A pipeline butt joint auxiliary device for electrical engineering construction and a using method thereof

The pipe docking auxiliary device, which uses a support component and an electric slider to drive the cleaning brush, solves the cleaning and cutting problems during pipe docking in electrical engineering, and achieves an efficient pipe docking process.

CN119305200BActive Publication Date: 2025-12-09CHINA NUCLEAR IND HUAXING CONSTR +1
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Patent Information

Application Number
CN202411382411.1
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-09-30
Publication Date
2025-12-09
Estimated Expiration
2044-09-30

AI Technical Summary

Technical Problem

Existing pipe connection devices cannot be easily cleaned before connection and cut after connection in electrical engineering, resulting in weak pipe connections. The additional cutting operations are time-consuming and labor-intensive, increasing operating costs.

Method used

The pipe docking auxiliary device includes a base plate, support components, electric slider, and cleaning brush. The cleaning brush is driven to rotate by the electric slider for cleaning and cutting. Combined with a dust collection device, it realizes the integrated cleaning and cutting of pipes.

Benefits of technology

It improves the cleanliness and strength of pipe joints, simplifies the operation process, reduces manual cutting time, and lowers operating costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a pipeline butt joint auxiliary device for electrical engineering construction, which comprises a bottom plate and two groups of supporting components, the two groups of supporting components are respectively installed on the bottom plate, the supporting component comprises a supporting seat and a semicircular ring, the supporting seat is installed on the bottom plate and the top of the supporting seat is connected with the semicircular ring, the top of the supporting seat and the inner side of the semicircular ring jointly form a circular hole, an annular sliding groove is arranged in the inner wall of the circular hole, an electric sliding block is slidably arranged in the annular sliding groove, the electric sliding block is connected with a cleaning brush plate, a dust suction hole two is arranged on the cleaning brush plate, the cleaning brush plate is connected with a dust suction driving mechanism for driving the dust suction hole two, and the electric sliding block is used for driving the cleaning brush plate to rotate around the center of the circular hole along the annular sliding groove. The pipeline butt joint auxiliary device can drive the cleaning brush plate to rotate around the center of the circular hole along the annular sliding groove through the electric sliding block, can clean the pipeline and restore the bending deformation of the pipeline at the same time, can cut the drum edges of two pipeline joints, and is convenient for the subsequent direct use of the pipeline.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of pipe butt joint for electrical engineering construction, in particular to a pipe butt joint auxiliary device for electrical engineering construction and a use method thereof. BACKGROUND

[0002] The traditional and broad definition of electrical engineering is the sum of the disciplines used to create electrical and electronic systems. With the rapid development of science and technology, the concept of electrical engineering has far exceeded the scope of the above definition. It is the great progress of electronic technology that has driven the arrival of the information age based on computer networks and changed various aspects including human life and work patterns.

[0003] In electrical engineering, PE pipes are used to protect a large number of cables. When two PE pipes are butt jointed, a pipe butt joint auxiliary device is used to complete the splicing of the two pipes. The conventional pipe butt joint auxiliary device can only support the pipes and cannot clean the butt joint of the pipes before butt jointing, which can easily cause the subsequent butt joint of the pipes to be not firm. In addition, the conventional pipe butt joint auxiliary device cannot conveniently cut the flange of the pipe joint, which is time-consuming and laborious and increases the operation cost.

[0004] Therefore, there is an urgent need for a pipe butt joint auxiliary device for electrical engineering construction and a use method thereof to solve the problem that the pipes used in electrical engineering are inconvenient to clean before butt jointing and cut after butt jointing. SUMMARY

[0005] The present application provides a pipe butt joint auxiliary device for electrical engineering construction and a use method thereof to solve the problem that the pipes used in electrical engineering are inconvenient to clean before butt jointing and cut after butt jointing.

[0006] To achieve the above-mentioned purpose, the present application adopts the following technical scheme:

[0007] A pipe butt joint auxiliary device for electrical engineering construction, characterized in that it comprises a bottom plate and two groups of support components, the two groups of support components are respectively installed on the bottom plate, the support component comprises a support seat and a semicircular ring, the support seat is installed on the bottom plate and the top thereof is connected with the semicircular ring, the top of the support seat and the inner side of the semicircular ring jointly form a circular hole through which the pipe can pass, an annular sliding groove is arranged in the inner wall of the circular hole and is continuously formed by an arc-shaped rotating groove one arranged on the top of the support seat and an arc-shaped rotating groove two arranged on the inner side of the semicircular ring, an electric sliding block is slidably arranged in the annular sliding groove, a cleaning brush plate is connected to one side of the electric sliding block facing the center of the circular hole, a plurality of dust suction holes two are arranged on the cleaning brush plate, a dust suction driving mechanism is arranged outside the cleaning brush plate for driving the dust suction holes two, and the electric sliding block is used to drive the cleaning brush plate to rotate around the center of the circular hole along the annular sliding groove.

