Electromechanical pipeline mounting device
By designing lifting components, support components, and touch-sensitive protection components, the problem of automatic stopping and adaptation to different pipe diameters during the lifting process of the pipeline installation device has been solved, thereby improving safety and convenience.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- CHINA THIRD METALLURGICAL GRP
- Filing Date
- 2025-05-28
- Publication Date
- 2026-05-15
AI Technical Summary
Existing electromechanical piping installation devices cannot automatically stop during the lifting process, causing pipes to be squeezed against the ceiling or beams, resulting in damage and affecting the ease and safety of installation.
An electromechanical pipeline installation device is designed, which includes a lifting component, a support component, and a touch protection component. The lifting component automatically stops working through the touch protection component, the support component has adjustable limit parts to adapt to different pipe diameters, and the movable stabilizing component facilitates the positioning of the device.
It improves the safety and convenience of pipe installation, avoids the pipe from being squeezed by the ceiling or beam during the lifting process, and is suitable for terrain environments of different heights.
Smart Images

Figure CN224242640U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of electromechanical pipeline installation technology, specifically to an electromechanical pipeline installation device. Background Technology
[0002] Mechanical and electrical pipelines are important infrastructure inside buildings. Their stability and safety are directly related to the overall safety performance of the building. In the event of natural disasters such as earthquakes, if the mechanical and electrical pipeline system does not adopt effective seismic connection and installation technology, it may be damaged due to vibration and displacement, leading to the interruption of energy supply such as water, electricity, and gas, and even causing secondary disasters such as fires and explosions. This technology can maintain the stability of the pipeline system, reduce the risk of damage, and ensure the overall safety of the building. Therefore, it is necessary to adopt it when installing mechanical and electrical pipelines.
[0003] However, current pipe installation devices on the market can lift and lower pipes during use to facilitate pipe installation. But during the lifting process, the device cannot automatically stop working when it touches the ceiling or beam, causing the device to continue rising. This can cause the pipe to be squeezed against the top of the beam or ceiling during the rise, resulting in pipe damage, affecting the installation operation, and reducing the ease of use of the device. Utility Model Content
[0004] The purpose of this utility model is to provide an electromechanical pipeline installation device to solve the problems mentioned in the background art.
[0005] To achieve the above objectives, the present invention provides the following technical solution: an electromechanical pipeline installation device, including a base, a lifting component is provided on the upper surface of the base, a support component is provided on the top of the lifting component, a touch protection component is provided on the top of the support component, and a movable stabilizing component is provided on the bottom of the base.
[0006] The lifting assembly includes a first fork arm and a second fork arm rotatably connected by a pivot, and a horizontal plate is provided on the top of the first fork arm and the second fork arm.
[0007] The support assembly includes studs inserted into a horizontal plate, with nuts threaded onto both sides of the studs, and a semi-circular plate fixedly installed on the top of the studs.
[0008] The support components are designed to allow for easy replacement or adjustment of the pipe limiting parts according to the different pipe diameters. During use, the installation height and orientation of the two semicircular plates can be adjusted by adjusting the position of the nuts, thus facilitating subsequent support and limiting of the pipe during installation and preventing the pipe from falling off.
[0009] The touch protection component includes a circular tube fixedly installed on one side of the top of a semi-circular plate, a return spring fixedly installed on the inner bottom wall of the circular tube, a pressure plate fixedly installed on the top of the return spring, a protective rod fixedly installed on the top of the pressure plate, and a touch switch fixedly installed on the inner bottom wall of the circular tube, with the touch switch located inside the return spring.
[0010] The lifting and touch-sensitive protective components work together to prevent the pipe surface from squeezing against the top of the ceiling or the bottom of the beam during pipe installation. This eliminates the need for constant manual monitoring of the pipe's direction. The lifting components automatically stop working once the pipe is in place, improving safety during pipe installation and reducing breakage rates.
[0011] Preferably, a protective ring is fitted on the surface of the protective rod, the surface of the protective ring is threaded to the inner wall of the round tube, a rod hole is opened on the protective ring for the protective rod to pass through, and the inner wall of the rod hole is slidably connected to the surface of the protective rod, and a wrench is fixedly installed on the top of the protective ring, and the surface of the wrench is provided with anti-slip texture.
