An industrial pipe gallery assembly connection component

Through the design of bracket structure and adapter components, the problem of porous drilling during pipeline laying in the pipeline corridor is solved, rapid installation and stable fixation are achieved, wall structure is protected, and construction efficiency and pipeline sealing are improved.

CN115435151BActive Publication Date: 2025-07-25SINOCHEM CITY INVESTMENT CO LTD
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Patent Information

Application Number
CN202211127780.7
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-09-16
Publication Date
2025-07-25
Estimated Expiration
2042-09-16

AI Technical Summary

Technical Problem

The prior art requires multiple holes when laying pipes in the pipeline corridor, resulting in damage to the wall structure and low construction efficiency.

Method used

The bracket structure is composed of several ten thousand parts. Through the ten thousand parts rack, adapter components and pipeline connection structure, the pipe is connected quickly, the number of holes is reduced, and the adjustment of the ten thousand parts rack and the connectivity of the adapter components is used to adapt to the shape of the inner wall of the pipe corridor, and the wall is fixed through expansion bolts to share gravity.

Benefits of technology

It has achieved the reduction of wall holes during pipeline laying, protecting the wall structure, improving construction efficiency, and ensuring the stability of the pipeline and rapid sealing and docking.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses an industrial pipe gallery assembly connection component, comprising a bracket structure, an adapter component and a pipe connection structure; the adapter component can be detachably mounted on the bracket structure, and the pipe connection structure can be movably mounted on the bracket structure; the bracket structure is composed of a plurality of identical ten-thousand-joint components, and the plurality of ten-thousand-joint components can be movably connected end to end at a time; the invention relates to the technical field of pipe galleries, and the bracket structure can be used for fitting installation according to the shape of the inner wall of the pipe gallery, and can be adjusted according to the laying height and number of pipes; the number of wall punchings can be saved to prevent damage to the wall structure; a plurality of bracket structures can be relatively connected through the adapter component, and can be fixed to the wall for limiting by expansion bolts, so as to realize series connection to share gravity and ensure the stability of laying; the laid flat-end and flangeless conveying pipes can be quickly sealed and docked through the pipe connection structure.
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Description

Technical Field

[0001] The invention relates to the technical field of pipe gallery, in particular to an industrial pipe gallery assembly connection component. Background Art

[0002] Pipeline gallery is a corridor for pipelines. In chemical and related factories, many pipelines are concentrated together and arranged outside the equipment or factory buildings. They are usually in the air and supported by brackets to form a corridor-like appearance.

[0003] Nowadays, the walls on the left and right sides of the pipe gallery are mostly flat and curved structures, and are set up with steel structures or reinforced concrete structures to prevent soil collapse. In addition, the laying of pipes requires drilling, calculation, and measurement of holes in the walls and installation of more beams to support the pipes, which can easily damage the overall concrete wall structure and cause a waste of time in repetitive construction operations. Therefore, an industrial pipe gallery assembly connection component is designed. Summary of the invention

[0004] The purpose of the present invention is to provide an industrial pipe gallery assembly connection component to solve the problems of protecting the internal walls of the pipe gallery, quickly constructing equal pipeline laying positions, and being able to fit and set according to the internal shape of the pipe gallery.

[0005] To achieve the above-mentioned purpose, the present invention provides the following technical solutions: an industrial pipe gallery assembly connection component, comprising a bracket structure, a switching component and a pipe connection structure; the switching component can be detachably mounted on the bracket structure, and the pipe connection structure can be movably mounted on the bracket structure; the bracket structure is composed of a plurality of structurally identical multi-joint components, and the plurality of multi-joint components can be movably connected end to end at one time.

