A building structure support device

By introducing synchronous support adjustment components and detection control components into the supporting equipment of building structures, the problems of inconvenient disassembly and insufficient stability of existing equipment in vulnerable parts are solved, and convenient disassembly and real-time monitoring of support equipment is achieved to ensure construction safety and structural stability.

CN119900280BActive Publication Date: 2025-07-08NORTHEAST INST OF GEOGRAPHY & AGRIECOLOGY C A S
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Patent Information

Application Number
CN202510407688.3
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-04-02
Publication Date
2025-07-08
Estimated Expiration
2045-04-02

AI Technical Summary

Technical Problem

During the use of existing building structure support equipment, especially in vulnerable parts such as water accumulation areas, there are problems such as disassembly inconvenient and impact on support stability, which affects construction safety and structural stability.

Method used

A building structural support equipment is designed, including reinforcement rods, synchronous support adjustment components and detection and control components. By detecting the angle between the reinforcement rods and the support plate, the support process is monitored and controlled in real time, providing flexible support and timely alarms to ensure the stability and safety of the support equipment.

Benefits of technology

It realizes convenient disassembly and assembly of support equipment, improves construction safety and structural stability, especially in complex environments such as prone to water accumulation, which can respond to external changes in a timely manner, provide effective support and monitoring, and meet complex support needs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to the technical field of support equipment, and specifically to a support equipment for building structures, including a support plate, on which a plurality of limit supports are provided. The support equipment further includes: a second reinforcement rod, one end of the second reinforcement rod is detachably connected to the limit support, and a plug-in sleeve is fixedly installed at the other end of the second reinforcement rod; a synchronous support adjustment assembly, which is detachably connected to the plug-in sleeve, and a second fixed base and a tightening control bracket are further installed on the synchronous support adjustment assembly; and a detection and control assembly, which is respectively connected to the tightening control bracket and the synchronous support adjustment assembly. The support equipment for building structures of the present invention not only facilitates the disassembly and assembly of the support equipment to a certain extent, providing convenience for the staff, but also meets more complex support requirements in the support operations of certain special parts, which is beneficial to ensuring the safety of construction and the stability of the structure.
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Description

Technical Field

[0001] The present invention relates to the technical field of support equipment, and specifically, it is a building structure support equipment. Background Technique

[0002] Building structure support equipment is mainly applied to various construction projects to ensure construction safety and structural stability. For example, in foundation pit support, the support structure provides retaining, reinforcement and protection for the foundation pit side wall and the surrounding environment, preventing soil collapse and damage to surrounding buildings. Common support equipment includes support piles, support walls, anchor rods and steel supports, etc., each of which has different characteristics and applicable scenarios. And with the continuous progress and innovation of construction technology, building structure support equipment is also continuously developing towards the direction of intelligence, lightweight and modularization.

[0003] For the existing building structure support equipment, during use, ordinary reinforcing rods are usually used to provide inclined support for the support plate. In the case of a large number of reinforcing rods, there will be problems of inconvenient disassembly. Especially for some vulnerable parts, such as some parts are prone to water accumulation, and under the combined action of buoyancy of water, etc., it may affect the stability of the support, and the reinforcing rods that only play a single support role cannot meet complex requirements, thus may affect the construction safety and structural stability, and it is relatively inconvenient to use. Therefore, in view of the above status quo, there is an urgent need to develop a building structure support equipment to overcome the deficiencies in current practical applications. Summary of the Invention

[0004] The purpose of the present invention is to provide a building structure support equipment to solve the problems raised in the above background technique.

[0005] To achieve the above purpose, the present invention provides the following technical solutions:

[0006] A building structure support equipment, including a support plate, on which a plurality of limit supports are provided, and further includes:

[0007] A second reinforcing rod, one end of the second reinforcing rod is detachably connected to the limit support, and a plugging sleeve is fixedly installed at the other end of the second reinforcing rod;

[0008] A synchronous support adjustment assembly, the synchronous support adjustment assembly is detachably connected to the plugging sleeve, and a second fixed base and a jacking control bracket are further installed on the synchronous support adjustment assembly;

[0009] Wherein, the jacking control bracket is fixedly installed on the second fixed base;

[0010] And a detection and control assembly, the detection and control assembly is respectively connected to the jacking control bracket and the synchronous support adjustment assembly;

[0011] When the scenarios of using the support equipment are different, the synchronous support adjustment component drives a plurality of second reinforcement rods to abut against the limit support at different inclination angles. At the same time, it also drives the detection and control component to detect and control in corresponding working states according to the different inclination angles of the second reinforcement rods.

