Rapid installation anti-loosening device for mechanical and electrical installation pipeline

The design of the fixed rod and the movable limit device solves the problem of disassembly when adjusting the lateral movement of electromechanical pipelines, enabling rapid installation and flexible adjustment of electromechanical pipelines and improving construction efficiency.

CN223815971UActive Publication Date: 2026-01-20CHINA CONSTR EIGHT ENG DIV CORP LTD
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Patent Information

Application Number
CN202423297278.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-31
Publication Date
2026-01-20
Estimated Expiration
2034-12-31

AI Technical Summary

Technical Problem

The existing electromechanical pipeline installation equipment requires complete disassembly and reassembly when it is moved and adjusted laterally, resulting in low installation efficiency.

Method used

By employing a fixed rod and a movable limit device, combined with a movable groove, rollers, locking mechanism, and adjustable mounting part, the horizontal, vertical, and angular adjustment of electromechanical pipelines can be achieved. Locking and unlocking functions are realized through knobs and linkage control components, without the need for overall disassembly.

Benefits of technology

It enables rapid installation and adjustment of electromechanical pipelines, improves construction efficiency, and enhances the flexibility and stability of installation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a quick installation anti-loosening device for an electromechanical installation pipeline. The quick installation anti-loosening device comprises a fixed rod and a movable limiting device, the long-strip-shaped fixing rod is fixedly installed at the electromechanical pipeline installation position, and movable grooves are symmetrically formed in the two sides of the top of the fixing rod in the length direction of the fixing rod. The movable limiting device comprises a mounting plate, an adjusting mounting part, a locking mechanism and a movable adjusting mechanism; one ends of the pair of movable adjusting mechanisms are movably mounted at the two movable grooves of the fixing rod respectively, the other ends of the pair of movable adjusting mechanisms are mounted on the mounting plate respectively, and the locking mechanism is arranged on the mounting plate and can be movably clamped on the fixing rod; and the electromechanical pipeline is mounted on the mounting plate through the adjusting mounting part. The utility model relates to the technical field of building electromechanical construction, and can solve the problem that the device needs to be integrally disassembled and reassembled when transversely moving to adjust an electromechanical pipeline.
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Description

TECHNICAL FIELD

[0001] The utility model relates to building mechanical and electrical construction technical field especially relates to a quick installation anti -loosening device of mechanical and electrical installation pipeline. BACKGROUND

[0002] In the building construction process, the installation of mechanical and electrical pipeline is an important process, and the mechanical and electrical pipeline is fixedly installed to the specified installation position through the installation component. The utility model discloses a quick installation anti -loosening device of mechanical and electrical pipeline, including mounting seat, rotating block, fixed block, rotating frame, sleeve, telescopic link and clamp, two limit plates are fixedly arranged at the lower end of mounting seat, two limit plates are same in size and are arranged according to the center symmetry of mounting seat, one limit plate is provided with first rotating groove, first rotating groove is connected with rotating block through first rotating shaft, and the upper end of rotating block is fixedly connected with the lower end of fixed block through connecting column, the both ends of fixed block are fixedly provided with second rotating shaft at the symmetrical position, the inner wall of the both ends of rotating frame is provided with second rotating groove, and second rotating shaft is rotatably connected with second rotating groove, sleeve is fixedly arranged at the lower end of rotating frame, sleeve is movably connected with telescopic link at the lower end, and clamp is fixedly arranged at the lower end of telescopic link.

[0003] The device is fixedly installed through the mounting seat, when the mechanical and electrical pipeline needs to be adjusted horizontally, the mounting seat needs to be disassembled and moved to the adjusted installation position for installation, and the overall disassembly and reinstallation of the device are inconvenient to operate, and the installation efficiency of the mechanical and electrical pipeline is reduced. Therefore, a quick installation anti -loosening device of mechanical and electrical installation pipeline is required to solve the problem that the device needs to be disassembled and reinstalled as a whole when adjusting the mechanical and electrical pipeline horizontally. SUMMARY

[0004] The utility model aims at providing a quick installation anti -loosening device of mechanical and electrical installation pipeline, which can solve the problem that the device needs to be disassembled and reinstalled as a whole when adjusting the mechanical and electrical pipeline horizontally.