[0012] The protective ring facilitates the positioning of the protective rod during use, preventing it from separating from the round tube and maintaining the stability of the component's installation. It also makes subsequent use easier.
[0013] Preferably, a positioning ring is fixedly installed on the surface of the stud, the bottom of the positioning ring is in contact with the top of the horizontal plate, a positioning hole is provided on the horizontal plate for the stud to pass through, the inner wall of the positioning hole is slidably connected to the surface of the stud, the top of one nut is in contact with the bottom of the horizontal plate, and the bottom of the other nut is in contact with the top of the positioning ring.
[0014] The positioning ring allows for the positioning of the stud during use, facilitating its limiting, installation, and adjustment, and making subsequent use easier.
[0015] Preferably, a push rod is fixedly installed on one side of the base, and an anti-slip sleeve is fitted on one side of the push rod. The surface of the anti-slip sleeve is provided with anti-slip texture, and the anti-slip sleeve is made of rubber. The inner wall of the anti-slip sleeve is fixedly connected to the surface of the push rod.
[0016] With the push rod and anti-slip sleeve, the device can be manually pushed during use, making it easy to move the device during subsequent use.
[0017] Preferably, the movable stabilizing component includes two directional wheels fixedly installed on one side of the bottom of the base and two omnidirectional wheels fixedly installed on the other side of the bottom of the base. Support tubes are fixedly installed at the four corners of the bottom of the base. Threaded rods are threadedly connected to the bottom of the support tubes. Anti-slip plates are rotatably connected to the bottom of the threaded rods through bearings. Anti-slip textures are provided on the lower surface of the anti-slip plates, and the anti-slip plates are made of rubber. Hexagonal rings are fixedly installed on the surface of the threaded rods.
[0018] With its omnidirectional and directional wheels, the device is easy to move during use, and its direction of movement can also be easily adjusted.
[0019] Preferably, the bottom height of the support tube is higher than the bottom height of the directional wheel and the universal wheel, and the bottom heights of the universal wheel and the directional wheel are the same. At the same time, when the threaded rod is screwed out, the height between the support tube and the threaded rod is higher than the height of the universal wheel or the directional wheel. When the threaded rod is retracted into the support tube, the total height between the support tube and the threaded rod is less than the height of the directional wheel or the universal wheel.
[0020] The movable stabilizing components allow the device to be moved during use. Once in position, the threaded rod can be rotated to bring the anti-slip plate into contact with the ground, thus supporting the device. Meanwhile, the surfaces of the directional wheels and swivel wheels do not contact the ground, facilitating the positioning of the device and improving its ease of installation. This also makes it suitable for various terrain environments at different heights.
[0021] Preferably, a positioning frame is fixedly installed on the upper surface of the base, one side of the inner wall of the positioning frame is rotatably connected to the first fork arm through a bearing, a reinforcing rod is fixedly installed at the bottom of the cross plate, and the top of the first fork arm is rotatably connected to one side of the reinforcing rod through a pivot.
[0022] The reinforcing rods facilitate the installation and positioning of components during use, thereby increasing the stability of component installation.
[0023] Preferably, the first fork arm and the second fork arm are respectively hinged by two sets of connecting rods, and the two sets of connecting rods on the second fork arm are fixedly connected by a rotating rod and a round rod. The surface of the rotating rod is fitted with a mounting seat, one end of the mounting seat is rotatably connected to an electric push rod through a rotating shaft, and one end of the electric push rod is rotatably connected to a mounting bracket through rotation. The mounting bracket is fitted onto the surface of the round rod.
[0024] The mounting bracket is designed to maintain force between the first and second forks when the electric push rod extends or retracts during use, thereby facilitating the raising and lowering of the horizontal plate through the first and second forks.
[0025] Preferably, a track is fixedly installed on one inner wall of the positioning frame and the bottom of the cross plate, and a track wheel is rotatably connected to the top and bottom outer sides of the second fork arm through a rotating shaft, and the surface of the track wheel is in rolling contact with the surface of the track.