[0012] As a further solution of the present invention: it further includes: a first reinforcement rod, the number of the first reinforcement rods is multiple, and the multiple first reinforcement rods are respectively detachably connected to the multiple limit supports;

[0013] And a first fixed base, the first fixed base is connected to the other end of the first reinforcement rod.

[0014] As a further solution of the present invention: the limit support is provided with a connecting inclined groove, and a magnetic sheet is arranged in the connecting inclined groove. Among them, the first reinforcement rod and the second reinforcement rod are respectively inserted into a plurality of connecting inclined grooves;

[0015] The plugging sleeve is also provided with a magnetic sheet.

[0016] As a further solution of the present invention: the synchronous support adjustment component includes:

[0017] A rotating rod, the rotating rod is rotatably connected to the top pressing control bracket, and a plurality of support base rods are fixedly installed on the rotating rod, and the support base rods are detachably connected to the plugging sleeve;

[0018] Among them, magnetic attracting members are arranged at the ends of the second reinforcement rod and the support base rod, and the magnetic attracting members are electrically connected to the detection and control component;

[0019] A storage notch, the storage notch is located on the top pressing control bracket;

[0020] And a lifting drive unit, the lifting drive unit is respectively connected to the top pressing control bracket and the support base rod.

[0021] As a further solution of the present invention: the lifting drive unit includes:

[0022] A lifting slider, the lifting slider is slidably connected to the top pressing control bracket;

[0023] A push-pull connecting rod, one end of the push-pull connecting rod is rotatably connected to the support base rod;

[0024] A V-shaped movable rod, the middle part of the V-shaped movable rod is rotatably connected to the push-pull connecting rod, and the two ends of the V-shaped movable rod are respectively rotatably connected to the top pressing control bracket and the lifting slider;

[0025] And a driving device, the driving device is respectively connected to the second fixed base, the top pressing control bracket and the lifting slider.

[0026] As a further solution of the present invention: the driving device includes a driving member, a screw rod and a limiting seat;

[0027] The driving member is fixedly installed on the second fixed base, and a screw rod is arranged on the driving member. The screw rod penetrates through the lifting slider and is threadedly connected with the lifting slider;

[0028] The limiting seat is fixedly connected with the tightening control bracket, and the limiting seat is also rotatably connected with the screw rod.

[0029] As a further solution of the present invention: it further includes: an inclined support. The number of the inclined supports is multiple. One ends of the multiple inclined supports are fixedly connected with the second fixed base, and the other ends of the inclined supports are rotatably connected with the rotating rod.

[0030] As a further solution of the present invention: the detection control assembly includes:

[0031] A telescopic storage cylinder, which is fixedly connected with the rotating rod;

[0032] A detection sliding rod, which is inserted into the telescopic storage cylinder and is slidably connected with the telescopic storage cylinder. A multi-functional detector is arranged at the end of the detection sliding rod, and the multi-functional detector is electrically connected with the synchronous support adjustment assembly;

[0033] And a synchronous telescopic unit, which is respectively connected with the telescopic storage cylinder, the detection sliding rod and the push-pull connecting rod.

[0034] As a further solution of the present invention: the synchronous telescopic unit includes:

[0035] A partition board, which is fixedly installed in the telescopic storage cylinder. A driving spring is arranged between the detection sliding rod and the partition board;

[0036] Rope guiding members, the number of the rope guiding members is multiple, and the multiple rope guiding members are respectively located on the tightening control bracket and the telescopic storage cylinder;

[0037] And a control thin rope, one end of the control thin rope is fixedly connected with the detection sliding rod, and the other end of the control thin rope sequentially penetrates through the partition board, the telescopic storage cylinder and the tightening control bracket and then is fixedly connected with the push-pull connecting rod;

[0038] Wherein, the control thin rope also bypasses the multiple rope guiding members and is slidably connected with the rope guiding members.

