Pipe penetrating and wire embedding device for water conservancy and hydropower construction
By designing wiring pipe-threading, smoothing and anti-entanglement, and line-dividing and burying mechanisms in water conservancy and hydropower construction, the problems of inconvenient wiring, entanglement, and inaccurate line division in traditional devices have been solved, achieving more efficient line layout and line division effects.
Patent Information
- Application Number
- CN202422332270.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-24
- Publication Date
- 2025-09-16
- Estimated Expiration
- 2034-09-24
AI Technical Summary
Traditional pipe-threading and cable-burying devices have problems in water conservancy and hydropower construction, such as inconvenient wiring, easy entanglement and accumulation on the surface of the second wire body, and inaccurate wire division.
A device is designed, which includes a wiring pipe threading mechanism, a smoothing and anti-winding mechanism, and a wire branching and burying mechanism. Through components such as a limiting splint, a smoothing plate, and a movable splint, the wiring limitation of the first wire body, the surface smoothing and wire branching of the second wire body are achieved.
The convenience and accuracy of the pipe-threading and wire-burying device are improved, the entanglement and accumulation of wires are avoided, and the smooth layout and branching effect of the wires are ensured.
Smart Images

Figure CN223348264U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of water conservancy and hydropower construction, in particular to a pipe threading and wire burying device for water conservancy and hydropower construction. Background Art
[0002] The construction of water conservancy and hydropower projects is often carried out on rivers and is greatly affected by natural conditions such as topography, geology, hydrology, and meteorology. Construction diversion, cofferdam filling, and foundation pit drainage are factors that control the construction progress. During the construction of water conservancy and hydropower, it is necessary to bury wires and cables in the soil layer for power supply. During the underground cable construction, a cable burying device is usually required to assist the staff in the cable burying work. Now, a pipe burying device for water conservancy and hydropower construction is needed.
[0003] Most traditional cable burying devices use pulleys to guide the cables. However, when using pulleys to guide the cables, the two ends of the cables are not fully tensioned. The friction between the cables and the groove is insufficient to tension the cables. Operators are often required to manually fix the cables to ensure stable operation. In addition, the existing pipe-threading and burying devices have some shortcomings to a certain extent. When using the pipe-threading and burying devices, it is necessary to first wire the first wire body through the pipe. The existing pipe-threading and burying devices are not convenient for wiring and burying the first wire body when in use. This makes it impossible to limit the wiring of the first wire body when using the pipe-threading and burying devices, making it inconvenient to wire the first wire body through the pipe. ; When the tube-threading and wire-burying device is in use, the second wire body is prone to the phenomenon of paying out the wire too quickly and accumulating. The existing tube-threading and wire-burying device usually does not have the function of smoothing the surface of the second wire body to prevent entanglement when in use. This makes it impossible for the tube-threading and wire-burying device to smooth the surface of the second wire body when in use, which easily leads to the phenomenon of entanglement and accumulation when the tube-threading and wire-burying device pays out the second wire body, making the tube-threading and wire-burying device not practical when in use; the tube-threading and wire-burying device needs to separate the second wire body for burying when in use, and the existing tube-threading and wire-burying device cannot separate the second wire body for burying when in use, which makes it impossible for the tube-threading and wire-burying device to make the second wire body more accurate when in use. Utility Model Content
[0004] The purpose of the present utility model is to provide a pipe threading and wire burying device for water conservancy and hydropower construction, so as to solve the problems proposed in the above background technology that the pipe threading and wire burying device is inconvenient to wire and thread the first wire body when used, usually does not have the function of smoothing the surface of the second wire body to prevent entanglement, and cannot separate and bury the second wire body.
[0005] To achieve the above-mentioned purpose, the utility model provides the following technical solutions: a pipe threading and wire burying device for water conservancy and hydropower construction, comprising a device frame, a control button is installed on the surface of the device frame, a handle is installed on the surface of the device frame, a frame body is installed on the surface at the top position of the device frame, a rotating wire roller is provided inside the frame body, the rotating wire roller and the inner wall of the frame body rotate with each other, a first wire body is wound on the surface of the rotating wire roller, a support frame is installed on the surface of the support frame, a wire pay-off drum is provided on the surface of the support frame, the wire pay-off drum and the inner wall of the support frame rotate with each other, A guide frame is installed on the surface of the top position of the device frame, and a branching plate is installed on the surface of the top position of the device frame. A wiring pipe threading mechanism is provided on the surface of the frame body, and the interior of the wiring pipe threading mechanism includes a limiting cylinder, a rotating screw, a limiting clamp and a fixing screw hole. The surfaces of the support frame and the second wire body are both provided with a smoothing and anti-winding mechanism, and the interior of the smoothing and anti-winding mechanism includes a fixed frame plate, a fixed cylinder and a smoothing and anti-winding group. The interior of the branching plate and the surface of the second wire body are both provided with a branching and burying mechanism, and the interior of the branching and burying mechanism includes an elastic device, a containing groove and a branching and burying component.
