Real-time monitoring device for building construction site
By introducing shielding, dust removal, and fixing devices into the real-time monitoring device at the construction site, the problems of device damage and lens glare under severe weather conditions were solved, and the stability and clarity of the equipment were improved.
Patent Information
- Application Number
- CN202520165820.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-24
- Publication Date
- 2025-12-09
- Estimated Expiration
- 2035-01-24
AI Technical Summary
Traditional real-time monitoring devices for construction sites are prone to damage in inclement weather, resulting in a shortened lifespan. Furthermore, the lenses are susceptible to glare from sunlight, which reduces the clarity and stability of the monitored images.
A monitoring device was designed, which includes a support plate, a shielding device, a dust removal device, and a fixing device. The device uses a hollow motor to drive the folding umbrella to rotate, thus providing shade and rain protection. A miniature high-speed fan removes dust and debris, and the air pump fixing device ensures stability.
It improves the lifespan of the monitoring device and the clarity of the image, prevents lens glare, and ensures the stability and effectiveness of monitoring.
Smart Images

Figure CN223648911U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of building engineering monitoring technology, and in particular to a real-time monitoring device for building construction sites. Background Technology
[0002] Construction refers to the process of transforming various building materials into a building entity through a series of construction activities in accordance with design drawings and relevant specifications in a construction project. A real-time monitoring device for construction sites provides comprehensive real-time monitoring of the construction site.
[0003] Traditional real-time monitoring devices for construction sites are prone to damage during operation due to severe weather conditions such as heavy rain and high temperatures. This can cause rainwater to enter the monitoring unit, leading to damage and reducing the equipment's lifespan. Additionally, sunlight can cause lens glare, compromising the clarity and stability of the monitored image and thus reducing the safety of the monitoring unit. Therefore, those skilled in the art have provided a real-time monitoring device for construction sites to address the problems mentioned in the background. Utility Model Content
[0004] The purpose of this utility model is to address the shortcomings of existing technologies by proposing a real-time monitoring device for construction sites. By setting up a shielding device, the device's lifespan and the clarity and stability of the monitoring image are ensured, thereby improving the safety of the monitored entity.
[0005] To achieve the above objectives, the present invention provides the following technical solution: a real-time monitoring device for a construction site, comprising a support plate, an mounting plate at the center of the rear end face of the support plate, four first mounting holes arranged in a rectangle at the center of the rear end face of the mounting plate, a support rod at one side of the center of the lower end face of the support plate, a monitoring body at the center of the lower end face of the support rod, and a shielding device at the lower end of the outer center of the support rod.
[0006] The shielding device includes a rotating component and a shielding component. The rotating component is located at the lower center of the outer side of the support rod, and the shielding component is located at the center of the front end face of the rotating component.
[0007] The rotating assembly includes a hollow motor, which is disposed on the outside of the support rod. A first bearing is provided on the inner wall of the output shaft of the hollow motor. The inner ring of the first bearing is sleeved on the outside of the support rod and is fixedly connected to the support rod. An annular groove is provided at the center of the outside of the support rod. A second bearing is provided at the center of the inner wall of the annular groove. An annular block is provided at the center of the outside of the second bearing. A connecting rod is provided at the center of the front end face of the annular block and is fixedly connected to the inner wall of the hollow motor.
[0008] Through the above technical solution, the hollow motor is rotatably connected to the support rod via a first bearing, thus preventing the support rod from rotating. The annular block is rotatably connected to the support rod via a second bearing, allowing the annular block to rotate freely. Finally, the hollow motor is fixedly connected to the annular block, enabling it to rotate, thereby driving the connecting rod to rotate.
