construction according to claim 1, characterized in that: The utility model relates to a kind of outer frame template (1);The outer frame template (1) one side is fixedly connected with monitoring box (2);Monitoring box (2) one side is fixedly connected with alarm (3);Monitoring box (2) inside is equipped with spherical water storage cavity (4), and water storage cavity (4) is filled with clean water inside;Water storage cavity (4) places the float ball (5) inside;Water storage cavity (4) top is fixedly connected with flexible pad (6);Monitoring box (2) top is equipped with one no.

3. The automatic verticality alarm device for high pier roller form construction according to claim 2, characterized in that: The utility model relates to a kind of outer frame template (1);The outer frame template (1) one side is fixedly connected with monitoring box (2);Monitoring box (2) one side is fixedly connected with alarm (3);Monitoring box (2) inside is equipped with spherical water storage cavity (4), and water storage cavity (4) is filled with clean water inside;Water storage cavity (4) places the float ball (5) inside;Water storage cavity (4) top is fixedly connected with flexible pad (6);Monitoring box (2) top is equipped with one no.

4. The automatic verticality alarm device for high pier roller form construction according to claim 3, characterized in that: The utility model relates to a kind of outer frame template (1);The outer frame template (1) one side is fixedly connected with monitoring box (2);Monitoring box (2) one side is fixedly connected with alarm (3);Monitoring box (2) inside is equipped with spherical water storage cavity (4), and water storage cavity (4) is filled with clean water inside;Water storage cavity (4) places the float ball (5) inside;Water storage cavity (4) top is fixedly connected with flexible pad (6);Monitoring box (2) top is equipped with one no.

5. The automatic verticality alarm device for high pier roller form construction according to claim 4, characterized in that: The utility model relates to a kind of outer frame template (1);The outer frame template (1) one side is fixedly connected with monitoring box (2);Monitoring box (2) one side is fixedly connected with alarm (3);Monitoring box (2) inside is equipped with spherical water storage cavity (4), and water storage cavity (4) is filled with clean water inside;Water storage cavity (4) places the float ball (5) inside;Water storage cavity (4) top is fixedly connected with flexible pad (6);Monitoring box (2) top is equipped with one no. The utility model relates to a kind of outer frame template (1);The outer frame template (1) one side is fixedly connected with monitoring box (2);Monitoring box (2) one side is fixedly connected with alarm (3);Monitoring box (2) inside is equipped with spherical water storage cavity (4), and water storage cavity (4) is filled with clean water inside;Water storage cavity (4) places the float ball (5) inside;Water storage cavity (4) top is fixedly connected with flexible pad (6);Monitoring box (2) top is equipped with one no.

6. The automatic verticality alarm device for high pier roller form construction according to claim 5, characterized in that: The outer frame template (1) is provided with a guide slot (27) near the position of the blocking cover (26); the guide slot (27) is slidably connected with a guide rod (28); one end of the guide rod (28) is attached to the surface of the blocking cover (26), and the other end is fixedly connected with a movable ball (29); a spring is fixedly connected between the movable ball (29) and the end of the guide slot (27); the side wall surface of the guide slot (27) is uniformly provided with a group of elastic strips (30).

7. The automatic verticality alarm device for high pier roller form construction according to claim 6, characterized in that: The slag baffle (25) is uniformly provided with a group of elastic sheets (31) on the upper side, and the elastic sheets (31) are provided as arc-shaped protruding structures.

Citation Information

Patent Citations

  • Construction method of high bridge pier roller formwork

    CN103147403B

  • Level type tower body perpendicularity warning device for tower crane

    CN107265319A

  • High mound roller die construction straightness autoalarm that hangs down

    CN205662835U