[0008] To optimize the above technical solutions, the specific measures taken also include:

[0009] Further, it also includes a fixed plate, a moving plate and a pressing plate, the bottom plate is located between the two groups of support components, respectively installed with a fixed plate and a slidable moving plate, the top of the fixed plate and the moving plate is respectively provided with an arc-shaped groove opening upward, and the top of the fixed plate and the moving plate is respectively detachably placed with a pressing plate provided with an arc-shaped groove opening downward, the arc-shaped grooves of the pressing plate can form a circular pressing hole with the arc-shaped grooves of the fixed plate and the moving plate, respectively, for placing the pipeline, the left and right ends of the side of the fixed plate close to the moving plate are respectively connected with an electric telescopic rod one, and the telescopic end of the electric telescopic rod one is connected with the moving plate.

[0010] Further, the left and right ends of the side of the fixed plate close to the moving plate are also respectively connected with a moving rod, one end of the moving rod away from the fixed plate penetrates the moving plate and is connected with a support block, and the bottom of the support block is connected with the top of the bottom plate, and the moving plate can slide along the moving rod to approach or away from the fixed plate.

[0011] Further, it also includes a lifting component, the lifting component includes two L-shaped support frames, two linear motors one, a connecting plate, a lifting plate and an extension plate, one end of the two L-shaped support frames is respectively connected with one side of the fixed plate and the moving plate, and the one side of the fixed plate and the moving plate is also respectively connected with a slide rod one above the L-shaped support frame, one end of the slide rod one away from the fixed plate and the moving plate is connected with the side of the short side of the L-shaped support frame, the outer part of the two slide rods one is respectively sleeved with a linear motor one, and the two linear motors one are connected with a connecting plate, the linear motor one is used to drive the connecting plate to move along the slide rod one, the top of the connecting plate is connected with a support sleeve, the inner wall of the support sleeve is rotatably connected with a rotating screw through a bearing, the rotating screw is threadedly connected with a lifting plate, one end of the lifting plate away from the rotating screw is connected with an extension plate, and the two ends of the extension plate are connected with the top of the two pressing plates, respectively, and the extension plate can adjust the distance between the two pressing plates.

[0012] Further, the lifting component also includes two sliding rods and two sliding blocks, the top of the two pressing plates is respectively provided with a sliding groove in the left-right direction, the two ends of the two sliding rods are respectively connected with the two ends of the inner wall of the sliding groove in the left-right direction, the outer part of the sliding rod is sleeved with a sliding block, the two sliding blocks are respectively slidably arranged in one sliding groove, and the top of the two sliding blocks is respectively connected with the two ends of the extension plate, and the bottom of the extension plate is in sliding contact with the top of the pressing plate.

[0013] Further, the bottom plate is provided with a moving groove axially parallel to the annular sliding groove on the top of the bottom plate and below the two support seats respectively, the bottom of the support seat is in sliding contact with the top of the bottom plate, the moving groove is provided with the second sliding rod, the second sliding rod is provided with the second linear motor outside, the top of the second linear motor is connected with the bottom of the support seat, and the two second linear motors are used for driving the two support seats to move close to or away from each other along the second sliding rod.

[0014] Further, the dust collection driving mechanism comprises a dust removal box and an exhaust fan, the annular sliding groove is provided with a sliding ring limited by two positioning blocks arranged symmetrically above and below, the sliding ring is provided with the electric sliding block on the left and right sides of the positioning block, the rotating groove two is provided with a rotating gap penetrating from the semicircle to the outside on the left and right sides of the positioning block, the dust removal box and the exhaust fan are connected with the top of the support seat and the left and right ends of the semicircle, the air inlet end of the exhaust fan is connected with the dust removal box, and the cleaning brush plate on the two electric sliding blocks is connected with the dust collection hole two through the second telescopic hose penetrating through the rotating gap.

[0015] Further, the cleaning brush plate on the two groups of support components is connected with a plurality of butt joint pipes two connected with the dust collection hole two on the side close to the pressing plate, the butt joint pipe two is provided with an electromagnetic valve, and the left and right ends of the opposite side of the fixed plate and the moving plate are provided with a dust collection component, the dust collection component comprises an arc-shaped dust collection plate and a butt joint pipe one, a plurality of dust collection holes one are formed in the arc-shaped dust collection plate and communicated with the butt joint pipe one, and the butt joint pipe one penetrates the fixed plate and the moving plate and is connected with the butt joint pipe two.

[0016] Further, the dust collection component further comprises a second electric telescopic rod and a first telescopic hose, the butt joint pipe one is connected with the dust collection hole one through the first telescopic hose, one end of the second electric telescopic rod is connected with the fixed plate or the moving plate, and the other end of the second electric telescopic rod is connected with the arc-shaped dust collection plate.

[0017] Further, a use method of the pipeline butt joint auxiliary device for electrical engineering construction is provided, and the use method comprises the following steps.

[0018] Two pipes are respectively passed through the circular hole between the support seat and the semicircle ring on both sides and close to the end of the two pipes to contact, in the process, the electric sliding block drives the cleaning brush plate to rotate around the center of the circular hole along the annular sliding groove, and the dust suction driving mechanism is started to complete the cleaning of the pipe, at the same time, the curved deformation of the pipe is recovered by the moving cleaning brush plate; after the heating butt joint of the two pipes, the electric sliding block on one side of the support part is opened, the cleaning brush plate is driven by the electric sliding block to rotate and rub continuously, and the drum edge of the two pipe joints is cut, which is convenient for the subsequent direct use of the pipe.