[0009] Furthermore, a support block is provided at the front of the center side of the upper end face of the monitoring body, a fixing rod is provided at the upper end of the center of the front end face of the support block, a folding umbrella is provided at the center between the fixing rod and the connecting rod, a groove is provided at the rear of the center of the upper end face of the folding umbrella, and the folding umbrella is fan-shaped folding;
[0010] The above technical solution uses a support block to support the fixed rod, ensuring its fixation. A connecting rod with one end rotates to allow the folding umbrella to unfold and can be adjusted according to the environment, achieving sun and rain protection. This prevents rainwater from entering the monitoring unit and causing damage, extending the equipment's lifespan. It also prevents lens glare from sunlight, ensuring clear and stable monitoring images, thus improving the security of the monitoring unit.
[0011] Furthermore, a dust removal device is provided at the center of the upper surface of the support plate. The dust removal device includes a miniature high-speed fan. The miniature high-speed fan is located at the upper surface of the support plate. An adapter is provided at the output end of the miniature high-speed fan. A connecting pipe is provided at the output end of the adapter. The output end of the connecting pipe passes through the support plate and the upper end of the monitoring body in sequence and leads to the lower end of the monitoring body. The output end is inclined and faces the output end of the monitoring body.
[0012] With the above technical solution, when the micro high-speed fan starts, the high-speed airflow it generates is transmitted through the adapter and connecting pipe, and sprayed out from the output end of the connecting pipe. Then, the airflow is directed towards the output end of the monitoring subject at an angle, and blown onto the surface of the monitoring subject at a certain angle. This allows the monitoring subject to be effectively cleaned of dust, raindrops and other debris, ensuring the clarity and normal operation of the monitoring equipment, thereby improving the monitoring effect.
[0013] Furthermore, a fixing device is provided at the rear center of the upper surface of the support plate. The fixing device includes an air pump, which is located at the upper surface of the support plate. A suction cup is provided at the center of the rear end face of the mounting plate. The output end of the air pump passes through the support plate and the mounting plate in sequence and extends to the rear end face of the mounting plate, and is connected to the input end of the suction cup. A rotating shaft is provided at the front center of the lower surface of the support plate.
[0014] The above technical solution generates negative pressure after the air pump is started, and the negative pressure is transmitted to the suction cup. Under the action of negative pressure, the suction cup is tightly adsorbed onto the installation surface, thus fixing the device.
[0015] Furthermore, a support column is provided at the center of the rear end face of the rotating shaft, a mounting block is provided at the end of the support column, and a second mounting hole is provided at the center of the front end face of the mounting block;
[0016] The above technical solution uses a rotating shaft to support the rotation of the support column, then adjusts the installation angle by rotating the support column, and further fixes the support column using a mounting block and a second mounting hole, ensuring its stability during use and preventing the device from shaking or tilting during rotation and adjustment, thus ensuring the stability of the monitoring screen and improving the overall stability of the monitoring device.
[0017] Furthermore, a battery box is provided at the rear center of the lower end face of the support plate;
[0018] The above technical solution enables the activation of the dust removal device, shielding device, and fixing device through the battery inside the battery box.
[0019] This utility model has the following beneficial effects:
[0020] 1. In this utility model, when the real-time monitoring device is used at a construction site, a hollow motor drives the connecting rod to rotate, and the rotation of the connecting rod enables the unfolding of a folding umbrella. It can also be adjusted according to the environment, achieving the effects of sunshade and rain protection, preventing rainwater from entering the monitoring body and causing damage, ensuring the service life of the equipment, and preventing lens glare caused by sunlight, ensuring the clarity and stability of the monitoring image, thereby improving the safety of the monitoring body.
[0021] 2. In this utility model, the high-speed airflow generated by the micro high-speed fan is transmitted through the adapter and connecting pipe, and sprayed out from the output end of the connecting pipe. The airflow is then directed towards the output end of the monitoring body at an angle, so that it can effectively remove dust, raindrops and other debris from the monitoring body, ensuring the clarity and normal operation of the monitoring equipment, thereby improving the monitoring effect.