[0039] As a further solution of the present invention: it further includes: a reinforcement water tank, which is connected with the synchronous support adjustment assembly, and a liquid level sensor is also arranged in the reinforcement water tank;

[0040] Mechanical suction nozzles, the number of the mechanical suction nozzles being multiple, and the multiple mechanical suction nozzles are fixedly installed on the second fixed base and are electrically connected to the detection and control assembly;

[0041] And a discharge pipe, the discharge pipe is connected to the tightening control bracket and is communicated with the reinforcement water tank.

[0042] Compared with the prior art, the beneficial effects of the present invention are:

[0043] During the process of the second reinforcement rod abutting against the limit support, according to the different angles between the second reinforcement rod and the support plate, the synchronous support adjustment assembly also drives the detection and control assembly to perform detection and control operations at corresponding angular positions (for example, in some support areas where the space is limited or there are other limiting factors, the angle between the second reinforcement rod and the support plate cannot be supported at the most suitable position). At this time, if the angle between the second reinforcement rod and the support plate is small, the stability during the support process is more affected by external factors, then the detection and control assembly will assist in the support process, and when the external factors change, it will timely remind the relevant staff with more sensitive actions. For example, in a position where water is likely to accumulate, when the water level reaches a relatively low position and the water level is still rising continuously, it will timely remind the staff to carry out necessary protection and monitoring work. Similarly, when the second reinforcement rod and the support plate are in a relatively suitable position, the second reinforcement rod and the first reinforcement rod have a good support effect on the support plate (at this time, the position of the detection and control assembly also reaches the designated position), then to avoid frequent startup of the detection and control assembly and waste of resources, the detection and control assembly is in a relatively insensitive working position, that is, when the water level reaches a relatively high position and continues to rise, the detection and control assembly will act, so as to achieve good support for the support plate and real-time monitoring and control of the support process. The operation is simple, which not only facilitates the disassembly and assembly of the support equipment to a certain extent and provides convenience for the staff, but also meets more complex support requirements in the support operations of some special parts, which is beneficial to ensuring the safety of construction and the stability of the structure. Description of the Drawings

[0044] Figure 1 It is a three-dimensional structure diagram of the support plate in the embodiment of the present invention.

[0045] Figure 2 It is a three-dimensional structure diagram of the distribution of the first reinforcement rod in the embodiment of the present invention.

[0046] Figure 3 It is a three-dimensional structure diagram of the connecting inclined groove in the embodiment of the present invention.

[0047] Figure 4 It is a three-dimensional structure diagram of the second fixed base in the embodiment of the present invention.

[0048] Figure 5 This is a schematic three-dimensional structure diagram of the distribution of the second reinforcing rod in the embodiment of the present invention.

[0049] Figure 6 This is a schematic three-dimensional structure diagram of the push-pull connecting rod in the embodiment of the present invention.

[0050] Figure 7 This is a schematic three-dimensional structure diagram of the plug-in sleeve in the embodiment of the present invention.

[0051] Figure 8 This is a schematic three-dimensional structure diagram of the reinforcing water tank in the embodiment of the present invention.

[0052] Figure 9 This is a schematic three-dimensional structure diagram of the V-shaped movable rod in the embodiment of the present invention.

[0053] Figure 10 This is a schematic three-dimensional structure diagram of the lifting slider in the embodiment of the present invention.

[0054] Figure 11 This is a schematic three-dimensional structure diagram of the distribution of the suction ports in the embodiment of the present invention.

[0055] Figure 12 This is a schematic three-dimensional structure diagram of the wire guiding member in the embodiment of the present invention.

[0056] Figure 13 This is a schematic cross-sectional structure diagram of the detection slide bar in the embodiment of the present invention.

[0057] Figure 14 This is a schematic partial cross-sectional structure diagram of the telescopic storage cylinder in the embodiment of the present invention.

[0058] In the figure: 1 - support plate, 2 - limit support, 3 - first reinforcing rod, 4 - first fixed base, 5 - second reinforcing rod, 6 - plug-in sleeve, 7 - second fixed base, 8 - tightening control bracket, 9 - reinforcing water tank, 10 - connecting inclined groove, 11 - support base rod, 12 - rotating rod, 13 - inclined support, 14 - telescopic storage cylinder, 15 - detection slide bar, 16 - multi-functional detector, 17 - V-shaped movable rod, 18 - push-pull connecting rod, 19 - control thin rope, 20 - mechanical suction port, 21 - discharge pipe, 22 - lifting slider, 23 - driving member, 24 - screw rod, 25 - limit seat, 26 - storage groove opening, 27 - wire guiding member, 28 - driving spring, 29 - partition board. Detailed implementation manners

[0059] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.