[0026] The set track facilitates the support of the track wheels during use, which in turn facilitates the movement of the second fork arm and subsequent operations.
[0027] Compared with the prior art, the beneficial effects of this utility model are:
[0028] (1) This type of electromechanical pipeline installation device, through the combination of the set lifting component and the touch protection component, avoids the surface of the pipeline being squeezed against the top of the ceiling or the bottom of the beam during the pipeline installation process. It eliminates the need for manual monitoring of the pipeline's direction during use. The lifting component can be controlled to automatically stop working when the pipeline is lifted into place, which also improves the safety of pipeline installation and avoids the damage rate of pipeline installation.
[0029] (2) This type of electromechanical pipeline installation device, through the set support components, makes it convenient to replace or adjust the limiting components of the pipeline according to the different diameters of the installed pipeline during use. During use, the installation height and installation position of the two semicircular plates can be adjusted by adjusting the position of the nuts, thereby facilitating the subsequent support and limiting operation of the pipeline during pipeline installation and preventing the pipeline from falling off during installation.
[0030] (3) This type of electromechanical pipeline installation device can move the position of the device during use by setting the movable stabilizing component. After moving into place, the anti-slip plate can be made to contact the ground by rotating the threaded rod, so that the device can be supported. At the same time, the surfaces of the directional wheel and the universal wheel do not contact the ground, which facilitates the positioning operation of the device, improves the installation convenience of the device, and is also suitable for different terrain environments. Attached Figure Description
[0031] Figure 1 This is a first-view perspective three-dimensional structural diagram of the present invention;
[0032] Figure 2 This is a second-view perspective three-dimensional structural diagram of the present invention;
[0033] Figure 3 This is a three-dimensional sectional view of the present invention.
[0034] Figure 4 This is a third-view three-dimensional structural diagram of the present invention;
[0035] Figure 5This utility model Figure 1 Enlarged schematic diagram of the structure at point A in the middle;
[0036] Figure 6 This utility model Figure 1 Enlarged schematic diagram of the structure at point B;
[0037] Figure 7 This utility model Figure 2 Enlarged schematic diagram of the structure at point C;
[0038] Figure 8 This utility model Figure 3 Enlarged schematic diagram of the structure at point D;
[0039] Figure 9 This utility model Figure 4 Enlarged schematic diagram of the structure at point E in the middle.
[0040] In the diagram: 1. Base; 2. Lifting assembly; 200. First fork arm; 201. Second fork arm; 202. Horizontal plate; 203. Positioning frame; 204. Reinforcing rod; 205. Rotating rod; 206. Round rod; 207. Mounting shaft seat; 208. Electric push rod; 209. Mounting bracket; 210. Track; 211. Track wheel; 3. Support assembly; 300. Stud; 301. Nut; 302. Semicircular plate; 303. Positioning ring; 4. Touch protection assembly; 400. Round tube; 401. Return spring; 402. Pressure plate; 403. Protective rod; 404. Touch switch; 405. Protective ring; 5. Moving and stabilizing assembly; 500. Directional wheel; 501. Universal wheel; 502. Support tube; 503. Threaded rod; 504. Anti-slip plate; 505. Hexagonal ring; 6. Push rod; 7. Anti-slip sleeve. Detailed Implementation
[0041] 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.
[0042] Please see Figures 1-9 This utility model provides a technical solution: an electromechanical pipeline installation device, including a base 1, a lifting component 2 is provided on the upper surface of the base 1, a support component 3 is provided on the top of the lifting component 2, a touch protection component 4 is provided on the top of the support component 3, and a movable stabilizing component 5 is provided on the bottom of the base 1.
[0043] The lifting assembly 2 includes a first fork arm 200 and a second fork arm 201 rotatably connected by a pivot, and a horizontal plate 202 is provided on the top of the first fork arm 200 and the second fork arm 201.
[0044] The support assembly 3 includes a stud 300 inserted on the horizontal plate 202. Nuts 301 are threadedly connected to both sides of the surface of the stud 300 on the horizontal plate 202. A semi-circular plate 302 is fixedly installed on the top of the stud 300.