[0022] 3. In this utility model, after the air pump is started, negative pressure is generated and transmitted to the suction cup. Under the action of negative pressure, the suction cup is tightly adsorbed onto the mounting surface. The mounting block and the second mounting hole are used to further fix the support column, ensuring its firmness during use and preventing the device from shaking or tilting during rotation and adjustment. This ensures the stability of the monitoring screen and improves the overall stability of the monitoring body. Attached Figure Description
[0023] Figure 1 This is a perspective view of a real-time monitoring device for construction sites proposed in this utility model;
[0024] Figure 2 This is a side sectional view of a real-time monitoring device for construction sites proposed in this utility model;
[0025] Figure 3 for Figure 1 Enlarged view of point A in the middle;
[0026] Figure 4 for Figure 2 Enlarged diagram of point B in the middle.
[0027] Legend:
[0028] 1. Support plate; 2. Mounting plate; 3. First mounting hole; 4. Support rod; 5. Monitoring body; 6. Dust removal device; 601. Miniature high-speed fan; 602. Adapter; 603. Connecting pipe; 7. Shielding device; 701. Hollow motor; 702. First bearing; 703. Annular groove; 704. Second bearing; 705. Annular block; 706. Connecting rod; 707. Support block; 708. Fixing rod; 709. Folding umbrella; 710. Groove; 8. Fixing device; 801. Air pump; 802. Suction cup; 803. Rotating shaft; 804. Support column; 805. Mounting block; 806. Second mounting hole; 9. Battery box. Detailed Implementation
[0029] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0030] Reference Figure 1-4 An embodiment of this utility model provides a real-time monitoring device for a construction site, comprising a support plate 1, an mounting plate 2 at the center of the rear end face of the support plate 1, four first mounting holes 3 arranged in a rectangle at the center of the rear end face of the mounting plate 2, a support rod 4 at one side of the center of the lower end face of the support plate 1, a monitoring body 5 at the center of the lower end face of the support rod 4, a shielding device 7 at the lower end of the outer center of the support rod 4, and a battery box 9 at the rear of the center of the lower end face of the support plate 1. The battery box 9 supports the activation of the dust removal device 6, the shielding device 7, and the fixing device 8 through the battery inside the battery box 9.
[0031] A dust removal device 6 is provided at the center of the upper surface of the support plate 1. The dust removal device 6 includes a mini high-speed fan 601. The mini high-speed fan 601 is located on the upper surface of the support plate 1. An adapter 602 is provided at the output end of the mini high-speed fan 601. A connecting pipe 603 is provided at the output end of the adapter 602. The output end of the connecting pipe 603 passes through the upper end of the support plate 1 and the monitoring body 5 and extends to the lower surface of the monitoring body 5. The output end is inclined and faces the output end of the monitoring body 5. When the mini high-speed fan 601 is started, the high-speed airflow it generates is transmitted through the adapter 602 and the connecting pipe 603 and sprayed out from the output end of the connecting pipe 603. The airflow is then blown at a certain angle towards the output end of the monitoring body 5, which can effectively remove dust, raindrops and other debris from the monitoring body 5, ensuring the clarity and normal operation of the monitoring equipment, thereby improving the monitoring effect.
[0032] A fixing device 8 is provided at the rear center of the upper end face of the support plate 1. The fixing device 8 includes an air pump 801, which is located at the upper end face of the support plate 1. A suction cup 802 is provided at the center of the rear end face of the mounting plate 2. The output end of the air pump 801 passes through the support plate 1 and the mounting plate 2 in sequence and extends to the rear end face of the mounting plate 2. It is also connected to the input end of the suction cup 802. A rotating shaft 803 is provided at the front center of the lower end face of the support plate 1. After the air pump 801 is started, a negative pressure is generated and transmitted to the suction cup 802. Under the action of the negative pressure, the suction cup 802 is tightly adsorbed onto the mounting surface, thereby fixing the device.