[0006] Preferably, a second wire body is wound around the surface of the pay-off drum, and a guide roller for guiding and pressing the second wire body is provided inside the guide frame, and the surface of the guide roller and the inner wall of the guide frame rotate with each other, and the surface of the guide roller is wrapped with a protective pad, and the surface of the protective pad is in contact with the surface of the second wire body. A drive motor is installed on the surface of the support frame, and the input end of the drive motor is electrically connected to the output end of the control button, and the output end of the drive motor is installed with a rotating shaft through a coupling, and one end of the rotating shaft passes through the support frame and is fixed to the surface of the pay-off drum.
[0007] Preferably, a limiting cylinder is installed on the surface of the frame, and a fixing screw hole is opened on the surface of the limiting cylinder. A rotating screw is threadedly connected to the surface of the limiting cylinder, and one end of the rotating screw extends to the interior of the limiting cylinder. The rotating screw and the fixing screw hole are threadedly matched with each other.
[0008] Preferably, the interior of the limiting cylinder is provided with a limiting clamp for limiting the surface of the first wire body through the tube, the surface of the limiting clamp contacts the surface of the first wire body, and the rotating screw and the surface of the limiting clamp rotate in conjunction with each other.
[0009] Preferably, the smoothing and anti-winding group is arranged on the surface of the support frame and the second wire body, and the smoothing and anti-winding group is composed of an electric push rod, a smoothing plate and a movable column. A fixed frame plate is installed on the surface at the top position of the support frame, and a fixed cylinder is installed on the surface of the fixed frame plate. One end of the fixed cylinder extends to the interior of the fixed frame plate, and a movable column is provided inside the fixed frame plate. The movable column and the inner wall of the fixed cylinder slide with each other, and one end of the movable column extends to the outside of the fixed cylinder.
[0010] Preferably, an electric push rod is installed inside the fixed cylinder, the input end of the electric push rod is electrically connected to the output end of the control button, the output end of the electric push rod is fixed to the surface of the moving column, and the surface of the second wire body is provided with a smoothing plate for smoothing the surface of the second wire body to prevent accumulation, the surface of the smoothing plate is fixed to the surface of the moving column, and the inner wall of the smoothing plate is in contact with the surface of the second wire body.
[0011] Preferably, the wire branching and burying assembly is arranged inside the wire branching plate and on the surface of the second wire body. The wire branching and burying assembly is composed of a guide slide, a movable block and a movable splint. The inside of the wire branching plate is provided with a holding groove, and the holding grooves are respectively located on both sides of the second wire body. The inside of the holding groove is provided with a movable block, and the movable block and the inner wall of the holding groove slide together.
[0012] Preferably, a movable splint is provided inside the branching plate, the surface of the movable splint is fixed to the surface of the movable block, the surface of the movable splint is in contact with the surface of the second wire body, and the inner wall of the branching plate is provided with a guide groove, the guide groove and the surface of the movable block slide with each other, and an elastic device is installed inside the containing groove, and one end of the elastic device is fixed to the surface of the movable block.
