Electric power detection device for tunnel electromechanical facility
By designing an adjustable power detection device, the problems of high danger, inaccurate positioning and low efficiency of the power detection device of tunnel electromechanical facilities are solved, and efficient and safe power detection is achieved.
Patent Information
- Application Number
- CN202421857029.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-02
- Publication Date
- 2025-07-11
- Estimated Expiration
- 2034-08-02
AI Technical Summary
The existing tunnel electromechanical and electrical power detection devices have problems such as high risk, inaccurate positioning, high labor intensity and low detection efficiency.
A power detection device including a lateral movement device and a longitudinal movement device is designed, and a flexible adjustment of the detection device is achieved through the cylinder and the motor drive, combining the lighting lamp and rubber pad to provide sufficient light and safety.
It realizes accurate positioning and efficient detection of high-altitude power equipment, reduces operational risks, and improves detection efficiency and safety.
Smart Images

Figure CN223092056U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of power detection, and particularly relates to a power detection device for tunnel electromechanical facilities. Background Technique
[0002] With the development of highway traffic, the number of highway tunnels is increasing continuously. Tunnels have the characteristics of complex structure, airtight environment, poor ventilation and lighting conditions. There are electromechanical facilities with different functions in the tunnel. The safe operation of the electromechanical facilities in the tunnel is crucial for ensuring traffic safety. Therefore, it is necessary to regularly monitor the voltage, current and other values of the electromechanical facilities in the tunnel.
[0003] Some of the electromechanical facilities in the tunnel are installed at high places. When manually detecting the power of the electromechanical facilities at high places, the operation is restricted due to insufficient light, the positioning is inaccurate, the danger is relatively high and the labor intensity is large, resulting in low power detection efficiency. Content of the Utility Model
[0004] The purpose of the utility model is to provide a power detection device for tunnel electromechanical facilities, so as to solve the problems of relatively high danger, inaccurate positioning, large labor intensity and low power detection efficiency of the existing power detection device for tunnel electromechanical facilities mentioned in the above background technique.
[0005] In order to achieve the above purpose, the utility model adopts the following technical scheme: A power detection device for tunnel electromechanical facilities, including a detection device, a moving device and a base. The moving device includes a transverse moving device and a longitudinal moving device. Symmetrically arranged connecting blocks and supporting blocks are provided on the base. A transverse supporting block is arranged at the middle position of the connecting blocks. The transverse moving device is fixedly arranged on the connecting blocks. The transverse moving device includes: a cylinder, a telescopic rod, a transverse guide rail, a transverse slider. The longitudinal moving device includes: a strip-shaped sliding hole, a longitudinal guide rail, a column, a motor, a coupling, a screw rod, a lighting lamp, an equipment box, a rubber pad, a longitudinal slider, a transmission rod, a worm transmission device. The transverse moving device is connected with the longitudinal moving device through the transverse slider.
[0006] Further, the detection device is placed in the equipment box.
[0007] Further, brake wheels are installed at the bottom of the base.
[0008] Further, a transverse slider is arranged on the transverse guide rail. The transverse slider is connected with the telescopic rod of the cylinder. The rear base of the cylinder is fixedly connected with the supporting block. The front base of the cylinder is fixedly connected with the transverse supporting block. The lower end of the transverse slider is connected with the motor.
[0009] Further, a strip-shaped sliding hole is formed on one side of the column close to the longitudinal slider. A screw rod is arranged in the strip-shaped sliding hole. A longitudinal guide rail is arranged on one side of the column close to the longitudinal slider. A longitudinal slider is arranged on the longitudinal guide rail. One end of the longitudinal slider is connected to the equipment box. A lighting lamp is arranged at the front end of the outer side of the equipment box. A rubber pad is arranged inside the equipment box. The other end of the longitudinal slider is connected to the screw rod. The lower end of the screw rod is connected to a worm transmission device. A coupling is arranged at the output end of the motor. The coupling is connected to the worm transmission device through a transmission rod.
[0010] The utility model has the following beneficial effects:
[0011] For this power detection device, through the settings of the transverse moving device and the longitudinal moving device, when using the detection device body, the detection device body can be placed in the equipment box. The air cylinder of the transverse moving device can drive the detection device and the longitudinal moving device to move left and right. The motor and the screw rod of the longitudinal moving device can drive the detection device to move up and down along the screw rod, so that the height and horizontal position of the detection device body can be adjusted. The positioning is accurate. There is no need for the staff to hold the detection device body, which is convenient for the staff to detect the power equipment at high places and can improve the work efficiency.