[0033] A support column 804 is provided at the center of the rear end face of the rotating shaft 803, and a mounting block 805 is provided at the end of the support column 804. A second mounting hole 806 is provided at the center of the front end face of the mounting block 805. The support column 804 is supported by the rotating shaft 803 to rotate, and the mounting angle is adjusted by rotating the support column 804. The mounting block 805 and the second mounting hole 806 are used to further fix the support column 804, ensuring its firmness during use and preventing the device from shaking or tilting during rotation and adjustment. This ensures the stability of the monitoring screen and improves the overall stability of the monitoring body 5.
[0034] like Figure 4As shown, the shielding device 7 includes a rotating assembly and a shielding assembly. The rotating assembly is located at the lower center of the outer side of the support rod 4, and the shielding assembly is located at the center of the front end face of the rotating assembly. The rotating assembly includes a hollow motor 701, which is located on the outer side of the support rod 4. A first bearing 702 is provided on the inner wall of the output shaft of the hollow motor 701. The inner ring of the first bearing 702 is sleeved on the outer side of the support rod 4 and is fixedly connected to the support rod 4. An annular groove 703 is provided at the center of the outer side of the support rod 4, and a second bearing 704 is provided at the center of the inner wall of the annular groove 703. The outer center of the second bearing 704 is located at... An annular block 705 is provided, and a connecting rod 706 is provided at the center of the front end face of the annular block 705 and is fixedly connected to the inner wall of the hollow motor 701. The hollow motor 701 is rotatably connected to the support rod 4 through the first bearing 702, which prevents it from driving the support rod 4 to rotate. The annular block 705 is rotatably connected to the support rod 4 through the second bearing 704, which allows the annular block 705 to rotate freely. The hollow motor 701 is fixedly connected to the annular block 705, which allows it to drive the annular block 705 to rotate, thereby driving the connecting rod 706 to rotate.
[0035] A support block 707 is located on the front side of the center of the upper surface of the monitoring body 5. A fixing rod 708 is located at the upper center of the front surface of the support block 707. A folding umbrella 709 is located at the center between the fixing rod 708 and the connecting rod 706. A groove 710 is located at the rear center of the upper surface of the folding umbrella 709. The folding umbrella 709 is fan-shaped. The support block 707 supports the fixing rod 708, thus fixing the fixing rod 708. The connecting rod 706 rotates at one end, allowing the folding umbrella 709 to unfold. It can be adjusted according to the environment, achieving the effect of sunshade and rain protection, preventing rainwater from entering the monitoring body 5 and causing damage, thus ensuring the service life of the equipment. It also prevents lens glare caused by sunlight, ensuring the clarity and stability of the monitoring image, thereby improving the security of the monitoring body 5.
[0036] Working principle: When the real-time monitoring device is used at the construction site, the air pump 801 is started to generate negative pressure, which is then transmitted to the suction cup 802. Under the action of negative pressure, the suction cup 802 firmly adheres to the installation surface, thus fixing the device. The rotating shaft 803 supports the rotation of the support column 804, and the installation angle is adjusted by rotating the support column 804. The mounting block 805 and the second mounting hole 806 are used to further fix the support column 804, ensuring its firmness during use and preventing the device from shaking or tilting during rotation and adjustment. This ensures the stability of the monitoring screen and improves the overall stability of the monitoring body 5.
[0037] In severe weather, the hollow motor 701 is rotatably connected to the support rod 4 via the first bearing 702, preventing the support rod 4 from rotating. The annular block 705 is rotatably connected to the support rod 4 via the second bearing 704, allowing the annular block 705 to rotate freely. The hollow motor 701 is then fixedly connected to the annular block 705, enabling it to rotate, which in turn drives the connecting rod 706. The support block 707 supports the fixed rod 708, securing it. Rotation of one end of the connecting rod 706 allows the folding umbrella 709 to unfold, and it can be adjusted according to the environment, providing sun and rain protection. This prevents rainwater from entering the monitoring unit 5 and causing damage, extending the equipment's lifespan. It also prevents lens glare from sunlight, ensuring clear and stable monitoring images, thus improving the security of the monitoring unit 5.