[0013] Compared with the prior art, the beneficial effects of the present invention are as follows: the pipe-threading and burying device for water conservancy and hydropower construction not only enables the pipe-threading and burying device to limit the wiring of the first wire body when in use, making it more convenient for the pipe-threading and burying device to thread the first wire body through the pipe, but also enables the pipe-threading and burying device to smooth the surface of the second wire body when in use, avoiding the phenomenon of entanglement and accumulation when the pipe-threading and burying device is used to lay out the second wire body, making the pipe-threading and burying device more practical when in use, and enables the pipe-threading and burying device to separately process the second wire body when in use, so that the pipe-threading and burying device can bury the second wire body more accurately when in use;
[0014] 1. By providing a wiring and pipe threading mechanism, one end of the first wire body moves to the inside of the limiting cylinder respectively, and then the user twists the rotating screw on the surface of the limiting cylinder to make the rotating screw rotate on the inner wall of the fixing screw hole. When the rotating screw moves, the rotating screw drives the limiting clamping plate to move until it contacts the surface of the first wire body. Under the joint action of the rotating screw and the limiting clamping plate, the first wire body is limited to the inside of the limiting cylinder, and the first wire body is wired separately, realizing the function of the pipe threading and burying device for wiring and pipe threading the first wire body, thereby making it possible to limit the wiring of the first wire body when the pipe threading and burying device is used, making it more convenient to thread the first wire body through the pipe;
[0015] 2. A smoothing and anti-winding mechanism is provided to control the operation of the electric push rod inside the fixed cylinder, and the mobile column is driven to move under the action of the electric push rod, so that the mobile column slides on the inner wall of the fixed cylinder. When the mobile column moves, the mobile column drives the smoothing plate to move until it contacts the surface of the second wire body. The user adjusts the position of the smoothing plate according to the demand for paying off the second wire body, and adjusts the paying-off speed of the second wire body under the action of the smoothing plate, so as to avoid the phenomenon of entanglement and accumulation between the second wire bodies caused by the second wire body being paid off too quickly during the paying-off, thereby realizing the function of the pipe-threading and burying device to smooth the surface of the second wire body and prevent it from winding, so that the pipe-threading and burying device can smooth the surface of the second wire body when in use, and avoids the phenomenon of entanglement and accumulation when the pipe-threading and burying device pays off the second wire body, making the pipe-threading and burying device more practical when in use;
[0016] 3. By providing a wire dividing and burying mechanism, one end of the second wire body moves to the inside of the wire dividing plate respectively, and drives the moving block to slide inside the holding groove under the elastic force of the elastic device inside the holding groove. At this time, the moving block slides inside the guide slide and guides the moving block under the action of the guide slide. When the moving block moves, the moving block drives the moving splint to move until it contacts the surface of the second wire body, and the second wire body is divided under the joint action of the elastic device and the moving splint, thereby avoiding the phenomenon that the second wire body is piled up together when laying out and burying the wire, which makes it inconvenient to bury the wire, and realizes the function of the pipe-threading and burying device to divide and bury the second wire body, so that the pipe-threading and burying device can divide the second wire body separately when in use, so that the pipe-threading and burying device can make the second wire body more accurate when in use. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 This is a schematic diagram of the three-dimensional structure of the utility model;
[0018] Figure 2 This is a schematic diagram of the main cross-sectional structure of the utility model;
[0019] Figure 3 For the utility model Figure 2 An enlarged structural diagram of the wiring and pipe-threading mechanism;
[0020] Figure 4 For the utility model Figure 2 A schematic diagram of the enlarged structure of the smoothing and anti-winding mechanism;
[0021] Figure 5 It is an enlarged structural diagram of the wire-dividing and wire-burying mechanism of the present utility model.
[0022] In the figure: 1. Device frame; 101. Control button; 102. Handle; 103. Frame; 104. Guide frame; 105. Branch plate; 106. First wire body; 107. Rotating wire roller; 108. Support frame; 109. Pay-off drum; 110. Guide roller; 111. Second wire body; 112. Protective pad; 113. Drive motor; 2. Wiring and pipe threading mechanism; 21. Limiting cylinder; 22. Rotating screw; 23. Limiting splint; 24. Fixing screw hole; 3. Smoothing and anti-winding mechanism; 31. Fixed frame; 32. Fixed cylinder; 33. Smoothing and anti-winding group; 331. Electric push rod; 332. Smoothing plate; 333. Moving column; 4. Branching and burying mechanism; 41. Elastic device; 42. Receiving trough; 43. Branching and burying assembly; 431. Guide slide; 432. Moving block; 433. Moving splint. DETAILED DESCRIPTION
[0023] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, not all of the embodiments. In addition, the terms "first", "second", "third", "upper, lower, left, right", etc. are only used for descriptive purposes and cannot be understood as indicating or implying relative importance. At the same time, in the description of the present invention, unless otherwise clearly stipulated and limited, the terms "connected" and "connected" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be a direct connection or an indirect connection through an intermediate medium. Based on the embodiments in the present invention, all other embodiments obtained by ordinary technicians in this field without making creative work are within the scope of protection of the present invention.