[0012] For this power detection device, through the settings of the lighting lamp and the rubber pad, the lighting lamp can provide sufficient light for the detection device, which is convenient for the staff to operate and observe, and avoids the limitation of operation due to insufficient light. The rubber pad has the functions of anti-slip and insulation, improving the safety of using the detection device. Description of the Drawings
[0013] Figure 1 is a schematic diagram of the external structure of the utility model;
[0014] Figure 2 is a schematic diagram of the structure of the transverse moving device of the utility model;
[0015] Figure 3 is a schematic diagram of the structure of the longitudinal moving device of the utility model;
[0016] Figure 4 is a schematic diagram of the connection structure of the worm transmission device and the screw rod of the utility model.
[0017] Legend Explanation:
[0018] 1 - Detection device, 2 - Longitudinal movement device, 201 - Strip-shaped sliding hole, 202 - Longitudinal guide rail, 203 - Column, 204 - Motor, 205 - Coupling, 206 - Screw rod, 207 - Lighting lamp, 208 - Equipment box, 209 - Rubber pad, 210 - Longitudinal slider, 211 - Transmission rod, 212 - Worm gear transmission device, 3 - Connecting block, 4 - Brake wheel, 5 - Base, 6 - Transverse support block, 7 - Support block, 8 - Transverse movement device, 801 - Cylinder, 802 - Telescopic rod, 803 - Transverse guide rail, 804 - Transverse slider. Detailed implementation mode
[0019] 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. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without making creative efforts shall fall within the protection scope of the present invention.
[0020] Refer to Figures 1-4 , a power detection device for tunnel electromechanical facilities provided by the present invention includes a detection device 1, a movement device, and a base 5. A brake wheel 4 is installed at the bottom of the base 5 to facilitate the movement of the movement device. The movement device includes a transverse movement device 8 and a longitudinal movement device 2. Symmetrically arranged connecting blocks 3 and support blocks 7 are provided on the base 5. A transverse support block 6 is provided at the middle position of the connecting block 3. A transverse movement device 8 is fixedly provided on the connecting block 3. The transverse movement device 8 includes: a cylinder 801, a telescopic rod 802, a transverse guide rail 803, and a transverse slider 804. The longitudinal movement device 2 includes: a strip-shaped sliding hole 201, a longitudinal guide rail 202, a column 203, a motor 204, a coupling 205, a screw rod 206, a lighting lamp 207, an equipment box 208, a rubber pad 209, a longitudinal slider 210, a transmission rod 211, and a worm gear transmission device 212. The detection device 1 is placed in the equipment box 208. The motor 204 and the screw rod 206 of the longitudinal movement device 2 can drive the detection device 1 to move up and down along the screw rod 206. The transverse movement device 8 is connected to the longitudinal movement device 2 through the transverse slider 804. The cylinder 801 of the transverse movement device 8 can drive the detection device 1 and the longitudinal movement device 2 to move left and right. When used at the tunnel site, the position of the detection device 1 can be flexibly adjusted with accurate positioning, which is convenient for the staff to detect the high-voltage electrical equipment and can improve the work efficiency.
[0021] Among them, the detection device 1 is a device that can be directly purchased in the existing market, named: leakage current tester, model: VICTOR 1401 / 1402. When in use, first start the detection device 1, turn on the lighting lamp 207, set the alarm current value, adjust the height of the detection device 1 through the longitudinal moving device 2, and adjust the horizontal direction of the detection device 1 through the cylinder 801 of the transverse moving device 8. When the detection device 1 reaches the wiring position of the tunnel electromechanical facilities to be detected, the operator connects the detection device 1 to the tunnel electromechanical facilities to be detected, and the detection device 1 starts the leakage test.
[0022] A transverse slider 804 is arranged on the transverse guide rail 803. The transverse slider 804 is connected to the telescopic rod 802 of the cylinder 801. The rear base of the cylinder 801 is fixedly connected to the support block 7, and the front base of the cylinder 801 is fixedly connected to the transverse support block 6. The lower end of the transverse slider 804 is connected to the motor 204; a strip-shaped sliding hole 201 is opened on one side of the column 203 close to the longitudinal slider 210. A screw rod 206 is arranged in the strip-shaped sliding hole 201. A longitudinal guide rail 202 is arranged on one side of the column 203 close to the longitudinal slider 210. A longitudinal slider 210 is arranged on the longitudinal guide rail 202. One end of the longitudinal slider 210 is connected to the equipment box 208. A lighting lamp 207 is arranged at the front end of the outside of the equipment box 208, which can provide sufficient light at a high place during use, facilitating the operation and viewing of the staff. A rubber pad 209 is arranged inside the equipment box 208. The rubber pad 209 has the functions of anti-slip and insulation, improving the safety of using the detection device. The other end of the longitudinal slider 210 is connected to the screw rod 206. The lower end of the screw rod 206 is connected to the worm transmission device 212. The output end of the motor is provided with a coupling 205. The coupling 205 is connected to the worm transmission device 212 through a transmission rod 211.