[0060] The following will describe the specific implementation of the present invention in detail in conjunction with specific embodiments.

[0061] Please refer to Figures 1 - 14 , a building structure support device provided by an embodiment of the present invention includes a support plate 1, and a plurality of limit supports 2 are arranged on the support plate 1. It further includes:

[0062] A second reinforcing rod 5, one end of the second reinforcing rod 5 is detachably connected to the limit support 2, and a plugging sleeve 6 is fixedly installed at the other end of the second reinforcing rod 5;

[0063] A synchronous support adjustment component, the synchronous support adjustment component is detachably connected to the plugging sleeve 6, and a second fixed base 7 and a tightening control bracket 8 are further installed on the synchronous support adjustment component;

[0064] Among them, the tightening control bracket 8 is fixedly installed on the second fixed base 7;

[0065] And a detection and control component, the detection and control component is respectively connected to the tightening control bracket 8 and the synchronous support adjustment component;

[0066] When the scenarios of using the support device are different, the synchronous support adjustment component drives a plurality of second reinforcing rods 5 to abut against the limit supports 2 at different inclination angles. At the same time, it also drives the detection and control component to perform detection and control in corresponding working states according to the different inclination angles of the second reinforcing rods 5.

[0067] Please refer to Figures 1 - 14 , it further includes: a first reinforcing rod 3, the number of the first reinforcing rods 3 is multiple, and the multiple first reinforcing rods 3 are respectively detachably connected to the multiple limit supports 2;

[0068] And a first fixed base 4, the first fixed base 4 is connected to the other end of the first reinforcing rod 3.

[0069] An engagement inclined groove 10 is arranged on the limit support 2, and a magnetic sheet is arranged in the engagement inclined groove 10. Among them, the first reinforcing rod 3 and the second reinforcing rod 5 are respectively inserted into the multiple engagement inclined grooves 10;

[0070] A magnetic sheet is also arranged in the plugging sleeve 6.

[0071] During the support process in building construction, first, fix the support plate 1 in the designated protection area, such as the inner wall surface of the foundation pit. The length and height of the support plate 1 are set according to actual needs. Then, insert one end of the first reinforcing rod 3 into the connecting inclined groove 10 provided on the limit support 2, and connect the other end of the first reinforcing rod 3 to the ground or other components, thereby forming an inclined support for the support plate 1. At the same time, for some special areas, such as positions prone to water accumulation, a support method that combines the second reinforcing rod 5, the synchronous support adjustment component, and the detection and control component can be adopted. One or more sets of the above combined equipment can be set according to the actual construction needs. In order to consider the construction cost, in other parts, a support structure that combines the first reinforcing rod 3 and the first fixed base 4 can be adopted, which will not be elaborated here. When supporting in special areas, first connect the second reinforcing rod 5 with a specified length to the synchronous support adjustment component through the insertion sleeve 6, thereby realizing the disassembly and assembly management of the support equipment, facilitating the transportation of the support equipment and the selection and installation according to the construction situation, so as to achieve a better support effect. After the second reinforcing rod 5 is installed on the synchronous support adjustment component, start the synchronous support adjustment component, which can drive one or more second reinforcing rods 5 to rotate simultaneously (the synchronous support adjustment component can be made to act first and stop at a position where it is easy to be inserted into the insertion sleeve 6, and the second reinforcing rod 5 can be reversed after the insertion is completed, and corresponding operations can be carried out according to needs). Finally, the top end of the second reinforcing rod 5 abuts against the connecting inclined groove 10 on the limit support 2, and the second fixed base 7 is installed on the ground or other components. Thus, the support work for multiple parts of the support plate 1 is completed. During the process of the second reinforcing rod 5 abutting against the limit support 2, according to the different angles between the second reinforcing rod 5 and the support plate 1, the synchronous support adjustment component also drives the detection and control component to perform detection and control operations at the corresponding angular positions (for example, in some support areas, the space is limited or there are other limiting factors, and the angle between the second reinforcing rod 5 and the support plate 1 cannot be supported at the most suitable position). At this time, if the angle between the second reinforcing rod 5 and the support plate 1 is small, the stability during the support process will be more affected by external factors, then the detection and control component will assist in the support process, and when the external factors change, it will timely remind the relevant staff with more sensitive actions. For example, in a position prone to water accumulation, when the water level reaches a relatively low position and the water level is still rising continuously, the staff will be timely reminded to carry out necessary protection and monitoring work. Similarly, when the second reinforcing rod 5 and the support plate 1 are in a relatively suitable position, the second reinforcing rod 5 and the first reinforcing rod 3 have a good support effect on the support plate 1 (at this time, the position of the detection and control component also reaches the designated position), then to avoid frequent startup of the detection and control component and waste of resources, the detection and control component is in a relatively insensitive working position, that is, when the water level reaches a relatively high position and continues to rise, the detection and control component will act, so as to achieve good support for the support plate 1 and real-time monitoring and control of the support process, and the operation is simple.It not only facilitates the disassembly and assembly of the support equipment to a certain extent, providing convenience for the staff, but also meets more complex support requirements in the support operations of certain special parts, which is conducive to ensuring the construction safety and the stability of the structure.