[0019] The beneficial effects of the present application are:

[0020] When the device is used, the two pipes can be guided and limited through the circular hole between the support seat and the semicircle ring on both sides, in the process, the electric sliding block drives the cleaning brush plate to rotate around the center of the circular hole along the annular sliding groove, and the dust suction driving mechanism is started to complete the cleaning of the pipe, at the same time, the curved deformation of the pipe is recovered by the moving cleaning brush plate; after the heating butt joint of the two pipes, the electric sliding block on one side of the support part is opened, the cleaning brush plate is driven by the electric sliding block to rotate and rub continuously, and the drum edge of the two pipe joints is cut, which is convenient for the subsequent direct use of the pipe. The present application solves the problem that it is inconvenient to clean before and cut after the butt joint of the pipe used in electrical engineering through the structure of the support part, the electric sliding block and the cleaning brush plate.

[0021] In the present application, through the setting of the support part, when the pipes are butt jointed, the external control end is used to control the operation of the exhaust fan, so that the negative pressure is generated in the dust suction hole two of the cleaning brush plate, and the two electric sliding blocks reciprocate in the positive and negative directions outside the sliding ring, driving the cleaning brush plate to reciprocate in the positive and negative directions in the rotating groove one and the rotating groove two, cleaning the outer wall of the pipe by the cleaning brush plate, improving the cleanliness of the pipe butt joint, being beneficial to the subsequent heating butt joint of the two pipes, and also cutting the drum edge of the two pipe joints, facilitating the subsequent direct use of the pipe, and the dust generated in the cleaning process is absorbed by the dust suction hole two and finally discharged from the exhaust fan through the filtration of the dust removal box. BRIEF DESCRIPTION OF DRAWINGS

[0022] Figure 1 It is an overall structure schematic view of a pipe butt joint auxiliary device for electrical engineering construction provided by the present application;

[0023] Figure 2 It is a top view schematic view of a pipe butt joint auxiliary device for electrical engineering construction provided by the present application;

[0024] Figure 3A lifting component structure diagram of a pipeline butt joint auxiliary device for electrical engineering construction is provided in the present application;

[0025] Figure 4 A sliding rod two and linear motor two structure diagram of a pipeline butt joint auxiliary device for electrical engineering construction is provided in the present application;

[0026] Figure 5 A dust suction driving mechanism installation diagram of a pipeline butt joint auxiliary device for electrical engineering construction is provided in the present application;

[0027] Figure 6 A dust suction component structure diagram of a pipeline butt joint auxiliary device for electrical engineering construction is provided in the present application.

[0028] The drawings show that: 1, bottom plate; 2, support component; 21, guide rod; 22, bearing block; 23, support seat; 24, sliding rod two; 25, linear motor two; 26, exhaust fan; 27, rotating groove one; 28, semicircle ring; 29, rotating groove two; 210, rotating notch; 211, electromagnetic valve; 212, butt joint pipe two; 213, positioning block; 214, slip ring; 215, cleaning brush plate; 216, electric sliding block; 217, dust removal box; 3, fixed plate; 4, electric telescopic rod one; 5, pressing plate; 6, moving rod; 7, support block; 8, moving groove; 9, lifting component; 91, L-shaped support frame; 92, sliding rod one; 93, linear motor one; 94, connecting plate; 95, support sleeve; 96, lifting plate; 97, rotating screw; 98, telescopic plate; 99, sliding block; 910, sliding rod; 10, sliding groove; 11, dust suction component; 111, butt joint pipe one; 112, electric telescopic rod two; 113, arc-shaped dust suction plate; 114, telescopic hose one; 12, moving plate. DETAILED DESCRIPTION

[0029] The present application will be further described in detail in combination with the drawings.

[0030] As shown in the drawings Figure 1 and the drawings Figure 2As shown, the pipe butt joint auxiliary device for electrical engineering construction of the embodiment of the application comprises a bottom plate 1 and two groups of support components 2, the two groups of support components 2 are respectively installed on the bottom plate 1, the support component 2 comprises a support seat 23 and a semicircular ring 28, the support seat 23 is installed on the bottom plate 1 and the top of the support seat 23 is connected with the semicircular ring 28, the top of the support seat 23 and the inner side of the semicircular ring 28 jointly form a circular hole through which the pipe passes, an annular sliding groove is arranged in the inner wall of the circular hole and is continuously formed by an arc-shaped rotating groove one 27 arranged on the top of the support seat 23 and an arc-shaped rotating groove two 29 arranged on the inner side of the semicircular ring 28, an electric sliding block 216 is slidably arranged in the annular sliding groove, an arc-shaped cleaning brush plate 215 is connected to one side of the electric sliding block 216 facing the center of the circular hole, a plurality of dust suction holes two are arranged on the cleaning brush plate 215, a dust suction driving mechanism is arranged outside the cleaning brush plate 215 for driving the dust suction holes two, and the electric sliding block 216 is used for driving the cleaning brush plate 215 to rotate around the center of the circular hole along the annular sliding groove.