[0006] Preferably, the universal joint assembly comprises a universal joint frame, a sliding seat, a towing rod, a first long rod bolt, a first nut, a second long rod bolt and a second nut;

[0007] The multi-joint frame is of a convex structure, and the width of the top end is smaller than that of the bottom end. Installation holes that penetrate each other are provided at the central parts of the front and rear side walls near the top end. A limiting plate is fixedly arranged at the central part of the left side of the upper wall of the top end of the multi-joint frame, and first threaded holes are provided at both the front and rear ends of the limiting plate. A sliding groove is provided at the central part of the right side wall of the multi-joint frame, and an adjusting groove that penetrates the front and rear side walls in the sliding groove is provided at the central part of the right end of the front side wall of the multi-joint frame. A turning opening is provided at the central part of the bottom end of the multi-joint frame, and butt holes that communicate with the turning opening are provided on both the front and rear side walls of the bottom end of the multi-joint frame, and one of the butt holes is of a counterbore structure. A fitting groove that communicates with the turning opening is provided at the central part of the left side wall of the multi-joint frame. The sliding seat is movably installed in the sliding groove, and a first socket hole is provided at the central part of the front side wall of the sliding seat. One end of the towing rod is fixedly arranged on the right side wall of the sliding seat. One end of the first long rod bolt respectively passes through the adjusting groove, the sliding groove and the first socket hole movably, and the first nut is movably screwed on the first long rod bolt. One end of the second long rod bolt respectively passes through the butt hole at the bottom of the multi-joint frame and the turning opening movably, and the second nut is movably screwed on the second long rod bolt.

[0008] Preferably, in order to fit the inner wall of the pipe gallery, facilitate construction and installation, reduce the number of drilled holes and gradually install cross beams, the multi-joint frame can be assembled and adjusted according to the number of laying pipes required, and the height of the bearing pipes and the distance between the pipes can also be adjusted by means of brackets; at the same time, the multi-joint frame can be vertically or bent to fit the inner wall of the pipe gallery by relative turning transformation.

[0009] Preferably, the adapter assembly includes a pair of first adapter frames, first docking rods, second docking rods, fastening bolts, a pair of second adapter frames with the same structure, and a pair of socket seats with the same structure;

[0010] One end of a pair of the first adapter frames is connected by a pin movably, and a pair of second threaded holes corresponding to the first threaded holes respectively are provided on the right side walls of the other ends of the first adapter frames, and counterbore socket holes are provided at the central parts of the upper walls of the first adapter frames at the centers of the second threaded holes. The other ends of the first adapter frames are fixedly connected to the limiting plate. The two ends of the first docking rod and the second docking rod are respectively inserted into the counterbore socket holes movably, and the two ends of the second docking rod can be inserted into the two ends of the first docking rod movably. The fastening bolts respectively pass through the two ends of the first docking rod movably and are screwed on the two ends of the second docking rod movably. One end of a pair of the second adapter frames is connected by a pin movably, and adjusting openings are provided on the left side walls near the other ends. One end of a pair of the socket seats is respectively inserted into the adjusting openings of the second adapter frames movably, and the other ends of the socket seats can be sleeved on the ends of the multi-joint frame movably and are limited and fixed by means of the second long rod bolt and the second nut.

[0011] Preferably, in order to facilitate the fitting and fixed installation of the multi-joint frame to the inner wall of the pipe gallery and stably lift the gravity of the laid pipelines by dispersion, the first adapter frame and the second adapter frame can limit and fix the top and bottom of the relatively connected multi-joint frames and achieve series connection.

[0012] Preferably, the pipeline connection structure includes an adapter body, a sealing ring, a conveying pipeline, a plurality of adapter rods with the same structure, and a plurality of third nuts with the same structure.

[0013] The adapter body is a pipe structure, and the central part is an H-shaped structure, and the diameter of the central part is larger than that of both ends. On the outer side walls of the front side and the rear side of the central part of the adapter body, two pairs of tightening frames with the same structure are equally spaced. The front tightening frame and the rear tightening frame are staggered with each other. The sealing rings are respectively movably sleeved on both ends of the adapter body. One end of the conveying pipeline is respectively movably sleeved on both ends of the adapter body, and two pairs of pulling threaded holes with the same structure are equally spaced on the outer side walls of both ends of the conveying pipeline and are respectively pressed on the sealing rings. One end of a plurality of the adapter rods is respectively hermetically screwed into the pulling threaded holes, and the other end respectively movably penetrates through the tightening frames. A plurality of the third nuts are respectively movably screwed on the other ends of the adapter rods.

[0014] Preferably, the conveying pipe can be movably arranged on the towing rod.

[0015] Preferably, the socket can be flipped 180 degrees.

[0016] Preferably, one end of the limiting plate provided on the multi-joint frame is connected to the flipping opening at the bottom of another multi-joint frame, and the limiting plate can be embedded in the fitting groove.

