Wireless device for detecting horizontal posture of hoisting component
By collecting and transmitting horizontal attitude data of the lifted components in real time through a wireless detection device, the problems of limited field of vision and long-distance lifting errors in existing technologies have been solved, achieving high-precision lifting control and improved safety.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- LIUZHOU LINGQIAO PRESTRESSING MASCH CO LTD
- Filing Date
- 2025-06-04
- Publication Date
- 2026-05-12
AI Technical Summary
Existing lifting methods are affected by visibility conditions, making nighttime operation difficult and resulting in low precision. Furthermore, they are prone to accumulating errors during long-distance lifting, leading to component imbalance and affecting lifting accuracy and safety.
The device employs a wireless detection system, including a waterproof box, a lithium battery pack, an inclinometer, and a wireless data transmission module. It is mounted on the surface of the component via a magnetic base, collects horizontal data in real time, and wirelessly transmits it to the control center to achieve component attitude monitoring.
It achieves high-precision lifting control at any time, especially avoiding cumulative errors during long-distance lifting, ensuring component balance, and improving lifting safety and accuracy.
Smart Images

Figure CN224226511U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of lifting technology, and in particular to a wireless monitoring device for detecting and monitoring the horizontal attitude of a component in lifting scenarios where two or more lifting points are working together to lift the same component, such as lifting at extremely high distances, inconvenient to observe, or where there are strict requirements for the aerial posture. Background Technology
[0002] When lifting the same component from two or more lifting points, the existing lifting method involves manual observation and adjustment. This method is affected by visibility conditions, is not suitable for nighttime operation, and has low control accuracy. Another approach is to install encoders or displacement sensors at the control end to form a semi-closed-loop control. This method has better accuracy for relatively short lifting distances, but if the lifting distance is too long, cumulative errors will form, causing component imbalance and affecting lifting accuracy and safety. Utility Model Content
[0003] The technical problem to be solved by this utility model is to provide a wireless device for detecting the horizontal attitude of a lifting component. It can solve the problems of existing lifting methods being affected by visibility conditions, not suitable for nighttime operation, having low control accuracy, and accumulating errors when the lifting distance is too long, causing component imbalance and affecting lifting accuracy and safety.
[0004] To solve the above problems, the technical solution of this utility model is: this wireless device for detecting the horizontal attitude of a lifting component includes a waterproof box, a battery pack, a power display, an antenna, a magnetic base, a power switch, an inclinometer, and a wireless data transmission module.
[0005] The waterproof box includes a waterproof box cover and a waterproof box body; a mounting frame is provided inside the waterproof box body, and the inclinometer is installed inside the mounting frame; the wireless data transmission module is installed above the inclinometer, and the battery pack is installed side by side next to the mounting frame; the power display, the antenna, and the power switch are installed on one side of the waterproof box body, and the waterproof box cover is sealed and fixed to the waterproof box body with screws; the magnetic base is installed at the bottom of the waterproof box body; the battery pack is electrically connected to the wireless data transmission module, the inclinometer, the power display, and the power switch; when the power switch is turned on, the battery pack simultaneously supplies power to the wireless data transmission module, the inclinometer, and the power display; the data cable of the inclinometer is connected to the wireless data transmission module, and the antenna is connected to the wireless data transmission module, transmitting the data of the inclinometer to the lifting control center through the antenna.
[0006] A more specific embodiment of the above technical solution is as follows: the bottom of the waterproof box is connected to the two magnetic seats via a connecting plate; the magnetic seats are installed in the slots below the connecting plate by screws, and the connecting plate is installed at the bottom of the waterproof box by screws.
[0007] Furthermore, the battery pack is a lithium battery pack.
[0008] Furthermore, the inclinometer is a biaxial inclinometer.
[0009] Furthermore, the two magnetic bases are installed side by side at the bottom of the waterproof box.
[0010] By adopting the above technical solution, this utility model has the following beneficial effects compared with the prior art:
[0011] This invention uses a magnetic base to mount the device on the surface of the component. The internal components are powered by a lithium battery. A two-axis inclinometer installed in a waterproof box collects horizontal data in real time and transmits the horizontal and power data to the cloud or directly to a data receiving device via a wireless data transmission module. The received data can be used for display or to participate in the horizontal attitude control of the component, thereby realizing the monitoring of the component. This solves the problems of existing lifting methods, which are affected by visibility conditions, are not suitable for nighttime operation, have low control accuracy, and accumulate errors when the lifting distance is too long, causing component imbalance and affecting lifting accuracy and safety. Attached Figure Description
[0012] Figure 1 This is a three-dimensional structural diagram of the present invention;
[0013] Figure 2 This is an exploded view of the structure of this utility model.