[0023] Working principle: When in use, place the detection device 1 in the equipment box 208. The brake wheels 4 installed at the bottom of the base 5 facilitate movement in the tunnel. After a fault occurs in the electromechanical facilities in the tunnel, start the cylinder 801 to drive the detection device 1 and the longitudinal moving device 2 to move left and right. After the longitudinal moving device 2 moves in place, start the motor 204 to drive the detection device 1 to move up and down along the screw rod 206. According to the position of the faulty electromechanical facilities, the position of the detection device 1 can be flexibly adjusted until the detection device 1 can detect the faulty electromechanical facilities, thereby improving work efficiency. The settings of the lighting lamp 207 and the rubber pad 209. The lighting lamp 207 can provide sufficient light for the detection device 1 to work at a high place, facilitating the operation and viewing of the staff, avoiding limited operation due to insufficient light. The rubber pad 209 has the functions of anti-slip and insulation, improving the safety of using the detection device 1.
[0024] For those skilled in the art, it is obvious that the present utility model is not limited to the details of the above-mentioned exemplary embodiments, and the present utility model can be implemented in other specific forms without departing from the spirit or basic characteristics of the present utility model. Therefore, from any point of view, the embodiments should be regarded as exemplary and non-limiting. The scope of the present utility model is defined by the appended claims rather than the above description. Therefore, all changes falling within the meaning and scope of the equivalent elements of the claims are intended to be embraced within the present utility model. Any reference signs in the claims should not be construed as limiting the claims involved.
Claims
1. A power detection device for tunnel electromechanical facilities, comprising a detection device (1), a mobile device, and a base (5), characterized in that , The mobile device includes a lateral movement device (8) and a longitudinal movement device (2). On the base (5), symmetrically arranged connecting blocks (3) and support blocks (7) are provided. At the middle position of the connecting block (3), a lateral support block (6) is provided. The lateral movement device (8) is fixedly provided on the connecting block (3). The lateral movement device (8) includes: a cylinder (801), a telescopic rod (802), a lateral guide rail (803), and a lateral slider (804). The longitudinal movement device (2) includes: a strip-shaped sliding hole (201), a longitudinal guide rail (202), a column (203), a motor (204), a coupling (205), a screw rod (206), a lighting lamp (207), an equipment box (208), a rubber pad (209), a longitudinal slider (210), a transmission rod (211), and a worm gear transmission device (212). The lateral movement device (8) is connected to the longitudinal movement device (2) through the lateral slider (804).
2. The power detection device for tunnel electromechanical facilities according to claim 1, characterized in that: The detection device (1) is placed in the equipment box (208).
3. The power detection device for tunnel electromechanical facilities according to claim 1, characterized in that: Brake wheels (4) are installed at the bottom of the base (5).
4. The power detection device for tunnel electromechanical facilities according to claim 1, characterized in that: A lateral slider (804) is provided on the lateral guide rail (803). The lateral slider (804) is connected to the telescopic rod (802) of the cylinder (801). The rear base of the cylinder (801) is fixedly connected to the support block (7), and the front base of the cylinder (801) is fixedly connected to the lateral support block (6). The lower end of the lateral slider (804) is connected to the motor (204).
5. The power detection device for tunnel electromechanical facilities according to claim 1, characterized in that: On one side of the column (203) close to the longitudinal slider (210), a strip-shaped sliding hole (201) is provided. A screw rod (206) is arranged in the strip-shaped sliding hole (201). On one side of the column (203) close to the longitudinal slider (210), a longitudinal guide rail (202) is provided. A longitudinal slider (210) is provided on the longitudinal guide rail (202). One end of the longitudinal slider (210) is connected to the equipment box (208). A lighting lamp (207) is provided at the front end of the outside of the equipment box (208). A rubber pad (209) is provided inside the equipment box (208). The other end of the longitudinal slider (210) is connected to the screw rod (206). The lower end of the screw rod (206) is connected to the worm gear transmission device (212). A coupling (205) is provided at the output end of the motor. The coupling (205) is connected to the worm gear transmission device (212) through the transmission rod (211).