[0017] Preferably, the multi-joint frame can be flipped relatively.

[0018] An industrial pipe gallery assembly connection component proposed by the present invention has the following beneficial effects:

[0019] 1. In the present invention, through the bracket structure, it can be fitted and installed according to the shape of the inner wall of the pipe gallery, and can be adjusted according to the laying height and quantity of the pipelines; the number of wall holes drilled is saved, and the wall structure is prevented from being damaged;

[0020] 2. In the present invention, through the adapter assembly, a plurality of bracket structures can be connected relatively, and are fixed on the wall by expansion bolts for limiting, realizing series sharing of gravity and ensuring the stability of laying;

[0021] 3. In the present invention, through the pipeline connection structure, the laid flat-mouth and flange-free conveying pipelines can be quickly and hermetically butt-jointed. BRIEF DESCRIPTION OF THE DRAWINGS

[0022] Figure 1 is a schematic assembly structure diagram of the present invention;

[0023] Figure 2 This is a schematic diagram of the first split structure of the present invention;

[0024] Figure 3 It is a schematic diagram of the second split structure of the present invention;

[0025] Figure 4 It is a schematic diagram of the third split structure of the present invention;

[0026] Figure 5 It is a left-side structural schematic diagram of the 10,000-section frame of the present invention;

[0027] Figure 6 for Figure 1 A local enlarged structural diagram of the part;

[0028] Figure 7 for Figure 3 Schematic diagram of the local enlarged structure at point B in the figure.

[0029] In the figure: 1. bracket structure, 11. universal frame, 12. slide seat, 13. tow rod, 14. first long rod bolt, 15. first nut, 16. second long rod bolt, 17. second nut, 2. adapter assembly, 21. first adapter frame, 22. first docking rod, 23. second docking rod, 24. fastening bolt, 25. second adapter frame, 26. sleeve, 3. pipeline connection structure, 31. adapter body, 32. sealing ring, 33. conveying pipeline, 34. adapter rod, 35. third nut. DETAILED DESCRIPTION

[0030] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.

[0031] See also Figures 1-7 The present invention provides a technical solution: an industrial pipe gallery assembly connection component, comprising a bracket structure 1, a switching component 2 and a pipe connection structure 3; the switching component 2 can be detachably mounted on the bracket structure 1, and the pipe connection structure 3 can be movably mounted on the bracket structure 1; the bracket structure 1 is composed of a plurality of ten-thousand-joint components with the same structure, and the plurality of ten-thousand-joint components can be movably connected end to end at one time.

[0032] As a preferred solution, further, the ten thousand joint components include

[0033] The ten-thousand-section frame 11 is a convex structure, and the width of the top end is smaller than the width of the bottom end, and mutually interpenetrating mounting holes are provided near the center of the front and rear side walls of the top end, a limit plate is fixedly arranged at the center of the left side of the upper wall of the top end of the ten-thousand-section frame 11, and first threaded holes are provided at both ends of the front and rear of the limit plate, a sliding groove is provided at the center of the right side wall of the ten-thousand-section frame 11, and an adjustment groove that is mutually interpenetrating with the front and rear side walls in the sliding groove is provided at the center of the right end of the front side wall of the ten-thousand-section frame 11, a flip opening is provided at the center of the bottom end of the ten-thousand-section frame 11, and the front and rear side walls of the bottom end of the ten-thousand-section frame 11 are provided with docking holes connected to the flip opening, and one of the docking holes is a countersunk hole structure, and a fitting groove connected to the flip opening is provided at the center of the left side wall of the ten-thousand-section frame 11;

[0034] A slide seat 12, wherein the slide seat 12 is movably embedded in the slide groove, and a first set of holes is opened at the center of the front side wall of the slide seat 12;

[0035] A towing rod 13, one end of which is fixedly mounted on the right side wall of the slide seat 12;

[0036] A first long rod bolt 14, one end of which is movably inserted into the adjustment slot, the slide slot and the first set of holes;

[0037] A first nut 15, wherein the first nut 15 is movably screwed onto the first long rod bolt 14;

[0038] A second long rod bolt 16, one end of which is movably inserted into the bottom docking hole and the flip opening of the ten-thousand-section frame 11;

[0039] The second nut 17 is movable, and the second nut 17 is movably screwed onto the second long rod bolt 16 .