[0045] The support component 3 allows for easy replacement or adjustment of the pipe limiting components according to the different pipe diameters during use. During use, the installation height and orientation of the two semicircular plates 302 can be adjusted by adjusting the position of the nut 301, thus facilitating subsequent support and limiting of the pipe during installation and preventing the pipe from falling off.
[0046] The touch protection component 4 includes a circular tube 400 fixedly installed on one side of the top of a semi-circular plate 302, a return spring 401 fixedly installed on the inner bottom wall of the circular tube 400, a pressure plate 402 fixedly installed on the top of the return spring 401, a protective rod 403 fixedly installed on the top of the pressure plate 402, and a touch switch 404 fixedly installed on the inner bottom wall of the circular tube 400. The touch switch 404 is located inside the return spring 401.
[0047] The lifting component 2 and the touch protection component 4 work together to prevent the surface of the pipe from being squeezed against the top of the ceiling or the bottom of the beam during the pipe installation process. There is no need for manual monitoring of the pipe's direction during use. The lifting component 2 can be controlled to automatically stop working when the pipe is raised to the correct position, which also improves the safety of pipe installation and reduces the breakage rate of the pipe during installation.
[0048] Please see Figure 6 A protective ring 405 is fitted onto the surface of the protective rod 403. The surface of the protective ring 405 is threadedly connected to the inner wall of the round tube 400. A rod hole is provided on the protective ring 405 for the protective rod 403 to pass through, and the inner wall of the rod hole is slidably connected to the surface of the protective rod 403. A wrench is fixedly installed on the top of the protective ring 405. The surface of the wrench is provided with anti-slip texture. The protective ring 405 facilitates the positioning of the protective rod 403 during use, thereby preventing the protective rod 403 from separating from the round tube 400 during use, maintaining the installation stability of the components, and also facilitating subsequent use.
[0049] Please see Figures 4-5A positioning ring 303 is fixedly installed on the surface of the stud 300. The bottom of the positioning ring 303 is in contact with the top of the horizontal plate 202. The horizontal plate 202 has a positioning hole for the stud 300 to pass through. The inner wall of the positioning hole is slidably connected to the surface of the stud 300. The top of one nut 301 is in contact with the bottom of the horizontal plate 202, and the bottom of the other nut 301 is in contact with the top of the positioning ring 303. The positioning ring 303 can be used to position the stud 300 during use, thereby facilitating the limiting of the stud 300, as well as facilitating its installation and adjustment, and making subsequent use convenient.
[0050] Please see Figure 4 A push rod 6 is fixedly installed on one side of the base 1. An anti-slip sleeve 7 is fitted on one side of the push rod 6. The surface of the anti-slip sleeve 7 is textured with anti-slip material and is made of rubber. The inner wall of the anti-slip sleeve 7 is fixedly connected to the surface of the push rod 6. The push rod 6 and the anti-slip sleeve 7 allow the device to be pushed by hand during use, which facilitates the movement of the device during subsequent use.
[0051] Please see Figure 7 The movable stabilizing component 5 includes two directional wheels 500 fixedly installed on one side of the bottom of the base 1 and two universal wheels 501 fixedly installed on the other side of the bottom of the base 1. Support tubes 502 are fixedly installed at the four corners of the bottom of the base 1. Threaded rods 503 are threadedly connected to the bottom of the support tubes 502. Anti-slip plates 504 are rotatably connected to the bottom of the threaded rods 503 through bearings. The lower surface of the anti-slip plates 504 is provided with anti-slip texture and is made of rubber. Hexagonal rings 505 are fixedly installed on the surface of the threaded rods 503. The universal wheels 501 and directional wheels 500 facilitate the movement of the device during use and also facilitate the adjustment of the movement direction of the device.
[0052] Please see Figure 7 The bottom height of the support tube 502 is higher than the bottom height of the directional wheel 500 and the universal wheel 501, and the bottom heights of the universal wheel 501 and the directional wheel 500 are the same. When the threaded rod 503 is screwed out, the height between the support tube 502 and the threaded rod 503 is higher than the height of the universal wheel 501 or the directional wheel 500. When the threaded rod 503 is retracted into the support tube 502, the total height between the support tube 502 and the threaded rod 503 is less than the height of the directional wheel 500 or the universal wheel 501. The movable stabilizing component 5 allows the device to be moved during use. After being moved into position, the anti-slip plate 504 can be made to contact the ground by rotating the threaded rod 503, thus supporting the device. Meanwhile, the surfaces of the directional wheel 500 and the universal wheel 501 do not contact the ground, which facilitates the positioning operation of the device, improves the ease of installation, and is also suitable for different terrain environments.