[0031] In use, the device can guide and limit two pipes through the circular hole between the support seat 23 and the semicircular ring 28 on both sides, in the process, the cleaning brush plate 215 can be driven by the electric sliding block 216 to rotate around the center of the circular hole along the annular sliding groove, and the dust suction driving mechanism is started at the same time to complete the cleaning of the pipe, at the same time, the outer wall of the pipe is trimmed by the moving cleaning brush plate 215 to restore the bending deformation thereof, after the butt joint of the two pipes is heated, the electric sliding block 216 on one side of the support component 2 is opened, the cleaning brush plate 215 is continuously rotated and rubbed by the electric sliding block 216 to cut the drum edge of the joint of the two pipes, and the subsequent direct use of the pipe is facilitated. Through the support component 2, the electric sliding block 216 and the cleaning brush plate 215 and other structure settings, the problem that it is inconvenient to clean before the butt joint and cut after the butt joint of the pipe used in electrical engineering is solved. The dust and debris generated in the cutting process can also be absorbed and collected through the dust suction holes two, uniformly treated and naturally fallen, and then collected and treated.

[0032] In another specific embodiment, the fixed plate 3, the moving plate 12 and the pressing plate 5 are further included, and the bottom plate 1 is provided between the two groups of support components 2, and the fixed plate 3 and the slidable moving plate 12 are respectively installed on the bottom plate 1, the top of the fixed plate 3 and the moving plate 12 are respectively provided with an upward-opening arc-shaped groove, and a pressing plate 5 with a downward-opening arc-shaped groove at the bottom is detachably placed on the top of the fixed plate 3 and the moving plate 12, and the arc-shaped grooves of the pressing plate 5 and the fixed plate 3 and the moving plate 12 respectively form a circular pressing hole for placing the pipes, and the left and right ends of the side of the fixed plate 3 close to the moving plate 12 are respectively connected with the electric telescopic rod 4, and the telescopic end of the electric telescopic rod 4 is connected with the moving plate 12. Therefore, in use, the end of one pipe can be fixed by the fixed plate 3 and the pressing plate 5, the end of another pipe can be fixed by the moving plate 12 and the other pressing plate 5, and the electric telescopic rod 4 drives the moving plate 12 and the pressing plate 5 on the moving plate 12 to move close to or away from the fixed plate 3, and the distance between the two pipe ends can be adjusted as needed.

[0033] In the specific embodiment, the left and right ends of the side of the fixed plate 3 close to the moving plate 12 are respectively connected with the moving rod 6, the end of the moving rod 6 away from the fixed plate 3 penetrates through the moving plate 12 and is connected with the support block 7, the bottom of the support block 7 is connected with the top of the bottom plate 1, and the moving plate 12 can slide along the moving rod 6 to move close to or away from the fixed plate 3. Therefore, the displacement of the moving plate 12 can be limited by the moving rod 6 to ensure the stability of the movement, and the moving rod 6 can be supported by the support block 7 to improve the stability of the moving rod 6, which is conducive to the movement of the moving plate 12.

[0034] As shown in FIG. 1, the pipe fixing device comprises a bottom plate 1, two groups of support components 2, a fixed plate 3, a moving plate 12 and a pressing plate 5. Figure 3As shown, in another specific embodiment, further comprising a lifting component 9, the lifting component 9 comprises two L-shaped support frames 91, two linear motors 93, a connecting plate 94, a lifting plate 96 and a telescopic plate 98, one end of the two L-shaped support frames 91 is connected with one side of the fixed plate 3 and the moving plate 12 respectively, and one side of the fixed plate 3 and the moving plate 12 is further connected with a slide rod 92 above the L-shaped support frame 91, the end of the slide rod 92 away from the fixed plate 3 and the moving plate 12 is connected with the short side of the L-shaped support frame 91, the outer part of the two slide rods 92 is respectively sleeved with the linear motor 93, the connecting plate 94 is connected between the two linear motors 93, the linear motor 93 is used to drive the connecting plate 94 to move along the slide rod 92, the top of the connecting plate 94 is connected with a support sleeve 95, the inner wall of the support sleeve 95 is rotatably connected with a rotating screw rod 97, the lifting plate 96 is threadedly connected on the rotating screw rod 97, the end of the lifting plate 96 away from the rotating screw rod 97 is connected with the telescopic plate 98, and the two ends of the telescopic plate 98 are respectively connected with the top of the two pressing plates 5. The telescopic plate 98 can telescopically adjust the distance between the two pressing plates 5. In this embodiment, the lifting plate 96 is connected with the fixed end of the telescopic plate 98, the thread on the outside of the rotating screw rod 97 is formed on the top of the support sleeve 95, and in use, a manual driving handle or other driving mechanism can be arranged on the top of the rotating screw rod 97 to drive the rotating screw rod 97 to rotate, so as to adjust the lifting of the lifting plate 96, thereby driving the pressing plate 5 to rise or fall as needed, and the telescopic plate 98 can be telescopically adjusted in cooperation with the movement of the moving plate 12, and the linear motor 93 can adjust the use position of the pressing plate 5 as needed.