[0005] The utility model is realized as follows:

[0006] A quick installation anti -loosening device of mechanical and electrical installation pipeline, including fixed rod and movable limiting device, long strip fixed rod is fixedly installed at the mechanical and electrical pipeline installation position, and the top of fixed rod is formed with movable slot along the length direction of fixed rod, and movable limiting device includes mounting plate, adjusting installation part, locking mechanism and movable adjusting mechanism, one end of a pair of movable adjusting mechanisms is movably installed at the two movable slots of fixed rod, the other end of a pair of movable adjusting mechanisms is installed on mounting plate, locking mechanism is arranged on mounting plate and can be movably clamped on fixed rod, and mechanical and electrical pipeline is installed on mounting plate through adjusting installation part.

[0007] Each of the activity adjusting mechanisms comprises a connecting plate and a roller, the roller is rotatably installed on the inner wall of the connecting plate, and the roller is rollably arranged in the activity slot; the connecting plate is fixedly installed on the mounting plate, and the connecting plates of the pair of activity adjusting mechanisms are symmetrically arranged on the two sides of the mounting plate and the fixed rod; and the locking mechanism is movably connected to the mounting plate and the connecting plates.

[0008] The locking mechanism comprises movable plates, a rotation control assembly, a linkage control assembly and rubber heads; the rotation control assembly is arranged on the mounting plate and located beside the adjusting mounting portion, one end of each of the pair of movable plates is movably connected to the rotation control assembly through the linkage control assembly, and the other end of each of the pair of movable plates is provided with a rubber head; the middle part of each of the pair of movable plates is hingedly connected to the outer wall of each of the pair of connecting plates, and the connecting plate is formed with a hollow slot, so that the rubber head is clamped in the hollow slot and can movably abut against the fixed rod.

[0009] The rotation control assembly comprises a fixed seat, a threaded shaft, a knob, a movable block and a limiting rod; the fixed seat is fixedly installed on the mounting plate, the threaded shaft is rotatably penetrated through the fixed seat, and the axial direction of the threaded shaft is parallel to the length direction of the activity slot; one end of the threaded shaft is coaxially and fixedly connected with the knob; the middle part of the movable block is formed with a threaded hole, so that the threaded shaft is threadedly matched and screwed through the movable block; one end of the limiting rod is perpendicularly fixedly connected to the fixed seat, the side part of the movable block is formed with a plurality of through holes, and the other end of the limiting rod is slidably penetrated through the through holes, so that the movable block is transversely and slidably arranged between the adjusting mounting portion and the fixed seat; and the linkage control assembly is connected between the side end of the fixed seat, the side end of the movable block and one end of the movable plate.

[0010] The linkage control assembly comprises first and second movable arms, a hinged block and a connecting shaft; the connecting shaft is embedded in the opening slot reserved at one end of the movable plate, one end of the hinged block is formed with two connecting ends, the other end of the hinged block is formed with a sliding sleeve and movably sleeved on the connecting shaft; one end of the first movable arm is rotatably connected to the side end of the fixed seat, one end of the second movable arm is rotatably connected to the side end of the movable block, and the other ends of the first and second movable arms are rotatably connected to the two connecting ends at one end of the hinged block.

[0011] The adjusting mounting portion comprises a bracket joint and a universal ball head sleeve; one end of the bracket joint is fixedly connected to the mounting plate, and the length direction of the bracket joint is perpendicular to the length direction of the fixed rod; the universal ball head sleeve is arranged at the other end of the bracket joint, and the electromechanical pipeline is penetrated in the universal ball head sleeve.

[0012] Compared with the prior art, the utility model has the following beneficial effects:

[0013] 1. The utility model discloses a fixing rod and movable limiting device are equipped with, the fixing rod has certain length, can realize the horizontal adjustment function of certain length through the relative sliding of movable slot and gyro wheel, and the vertical adjustment function perpendicular to the direction of fixing rod is realized through the support joint, the angle rotation adjustment of electromechanical pipeline is realized through the universal ball head sleeve, the adjustment range is big, and the whole device does not need to be disassembled and reassembled, and the quick installation and adjustment of electromechanical pipeline are convenient, which is favorable for improving the construction efficiency of electromechanical pipeline.