[0072] In an embodiment of the present invention, please refer to Figures 1 - 14 , the synchronous support adjustment assembly includes:

[0073] A rotating rod 12, the rotating rod 12 is rotatably connected to the jacking control bracket 8, and a plurality of support base rods 11 are fixedly installed on the rotating rod 12, and the support base rods 11 are detachably connected to the insertion sleeve 6;

[0074] Wherein, magnetic attraction members are arranged at the ends of the second reinforcing rod 5 and the support base rod 11, and the magnetic attraction members are electrically connected to the detection control assembly;

[0075] A storage slot 26, the storage slot 26 is located on the jacking control bracket 8;

[0076] And a lifting drive unit, the lifting drive unit is respectively connected to the jacking control bracket 8 and the support base rod 11.

[0077] The lifting drive unit includes:

[0078] A lifting slider 22, the lifting slider 22 is slidably connected to the jacking control bracket 8;

[0079] A push-pull connecting rod 18, one end of the push-pull connecting rod 18 is rotatably connected to the support base rod 11;

[0080] A V-shaped movable rod 17, the middle of the V-shaped movable rod 17 is rotatably connected to the push-pull connecting rod 18, and the two ends of the V-shaped movable rod 17 are respectively rotatably connected to the jacking control bracket 8 and the lifting slider 22;

[0081] And a driving device, the driving device is respectively connected to the second fixed base 7, the jacking control bracket 8 and the lifting slider 22. Among them, the driving device can adopt a manual rotation driving method in cooperation with a screw rod, or a hydraulic direct driving lifting method.

[0082] The driving device includes a driving member 23, a screw rod 24 and a limit seat 25;

[0083] The driving member 23 is fixedly installed on the second fixed base 7, and a screw rod 24 is arranged on the driving member 23, the screw rod 24 passes through the lifting slider 22 and is threadedly connected to the lifting slider 22;

[0084] The position-limiting seat 25 is fixedly connected to the top-tightening control bracket 8, and the position-limiting seat 25 is also rotatably connected to the screw rod 24.

[0085] It further includes: inclined supports 13. The number of the inclined supports 13 is multiple. One ends of the multiple inclined supports 13 are all fixedly connected to the second fixed base 7, and the other ends of the inclined supports 13 are rotatably connected to the rotating rod 12.