[0053] Please see Figure 8 A positioning frame 203 is fixedly installed on the upper surface of the base 1. One side of the inner wall of the positioning frame 203 is rotatably connected to the first fork arm 200 through a bearing seat. A reinforcing rod 204 is fixedly installed at the bottom of the horizontal plate 202. The top of the first fork arm 200 is rotatably connected to one side of the reinforcing rod 204 through a pivot. The reinforcing rod 204 facilitates the installation and positioning of the component during use, thereby increasing the installation stability of the component.
[0054] Please see Figure 3 The first fork arm 200 and the second fork arm 201 are respectively hinged by two sets of connecting rods, and the two sets of connecting rods on the second fork arm 201 are fixedly connected by a rotating rod 205 and a round rod 206. The surface of the rotating rod 205 is fitted with a mounting seat 207. One end of the mounting seat 207 is rotatably connected to an electric push rod 208 through a rotating shaft. One end of the electric push rod 208 is rotatably connected to a mounting bracket 209. The mounting bracket 209 is fitted on the surface of the round rod 206. The mounting seat 207 is designed to facilitate the force between the first fork arm 200 and the second fork arm 201 when the electric push rod 208 extends or retracts during use, thereby facilitating the raising and lowering of the height of the cross plate 202 through the first fork arm 200 and the second fork arm 201.
[0055] Please see Figure 9 The inner wall of one side of the positioning frame 203 and the bottom of the cross plate 202 are both fixedly installed with rails 210. The top and bottom outer sides of the second fork arm 201 are rotatably connected with rail wheels 211 through a rotating shaft. The surface of the rail wheel 211 is in rolling contact with the surface of the rail 210. The rail 210 is set to facilitate the support operation of the rail wheel 211 during use, thereby facilitating the subsequent movement of the second fork arm 201 and facilitating subsequent operations.
[0056] Please see Figures 1-9 A method for using an electromechanical pipeline installation device, the specific steps of which are as follows:
[0057] A1. First, push the device to the desired position. Adjust the two nuts 301 according to the installation requirements to adjust the orientation and position of the semicircular plate 302. Alternatively, replace the semicircular plate 302 with different models according to the size of the corresponding pipe installation. After the adjustment or replacement is completed, tighten the nuts 301.
[0058] A2. After the adjustment is completed, place the pipe on the two semicircular plates 302. Then the electric push rod 208 can be controlled to work. When the electric push rod 208 extends, it will drive the interaction between the two first forks 200 and the second forks 201, which will cause the height of the horizontal plate 202 to rise.
[0059] A3. During the lifting process, the device can be slightly pushed according to the installation position to adjust the position of the pipe, thereby preventing the pipe installation position from shifting.
[0060] A4. When the lifting assembly 2 rises to a certain position, the protective rod 403 on the touch protection assembly 4 will contact the bottom of the ceiling or beam. When the protective rod 403 is under pressure, it will press the pressure plate 402 downward, so that the bottom of the pressure plate 402 is pressed against the top of the touch switch 404.
[0061] A5. When the touch switch 404 is squeezed, the touch switch 404 will control the electric push rod 208 to stop working, so as to prevent the electric push rod 208 from being squeezed, deformed or damaged after it continues to extend.
[0062] A6. Once the pipe is jacked to the correct height, the threaded rod 503 on the hexagonal ring 505 can be rotated to make the anti-slip plate 504 on the threaded rod 503 contact the ground, thereby supporting and limiting the device and preventing the device from shaking during installation.
[0063] A7. After installation, control the electric push rod 208 to retract. Then, the first fork arm 200 and the second fork arm 201 will fold, causing the height of the cross plate 202 to decrease. Then, rotate the threaded rod 503 on the hexagonal ring 505 in the opposite direction, causing the anti-slip plate 504 on the threaded rod 503 to separate from the ground. At this time, the directional wheel 500 and the universal wheel 501 support the device. Then, move the device to the next installation position or push it to store it.