[0014] 2. The utility model discloses a locking mechanism is equipped with, under the rotary adjustment of knob, through the rotation of first movable arm and second movable arm, the rotation and sliding of hinged block realize linkage function, make movable plate rotate around the pivot of middle part, thereby make movable plate rotate and press tightly to the fixed rod or rotate and separate the fixed rod, realize the restriction and release restriction function of gyro wheel, further make movable limiting device can realize stable, high -efficient horizontal sliding adjustment through gyro wheel, or make movable limiting device can be fixed and locked on the fixed rod, and the flexibility, convenience of adjustment operation is high. BRIEF DESCRIPTION OF DRAWINGS

[0015] Figure 1 It is the whole structure schematic diagram of the utility model electromechanical installation pipeline quick installation anti -loose device.

[0016] Figure 2 It is the exploded view of the utility model electromechanical installation pipeline quick installation anti -loose device fixed rod and movable limiting device.

[0017] Figure 3 It is the exploded view of the utility model electromechanical installation pipeline quick installation anti -loose device movable adjustment mechanism and mounting plate.

[0018] Figure 4 It is Figure 3 The enlarged schematic view of A in

[0019] Figure 5 It is the perspective view of the utility model electromechanical installation pipeline quick installation anti -loose device.

[0020] In the drawing, 1, fixed rod, 2, movable limiting device, 11, movable slot, 21, mounting plate, 22, support joint, 23, universal ball head sleeve, 24, bolt, 25, connecting plate, 26, gyro wheel, 27, fixed seat, 28, threaded shaft, 29, knob, 31, first movable arm, 32, second movable arm, 33, movable block, 34, hinged block, 35, movable plate, 36, rubber head, 37, connecting shaft, 38, limiting rod. DETAILED DESCRIPTION

[0021] The utility model will be further described in connection with the drawings and specific embodiment.

[0022] Please see the attached Figure 1 to the attached Figure 5 The utility model provides a kind of quick installation anti-loosening device for electromechanical installation pipeline, including fixed rod 1 and movable limiting device 2;Long strip fixed rod 1 is fixedly installed at electromechanical pipeline installation position, and the top of fixed rod 1 is formed with movable slot 11 symmetrically along the length direction of fixed rod 1;Movable limiting device 2 includes mounting plate 21, adjusting mounting part, locking mechanism and movable adjusting mechanism;One end of a pair of movable adjusting mechanism is movably installed at the two movable slots 11 of fixed rod 1 respectively, the other end of a pair of movable adjusting mechanism is installed on mounting plate 21 respectively, and locking mechanism is arranged on mounting plate 21 and can be movably clamped on fixed rod 1;Electromechanical pipeline is installed on mounting plate 21 by adjusting mounting part.

[0023] Fixed rod 1 can be installed to the specified installation position of electromechanical pipeline, and fixed rod 1 has a certain length, so that after movable limiting device 2 is installed on fixed rod 1 by movable adjusting mechanism, movable limiting device 2 can have a certain length of transverse adjustment range, to meet the transverse position adjustment demand of electromechanical pipeline.And after the transverse position of electromechanical pipeline is adjusted in place, movable limiting device 2 can be locked on fixed rod 1 by locking mechanism, to limit the movement of movable adjusting mechanism, and ensure the installation stability of electromechanical pipeline.

[0024] Meanwhile, electromechanical pipeline is installed on the mounting plate 21 of movable limiting device 2 by adjusting mounting part, and adjusting mounting part provides vertical and angle adjustment for electromechanical pipeline, so that the adjustment flexibility of electromechanical pipeline is high, to meet the construction demand and adjustment demand of electromechanical pipeline.

[0025] Please see the attached Figure 5 Each of the movable adjusting mechanism includes connecting plate 25 and roller 26, roller 26 is rotatably installed on the inner wall (with the side close to fixed rod 1 as inner wall, and the side away from fixed rod 1 as outer wall) of connecting plate 25, and roller 26 is rollably arranged in movable slot 11;Connecting plate 25 is fixedly installed on mounting plate 21 by bolt 24, and the connecting plates 25 of a pair of movable adjusting mechanism are symmetrically arranged on the two sides of mounting plate 21 and fixed rod 1;Locking mechanism is movably connected to a pair of connecting plates 25 and mounting plate 21.