[0024] The utility model provides a pipe-threading and cable-burying device for water conservancy and hydropower construction. Figure 1 and Figure 2As shown, it includes a device frame 1, a control button 101 is installed on the surface of the device frame 1, and the model of the control button 101 can be selected from the LA series. A handle 102 is installed on the surface of the device frame 1, and a frame body 103 is installed on the surface at the top position of the device frame 1. A rotating wire roller 107 is provided inside the frame body 103. The rotating wire roller 107 rotates with the inner wall of the frame body 103, and the surface of the rotating wire roller 107 is wound with a first wire body 106. A support frame 108 is installed on the surface of the support frame 108, and a wire reel 109 is provided on the surface of the support frame 108. The wire reel 109 rotates with the inner wall of the support frame 108, and a guide frame 104 is installed on the surface of the device frame 1. The surface of the wire reel 109 is wound with The second wire body 111 and the guide frame 104 are both provided with a guide roller 110 for guiding and pressing the second wire body 111. The surface of the guide roller 110 and the inner wall of the guide frame 104 rotate with each other. The surface of the guide roller 110 is wrapped with a protective pad 112. The surface of the protective pad 112 contacts the surface of the second wire body 111. The surface at the top position of the device frame 1 is installed with a branching plate 105, and the surface of the support frame 108 is installed with a drive motor 113. The model of the drive motor 113 can be JO series. The input end of the drive motor 113 is electrically connected to the output end of the control button 101. The output end of the drive motor 113 is installed with a rotating shaft through a coupling, and one end of the rotating shaft passes through the support frame 108 and is fixed to the surface of the wire reel 109.
[0025] Furthermore, if Figure 2 and Figure 3 As shown, the surface of the frame 103 is provided with a wiring pipe threading mechanism 2, and the interior of the wiring pipe threading mechanism 2 includes a limiting cylinder 21, a rotating screw 22, a limiting splint 23 and a fixing screw hole 24. The surface of the frame 103 is installed with a limiting cylinder 21, and the surface of the limiting cylinder 21 is provided with a fixing screw hole 24. The surface of the limiting cylinder 21 is threadedly connected with a rotating screw 22, and one end of the rotating screw 22 extends to the interior of the limiting cylinder 21. The rotating screw 22 and the fixing screw hole 24 are threadedly matched with each other, and the interior of the limiting cylinder 21 is provided with a limiting splint 23 for limiting the surface of the first wire body 106. The surface of the limiting splint 23 is in contact with the surface of the first wire body 106, and the surfaces of the rotating screw 22 and the limiting splint 23 rotate and match with each other.
[0026] During implementation, one end of the first wire body 106 moves to the inside of the limiting cylinder 21 respectively, and then the user twists the rotating screw 22 on the surface of the limiting cylinder 21, so that the rotating screw 22 rotates on the inner wall of the fixing screw hole 24. When the rotating screw 22 moves, the rotating screw 22 drives the limiting splint 23 to move to contact the surface of the first wire body 106. Under the joint action of the rotating screw 22 and the limiting splint 23, the first wire body 106 is limited to the inside of the limiting cylinder 21, and the first wire body 106 is wired separately to realize the function of the pipe-threading and wire-burying device to wire and thread the first wire body 106.
[0027] Furthermore, if Figure 2 and Figure 4 As shown, the surfaces of the support frame 108 and the second wire body 111 are both provided with a smoothing anti-winding mechanism 3, the interior of the smoothing anti-winding mechanism 3 includes a fixed frame plate 31, a fixed cylinder 32 and a smoothing anti-winding group 33, the smoothing anti-winding group 33 is provided on the surfaces of the support frame 108 and the second wire body 111, the smoothing anti-winding group 33 is composed of an electric push rod 331, a smoothing plate 332 and a moving column 333, the surface of the top position of the support frame 108 is installed with a fixed frame plate 31, the surface of the fixed frame plate 31 is installed with a fixed cylinder 32, one end of the fixed cylinder 32 extends to the interior of the fixed frame plate 31, the interior of the fixed frame plate 31 is provided with a moving column 333, the moving column 333 and the inner wall of the fixed cylinder 32 slide with each other, one end of the movable column 333 extends to the outside of the fixed cylinder 32, and an electric push rod 331 is installed inside the fixed cylinder 32. The model of the electric push rod 331 can be DG series. The input end of the electric push rod 331 is electrically connected to the output end of the control button 101, and the output end of the electric push rod 331 is fixed to the surface of the movable column 333. The surface of the second wire body 111 is provided with a smoothing plate 332 for smoothing the surface of the second wire body 111 to prevent accumulation. The surface of the smoothing plate 332 is fixed to the surface of the movable column 333, and the inner wall of the smoothing plate 332 is in contact with the surface of the second wire body 111.