[0040] As a preferred solution, further, multiple 10-section frames 11 can be connected end to end relative to each other through the second long rod bolt 16 and the second nut 17, and adjusted according to the number of laid pipes. At the same time, the 10-section frame 11 can be flipped at a certain angle with the help of the second long rod bolt 16 to adjust the shape after series connection to promote the fit installation on the inner wall of the pipe gallery; and the sliding slide 12 can adjust the height of the tow rod 13 and the distance between two adjacent laid pipes, and is limited and fixed by the first long rod bolt 14 and the first nut 15.

[0041] As a preferred solution, further, the adapter assembly 2 includes a pair of first adapter frames 21 with the same structure, a first docking rod 22, a second docking rod 23, a fastening bolt 24, a pair of second adapter frames 25 with the same structure, and a pair of sleeves 26 with the same structure;

[0042] One end of a pair of the first adapter brackets 21 is movably connected by a pin shaft, and on the right side wall of the other end of each of the first adapter brackets 21, a pair of second threaded holes with the same structure and corresponding to the first threaded holes are respectively formed. At the central part of the upper wall of the first adapter bracket 21 corresponding to the centers of the second threaded holes, countersunk socket holes are respectively formed. The other end of the first adapter bracket 21 is fixedly connected to the limit plate. The two ends of the first docking rod 22 and the second docking rod 23 are respectively movably inserted into the countersunk socket holes, and the two ends of the second docking rod 23 can be movably inserted into the two ends of the first docking rod 22. The fastening bolts 24 respectively movably penetrate through the two ends of the first docking rod 22 and are movably screwed into the two ends of the second docking rod 23. One end of a pair of the second adapter brackets 25 is movably connected by a pin shaft, and adjusting openings are respectively formed on the left side walls near the other ends. One end of a pair of the socket seats 26 is respectively movably embedded in the adjusting openings of the second adapter brackets 25, and the other end of the socket seat 26 can be movably sleeved on the end of the universal joint frame 11 and is limited and fixed by the second long bolt 16 and the second nut 17.

[0043] As a preferred solution, further, the top ends of the universal joint frames 11 in the plurality of bracket structures 1 are connected by the first adapter bracket 21 and can be fixed on the top wall by the expansion bolts passing through the first adapter bracket 21. The socket seat 26 is sleeved on the bottom end of the universal joint frame 11 and can be flipped and adjusted according to the actual situation. It fits with the inner wall of the pipe gallery and is fixed on the ground or wall of the pipe gallery by the expansion bolts to share the bearing capacity.

[0044] As a preferred solution, further, the pipeline connection structure 3

[0045] An adapter body 31, the adapter body 31 is a pipe structure, and the central part is an H-shaped structure, and the diameter of the central part is larger than that of both ends. On the outer side walls of the front side and the rear side of the central part of the adapter body 31, two pairs of tightening frames with the same structure are equidistantly arranged, and the front tightening frame and the rear tightening frame are staggered with each other;

[0046] A sealing ring 32, the sealing rings 32 are respectively movably sleeved on both ends of the adapter body 31;

[0047] A conveying pipeline 33, one end of the conveying pipeline 33 is respectively movably sleeved on both ends of the adapter body 31, and on the outer side walls of both ends of the conveying pipeline 33, two pairs of pulling threaded holes with the same structure are equidistantly arranged and are respectively pressed on the sealing rings 32;

[0048] Adapter rods 34, one end of several of the adapter rods 34 are hermetically screwed into the pulling threaded holes respectively, and the other ends respectively movably penetrate through the tightening frames;

[0049] Third nuts 35, several of the third nuts 35 are respectively movably screwed on the other ends of the adapter rods 34.

[0050] As a preferred solution, further, through the pipeline connection structure 3, the pipeline without a flat flange can be quickly and hermetically docked. The conveying pipeline 33 is sleeved on both ends of the adapter body 31, and the third nut 35 is screwed onto the adapter rod 34 to pull the conveying pipeline 33 to achieve tight sealing.

[0051] As a preferred solution, further, the conveying pipe can be movably arranged on the towing rod 13 to carry the pipeline requirements.