[0026] Preferably, movable slot 11 is in stepped structure, and the width of movable slot 11 is slightly larger than the thickness of roller 26, so that roller 26 can be placed on the stepped surface of movable slot 11 and roll along the length direction of movable slot 11, thereby driving the stable transverse movement of the whole movable limiting device 2 relative to fixed rod 1, to realize the transverse position adjustment function of electromechanical pipeline.

[0027] A pair of connecting plates 25 are symmetrically arranged on both sides of the fixed rod 1, which not only can improve the sliding adjustment stability of the movable limiting device 2, but also can prevent the movable limiting device 2 from falling off the fixed rod 1.

[0028] Please see the attached Figure 4 The locking mechanism comprises a movable plate 35, a rotating control assembly, a linkage control assembly and a rubber head 36; the rotating control assembly is arranged on the mounting plate 21 and located beside the adjusting mounting part, one end of a pair of movable plates 35 is respectively movably connected to the rotating control assembly through the linkage control assembly, and the other end of the pair of movable plates 35 is respectively provided with the rubber head 36; the middle part of the pair of movable plates 35 is respectively hinged to the outer wall of the pair of connecting plates 25 through the rotating shaft and the rotating shaft seat, and the connecting plate 25 is formed with a hollow groove, so that the rubber head 36 is clamped in the hollow groove and can movably abut against the fixed rod 1.

[0029] By rotating the rotating control assembly, a pulling force is provided to one end of the movable plate 35 through the linkage control assembly, so that the movable plate 35 rotates around the rotating shaft in the middle part relative to the connecting plate 25, thereby making the other end of the movable plate 35 rotate close to or away from the fixed rod 1.

[0030] When the other end of the movable plate 35 rotates close to the fixed rod 1, the rubber head 36 on the pair of movable plates 35 is pressed on the two side surfaces of the fixed rod 1 from both sides, and the friction between the rubber head 36 and the fixed rod 1 is used to lock the function, which is used to limit the rolling of the roller 26 on the movable groove 11. Preferably, a plurality of convex points can be uniformly formed on the surface of the rubber head 36 facing the fixed rod 1, so as to improve the locking effect.

[0031] When the other end of the movable plate 35 rotates away from the fixed rod 1, the rubber head 36 on the pair of movable plates 35 is separated from the two side surfaces of the fixed rod 1, thereby releasing the limitation on the roller 26, so that the roller 26 can roll on the movable groove 11, thereby driving the electrical pipeline to be transversely adjusted along the length direction of the movable groove 11.

[0032] Please see the attached Figure 4The rotation control assembly comprises a fixed seat 27, a threaded shaft 28, a knob 29, a movable block 33 and a limiting rod 38. The fixed seat 27 is fixedly installed on the mounting plate 21. The threaded shaft 28 is rotatably installed on the fixed seat 27 through a rotating bearing sleeve. The axial direction of the threaded shaft 28 is parallel to the length direction of the movable groove 11. One end of the threaded shaft 28 is coaxially connected with the knob 29. The middle part of the movable block 33 is formed with a threaded hole, so that the threaded shaft 28 is screwed and penetrates the movable block 33. The limiting rod 38 is vertically connected with the fixed seat 27. The side part of the movable block 33 is formed with a plurality of through holes. The other end of the limiting rod 38 is slidably penetrated through the through holes, so that the movable block 33 is transversely and slidably arranged between the adjusting mounting part and the fixed seat 27. The linkage control assembly is connected between the side end of the fixed seat 27, the side end of the movable block 33 and one end of the movable plate 35.

[0033] The fixed seat 27 is used for rotatingly installing the threaded shaft 28. The knob 29 is convenient for manually rotating the threaded shaft 28. The limiting rod 38 parallel to the threaded shaft 28 is used for guiding and limiting the movement of the movable block 33, so that the movable block 33 can only move linearly along the axial direction of the threaded shaft 28.

[0034] When the threaded shaft 28 is manually rotated through the knob 29, the rotation of the threaded shaft 28 is converted into the linear movement of the movable block 33 along the axial direction of the threaded shaft 28 through the threaded transmission. The movable block 33 can realize the movement in different directions under the control of the different rotation directions of the knob 29. The linkage movement of the linkage control assembly provides the driving force.