[0064] Working principle: When using the device, first push it to the desired position. Adjust the two nuts 301 according to the installation requirements to adjust the orientation and position of the semicircular plate 302. Alternatively, replace the semicircular plate 302 with different models according to the size of the corresponding pipe installation. After the adjustment or replacement is completed, tighten the nuts 301.
[0065] After the adjustment is completed, place the pipe on the two semicircular plates 302, and then control the electric push rod 208 to work. When the electric push rod 208 extends, it will drive the interaction between the two first forks 200 and the second forks 201, which will raise the height of the horizontal plate 202.
[0066] During the lifting process, the device can be slightly pushed according to the installation position to adjust the position of the pipe and thus prevent the pipe installation position from shifting.
[0067] When the lifting assembly 2 rises to a certain position, the protective rod 403 on the touch protection assembly 4 will contact the bottom of the ceiling or beam. When the protective rod 403 is under pressure, it will press the pressure plate 402 downward, so that the bottom of the pressure plate 402 is pressed against the top of the touch switch 404.
[0068] When the touch switch 404 is pressed, it will control the electric push rod 208 to stop working, so as to prevent the electric push rod 208 from stretching and deforming or damaging the pipe.
[0069] Once the pipe is jacked to the correct height, the threaded rod 503 on the hexagonal ring 505 can be rotated to make the anti-slip plate 504 on the threaded rod 503 contact the ground, thereby supporting and limiting the device and preventing the device from shaking during installation.
[0070] Once installation is complete, control the electric push rod 208 to retract. Then, the first fork arm 200 and the second fork arm 201 will fold, causing the height of the cross plate 202 to decrease. Then, rotate the threaded rod 503 on the hexagonal ring 505 in the opposite direction, causing the anti-slip plate 504 on the threaded rod 503 to separate from the ground. At this time, the directional wheel 500 and the universal wheel 501 support the device. Then, move the device to the next installation position or push it to store it.
[0071] All standard parts used in this utility model can be purchased from the market, and irregular parts can be customized according to the description and drawings. The specific connection methods of each part adopt conventional methods such as bolts, rivets, and welding that are mature in the prior art. The machinery, parts and equipment adopt conventional models in the prior art. In addition, the circuit connection adopts conventional connection methods in the prior art, which will not be described in detail here. The contents not described in detail in this specification belong to the prior art known to those skilled in the art.
[0072] The present invention and its embodiments have been described above. This description is not restrictive, and the accompanying drawings are only one embodiment of the present invention; the actual structure is not limited thereto. In conclusion, if those skilled in the art are inspired by this description and design similar structures and embodiments without departing from the inventive spirit of the present invention, such designs should fall within the protection scope of the present invention.
Claims
1. An electromechanical pipeline installation device, comprising a base (1), characterized in that: The upper surface of the base (1) is provided with a lifting assembly (2), the top of the lifting assembly (2) is provided with a support assembly (3), the top of the support assembly (3) is provided with a touch protection assembly (4), and the bottom of the base (1) is provided with a moving stabilizing assembly (5); the lifting assembly (2) includes a first fork arm (200) and a second fork arm (201) rotatably connected by a pivot, and a horizontal plate (202) is provided on the top of the first fork arm (200) and the second fork arm (201); the support assembly (3) includes a stud (300) inserted on the horizontal plate (202), and the surface of the stud (300) is located on the horizontal plate (202). Both sides of 02) are threaded with nuts (301), and a semi-circular plate (302) is fixedly installed on the top of the stud (300); the touch protection component (4) includes a round tube (400) fixedly installed on one side of the top of the semi-circular plate (302), a reset spring (401) fixedly installed on the inner bottom wall of the round tube (400), a pressure plate (402) fixedly installed on the top of the reset spring (401), a protective rod (403) fixedly installed on the top of the pressure plate (402), and a touch switch (404) fixedly installed on the inner bottom wall of the round tube (400), with the touch switch (404) located inside the reset spring (401).
