A power device acquisition device
By combining the design of flexible copper sheets and wiring modules with protective sleeves and sealing modules, the problem of loose connectors in power equipment acquisition devices is solved, achieving a stable connection and sealing protection for the wires, and improving the reliability and service life of the equipment.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- HENAN BOTAI ELECTRIC POWER ENG CO LTD
- Filing Date
- 2025-06-30
- Publication Date
- 2026-06-26
AI Technical Summary
The connectors of existing power data acquisition devices are prone to being loose, which allows moisture to enter the equipment, causing corrosion and breakage of electrical components and increasing the likelihood of equipment failure.
The design combines flexible copper sheets with wiring modules, along with protective sleeves, protective films, and sealing modules. Threaded connections ensure a secure connection and sealed protection for the wires, preventing moisture intrusion.
This effectively prevents loose connections and moisture intrusion, reduces equipment failures, and improves equipment stability and service life.
Smart Images

Figure CN224416917U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of power equipment, specifically to a power equipment data acquisition device. Background Technology
[0002] A power system mainly consists of two categories: power generation equipment and power supply equipment. Power generation equipment includes power plant boilers, steam turbines, gas turbines, water turbines, generators, and transformers; power supply equipment includes transmission lines of different voltage levels, instrument transformers, and contactors. Power equipment data acquisition devices, as a crucial part of the power system, are used to monitor and collect real-time operating status information of the power equipment.
[0003] In existing technologies, the connectors of power acquisition devices are usually threaded connections. However, this type of connection is prone to loosening, which can lead to moisture intrusion into the equipment, causing corrosion and breakage of electrical components, accelerating equipment aging, and increasing the probability of equipment failure. To address these issues, we propose a power equipment acquisition device. Utility Model Content
[0004] To address the aforementioned problems, this utility model provides a power equipment data acquisition device, comprising a data acquisition unit body. Several sets of connecting pipes are arranged on one side of the surface of the data acquisition unit body. Each set of connecting pipes contains several sets of elastic copper sheets. Each set of connecting pipes contains a wire. Each set of connecting pipes has a connecting module on its surface. Each set of connecting modules has a protective sleeve on its surface. The protective sleeve is threadedly connected to the connecting module. Each set of protective sleeves has a protective film on its surface.
[0005] The wire is electrically connected to the data acquisition unit via an elastic copper sheet. The wiring module clamps the surface of the wire to limit and fix it. The protective sleeve is threaded onto the surface of the wiring module. The wiring module is locked in place by the protective sleeve. The protective film covers the wiring module.
[0006] Preferably, the wiring module includes a fixed tube, two sets of grippers and two sets of handles. The fixed tube is disposed at one end of the surface of the wiring tube, the two sets of grippers are symmetrically disposed on one side of the surface of the fixed tube, and the two sets of handles are respectively disposed on the surface of the two sets of grippers.
[0007] Preferably, both sets of grippers are made of elastic material, and the contact ends of both sets of grippers are arc-shaped.
[0008] Preferably, the wiring module further includes two sets of pads, which are respectively disposed at the contact end of the gripper.
[0009] Preferably, the protective film is made of an elastic material, and the opening of the protective film is tightly fitted to the surface of the wire.
[0010] Preferably, a sealing module is provided at the opening of the protective membrane. The sealing module includes two sets of protective rings, several sets of semi-threaded posts, and two sets of nuts. The two sets of protective rings are disposed on the surface of the protective membrane. The several sets of semi-threaded posts are respectively disposed at both ends of the two sets of protective rings. Each pair of semi-threaded posts is combined to form a complete threaded post. The two sets of nuts are respectively disposed on the surface of the two sets of complete threaded posts. The nuts and complete threaded posts are connected by threads.
[0011] Preferably, the sealing module further includes two sets of sealing gaskets, which are respectively disposed on the inner side of two sets of protective rings, and the surface of each set of sealing gaskets is roughened.