[0035] Please refer to the attached drawings Figure 4 The linkage control assembly comprises a first movable arm 31, a second movable arm 32, a hinged block 34 and a connecting shaft 37. The connecting shaft 37 is embedded in the opening groove reserved at one end of the movable plate 35. One end of the hinged block 34 is formed with two connecting ends. The other end of the hinged block 34 is formed with a sliding sleeve and is movably sleeved on the connecting shaft 37. One end of the first movable arm 31 is rotatably connected with the side end of the fixed seat 27 through a rotating shaft. One end of the second movable arm 32 is rotatably connected with the side end of the movable block 33 through a rotating shaft. The other ends of the first movable arm 31 and the second movable arm 32 are rotatably connected with the two connecting ends at one end of the hinged block 34 through rotating shafts.

[0036] Due to the transverse movement of the movable block 33, the distance between the movable block 33 and the fixed seat 27 is reduced or increased, so that the first movable arm 31 and the second movable arm 32 are rotated between the movable block 33 and the fixed seat 27 through the rotating shafts. As shown in the attached drawings Figure 4As shown, taking the example of the set of linkage control components located above the illustrated direction, when the movable block 33 moves away from the fixed seat 27, the other end of the first movable arm 31 and the second movable arm 32 moves downward along the illustrated direction and exerts a downward pulling force on one end of the movable plate 35. Since the middle part of the movable plate 35 is limited from moving downward by the rotating shaft and the rotating shaft seat, the rotation of the movable sleeve of the hinged block 34 relative to the connecting shaft 37 and the axial sliding of the movable sleeve along the connecting shaft 37 make one end of the movable plate 35 rotate towards the mounting plate 21, and then the other end of the movable plate 35 rotates away from the fixed rod 1 under the limitation of the rotating shaft and the rotating seat, so as to realize the rubber head 36 from the side wall of the fixed rod 1. Conversely, when the movable block 33 moves close to the fixed seat 27, the other end of the first movable arm 31 and the second movable arm 32 moves upward along the illustrated direction and exerts an upward pulling force on one end of the movable plate 35, so as to make one end of the movable plate 35 rotate away from the mounting plate 21, and then the other end of the movable plate 35 rotates towards the fixed rod 1, so as to realize the rubber head 36 pressing against the side wall of the fixed rod 1.

[0037] The length of the connecting shaft 37 is greater than the length of the movable sleeve of the hinged block 34, and the length of the connecting shaft 37 can be adaptively adjusted according to the rotation range requirement of the rubber head 36, so as to ensure that the rubber head 36 can realize the pressing and releasing functions of the fixed rod 1 within the rotation range.

[0038] Preferably, the first movable arm 31 and the second movable arm 32 are located in the same plane, the first movable arm 31 and the second movable arm 32 can only rotate in the plane, and the plane is perpendicular to the plane where the fixed seat 27 and the movable block 33 are located, so as to ensure the rotation stability of the first movable arm 31 and the second movable arm 32 and avoid the first movable arm 31 and the second movable arm 32 from being twisted and damaged or broken.

[0039] Please refer to the accompanying drawings Figure 3 The adjusting mounting part includes a bracket joint 22 and a universal ball head sleeve 23. One end of the bracket joint 22 is fixedly connected to the mounting plate 21, and the length direction of the bracket joint 22 is perpendicular to the length direction of the fixed rod 1. The universal ball head sleeve 23 is arranged at the other end of the bracket joint 22, and the electromechanical pipeline is arranged to pass through the universal ball head sleeve 23.

[0040] Preferably, the bracket joint 22 can adopt a telescopic sleeve structure or a multi-directional joint structure according to actual installation requirements, so as to meet the installation and adjustment requirements of the electromechanical pipeline. When the bracket joint 22 is telescoped, the adjustment requirements of the electromechanical pipeline in the direction perpendicular to the length direction of the fixed rod 1 can be met.

[0041] The universal ball head sleeve 23 preferably comprises a universal ball head and a sleeve, the sleeve is a cylindrical structure, and the sleeve of corresponding specifications can be adaptively selected according to the size of the electromechanical pipeline, so that the electromechanical pipeline is arranged in the sleeve. The universal ball head is used to connect the sleeve and the support joint 22, and the universal ball head can provide a large range of rotation function to meet the installation direction adjustment of the electromechanical pipeline.