[0014] The labels in the diagram are as follows:
[0015] 1. Waterproof box cover, 2. Battery pack, 3. Waterproof box base, 4. Power indicator, 5. Antenna, 6. Power switch, 7. Magnetic base, 8. Connecting plate, 9. Mounting bracket, 10. Inclinometer, 11. Wireless data transmission module. Detailed Implementation
[0016] The present invention will be further described below with reference to the accompanying drawings and embodiments:
[0017] Figure 1 and Figure 2 The wireless device for detecting the horizontal attitude of the lifting components includes a waterproof box, a battery pack 2, a power display 4, an antenna 5, a magnetic base 7, an inclinometer 10, and a wireless data transmission module 11.
[0018] The waterproof box includes a waterproof box cover 1 and a waterproof box body 3; a mounting frame 9 is provided inside the waterproof box body 3, and an inclinometer 10 is installed inside the mounting frame 9. The inclinometer 10 is a two-axis inclinometer.
[0019] The wireless data transmission module 11 is installed above the inclinometer 10; the battery pack 2 is installed side-by-side next to the mounting bracket 9, and the battery pack 2 uses lithium batteries; the power display 4, antenna 5, and power switch 6 are installed on one side of the waterproof box 3, and the waterproof box cover 1 is sealed and fixed to the waterproof box 3 with screws; the bottom of the waterproof box 3 is connected to two magnetic seats 7 through a connecting plate 8, and the two magnetic seats 7 are installed side-by-side at the bottom of the waterproof box 3. The magnetic seats 7 are installed in the slots below the connecting plate 8 with screws, and the connecting plate 8 is installed below the base of the waterproof box with screws. The battery pack 2 is electrically connected to the wireless data transmission module 11, the inclinometer 10, the power display 4, and the power switch 6; the entire device is powered by the lithium battery pack. When the power switch 6 is turned on, it simultaneously powers the wireless data transmission module 11, the inclinometer 10, and the power display 4, and the data cable of the inclinometer 10 is connected to the wireless data transmission module 11. The antenna 5 is connected to the wireless data transmission module 11, and the data of the inclinometer 10 is sent to the lifting control center through the antenna 5.
[0020] This invention can be used for lifting the same component by two or more lifting points in coordinated operations, in lifting scenarios involving extremely high lifting distances, difficult observation, or strict requirements on the aerial posture, to detect the horizontal posture of the component. The invention is quickly installed on the metal surface of the component whose horizontal posture needs to be detected via a magnetic base 7 at the bottom. When the power switch is turned on, the internal components are powered by a lithium battery. A two-axis inclinometer installed in a waterproof box collects horizontal data in real time and transmits the horizontal and battery data, among other things, to the cloud or directly to a data receiving device via a wireless data transmission module. The received data can be used for display or incorporated into the horizontal posture control of the component, thereby achieving component monitoring. This device has advantages such as quick and convenient installation, unlimited transmission distance, and long standby time.
[0021] In the description of this utility model, it should be noted that the terms "upper", "lower", "left", "right", "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 utility model 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 limitations on this utility model.
Claims
1. A wireless device for detecting the horizontal attitude of a lifting component, characterized in that: Includes a waterproof box, battery pack (2), power indicator (4), antenna (5), magnetic base (7), power switch (6), inclinometer (10), and wireless data transmission module (11); The waterproof box includes a waterproof box cover (1) and a waterproof box body (3); a mounting bracket (9) is provided inside the waterproof box body (3), and the inclinometer (10) is installed inside the mounting bracket (9); the wireless data transmission module (11) is installed above the inclinometer (10), and the battery pack (2) is installed next to the mounting bracket (9); the power display (4), the antenna (5), and the power switch (6) are located on the outside of the waterproof box body (3), and the waterproof box cover (1) is sealed and fixed to the waterproof box body (3); the magnetic base (7) is installed on the waterproof box body (3). Bottom; The battery pack (2) is electrically connected to the wireless data transmission module (11), the inclinometer (10), the power display (4), and the power switch (6); When the power switch (6) is turned on, the battery pack (2) simultaneously supplies power to the wireless data transmission module (11), the inclinometer (10), and the power display (4); The data line of the inclinometer (10) is connected to the wireless data transmission module (11), and the antenna (5) is connected to the wireless data transmission module (11), and the data of the inclinometer (10) is sent to the hoisting control center through the antenna (5).
2. The wireless device for detecting the horizontal attitude of a lifting component according to claim 1, characterized in that: The bottom of the waterproof box (3) is connected to the two magnetic seats (7) via a connecting plate (8); the magnetic seats (7) are installed in the slots below the connecting plate (8) by screws, and the connecting plate (8) is installed at the bottom of the waterproof box (3) by screws.
3. The wireless device for detecting the horizontal attitude of a lifting component according to claim 1 or 2, characterized in that: The battery pack (2) is a lithium battery pack.
4. The wireless device for detecting the horizontal attitude of a lifting component according to claim 3, characterized in that: The inclinometer (10) is a biaxial inclinometer.
5. The wireless device for detecting the horizontal attitude of a lifting component according to claim 4, characterized in that: The two magnetic bases (7) are installed side by side at the bottom of the waterproof box (3).