[0035] In this embodiment, the lifting component 9 further comprises two sliding rods 910 and two sliding blocks 99, the top of the two pressing plates 5 is provided with a sliding groove 10 in the left-right direction, the two ends of the two sliding rods 910 are connected with the two ends of the inner wall of the sliding groove 10 in the left-right direction, the outer part of the sliding rod 910 is sleeved with the sliding block 99, the two sliding blocks 99 are slidingly arranged in one sliding groove 10 respectively, and the top of the two sliding blocks 99 is connected with the two ends of the telescopic plate 98 respectively, and the bottom of the telescopic plate 98 is in sliding contact with the top of the pressing plate 5. In this way, the sliding rod 910 and the sliding block 99 can be accommodated through the sliding groove 10, and at the same time, the sliding rod 910 and the sliding block 99 cooperate with the linear motor 93 to realize the displacement adjustment of the telescopic plate 98 alone, when the pressing plate 5 needs to be controlled, the sliding block 99 can be moved to the middle of the pressing plate 5, and when the pipeline needs to be processed, the telescopic plate 98 can be moved to the edge to avoid interference, etc.

[0036] As shown in FIG. 1, the present application is a pipe pressing device, which comprises a fixed plate 3, a moving plate 12, a pressing plate 5, a lifting component 9 and a driving component 10. Figure 4As shown, in another specific embodiment, it also includes the second sliding rod 24 and the second linear motor 25, the top of the bottom plate 1 and below the two support seats 23 are respectively provided with a moving groove 8 which is parallel to the axial direction of the annular sliding groove, the bottom of the support seat 23 is in sliding contact with the top of the bottom plate 1, the moving groove 8 is provided with the second sliding rod 24, the second sliding rod 24 is provided with the second linear motor 25, the top of the second linear motor 25 is connected with the bottom of the support seat 23, and the two second linear motors 25 are used to drive the two support seats 23 to move close to or away from each other along the second sliding rod 24. In this embodiment, through the moving groove 8, the second sliding rod 24 and the second linear motor 25 can be stored and guided, and at the same time, when in use, the support component 2 can be driven to reciprocate through the second sliding rod 24 and the second linear motor 25, so as to be more convenient for cleaning and cutting, etc.

[0037] In this embodiment, it also includes the guide rod 21, the left and right ends of each group of support seats 23 are respectively provided with the guide rod 21, the opposite sides of the two groups of guide rods 21 are respectively connected with the fixed plate 3 or the moving plate 12, and the guide rod 21 is used to limit the movement of the support seat 23 along the moving groove 8 under the driving of the second linear motor 25. In this way, through the guide rod 21, the support seat 23 can be supported, the stability of the left and right movement of the support seat 23 is improved, and the up and down shaking of the support seat 23 is avoided.

[0038] As shown in the accompanying drawings, Figure 5 As shown, the dust collection driving mechanism includes the dust removal box 217 and the exhaust fan 26, the sliding ring 214 is limitedly installed in the annular sliding groove through two positioning blocks 213 which are symmetrically arranged above and below, the bottom of the inner side of the rotating groove one 27 and the top of the inner wall of the rotating groove two 29 are both connected with the positioning block 213, the sliding ring 214 can be supported and positioned through the two positioning blocks 213, the stability of the sliding ring 214 is improved, one electric sliding block 216 is slidingly sleeved with the sliding ring 214 on the left and right sides of the positioning block 213, the rotating groove two 29 is provided with the rotating gap 210 which penetrates the semicircular ring 28 to the outside on the left and right sides of the positioning block 213, the dust removal box 217 is connected with the top of the support seat 23 and located at the left and right ends of the semicircular ring 28, the top of the support seat 23 is connected with the bearing block 22, the top of the bearing block 22 is connected with the exhaust fan 26, the air inlet end of the exhaust fan 26 is connected with the dust removal box 217, the cleaning brush plate 215 on the two electric sliding blocks 216 is connected with the dust collection hole two and the dust removal box 217 through the extension hose two which penetrates the rotating gap 210 and is away from each other, the exhaust fan 26 can be supported through the bearing block 22, and the installation of the exhaust fan 26 is facilitated. In this embodiment, the two electric sliding blocks 216 and the cleaning brush plate 215 on one group of support components 2 can cooperate with the dust removal box 217 and the exhaust fan 26 to better complete the cleaning work.

[0039] As shown in the accompanying drawings, Figure 6As shown in the drawings, the cleaning brush plate 215 on the two groups of support components 2 is connected with a plurality of connecting pipes two 212 on the side close to the pressing plate 5, the connecting pipes two 212 are provided with electromagnetic valves 211, and the left and right ends of the opposite side of the fixed plate 3 and the moving plate 12 are provided with dust collection components 11, the dust collection components 11 include arc-shaped dust collection plates 113 and connecting pipes one 111, a plurality of dust collection holes one communicated with the connecting pipes one 111 are formed in the arc-shaped dust collection plates 113, the connecting pipes one 111 are respectively installed through the fixed plate 3 and the moving plate 12, and the ends of the connecting pipes one 111 away from the arc-shaped dust collection plates 113 are respectively used for connecting the connecting pipes two 212. In use, the connecting pipes one 111 and the connecting pipes two 212 are used in cooperation, when the connecting pipes two 212 move to the connecting pipes one 111, the connecting pipes two 212 are sleeved outside the connecting pipes one 111. Therefore, in use, the two groups of support components 2 can be driven to move correspondingly by the above-mentioned slide rods two 24 and the linear motors two 25, so that the corresponding connecting pipes two 212 and the connecting pipes one 111 can be connected, thereby enabling the dust collection components 11 to absorb waste gas and the like when the two pipes are connected and heated.