[0042] By adjusting the mounting part and the movable adjusting mechanism, the adjustment of the electromechanical pipeline in the horizontal direction, the vertical direction and the rotation direction can be realized, the adjustment range is large, and the installation and adjustment requirements of the electromechanical pipeline can be better adapted.

[0043] Please refer to the accompanying drawings Figure 1 to the accompanying drawings Figure 5 , the use method and the working principle of the utility model are:

[0044] The fixed rod 1 is fixedly installed at a specified installation position of the electromechanical pipeline, and the length of the fixed rod 1 can be adaptively selected according to the range requirement of the horizontal adjustment of the electromechanical pipeline. The fixed rod 1 can be made of a square steel pipe, and a stepped movable groove 11 is arranged on both sides of the top. The movable groove 11 can be consistent with the length of the fixed rod 1, or slightly shorter than the length of the fixed rod 1.

[0045] The electromechanical pipeline is arranged in the sleeve of the universal ball head sleeve 23, and the direction of the electromechanical pipeline can be adjusted by rotating the universal ball head of the universal ball head sleeve 23 during installation. The support joint 22 can be a telescopic sleeve rod, and when the electromechanical pipeline needs to be adjusted vertically, the relative telescopic sleeve rod of the support joint 22 can be used to realize the adjustment, and after adjustment, the sleeve rod of the support joint 22 can be locked by screwing or pinning.

[0046] When the electromechanical pipeline needs to be adjusted horizontally, the knob 29 can be manually rotated, the knob 29 drives the threaded shaft 28 to rotate synchronously, under the transmission and limiting action of the threaded shaft 28 and the limiting rod 38, the rotation of the threaded shaft 28 is converted into the linear motion of the movable block 33 along the axis of the threaded shaft 28, so that the movable block 33 moves horizontally along the length direction of the movable groove 11, and the rotation of the knob 29 in different directions can drive the movable block 33 to move linearly along the threaded shaft 28 in both directions. The movable block 33 moves at the same time through the linkage control assembly on both sides to link a pair of movable plates 35.

[0047] The pair of movable plates 35 move synchronously and in opposite directions. The following describes the linkage process of one side linkage control assembly and one movable plate 35: when the movable block 33 moves, the distance between the movable block 33 and the fixed seat 27 changes, so that the first movable arm 31 and the second movable arm 32 rotate at one end of the hinge block 34 between the fixed seat 27 and the movable block 33. Since the first movable arm 31 and the second movable arm 32 are limited to rotate in the plane, the hinge block 34 can slide along the connecting shaft 37 in the axial direction and rotate relative to the connecting shaft 37, thereby forming a pulling force on one end of the movable plate 35, so that the movable plate 35 rotates around the middle rotating shaft, and then the other end of the movable plate 35 rotates to approach or move away from the fixed rod 1.

[0048] When the movable plate 35 approaches the fixed rod 1, the rubber head 36 is pressed against the side wall of the fixed rod 1 through the hollow slot, and when the pair of movable plates 35 are pressed against the two side walls of the fixed rod 1 at the same time, the locking effect can be achieved to prevent the rollers 26 from sliding along the movable slot 11. Conversely, when the movable plate 35 moves away from the fixed rod 1, the rubber head 36 is separated from the side wall of the fixed rod 1, and the pair of connecting plates 25 can be pushed to make the two rollers 26 stably slide transversely on the two movable slots 11, so that the transverse position of the mounting plate 21 can be quickly adjusted without disassembling the device, thereby meeting the transverse adjustment requirement of the electromechanical pipeline.

[0049] The above is only a preferred embodiment of the present application, and is not used to limit the protection scope of the present application. Therefore, any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application shall be included in the protection scope of the present application.