[0028] During implementation, the electric push rod 331 inside the fixed cylinder 32 is controlled to work, and the moving column 333 is driven to move under the action of the electric push rod 331, so that the moving column 333 slides on the inner wall of the fixed cylinder 32. When the moving column 333 moves, the moving column 333 drives the smoothing plate 332 to move until it contacts the surface of the second wire body 111. The user adjusts the position of the smoothing plate 332 according to the demand for paying out the second wire body 111, and adjusts the paying out speed of the second wire body 111 under the action of the smoothing plate 332 to avoid the second wire body 111 from paying out too fast and causing entanglement and accumulation between the second wire bodies 111, so as to realize the function of the pipe-threading and wire-burying device to smooth and prevent entanglement of the surface of the second wire body 111.
[0029] Furthermore, if Figure 2and Figure 5 As shown, the interior of the branching plate 105 and the surface of the second line body 111 are both provided with a branching and burying wire mechanism 4, the interior of the branching and burying wire mechanism 4 includes an elastic device 41, a holding groove 42 and a branching and burying wire component 43, the branching and burying wire component 43 is arranged inside the branching plate 105 and on the surface of the second line body 111, the branching and burying wire component 43 is composed of a guide slide 431, a moving block 432 and a moving splint 433, the interior of the branching plate 105 is provided with a holding groove 42, the holding groove 42 is respectively located on both sides of the second line body 111, and the interior of the holding groove 42 is provided There is a moving block 432, which slides with the inner wall of the holding groove 42. A moving splint 433 is provided inside the branching plate 105. The surface of the moving splint 433 is fixed to the surface of the moving block 432. The surface of the moving splint 433 contacts the surface of the second wire body 111. The inner wall of the branching plate 105 is provided with a guide groove 431. The guide groove 431 and the surface of the moving block 432 slide with each other. An elastic device 41 is installed inside the holding groove 42, and one end of the elastic device 41 is fixed to the surface of the moving block 432.
[0030] During implementation, the moving block 432 is driven to slide inside the holding groove 42 by the elastic force of the elastic device 41 inside the holding groove 42. At this time, the moving block 432 slides inside the guide groove 431, and is guided by the guide groove 431. When the moving block 432 moves, the moving block 432 drives the moving splint 433 to move until it contacts the surface of the second wire body 111. Under the joint action of the elastic device 41 and the moving splint 433, the second wire body 111 is separated, so as to avoid the phenomenon that the second wire body 111 is piled up together when laying out and burying the wire, which makes it inconvenient to bury the wire, so as to realize the function of the pipe-threading and burying device to separate and bury the second wire body 111.
[0031] Working principle: When in use, first push the device frame 1 to the specified position. When the first wire body 106 is threaded through the pipe, the rotating wire roller 107 rotates on the inner wall of the frame body 103, so that one end of the first wire body 106 moves to the inside of the limiting cylinder 21 respectively. Then, the user twists the rotating screw 22 on the surface of the limiting cylinder 21, so that the rotating screw 22 rotates on the inner wall of the fixing screw hole 24. When the rotating screw 22 moves, the rotating screw 22 drives the limiting splint 23 to move to contact the surface of the first wire body 106. Under the joint action of the rotating screw 22 and the limiting splint 23, the first wire body 106 is limited to the inside of the limiting cylinder 21, and the first wire body 106 is wired separately to realize the function of the pipe threading and burying device for wiring and threading the first wire body 106, so that the pipe threading and burying device can limit the wiring of the first wire body 106 when in use, making it more convenient for the pipe threading and burying device to thread the first wire body 106.