[0012] Preferably, the end of the protective sleeve is provided with a sealing ring, the sealing ring is formed into an arc-shaped ring, and the sealing ring abuts against the surface of the two sets of grippers.
[0013] The beneficial effects of this utility model are:
[0014] In this invention, several sets of connecting pipes are arranged on one side of the main body of the data acquisition device. Each set of connecting pipes contains several sets of elastic copper sheets, and each set of connecting pipes contains a wire. Each set of connecting pipes has a connecting module on its surface, and each connecting module has a protective sleeve on its surface. The protective sleeve is threadedly connected to the connecting module, and each protective sleeve has a protective film on its surface. The wire is electrically connected to the main body of the data acquisition device through the elastic copper sheets. The connecting module clamps the surface of the wire to limit and fix its position. The protective sleeve is threadedly connected to the surface of the connecting module, and the connecting module is locked in place by the protective sleeve. The protective film covers the connecting module. This design prevents loosening at the connection point between the wire and the connecting pipe. The protective film seals the connection point, preventing moisture from seeping into the device and corroding components, thus reducing the likelihood of device malfunction.
[0015] This invention also includes two sets of protective rings, several sets of semi-threaded posts, and two sets of nuts. The two sets of protective rings are placed on either side of the opening of the protective membrane, with their ends fitting together. The semi-threaded posts at both ends of the two sets of protective rings are aligned and calibrated so that each pair of semi-threaded posts forms a complete threaded post. Then, the two sets of nuts are threaded onto the surfaces of the two complete threaded posts. The cooperation between the semi-threaded posts and the nuts secures the two sets of protective rings, locking the opening of the protective membrane in place. This secures the opening of the protective membrane, increases the seal between the opening and the wire, and further secures and clamps the wire. Attached Figure Description
[0016] Figure 1 This is a three-dimensional structural diagram of the present invention;
[0017] Figure 2 This is a partial structural schematic diagram of the present invention;
[0018] Figure 3 This is a partial cross-sectional view of the present invention.
[0019] Figure 4 This is a partial structural schematic diagram of the present invention.
[0020] In the diagram: 1. Data acquisition unit body; 2. Connecting pipe; 3. Elastic copper sheet; 4. Wire; 5. Wiring module; 51. Fixing pipe; 52. Grip clamp; 53. Handle; 54. Pad; 6. Protective sleeve; 7. Protective membrane; 8. Sealing module; 81. Protective ring; 82. Semi-threaded post; 83. Nut; 84. Sealing gasket; 9. Sealing ring. Detailed Implementation
[0021] The technical solution of this utility model will now be clearly and completely described with reference to the embodiments and accompanying drawings. Obviously, the described embodiments are merely one embodiment of this utility model, and not all embodiments. Based on this embodiment, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this utility model. Specific embodiments are as follows:
[0022] A power equipment data acquisition device, such as Figures 1-4 The system includes a data acquisition unit 1. Several sets of connecting pipes 2 are arranged on one side of the data acquisition unit 1. Each set of connecting pipes 2 contains several sets of elastic copper sheets 3. A wire 4 is held inside each set of connecting pipes 2. A connecting module 5 is arranged on the surface of each set of connecting pipes 2. A protective sleeve 6 is arranged on the surface of each set of connecting module 5. The protective sleeve 6 is threadedly connected to the connecting module 5. A protective film 7 is arranged on the surface of each set of protective sleeves 6. The wire 4 is electrically connected to the data acquisition unit 1 through the elastic copper sheets 3. The connecting module 5 clamps the surface of the wire 4 to limit and fix the wire 4. The protective sleeve 6 is threadedly connected to the surface of the connecting module 5, and the connecting module 5 is locked in place by the protective sleeve 6. The protective film 7 covers the connecting module 5. This prevents the connection between the wire 4 and the connecting pipe 2 from becoming loose. The protective film 7 seals and protects the connection, preventing moisture from seeping into the equipment and corroding the components, thus reducing the probability of equipment failure.