Claims

1. A quick-installation anti-loosening device for electromechanical installation pipelines, characterized in that: It includes a fixed rod (1) and a movable limiting device (2); the long fixed rod (1) is fixedly installed at the installation position of the electromechanical pipeline, and movable grooves (11) are symmetrically formed on both sides of the top of the fixed rod (1) along the length direction of the fixed rod (1); the movable limiting device (2) includes a mounting plate (21), an adjusting mounting part, a locking mechanism and a movable adjusting mechanism; one end of a pair of movable adjusting mechanisms is movably installed at the two movable grooves (11) of the fixed rod (1), and the other end of the pair of movable adjusting mechanisms is installed on the mounting plate (21), and the locking mechanism is set on the mounting plate (21) and can be movably clamped on the fixed rod (1); the electromechanical pipeline is installed on the mounting plate (21) through the adjusting mounting part.

2. The quick-installation anti-loosening device for electromechanical installation pipelines according to claim 1, characterized in that: Each set of movable adjustment mechanisms includes a connecting plate (25) and a roller (26). The roller (26) is rotatably mounted on the inner wall of the connecting plate (25) and is rolled in the movable groove (11). The connecting plate (25) is fixedly mounted on the mounting plate (21). The connecting plates (25) of a pair of movable adjustment mechanisms are symmetrically arranged on both sides of the mounting plate (21) and the fixing rod (1). The locking mechanism is movably connected to a pair of connecting plates (25) and the mounting plate (21).

3. The quick-installation anti-loosening device for electromechanical installation pipelines according to claim 2, characterized in that: The locking mechanism includes a movable plate (35), a rotation control component, a linkage control component, and a rubber head (36). The rotation control component is mounted on the mounting plate (21) and located beside the adjustment mounting part. One end of a pair of movable plates (35) is movably connected to the rotation control component through the linkage control component. The other end of each pair of movable plates (35) is equipped with a rubber head (36). The middle part of the pair of movable plates (35) is respectively hinged to the outer wall of a pair of connecting plates (25). A hollow groove is formed on the connecting plate (25) so that the rubber head (36) is locked in the hollow groove and can move against the fixed rod (1).

4. The quick-installation anti-loosening device for electromechanical installation pipelines according to claim 3, characterized in that: The rotary control assembly includes a fixed base (27), a threaded shaft (28), a knob (29), a movable block (33), and a limiting rod (38). The fixed base (27) is fixedly mounted on the mounting plate (21), and the threaded shaft (28) is rotatably mounted through the fixed base (27). The axial direction of the threaded shaft (28) is parallel to the length direction of the movable groove (11). One end of the threaded shaft (28) is coaxially fixed to the knob (29). A threaded hole is formed in the middle of the movable block (33) to allow the threaded shaft (28) to pass through. The movable block (33) is threaded and screwed through; one end of several limiting rods (38) is vertically fixed to the fixed seat (27); several through holes are formed at intervals on the side of the movable block (33); the other end of several limiting rods (38) can slide through several through holes, so that the movable block (33) can be slidably set between the adjustment mounting part and the fixed seat (27); the linkage control component is connected between the side end of the fixed seat (27), the side end of the movable block (33), and one end of the movable plate (35).

5. The quick-installation anti-loosening device for electromechanical installation pipelines according to claim 4, characterized in that: The linkage control component includes a first movable arm (31), a second movable arm (32), a hinge block (34), and a connecting shaft (37). The connecting shaft (37) is embedded in an opening slot reserved at one end of the movable plate (35). One end of the hinge block (34) forms two connecting ends, and the other end of the hinge block (34) forms a sliding sleeve that is movably sleeved on the connecting shaft (37). One end of the first movable arm (31) is rotatably connected to the side end of the fixed seat (27), and one end of the second movable arm (32) is rotatably connected to the side end of the movable block (33). The other ends of the first movable arm (31) and the second movable arm (32) are respectively rotatably connected to the two connecting ends at one end of the hinge block (34).

6. The quick-installation anti-loosening device for electromechanical installation pipelines according to any one of claims 1, 3, and 4, characterized in that: The adjustment and installation part includes a bracket joint (22) and a universal ball joint sleeve (23); one end of the bracket joint (22) is fixedly connected to the mounting plate (21), and the length direction of the bracket joint (22) is perpendicular to the length direction of the fixed rod (1); the universal ball joint sleeve (23) is set at the other end of the bracket joint (22), and the electromechanical pipeline passes through the universal ball joint sleeve (23).

Citation Information

Patent Citations

  • Quick mounting device for anti-loosening electromechanical pipeline

    CN218102482U