[0086] Before the support plate 1 is supported, multiple support base rods 11 are in a vertical state and are parallel to the top-tightening control bracket 8. Among them, one support base rod 11 located in the middle is placed in the storage slot opening 26. At this time, the space occupied by the equipment on the entire second fixed base 7 is relatively small, which is convenient for transportation and storage, and can provide certain protection for the support base rods 11 and the magnetic attraction members on the support base rods 11. Among them, the magnetic attraction member can be in the form of an electromagnet, and the on / off of the electromagnet and the magnitude of the current passed through can be controlled according to the position of the detection and control assembly. For example, when the detection and control assembly is in a more sensitive working position, the electromagnet will be energized and a relatively large current will be passed through, so that during the entire support process, a magnetic attraction force is generated between the end of the support base rod 11 and the inner wall of the insertion sleeve 6, and a magnetic attraction force is also generated between the end of the second reinforcing rod 5 and the inner wall of the connecting inclined groove 10, thereby ensuring the stability of each connection point. This will not be elaborated here too much. After the support base rod 11 is inserted into the insertion sleeve 6 and the support plate 1 is supported, the driving member 23 is started. The driving member 23 can be in the form of a motor, and the driving member 23 can drive the screw rod 24 to rotate. At this time, under the action of the threaded engagement between the lifting slider 22 and the screw rod 24, the lifting slider 22 will move downward on the top-tightening control bracket 8. When the lifting slider 22 moves downward, it will push the push-pull connecting rod 18 to move in the storage slot opening 26 through the V-shaped movable rod 17, and finally push the support base rod 11 to drive the rotating rod 12 to rotate on the top-tightening control bracket 8. Among them, the V-shaped movable rod 17 can adopt a structure of two connecting rods hinged, and the hinged part is rotatably connected to the end of the push-pull connecting rod 18. When the rotating rod 12 rotates, it will drive multiple support base rods 11 to rotate clockwise synchronously (as Figure 2 shown), until the support base rod 11 rotates from the vertical state to a state close to the horizontal state (it is easier to install the second reinforcing rod 5 in this state. Of course, it can also be installed in other position states according to needs), so that it is convenient for the staff to respectively sleeved multiple insertion sleeves 6 on the support base rods 11 to complete the connection between the support base rods 11 and the second reinforcing rods 5. After the insertion is completed, the driving member 23 is started again to make the lifting slider 22 move upward a small distance until the end of the second reinforcing rod 5 abuts against the connecting inclined groove 10 on the position-limiting support 2. At this time, the support for the support plate 1 is quickly realized. This will not be elaborated here too much.

[0087] In an embodiment of the present invention, please refer to Figures 1 - 14, the detection and control component includes:

[0088] A telescopic storage cylinder 14, which is fixedly connected to the rotating rod 12;

[0089] A detection slide rod 15, which is inserted into the telescopic storage cylinder 14 and slidably connected to the telescopic storage cylinder 14. A multi-functional detector 16 is also provided at the end of the detection slide rod 15, and the multi-functional detector 16 is electrically connected to the synchronous support adjustment component;

[0090] And a synchronous telescopic unit, which is respectively connected to the telescopic storage cylinder 14, the detection slide rod 15 and the push-pull link 18.

[0091] The synchronous telescopic unit includes:

[0092] A partition plate 29, which is fixedly installed in the telescopic storage cylinder 14. A driving spring 28 is provided between the detection slide rod 15 and the partition plate 29;

[0093] A wire guiding member 27, and the number of the wire guiding members 27 is multiple. The multiple wire guiding members 27 are respectively located on the top pressing control bracket 8 and the telescopic storage cylinder 14;

[0094] And a control thin rope 19, one end of the control thin rope 19 is fixedly connected to the detection slide rod 15, and the other end of the control thin rope 19 sequentially passes through the partition plate 29, the telescopic storage cylinder 14 and the top pressing control bracket 8 and is fixedly connected to the push-pull link 18;

[0095] Wherein, the control thin rope 19 also bypasses the multiple wire guiding members 27 and is slidably connected to the wire guiding members 27.

[0096] Please refer to Figures 1 - 14 , further including: a reinforcement water tank 9, which is connected to the synchronous support adjustment component, and a liquid level sensor is also provided in the reinforcement water tank 9;

[0097] Mechanical suction ports 20, and the number of the mechanical suction ports 20 is multiple. The multiple mechanical suction ports 20 are all fixedly installed on the second fixed base 7 and are electrically connected to the detection and control component;

[0098] And a discharge pipe 21, which is connected to the top pressing control bracket 8 and is communicated with the reinforcement water tank 9.