[0052] As a preferred solution, further, the socket 26 can be flipped 180 degrees to meet the requirements of the universal joint frame 11 fitting the inner wall of the pipe gallery, and can be adjusted and then limited and fixed on the ground.

[0053] As a preferred solution, further, one end of the limiting plate provided on the universal joint frame 11 is connected to the flipping port at the bottom of another universal joint frame 11, and the limiting plate can be embedded in the fitting groove to design the flipping requirements, so as to achieve vertical support and bending support.

[0054] As a preferred solution, further, the universal joint frame 11 can be flipped relative to each other for design requirements to facilitate fitting the inner wall of the pipe gallery.

[0055] The detailed connection means are well-known techniques in the art. The following mainly introduces the working principle and process, and the specific work is as follows.

[0056] Embodiment: According to the attached Figures 1-7 It can be seen that first, according to the number of laid pipelines, the universal joint frames 11 in the bracket structure 1 are spliced end to end by means of the second long bolt 16 and the second nut 17; then, according to the shape of the inner wall of the pipe gallery, the series-connected universal joint frames 11 can be adjusted to be vertical, bent, etc. to fit;

[0057] Then, the series-connected universal joint frames 11 are connected by means of the first adapter frame 21 in the adapter assembly 2 according to the actual fixed-point position of laying. At the same time, after the two first adapter frames 21 are flipped relative to each other by a certain angle for adjustment, the bracket structure 1 is fixed on the wall by means of expansion bolts passing through the first adapter frame 21;

[0058] Secondly, the second adapter frame 25 can also be flipped relative to the first adapter frame 21. The socket 26 is sleeved on the bottom end of the bottom universal joint frame 11. At the same time, after being tightened by means of the second long bolt 16 and the second nut 17, the socket 26 can be flipped by a certain angle in cooperation with the universal joint frame 11, and then the second adapter frame 25 is fixed on the ground or the wall by means of expansion bolts. Then, the second bolts and the second nuts 17 between the universal joint frames 11 are tightened relative to each other to complete the installation of the frame body;

[0059] Then, through the pipeline connection structure 3, the conveying pipeline 33 without a flat flange can be butt-jointed with the aid of the adapter 31, and one end of the adapter rod 34 is screwed and fixed to both ends of the conveying pipeline 33. After docking, the adapter rods 34 at the opposite ends of the two conveying pipelines 33 are staggered, passed through the tightening frame, and screwed with the third bolt. By the shielding of the tightening frame, when the third bolt is rotated, the adapter rod 34 will be pulled, realizing the relative fastening of one end of the conveying pipeline 33 to the adapter 31 and sealing through the sealing ring 32, thus completing the splicing of the pipeline;

[0060] Finally, the spliced end of the spliced conveying pipeline 33 can be located between the two bracket structures 1, and the central part of the conveying pipeline 33 can be placed on the support rod 13 for bearing; according to the installation requirements, the position of the sliding seat 12 on the universal joint frame 11 can be adjusted before laying to adjust the height and the distance between the two pipelines, and the first long bolt 14 and the first nut 15 are used for fastening.