[0040] The dust collection components 11 further include electric telescopic rods two 112 and a flexible hose one 114, the connecting pipes one 111 are communicated with the dust collection holes one through the flexible hose one 114 on the arc-shaped dust collection plates 113, one end of the electric telescopic rods two 112 is respectively connected with the fixed plate 3 or the moving plate 12, and the other end of the electric telescopic rods two 112 is respectively connected with the arc-shaped dust collection plates 113. The electric telescopic rods two 112 can drive the left and right arc-shaped dust collection plates 113 to approach each other and reduce the distance between the two arc-shaped dust collection plates 113. Therefore, in use, the use position of the arc-shaped dust collection plates 113 can be adjusted as needed by cooperation of the electric telescopic rods two 112 and the flexible hose one 114.

[0041] A use method of the pipeline butt joint auxiliary device for electrical engineering construction, comprising the following steps:

[0042] Two pipes are respectively passed through the circular hole between the support seats 23 and the semicircular rings 28 on the two sides and close to the end portions of the two pipes to be in contact, in this process, the electric sliding blocks 216 drive the cleaning brush plates 215 to rotate around the center of the circular hole along the annular sliding grooves, and the dust collection driving mechanism is started at the same time, so as to complete the cleaning of the pipes, and at the same time, the cleaning brush plates 215 are moved to trim the outer wall of the pipe, so that the curved deformation is restored; after the two pipes are heated and butt jointed, the electric sliding blocks 216 on the support components 2 on one side are started, the cleaning brush plates 215 are driven by the electric sliding blocks 216 to rotate and rub continuously, the drum edges of the two pipe joints are cut, and the subsequent direct use of the pipes is facilitated.

[0043] One embodiment of the present application comprises the following steps:

[0044] Two pipes are inserted between the support seat 23 and the semicircular ring 28 on both sides and penetrate the fixed plate 3 and the moving plate 12 respectively, so that the ends of the two pipes are in contact. Rotating the screw rod 97 in the positive direction makes the lifting plate 96 move downward outside, which drives the telescopic plate 98 to move downward, and the two pressure plates 5 at the bottom of the telescopic plate 98 move downward together to cover the top of the fixed plate 3 and the moving plate 12, and the two pipes are positioned by the cooperation of the pressure plate 5 and the fixed plate 3 and the cooperation of the pressure plate 5 and the moving plate 12. The linear motor 93 moves backward outside the slide rod 92, which drives the connecting plate 94 to move backward, and finally makes the telescopic plate 98 disengage from the top of the two pipes;

[0045] During the placement of the two pipes, the external control end of the pipe butt joint auxiliary device is used to control the exhaust fan 26 to generate negative pressure at the dust suction hole two on the cleaning brush plate 215, and the two electric sliding blocks 216 rotate in the positive and negative directions outside the slip ring 214, which drives the cleaning brush plate 215 to rotate in the positive and negative directions in the rotating groove one 27 and the rotating groove two 29, and the outer wall of the pipe is cleaned by the cleaning brush plate 215, which is beneficial to the subsequent heating butt joint of the two pipes. The dust generated during cleaning is absorbed by the dust suction hole two and finally discharged from the exhaust fan 26 through the filtration of the dust removal tank 217; further rotating the cleaning brush plate 215 in the positive and negative directions can trim the outer wall of the pipe to restore the curved deformation.

[0046] After the butt joint of the two pipes is completed, the electric sliding block 216 stops running and stays at the center of the two ends of the slip ring 214. The center lines of the two pipes are aligned, the telescopic end of the electric telescopic rod one 4 is extended to make the moving plate 12 move to the right, and a heating space is left between the two pipes. Professional heating tools are placed between the two pipes to heat the ends of the two pipes. Before heating, the two linear motors two 25 move towards each other outside the slide rod two 24, which finally makes the butt joint pipe two 212 fit outside the butt joint pipe one 111. The electromagnetic valve 211 is opened, and negative pressure is generated at the dust suction hole one on the arc-shaped dust collection plate 113. The smoke generated during heating is absorbed by the dust suction hole one and finally discharged from the exhaust fan 26 through the filtration of the dust removal tank 217, which improves the environmental protection of the pipe butt joint auxiliary device and avoids harm to the operator. After heating is completed, the professional heating tools are removed, the electric telescopic rod one 4 is retracted, the moving plate 12 approaches the fixed plate 3, and the pipes on the moving plate 12 move towards the pipes on the fixed plate 3, so that the two pipes heated and melted are butt jointed;

[0047] After the butt joint is completed, the rotating screw 97 is reversed to make the two pressing plates 5 rise, stop applying pressure to the pipeline, and drag the butt-jointed pipeline to one side. Before dragging, the two linear motors 25 first move away from each other to support the two sides of the pipeline, and then the electric sliding block 216 on the support part 2 is opened. The electric sliding block 216 is continuously rotated in the forward and reverse directions, driving the cleaning brush plate 215 to continuously rotate in the forward and reverse directions, cutting the drum edge at the joint of the two pipelines, facilitating the subsequent direct use of the pipeline.