[0023] The wiring module 5 includes a fixing tube 51, two sets of grippers 52, and two sets of handles 53. The fixing tube 51 is located at one end of the surface of the wiring tube 2. The two sets of grippers 52 are symmetrically arranged on one side of the surface of the fixing tube 51. The two sets of handles 53 are respectively located on the surface of the two sets of grippers 52. In use, the two sets of handles 53 are pulled in opposite directions to both sides. The two sets of grippers 52 unfold to both sides under the action of the two sets of handles 53. The connector at one end of the wire 4 is inserted into the interior of the wiring tube 2. When the pull on the two sets of handles 53 is released, the two sets of grippers 52 return to their original shape until they clamp the surface of the wire 4. The wire 4 is clamped and fixed by the cooperation of the two sets of grippers 52, which avoids the problem of easy loosening at the connection.
[0024] Both sets of grippers 52 are made of elastic material, and the contact ends of both sets of grippers 52 are arc-shaped. The elasticity of the grippers 52 can be adjusted according to the thickness of the wire 4 to ensure stable clamping of different types of wires 4 and prevent the wire terminals of the wire 4 from falling out of the conduit 2. This fixing method can realize the quick installation and removal of the wire 4, thereby improving work efficiency. The arc-shaped contact end can make the grippers 52 more suitable for the surface of the wire 4, avoiding the problem of the sharp edges of the flat contact end damaging the surface of the wire 4.
[0025] The wiring module 5 also includes two sets of pads 54, which are respectively disposed at the contact ends of the grippers 52. The pads 54 can be made of elastic rubber material. The pads 54 can protect the surface of the wire 4 and prevent the two sets of grippers 52 from causing indentations or other damage to the surface of the wire 4 during the gripping process. The pads 54 can also act as a buffer to reduce the impact force generated when the two sets of grippers 52 grip the wire 4.
[0026] The protective film 7 is made of elastic material, and the opening of the protective film 7 fits tightly against the surface of the wire 4. The elastic material makes it easy to flip the protective film 7. When the protective film 7 is flipped onto the surface of the protective sleeve 6, the operator can quickly insert the connector end of the wire 4 into the inside of the connector 2, avoiding the protective film 7 from obstructing the operator's vision and thus affecting the alignment of the wire 4 and the connector 2. When the protective film 7 is flipped over and covered at the fixing point of the wire 4 on the wiring module 5, the opening of the protective film 7 fits tightly against the wire 4, and the protective film 7 can seal and protect the connection.
[0027] A sealing module 8 is provided at the opening of the protective membrane 7. The sealing module 8 includes two sets of protective rings 81, several sets of semi-threaded posts 82, and two sets of nuts 83. The two sets of protective rings 81 are disposed on the surface of the protective membrane 7, and the several sets of semi-threaded posts 82 are respectively disposed at both ends of the two sets of protective rings 81. Each pair of semi-threaded posts 82 is combined to form a complete threaded post. The two sets of nuts 83 are respectively disposed on the surface of the two sets of complete threaded posts, and the nuts 83 are threadedly connected to the complete threaded posts. In use, the two sets of protective rings 81 are placed on both sides of the opening of the protective membrane 7, and the ends of the two sets of protective rings 81 are closed. The two sets of protective rings 81 are aligned and the semi-threaded posts 82 at both ends are calibrated so that each pair of semi-threaded posts 82 forms a complete threaded post. Then, the two sets of nuts 83 are threaded onto the surfaces of the two complete threaded posts. The cooperation between the semi-threaded posts 82 and the nuts 83 fixes the two sets of protective rings 81, locking the opening of the protective membrane 7. This fixes the opening of the protective membrane 7, increases the seal between the opening of the protective membrane 7 and the wire 4, and further fixes and clamps the wire 4.
[0028] The sealing module 8 also includes two sets of sealing gaskets 84, which are respectively disposed inside the two sets of protective rings 81. The surface of each set of sealing gaskets 84 is roughened. The two sets of sealing gaskets 84 can protect the surface of the protective film 7, preventing the two sets of protective rings 81 from causing indentations or other damage to the surface of the protective film 7 when clamping, and also preventing the protective rings 81 from tearing the protective film 7, thereby affecting the sealing performance of the protective film 7.