[0032] Subsequently, the user operates the control button 101 on the surface of the device frame 1, so that the control button 101 controls the driving motor 113 on the surface of the support frame 108 to work, and under the action of the driving motor 113, the wire reel 109 is driven to rotate on the inner wall of the support frame 108. When the wire reel 109 rotates, the wire reel 109 controls the second wire body 111 to pay off the wire. Subsequently, when the second wire body 111 is paying off the wire, the user operates the control button 101 again, so that the control button 101 controls the electric push rod 331 inside the fixed cylinder 32 to work, and under the action of the electric push rod 331, the moving column 333 is driven to move, so that the moving column 333 slides on the inner wall of the fixed cylinder 32. When the moving column 333 moves, the moving column 333 The smoothing plate 332 is driven to move until it contacts the surface of the second wire body 111. The user adjusts the position of the smoothing plate 332 according to the demand for paying out the second wire body 111. Under the action of the smoothing plate 332, the paying-out speed of the second wire body 111 is adjusted to avoid the second wire body 111 being paid out too quickly and causing entanglement and accumulation between the second wire bodies 111, so as to realize the function of the pipe-threading and wire-burying device to smooth and prevent entanglement of the surface of the second wire body 111, so that the pipe-threading and wire-burying device can smooth the surface of the second wire body 111 when in use, avoiding the phenomenon of entanglement and accumulation when the pipe-threading and wire-burying device pays out the second wire body 111, making the pipe-threading and wire-burying device more practical when in use.
[0033] Subsequently, one end of the second wire body 111 moves to one side of the guide frame 104. When the second wire body 111 is paying out the wire, the second wire body 111 drives the guide roller 110 to rotate on the surface of the guide frame 104. Under the action of the guide roller 110, the second wire body 111 is guided. Under the action of the protective pad 112, the surface of the second wire body 111 is protected to avoid wear of the second wire body 111 during the paying out of the wire. At this time, one end of the second wire body 111 moves to the inside of the dividing plate 105, and drives the moving block 432 to slide inside the holding groove 42 under the elastic force of the elastic device 41 inside the holding groove 42. At this time, the moving block 432 slides inside the guide slide groove 431, and under the action of the guide slide groove 431 The movable block 432 is guided by the lower part. When the movable block 432 moves, the movable block 432 drives the movable splint 433 to move to contact the surface of the second wire body 111. Under the joint action of the elastic device 41 and the movable splint 433, the second wire body 111 is divided, so as to avoid the inconvenience of burying the second wire body 111 due to the accumulation of the second wire bodies 111 when laying out the wires. The function of the wire-threading and wire-burying device for dividing and burying the second wire body 111 is realized, so that the wire-threading and wire-burying device can divide the second wire body 111 separately when in use, so that the wire-threading and wire-burying device can make the second wire body 111 more accurate when burying the wires, and finally complete the use of the wire-threading and wire-burying device.
[0034] It will be apparent to those skilled in the art that the present invention is not limited to the details of the exemplary embodiments described above and that the present invention can be implemented in other specific forms without departing from the spirit or essential characteristics of the present invention. Therefore, the embodiments should be considered in all respects as illustrative and non-restrictive, and the scope of the present invention is defined by the appended claims, not the foregoing description, and all variations within the meaning and range of equivalents of the claims are intended to be encompassed within the present invention. Any reference sign in a claim should not be construed as limiting the claim to which it relates.
Claims
1. A pipe threading and cable burying device for water conservancy and hydropower construction, comprising a device frame (1), characterized in that: The surface of the device frame (1) is installed with a control button (101), the surface of the device frame (1) is installed with a handle (102), the surface of the top position of the device frame (1) is installed with a frame body (103), the interior of the frame body (103) is provided with a rotating wire roller (107), the rotating wire roller (107) and the inner wall of the frame body (103) are rotated with each other, the surface of the rotating wire roller (107) is wound with a first wire body (106), the surface of the top position of the device frame (1) is installed with a support frame (108), the surface of the support frame (108) is provided with a wire reel (109), the wire reel (109) and the inner wall of the support frame (108) are rotated with each other, the surface of the top position of the device frame (1) is installed with a guide frame (104), the A wiring board (105) is installed on the surface at the top position of the device frame (1), and a wiring pipe-threading mechanism (2) is provided on the surface of the frame (103), and the interior of the wiring pipe-threading mechanism (2) includes a limiting cylinder (21), a rotating screw (22), a limiting clamp (23) and a fixing screw hole (24). The surfaces of the support frame (108) and the second wire body (111) are both provided with a smoothing and anti-winding mechanism (3), and the interior of the smoothing and anti-winding mechanism (3) includes a fixing frame plate (31), a fixing cylinder (32) and a smoothing and anti-winding group (33). The interior of the wiring board (105) and the surface of the second wire body (111) are both provided with a wiring-thread-burying mechanism (4), and the interior of the wiring-thread-burying mechanism (4) includes an elastic device (41), a receiving groove (42) and a wiring-thread-burying assembly (43).