[0061] Although the embodiments of the present invention have been shown and described, those of ordinary skill in the art can understand that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principles and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. An industrial pipe gallery assembly connection component, characterized in that: It comprises a bracket structure (1), a switching assembly (2) and a pipeline connection structure (3); the switching assembly (2) is detachably mounted on the bracket structure (1), and the pipeline connection structure (3) is movably mounted on the bracket structure (1); The bracket structure (1) is composed of a plurality of identically structured 16-way assemblies, wherein the plurality of 16-way assemblies can be movably connected end to end at one time, and the 16-way assemblies include a 16-way frame (11), a sliding seat (12), a towing rod (13), a first long rod bolt (14), a first nut (15), a second long rod bolt (16) and a second nut (17); The 10,000-section frame (11) is a convex structure, and the width of the top end is smaller than the width of the bottom end, and mutually interpenetrating mounting holes are provided near the center of the front and rear side walls of the top end, a limit plate is fixedly arranged at the center of the left side of the upper wall of the top end of the 10,000-section frame (11), and the first threaded holes are provided at the front and rear ends of the limit plate, a sliding groove is provided at the center of the right side wall of the 10,000-section frame (11), and an adjustment groove that is mutually interpenetrating with the front and rear side walls in the sliding groove is provided at the center of the right end of the front side wall of the 10,000-section frame (11), a flip opening is provided at the center of the bottom end of the 10,000-section frame (11), and the front and rear side walls of the bottom end of the 10,000-section frame (11) are provided with docking holes connected to the flip opening, and one of the docking holes is a countersunk hole The structure comprises a mating groove connected to the flip opening at the center of the left side wall of the universal frame (11), the sliding seat (12) is movably embedded in the sliding groove, and a first set of holes is opened at the center of the front side wall of the sliding seat (12), one end of the towing rod (13) is fixedly arranged on the right side wall of the sliding seat (12), one end of the first long rod bolt (14) is movably inserted into the adjustment groove, the sliding groove and the first set of holes respectively, the first nut (15) is movably screwed on the first long rod bolt (14), one end of the second long rod bolt (16) is movably inserted into the bottom docking hole and the flip opening of the universal frame (11), and the second nut (17) is movably screwed on the second long rod bolt (16).

2. The industrial pipe gallery assembly connection component according to claim 1, wherein: The adapter assembly (2) comprises a first adapter frame (21), a first docking rod (22), a second docking rod (23), a fastening bolt (24), a second adapter frame (25) and a sleeve (26); One end of the first adapter frame (21) is movably connected by a pin shaft. On the right side wall of the other end of the first adapter frame (21), a pair of second threaded holes with the same structure corresponding to the first threaded holes are respectively opened. At the center of the second threaded holes on the upper wall of the first adapter frame (21), counterbore sleeve holes are opened. The other end of the first adapter frame (21) is fixedly connected to the limiting plate. Both ends of the first docking rod (22) and the second docking rod (23) are respectively movably inserted into the counterbore sleeve holes, and both ends of the second docking rod (23) can be movably inserted into both ends of the first docking rod (22). The fastening bolts (24) respectively movably penetrate through both ends of the first docking rod (22) and are movably screwed into both ends of the second docking rod (23). One end of the second adapter frame (25) is movably connected by a pin shaft, and adjustment openings are respectively opened on the left side wall near the other end. One end of the socket (26) is respectively movably embedded in the adjustment openings of the second adapter frame (25), and the other end of the socket (26) can be movably sleeved on the end of the universal joint frame (11) and is limited and fixed by the second long bolt (16) and the second nut (17).

3. The industrial pipe gallery assembly connection component according to claim 1, characterized in that: The pipeline connection structure (3) includes an adapter body (31), a sealing ring (32), a conveying pipeline (33), an adapter rod (34), and a third nut (35). The adapter body (31) is a pipe structure, and the central part is an H-shaped structure, and the diameter of the central part is larger than that of both ends. On the outer side walls of the front side and the rear side of the central part of the adapter body (31), two pairs of tightening frames with the same structure are equidistantly opened, and the front tightening frame and the rear tightening frame are staggered with each other. The sealing rings (32) are respectively movably sleeved on both ends of the adapter body (31). One end of the conveying pipeline (33) is respectively movably sleeved on both ends of the adapter body (31), and two pairs of tensile threaded holes with the same structure are equidistantly opened on the outer side walls of both ends of the conveying pipeline (33) and are respectively pressed on the sealing rings (32). One end of the adapter rod (34) is respectively hermetically screwed into the tensile threaded holes, and the other end respectively movably penetrates through the tightening frames. The third nuts (35) are respectively movably screwed on the other ends of the adapter rods (34).

4. The industrial pipe gallery assembly connection component according to claim 3, characterized in that: The conveying pipe can be movably arranged on the towing rod (13).

5. The industrial pipe gallery assembly connection component according to claim 2, characterized in that: The socket (26) can be flipped 180 degrees.

6. The industrial pipe gallery assembly connection component according to claim 1, characterized in that: One end of the limiting plate provided on the universal joint frame (11) is connected to the flipping opening at the bottom of another universal joint frame (11), and the limiting plate can be embedded in the fitting groove.

7. The industrial pipe gallery assembly connection component according to claim 1, characterized in that: The universal joint frame (11) can be flipped relatively.

Citation Information

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