[0048] In the present application, by providing the support part 2, when the pipelines are butt-jointed, the external control end controls the exhaust fan 26 to operate, so that the dust suction hole two on the cleaning brush plate 215 generates negative pressure, and the two electric sliding blocks 216 continuously reciprocate in the forward and reverse directions outside the sliding ring 214, driving the cleaning brush plate 215 to continuously reciprocate in the forward and reverse directions in the rotating groove one 27 and the rotating groove two 29. The outer wall of the pipeline is cleaned by the cleaning brush plate 215, improving the cleanliness of the butt joint of the pipeline, facilitating the subsequent heating butt joint of the two pipelines, and also cutting the drum edge at the joint of the two pipelines, facilitating the subsequent direct use of the pipeline. The dust generated during the cleaning process is absorbed by the dust suction hole two, and finally discharged from the exhaust fan 26 through the filtration of the dust removal box 217.

[0049] It should be noted that the terms such as "upper", "lower", "left", "right", "front", "rear" and the like referred to in the present application are only for the convenience of clear description, and are not used to limit the scope of the present application. Changes or adjustments of the relative relationship without substantial changes in technical content are also considered as the scope of the present application.

[0050] The above is only a preferred embodiment of the present application, and the protection scope of the present application is not limited to the above-mentioned embodiments. Any technical solution falling within the scope of the present application is within the protection scope of the present application. It should be noted that for ordinary skilled persons in the art, some improvements and refinements without departing from the principles of the present application are considered as the protection scope of the present application.

Claims

1. A pipe butt joint auxiliary device for electrical engineering construction, characterized in that: The utility model provides a pipeline cleaning device, including bottom plate (1) and two groups of support components (2), two groups of support components (2) are installed on bottom plate (1) respectively, support component (2) includes support seat (23) and semicircle ring (28), support seat (23) is installed on bottom plate (1) and is connected with semicircle ring (28) on top, and the top of support seat (23) and the inboard of semicircle ring (28) jointly form the circular hole that can supply pipeline to pass, the inner wall of circular hole is equipped with annular slide groove respectively by the arc rotation groove one (27) of setting on the top of support seat (23) and the arc rotation groove two (29) of setting inboard of semicircle ring (28) coherent constitution, the electric slide block (216) of sliding arrangement is arranged in annular slide groove, the side of electric slide block (216) towards circular hole center is connected with cleaning brush plate (215), a plurality of dust suction holes two are opened in cleaning brush plate (215), and dust suction driving mechanism for driving dust suction holes two is circumscribed in cleaning brush plate (215), and electric slide block (216) is used to drive cleaning brush plate (215) and rotates along annular slide groove around circular hole center; Dust suction driving mechanism includes dust removal box (217) and exhaust fan (26), the sliding ring (214) is installed in the annular slide groove through two symmetrically arranged positioning block (213) up and down, one electric slide block (216) is slidably sleeved on the left and right sides of sliding ring (214) above positioning block (213), the rotation gap (210) that penetrates semicircle ring (28) to the outside is arranged in the left and right sides of arc rotation groove two (29) of positioning block (213), the top of support seat (23) and the left and right ends of semicircle ring (28) are connected with dust removal box (217) and exhaust fan (26), the air inlet end of exhaust fan (26) is connected with dust removal box (217), and the side of the cleaning brush plate (215) of two electric slide blocks (216) is connected with dust removal box (217) through the flexible hose two of passing through rotation gap (210) away from each other.

2. The pipe butt joint auxiliary device for electrical engineering construction of claim 1, wherein: It also includes a fixed plate (3), a moving plate (12) and a pressing plate (5), the bottom plate (1) is located between the two groups of support components (2), and a fixed plate (3) and a slidable moving plate (12) are installed respectively, the top of the fixed plate (3) and the moving plate (12) is provided with an arc-shaped groove opening upward, and a pressing plate (5) with an arc-shaped groove opening downward is detachably placed on the top of the fixed plate (3) and the moving plate (12), the arc-shaped groove of the pressing plate (5) can form a circular pressing hole with the arc-shaped groove of the fixed plate (3) and the moving plate (12), respectively, for placing a pipeline, the left and right ends of the side of the fixed plate (3) close to the moving plate (12) are connected with an electric telescopic rod (4), and the telescopic end of the electric telescopic rod (4) is connected with the moving plate (12).

3. The pipe butt joint auxiliary device for electrical engineering construction of claim 2, characterized in that: The left and right ends of the fixed plate (3) near the one side of the moving plate (12) are also respectively connected with moving rods (6), one end of the moving rod (6) away from the fixed plate (3) penetrates the moving plate (12) and is connected with a supporting block (7), the bottom of the supporting block (7) is connected with the top of the bottom plate (1), and the moving plate (12) can slide along the moving rod (6) to approach or away from the fixed plate (3).