[0099] During the process of the rotating reinforcement rod II 5 supporting the support plate 1, the rotating rod 12 will also drive the telescopic storage cylinder 14 to rotate. At the same time, when the support base rod 11 rotates from the vertical state to the inclined direction, the V-shaped movable rod 17 pushes the end of the push-pull connecting rod 18 closer to the direction of the top-tightening control bracket 8. At this time, the control thin rope 19 gradually becomes slack. Under the thrust of the driving spring 28, the detection slide rod 15 can slide outward in the telescopic storage cylinder 14. Among them, a plurality of wire guiding members 27 are provided on the top-tightening control bracket 8 and the telescopic storage cylinder 14. The wire guiding member 27 can be in the form of a diversion cylinder or a fixed pulley, and will not be elaborated here too much, so as to ensure that the control thin rope 19 moves along a defined trajectory, which is beneficial to ensuring the stable sliding of the detection slide rod 15. During the process of the detection slide rod 15 sliding outward from the telescopic storage cylinder 14, it can drive the multi-functional detector 16 to move synchronously (before working, the detection slide rod 15 is retracted in the telescopic storage cylinder 14, and the telescopic storage cylinder 14 and the detection slide rod 15 are in a nearly horizontal state. On the one hand, because the detection slide rod 15 is stored in the telescopic storage cylinder 14, the multi-functional detector 16 is located at a position close to the end of the telescopic storage cylinder 14, which can provide a certain protection for the multi-functional detector 16. On the other hand, it is convenient for the staff to check and maintain the multi-functional detector 16 at close range, avoiding blind spots and dead corners). Among them, the multi-functional detector 16 can adopt the working mode of a combination of multiple sensors, and can detect the rotation angle of the telescopic storage cylinder 14 (that is, the rotation angle of the reinforcement rod II 5, so as to judge the included angle between the reinforcement rod II 5 and the support plate 1), so as to control the start and stop of the magnetic attraction member and the magnitude of the current passed, and can also detect the water level of the accumulated water at the fixed base II 7. For example, when the included angle between the reinforcement rod II 5 and the support plate 1 is small, the inclination degree of the reinforcement rod II 5 is large, and its support stability for the support plate 1 is poor. And at this time, because the rotation angle of the rotating rod 12 is small, the multi-functional detector 16 is at a relatively high distance from the ground. By detecting the distance from the ground, when there is accumulated water and the accumulated water reaches a certain water level, the multi-functional detector 16 will control the water pump on the mechanical suction port 20 to start, so as to suck the accumulated water, and make a part of the accumulated water enter the discharge pipe 21 through the mechanical suction port 20 and finally be discharged into the reinforcement water tank 9 until the water level reaches the liquid level sensor provided in the reinforcement water tank 9. At this time, the liquid level sensor controls the water pump to stop. If the multi-functional detector 16 detects that the water level of the accumulated water decreases and remains unchanged, the external alarm system will not be triggered. At this time, under the gravity of the reinforcement water tank 9, a certain pressure will be exerted on the lifting slider 22, so as to prevent the lifting slider 22 from moving upward due to loosening or other external factors (because when the lifting slider 22 moves upward, the reinforcement rod II 5 will reverse, thus reducing the support effect on the support plate 1). Because there is a part of accumulated water at this time, it is beneficial to further ensure the support effect and improve the safety performance.When the multi-functional detector 16 detects that the water level continues to rise (when the water level rises slowly, during this process of water level rise, under the pressure of the reinforced water tank 9, the safety of equipment use can be ensured), the external alarm system is triggered, thus reminding the staff to carry out monitoring work, which provides convenience for the staff.

[0100] It should be noted that in the present invention, unless otherwise clearly specified and defined, terms such as "sliding", "rotating", "fixing", "being provided with", etc. should be understood in a broad sense. For example, it can be a welded connection, a bolt connection, or an integral body; it can be a mechanical connection or an electrical connection; it can be directly connected or indirectly connected through an intermediate medium, and it can be the communication inside two components or the interaction relationship between two components, unless otherwise clearly defined. For those of ordinary skill in the art, the specific meanings of the above terms in the present invention can be understood according to specific situations.

[0101] In addition, it should be understood that although this specification is described according to embodiments, not every embodiment only contains an independent technical solution. This narrative way of the specification is only for clarity. Those skilled in the art should regard the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.