2. The electromechanical pipeline installation device according to claim 1, characterized in that: The protective rod (403) is fitted with a protective ring (405), the surface of the protective ring (405) is threaded to the inner wall of the round tube (400), the protective ring (405) has a rod hole for the protective rod (403) to pass through, and the inner wall of the rod hole is slidably connected to the surface of the protective rod (403), and a wrench is fixedly installed on the top of the protective ring (405), and the surface of the wrench has anti-slip texture.
3. The electromechanical pipeline installation device according to claim 1, characterized in that: A positioning ring (303) is fixedly installed on the surface of the stud (300). The bottom of the positioning ring (303) is in contact with the top of the horizontal plate (202). The horizontal plate (202) has a positioning hole for the stud (300) to pass through. The inner wall of the positioning hole is slidably connected to the surface of the stud (300). The top of one nut (301) is in contact with the bottom of the horizontal plate (202), and the bottom of the other nut (301) is in contact with the top of the positioning ring (303).
4. The electromechanical pipeline installation device according to claim 1, characterized in that: A push rod (6) is fixedly installed on one side of the base (1). An anti-slip sleeve (7) is fitted on one side of the push rod (6). The surface of the anti-slip sleeve (7) is provided with anti-slip texture, and the anti-slip sleeve (7) is made of rubber. The inner wall of the anti-slip sleeve (7) is fixedly connected to the surface of the push rod (6).
5. The electromechanical pipeline installation device according to claim 1, characterized in that: The movable stabilizing component (5) includes two directional wheels (500) fixedly installed on one side of the bottom of the base (1) and two universal wheels (501) fixedly installed on the other side of the bottom of the base (1). Support tubes (502) are fixedly installed at the four corners of the bottom of the base (1). The bottom of the support tube (502) is threadedly connected to a threaded rod (503). The bottom of the threaded rod (503) is rotatably connected to an anti-slip plate (504) through a bearing. The lower surface of the anti-slip plate (504) is provided with anti-slip texture, and the anti-slip plate (504) is made of rubber. A hexagonal ring (505) is fixedly installed on the surface of the threaded rod (503).
6. The electromechanical pipeline installation device according to claim 5, characterized in that: The bottom height of the support tube (502) is higher than the bottom height of the directional wheel (500) and the universal wheel (501), and the bottom heights of the universal wheel (501) and the directional wheel (500) are the same. At the same time, when the threaded rod (503) is screwed out, the height between the support tube (502) and the threaded rod (503) is higher than the height of the universal wheel (501) or the directional wheel (500). When the threaded rod (503) is retracted into the support tube (502), the total height between the support tube (502) and the threaded rod (503) is less than the height of the directional wheel (500) or the universal wheel (501).
7. The electromechanical pipeline installation device according to claim 1, characterized in that: A positioning frame (203) is fixedly installed on the upper surface of the base (1). One side of the inner wall of the positioning frame (203) is rotatably connected to the first fork arm (200) through a bearing seat. A reinforcing rod (204) is fixedly installed at the bottom of the horizontal plate (202). The top of the first fork arm (200) is rotatably connected to one side of the reinforcing rod (204) through a pivot.
8. The electromechanical pipeline installation device according to claim 1, characterized in that: The first fork arm (200) and the second fork arm (201) are respectively hinged by two sets of connecting rods, and the two sets of connecting rods on the second fork arm (201) are fixedly connected by a rotating rod (205) and a round rod (206). The surface of the rotating rod (205) is fitted with a mounting seat (207). One end of the mounting seat (207) is rotatably connected to an electric push rod (208) through a rotating shaft. One end of the electric push rod (208) is rotatably connected to a mounting bracket (209) through rotation. The mounting bracket (209) is fitted on the surface of the round rod (206).
9. The electromechanical pipeline installation device according to claim 7, characterized in that: The inner wall of one side of the positioning frame (203) and the bottom of the horizontal plate (202) are both fixedly installed with rails (210). The top and bottom outer sides of the second fork arm (201) are rotatably connected with rail wheels (211) through a rotating shaft. The surface of the rail wheel (211) is in rolling connection with the surface of the rail (210).