4. The pipe butt joint auxiliary device for electrical engineering construction of claim 2, characterized in that: Further comprising a lifting component (9), the lifting component (9) comprises two L-shaped support frames (91), two linear motors (93), a connecting plate (94), a lifting plate (96) and a telescopic plate (98), one end of the two L-shaped support frames (91) is respectively connected with the fixed plate (3) and the one side of the moving plate (12), the one side of the fixed plate (3) and the moving plate (12) is also respectively connected with a slide rod (92) above the L-shaped support frame (91), one end of the slide rod (92) away from the fixed plate (3) and the moving plate (12) is connected with the short side of the L-shaped support frame (91), the outer part of the two slide rods (92) is respectively sleeved with the linear motor (93), the connecting plate (94) is connected between the two linear motors (93), the linear motor (93) is used for driving the connecting plate (94) to move along the slide rod (92), the top of the connecting plate (94) is connected with a supporting sleeve (95), the inner wall of the supporting sleeve (95) is rotatably connected with a rotating screw rod (97) through a bearing, the lifting plate (96) is threadedly connected on the rotating screw rod (97), one end of the lifting plate (96) away from the rotating screw rod (97) is connected with the telescopic plate (98), the two ends of the telescopic plate (98) are respectively connected with the top of the two pressing plates (5), and the telescopic plate (98) can telescopically adjust the distance between the two pressing plates (5).

5. The pipe butt joint auxiliary device for electrical engineering construction of claim 4, characterized in that: The lifting component (9) further comprises two sliding rods (910) and two sliding blocks (99), the top of the two pressing plates (5) is provided with a sliding groove (10) in the left-right direction, the two ends of the two sliding rods (910) are respectively connected with the two ends of the inner wall of the sliding groove (10) in the left-right direction, the outer part of the sliding rod (910) is sleeved with the sliding block (99), the two sliding blocks (99) are respectively slidably arranged in one sliding groove (10), and the top of the two sliding blocks (99) is respectively connected with the two ends of the telescopic plate (98), and the bottom of the telescopic plate (98) is in sliding contact with the top of the pressing plate (5).

6. The pipe butt joint auxiliary device for electrical engineering construction of claim 2, characterized in that: Also include slide bar two (24) and linear motor two (25), the top of the bottom plate (1) and below the two support seats (23) are respectively provided with a moving groove (8) which is axial parallel to the annular sliding chute, the bottom of the support seat (23) and the top of the bottom plate (1) are in sliding contact, the moving groove (8) is provided with the slide bar two (24), the outer sleeve of the slide bar two (24) is provided with the linear motor two (25), the top of the linear motor two (25) is connected with the bottom of the support seat (23), and the two linear motors two (25) are used for driving the two support seats (23) to move close to or away from each other along the slide bar two (24).

7. The pipe butt joint auxiliary device for electrical engineering construction of claim 6, wherein: The cleaning brush plate (215) on the two groups of support components (2) is connected with a plurality of butt joint pipes two (212) of communication suction holes two on the side close to the pressing plate (5), the butt joint pipes two (212) are provided with electromagnetic valves (211), the left and right ends of the opposite sides of the fixed plate (3) and the moving plate (12) are provided with dust collection components (11), the dust collection component (11) comprises an arc-shaped dust collection plate (113) and a butt joint pipe one (111), a plurality of dust collection holes one in communication with the butt joint pipe one (111) are formed in the arc-shaped dust collection plate (113), and the butt joint pipe one (111) penetrates the fixed plate (3) and the moving plate (12) respectively, and the end, away from the arc-shaped dust collection plate (113), of the butt joint pipe one (111) is used for butt joint with the butt joint pipe two (212).

8. The pipe butt joint auxiliary device for electrical engineering construction of claim 7, characterized in that: The dust collection component (11) further comprises an electric telescopic rod two (112) and a telescopic hose one (114), the butt joint pipe one (111) and the dust collection hole one are communicated through the telescopic hose one (114) on the arc-shaped dust collection plate (113), one end of the electric telescopic rod two (112) is connected with the fixed plate (3) or the moving plate (12) respectively, and the other end of the electric telescopic rod two (112) is connected with the arc-shaped dust collection plate (113) respectively.

9. A method of using the pipe butt joint auxiliary device for electrical engineering construction according to any one of claims 1-8, characterized in that, The method comprises the following steps: Two pipes are respectively passed through the circular hole between the support seat (23) and the semicircle ring (28) on the two sides and close to the end of the two pipes, in the process, the electric sliding block (216) drives the cleaning brush plate (215) to rotate around the center of the circular hole along the annular sliding chute, and the dust collection driving mechanism is started, so that the pipes are cleaned, at the same time, the outer wall of the pipe is trimmed through the moving cleaning brush plate (215), so that the bending deformation part is restored; after the two pipes are heated and connected, the electric sliding block (216) on one side of the support component (2) is started, the cleaning brush plate (215) is driven to rotate and rub continuously, the drum edge of the joint between the two pipes is cut, and the subsequent direct use of the pipe is facilitated.

Citation Information

Patent Citations

  • Rapid butt joint device for municipal pipeline construction

    CN221097702U