Claims

1. A building structure support device, including a support plate, and a plurality of limiting supports are arranged on the support plate, characterized in that, It also includes: A second reinforcing rod, one end of the second reinforcing rod is detachably connected to the limiting support, and a plugging sleeve is fixedly installed at the other end of the second reinforcing rod; A synchronous support adjustment component, the synchronous support adjustment component is detachably connected to the plugging sleeve, and a second fixed base and a tightening control bracket are also installed on the synchronous support adjustment component; Wherein, the tightening control bracket is fixedly installed on the second fixed base; And a detection control component, the detection control component is respectively connected to the tightening control bracket and the synchronous support adjustment component; When the scenarios of using the support equipment are different, the synchronous support adjustment component drives a plurality of second reinforcing rods to abut against the limiting support at different inclination angles. At the same time, it also drives the detection control component to perform detection and control in corresponding working states according to the different inclination angles of the second reinforcing rods; The synchronous support adjustment component includes: a rotating rod, the rotating rod is rotatably connected to the tightening control bracket, and a plurality of support base rods are fixedly installed on the rotating rod, and the support base rods are detachably connected to the plugging sleeve; Wherein, magnetic attraction members are arranged at the ends of the second reinforcing rod and the support base rod, and the magnetic attraction members are electrically connected to the detection control component; A storage notch, the storage notch is located on the tightening control bracket; And a lifting drive unit, the lifting drive unit is respectively connected to the tightening control bracket and the support base rod; The lifting drive unit includes: a lifting slider, the lifting slider is slidably connected to the tightening control bracket; A push-pull connecting rod, one end of the push-pull connecting rod is rotatably connected to the support base rod; A V-shaped movable rod, the middle of the V-shaped movable rod is rotatably connected to the push-pull connecting rod, and the two ends of the V-shaped movable rod are respectively rotatably connected to the tightening control bracket and the lifting slider; And a driving device, the driving device is respectively connected to the second fixed base, the tightening control bracket and the lifting slider; The detection control component includes: a telescopic storage cylinder, the telescopic storage cylinder is fixedly connected to the rotating rod; A detection sliding rod, the detection sliding rod is inserted into the telescopic storage cylinder and is slidably connected to the telescopic storage cylinder, and a multifunctional detector is arranged at the end of the detection sliding rod, and the multifunctional detector is electrically connected to the synchronous support adjustment component; And a synchronous telescopic unit, the synchronous telescopic unit is respectively connected to the telescopic storage cylinder, the detection sliding rod and the push-pull connecting rod; The synchronous telescopic unit includes: a partition plate, the partition plate is fixedly installed in the telescopic storage cylinder, wherein, a driving spring is arranged between the detection sliding rod and the partition plate; A guide rope member, the number of the guide rope members is multiple, and the multiple guide rope members are respectively located on the tightening control bracket and the telescopic storage cylinder; And a control thin rope, one end of the control thin rope is fixedly connected to the detection sliding rod, and the other end of the control thin rope sequentially passes through the partition plate, the telescopic storage cylinder and the tightening control bracket and then is fixedly connected to the push-pull connecting rod; Wherein, the control thin rope also bypasses the multiple guide rope members and is slidably connected to the guide rope members.

2. The building structure support device according to claim 1, characterized in that, It also includes: The first reinforcing rod, the number of the first reinforcing rods is multiple, and the multiple first reinforcing rods are respectively detachably connected to the multiple limiting supports; And the first fixing base, the first fixing base is connected to the other end of the first reinforcing rod.

3. The building structure support device according to claim 1 or 2, characterized in that, The limiting support is provided with an engaging inclined groove, and a magnetic sheet is arranged in the engaging inclined groove. Among them, the first reinforcing rod and the second reinforcing rod are respectively inserted into the multiple engaging inclined grooves; A magnetic sheet is also arranged in the plugging sleeve.

4. The building structure support equipment according to claim 1, characterized in that, The driving device includes a driving member, a screw rod and a limiting seat; The driving member is fixedly installed on the second fixing base, and a screw rod is arranged on the driving member. The screw rod penetrates through the lifting slider and is in threaded connection with the lifting slider; The limiting seat is fixedly connected to the top pressing control bracket, and the limiting seat is also rotatably connected to the screw rod.

5. The building structure support equipment according to claim 4, characterized in that, It further includes: The inclined supports, the number of the inclined supports is multiple, one ends of the multiple inclined supports are fixedly connected to the second fixing base, and the other ends of the inclined supports are rotatably connected to the rotating rod.

6. The building structure support device according to claim 1, characterized in that, It further includes: The reinforcing water tank, the reinforcing water tank is connected to the synchronous support adjusting assembly, and a liquid level sensor is further arranged in the reinforcing water tank; The mechanical suction ports, the number of the mechanical suction ports is multiple, the multiple mechanical suction ports are fixedly installed on the second fixing base and are electrically connected to the detection control assembly; And the discharge pipe, the discharge pipe is connected to the top pressing control bracket and is communicated with the reinforcing water tank.

Citation Information

Patent Citations

  • House building deep foundation pit supporting structure

    CN117822607A

  • Supporting device for building deep foundation pit

    CN219825278U