[0029] The end of the protective sleeve 6 is provided with a sealing ring 9, which is formed into an arc-shaped ring and abuts against the surface of the two sets of grippers 52. After the wire 4 is inserted, the protective sleeve 6 is rotated towards the protective film 7 until one end of the protective sleeve 6 abuts against the surface of the handle 53. The protective sleeve 6 is connected to the fixing tube 51 by threads. The surface of the sealing ring 9 is tightly fitted to the surface of the gripper 52. The protective sleeve 6 and the sealing ring 9 cooperate to lock the two sets of fixing tubes 51. Even after the two sets of fixing tubes 51 lose their elasticity, they can still clamp and fix the wire 4.
[0030] Furthermore, it should be understood that although this specification describes embodiments, not every embodiment contains only one independent technical solution. This narrative style is merely for clarity. Those skilled in the art should consider 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 power equipment data acquisition device, characterized in that: The device includes a data acquisition unit (1), on one side of the surface of the data acquisition unit (1) are provided several sets of wiring tubes (2), each set of wiring tubes (2) is provided with several sets of elastic copper sheets (3), each set of wiring tubes (2) is provided with wires (4), each set of wiring tubes (2) is provided with wiring modules (5), each set of wiring modules (5) is provided with protective sleeves (6), the protective sleeves (6) are connected to the wiring modules (5) by threads, and each set of protective sleeves (6) is provided with protective films (7). The wire (4) is electrically connected to the data acquisition unit (1) through the elastic copper sheet (3). The wiring module (5) is clamped on the surface of the wire (4) to limit and fix the wire (4). The protective sleeve (6) is threaded to the surface of the wiring module (5). The wiring module (5) is locked by the protective sleeve (6). The protective film (7) covers the wiring module (5).
2. The power equipment data acquisition device according to claim 1, characterized in that: The wiring module (5) includes a fixed tube (51), two sets of grippers (52) and two sets of handles (53). The fixed tube (51) is disposed at one end of the surface of the wiring tube (2). The two sets of grippers (52) are symmetrically disposed on one side of the surface of the fixed tube (51). The two sets of handles (53) are respectively disposed on the surface of the two sets of grippers (52).
3. The power equipment data acquisition device according to claim 2, characterized in that: Both sets of grippers (52) are made of elastic material, and the contact ends of both sets of grippers (52) are arc-shaped.
4. The power equipment data acquisition device according to claim 2, characterized in that: The wiring module (5) also includes two sets of pads (54), which are respectively disposed at the contact end of the gripper (52).
5. A power equipment data acquisition device according to claim 1, characterized in that: The protective film (7) is made of an elastic material, and the opening of the protective film (7) is tightly attached to the surface of the wire (4).
6. The power equipment data acquisition device according to claim 1, characterized in that: A sealing module (8) is provided at the opening of the protective membrane (7). The sealing module (8) includes two sets of protective rings (81), several sets of semi-threaded columns (82) and two sets of nuts (83). The two sets of protective rings (81) are provided on the surface of the protective membrane (7). The several sets of semi-threaded columns (82) are respectively provided at both ends of the two sets of protective rings (81). Each pair of semi-threaded columns (82) is combined to form a complete threaded column. The two sets of nuts (83) are respectively provided on the surface of the two sets of complete threaded columns. The nuts (83) are connected to the complete threaded columns by threads.
7. A power equipment data acquisition device according to claim 6, characterized in that: The sealing module (8) also includes two sets of sealing gaskets (84), which are respectively disposed on the inner side of two sets of protective rings (81), and the surface of each set of sealing gaskets (84) is roughened.
8. A power equipment data acquisition device according to claim 1 or 2, characterized in that: The end of the protective sleeve (6) is provided with a sealing ring (9), which is formed into an arc-shaped ring and abuts against the surface of the two sets of grippers (52).