[0038] When the miniature high-speed fan 601 is started, the high-speed airflow it generates is transmitted through the adapter 602 and the connecting pipe 603, and is ejected from the output end of the connecting pipe 603. The airflow is then directed at the output end of the monitoring body 5 at an angle, allowing it to effectively remove dust, raindrops and other debris from the monitoring body 5, ensuring the clarity and normal operation of the monitoring equipment, thereby improving the monitoring effect.
[0039] Finally, it should be noted that the above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Although the present utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.
Claims
1. A real-time monitoring device for construction sites, comprising a support plate (1), characterized in that: The support plate (1) has an installation plate (2) at the center of its rear end face. The installation plate (2) has four first installation holes (3) arranged in a rectangle at the center of its rear end face. The support plate (1) has a support rod (4) at the center of its lower end face. The support rod (4) has a monitoring body (5) at the center of its lower end face. The support rod (4) has a shielding device (7) at the lower end of its outer side. The shielding device (7) includes a rotating component and a shielding component. The rotating component is located at the lower center of the outer side of the support rod (4), and the shielding component is located at the center of the front end face of the rotating component. The rotating assembly includes a hollow motor (701), which is disposed on the outside of the support rod (4). A first bearing (702) is provided on the inner wall of the output shaft of the hollow motor (701). The inner ring of the first bearing (702) is sleeved on the outside of the support rod (4) and is fixedly connected to the support rod (4). An annular groove (703) is provided at the center of the outside of the support rod (4). A second bearing (704) is provided at the center of the inner wall of the annular groove (703). An annular block (705) is provided at the center of the outside of the second bearing (704). A connecting rod (706) is provided at the center of the front end face of the annular block (705) and is fixedly connected to the inner wall of the hollow motor (701).
2. The real-time monitoring device for construction sites according to claim 1, characterized in that: The monitoring body (5) has a support block (707) located at the front of the center side of the upper end face. The support block (707) has a fixing rod (708) located at the upper end of the center of the front end face. The fixing rod (708) and the connecting rod (706) have a folding umbrella (709) located at the center. The folding umbrella (709) has a groove (710) located at the rear of the center of the upper end face. The folding umbrella (709) is fan-shaped.
3. The real-time monitoring device for construction sites according to claim 1, characterized in that: A dust removal device (6) is provided at the center of the upper surface of the support plate (1). The dust removal device (6) includes a miniature high-speed fan (601). The miniature high-speed fan (601) is located on the upper surface of the support plate (1). An adapter (602) is provided at the output end of the miniature high-speed fan (601). A connecting pipe (603) is provided at the output end of the adapter (602). The output end of the connecting pipe (603) passes through the upper end of the support plate (1) and the monitoring body (5) and extends to the lower surface of the monitoring body (5). The output end is inclined and faces the output end of the monitoring body (5).
4. The real-time monitoring device for a construction site according to claim 1, characterized in that: A fixing device (8) is provided at the rear center of the upper end face of the support plate (1). The fixing device (8) includes an air pump (801). The air pump (801) is located at the upper end face of the support plate (1). A suction cup (802) is provided at the center of the rear end face of the mounting plate (2). The output end of the air pump (801) passes through the support plate (1) and the mounting plate (2) in sequence and extends to the rear end face of the mounting plate (2). It is connected to the input end of the suction cup (802) respectively. A rotating shaft (803) is provided at the front center of the lower end face of the support plate (1).
5. A real-time monitoring device for construction sites according to claim 4, characterized in that: A support column (804) is provided at the center of the rear end face of the rotating shaft (803), and a mounting block (805) is provided at the end of the support column (804). A second mounting hole (806) is provided at the center of the front end face of the mounting block (805).
6. The real-time monitoring device for a construction site according to claim 1, characterized in that: A battery box (9) is provided at the rear center of the lower end face of the support plate (1).