2. A pipe threading and cable burying device for water conservancy and hydropower construction according to claim 1, characterized in that: The surface of the wire reel (109) is wound with a second wire body (111), and the interior of the guide frame (104) is provided with a guide roller (110) for guiding and pressing the second wire body (111), the surface of the guide roller (110) and the inner wall of the guide frame (104) are rotated with each other, and the surface of the guide roller (110) is wrapped with a protective pad (112), and the surface of the protective pad (112) is in contact with the surface of the second wire body (111), and a driving motor (113) is installed on the surface of the support frame (108), the input end of the driving motor (113) is electrically connected to the output end of the control button (101), and the output end of the driving motor (113) is installed with a rotating shaft through a coupling, and one end of the rotating shaft passes through the support frame (108) and is fixed to the surface of the wire reel (109).
3. The pipe threading and cable burying device for water conservancy and hydropower construction according to claim 1, characterized in that: A limiting cylinder (21) is installed on the surface of the frame (103), and a fixing screw hole (24) is provided on the surface of the limiting cylinder (21). A rotating screw rod (22) is threadedly connected to the surface of the limiting cylinder (21), and one end of the rotating screw rod (22) extends into the interior of the limiting cylinder (21). The rotating screw rod (22) and the fixing screw hole (24) are threadedly matched with each other.
4. A pipe threading and cable burying device for water conservancy and hydropower construction according to claim 3, characterized in that: The interior of the limiting cylinder (21) is provided with a limiting clamp (23) for limiting the surface of the first wire body (106) to pass through the tube. The surface of the limiting clamp (23) is in contact with the surface of the first wire body (106), and the rotating screw (22) and the surface of the limiting clamp (23) are rotated and matched with each other.
5. The pipe threading and cable burying device for water conservancy and hydropower construction according to claim 1, characterized in that: The smoothing and anti-winding group (33) is arranged on the surface of the support frame (108) and the second wire body (111), and the smoothing and anti-winding group (33) is composed of an electric push rod (331), a smoothing plate (332) and a moving column (333). A fixed frame plate (31) is installed on the surface at the top position of the support frame (108), and a fixed cylinder (32) is installed on the surface of the fixed frame plate (31). One end of the fixed cylinder (32) extends to the inside of the fixed frame plate (31), and a moving column (333) is arranged inside the fixed frame plate (31). The moving column (333) and the inner wall of the fixed cylinder (32) are slidably matched with each other, and one end of the moving column (333) extends to the outside of the fixed cylinder (32).
6. A pipe threading and cable burying device for water conservancy and hydropower construction according to claim 5, characterized in that: An electric push rod (331) is installed inside the fixed cylinder (32), the input end of the electric push rod (331) is electrically connected to the output end of the control button (101), the output end of the electric push rod (331) is fixed to the surface of the moving column (333), and the surface of the second wire body (111) is provided with a smoothing plate (332) for smoothing the surface of the second wire body (111) to prevent accumulation, the surface of the smoothing plate (332) is fixed to the surface of the moving column (333), and the inner wall of the smoothing plate (332) is in contact with the surface of the second wire body (111).
7. The pipe threading and cable burying device for water conservancy and hydropower construction according to claim 1, characterized in that: The line-dividing and line-burying assembly (43) is arranged inside the line-dividing plate (105) and on the surface of the second line body (111). The line-dividing and line-burying assembly (43) is composed of a guide groove (431), a moving block (432) and a moving clamp (433). The inside of the line-dividing plate (105) is provided with a receiving groove (42). The receiving grooves (42) are respectively located on both sides of the second line body (111). The inside of the receiving groove (42) is provided with a moving block (432). The moving block (432) and the inner wall of the receiving groove (42) are slidably matched with each other.
8. The pipe threading and cable burying device for water conservancy and hydropower construction according to claim 1, characterized in that: The inside of the branching plate (105) is provided with a movable clamping plate (433), the surface of the movable clamping plate (433) is fixed to the surface of the movable block (432), the surface of the movable clamping plate (433) is in contact with the surface of the second wire body (111), the inner wall of the branching plate (105) is provided with a guide groove (431), the guide groove (431) and the surface of the movable block (432) are slidably matched with each other, and the inside of the containing groove (42) is installed with an elastic device (41), one end of the elastic device (41) is fixed to the surface of the movable block (432).