Efficient auxiliary device for electromechanical pipeline installation
By designing an efficient auxiliary device that includes a chassis frame, moving wheels, stabilizing structure, lifting structure, and hoisting structure, the problems of low efficiency and numerous safety hazards in the installation of high-altitude electromechanical pipelines have been solved, achieving an efficient and safe pipeline installation process.
Patent Information
- Application Number
- CN202520039898.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-08
- Publication Date
- 2025-12-30
- Estimated Expiration
- 2035-01-08
AI Technical Summary
When installing electromechanical pipelines with a floor height of more than 3.5 meters, existing technologies rely on scaffolding or suspended electric hoists, which have problems such as low efficiency, many safety hazards, poor mobility and insufficient stability, especially in single-story large-area public buildings where construction efficiency is low.
An efficient auxiliary device was designed, comprising a chassis frame, casters, a stabilizing structure, a lifting structure, and a hoisting structure. The casters enable movement, the adjustable support structure provides stability, and the hoisting motor and hoisting motor independently drive the three-stage lifting of the pipeline, adapting to different environments.
It improves the efficiency and safety of electromechanical piping installation, enhances the mobility and stability of the device, is suitable for various environments, can quickly enter various floors and doorways, and expands the scope of application.
Smart Images

Figure CN223737621U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to electromechanical installation engineering technical field, concretely is a kind of electromechanical pipeline installation efficient auxiliary device. BACKGROUND
[0002] In the construction industry, the installation of high-altitude pipelines and bridge frames with a height of more than 3.5 meters generally relies on working scaffolds or door-type scaffolds for support, which need to be manually carried, positioned and lifted, resulting in low efficiency and many safety hazards. In particular, in single-story large-area public buildings, the frequent movement of scaffolds further reduces construction efficiency. Although there have been attempts to use improved suspended electric hoists in combination with scaffolds to improve efficiency, the actual application has exposed problems such as poor mobility, weak anti-overturning ability, and insufficient overall stability. These problems seriously affect construction progress and installation effectiveness, and restrict the smooth progress of engineering projects. SUMMARY
[0003] The utility model aims to provide a kind of electromechanical pipeline installation efficient auxiliary device, the device is set up to include mobile, lift and support function auxiliary high-altitude pipeline erection, to solve the problem raised in the above background technology.
[0004] To achieve the above object, the utility model provides the following technical scheme: a kind of electromechanical pipeline installation efficient auxiliary device, including chassis frame, the chassis frame is isosceles trapezoidal structure, the lower surface of the chassis frame four corners is respectively provided with mobile wheel, the mobile wheel is universal wheel structure, the rear surface of the chassis frame is fixedly connected with mobile frame, the mobile frame is curved structure to the back, the top of the mobile frame is fixed with control panel by mounting piece, the front surface of the chassis frame is provided with stable structure, stable structure realizes the stable support of device using adjustable support structure, the stable structure includes pivot, the pivot is the cylinder structure that is penetrated from top to bottom, the pivot is fixedly installed on the front surface of chassis frame, one side of the pivot is provided with support beam, one end of the support beam is fixedly connected with fixed pillar, the fixed pillar and support beam form L-shaped structure.
[0005] Preferably, the fixed pillar is rotatably connected to the inner wall of the pivot, a pin is provided through the surface of the pivot to form a detachable connection with the fixed pillar, a threaded sleeve is provided at the other end of the support beam, and an adjusting support is threadedly connected in the threaded sleeve on the surface of the support beam. The lower end of the adjusting support is fixedly connected with a stable support, and the upper end of the adjusting support is fixedly connected with an adjusting handle. Two groups of identical stable structures are symmetrically provided on the front surface of the chassis frame.
[0006] The above technical scheme uses the stable structure to realize the stable support process of the device.
[0007] Preferably, the upper surface of the chassis frame is fixedly provided with a main frame, the main frame is a hollow rectangular structure formed by welding square steel pipes, the lower end of the main frame is fixedly connected to the upper surface of the chassis frame, and the surface of the main frame is provided with a lifting structure.
[0008] By adopting the above technical scheme, the main frame can support the lifting structure and the lifting structure on the surface of the device.
[0009] Preferably, the lifting structure comprises a lifting frame, the lifting frame is a hollow rectangular structure formed by welding square steel pipes, the rear surface of the lifting frame is fixedly connected with a hoop, the hoop is slidingly connected to the surface of the main frame, the inner surface of the main frame is fixedly provided at the top end with a lifting top pulley, the surface of the lifting top pulley is provided with a lifting steel wire rope, one end of the lifting steel wire rope is fixedly connected to the surface of the lifting frame, the other end of the lifting steel wire rope is connected to the surface of a rope wheel of a lifting motor output end, the lifting motor is fixedly installed on the surface of the chassis frame, the lifting motor is connected with a storage battery arranged on the surface of the chassis frame, the top of the main frame is provided with a lifting limiting block, the bottom surface of the lifting frame is provided with a lifting limiting column, the lifting limiting column is arranged in alignment with the lifting limiting block, and the lower surface of the lifting limiting block is provided with a sensor connected with the power supply of the lifting motor.
[0010] By adopting the above technical scheme, the lifting frame can be slid up and down on the surface of the main frame to realize the one-time lifting process of the pipeline.
[0011] Preferably, the surface of the lifting structure is provided with a lifting structure, and the lifting structure can realize the secondary lifting process of the pipeline.
[0012] By adopting the above technical scheme, the lifting structure can be slid and raised again on the surface of the lifting structure.
[0013] Preferably, the lifting structure comprises a lifting frame, the lifting frame is an H-shaped frame structure welded by square steel pipes, one side surface of the lifting frame is slidably connected with the surface of the lifting frame, a lifting lifting pulley is fixedly arranged on the surface of the lifting frame, the lifting lifting pulley is a fixed pulley structure, a lifting top pulley is correspondingly arranged on the lifting lifting pulley, the lifting top pulley is fixedly arranged on the top of the lifting frame, a lifting steel wire rope is arranged between the lifting lifting pulley and the lifting top pulley, one end of the lifting steel wire rope is fixedly connected with the surface of the lifting frame, the other end of the lifting steel wire rope is sequentially connected with a rope wheel arranged on the output end of a lifting motor after passing through the lifting lifting pulley and the lifting top pulley, the lifting motor is connected with a battery, a steel groove is arranged on the upper surface of the lifting frame, the steel groove is a U-shaped structure, lifting limit blocks are arranged on the top of the lifting frame, the lower surface of the lifting limit blocks is aligned with sensors arranged on the upper surface of the lifting frame, and the sensors arranged on the surface of the lifting frame are connected with the lifting motor.
[0014] By adopting the above technical scheme, the lifting frame can be slid up and down on the surface of the lifting frame to realize the secondary lifting process of the pipeline.
[0015] Compared with the prior art, the machine and electric pipeline installation efficient auxiliary device has the advantages that:
[0016] 1. The device sets up a chassis frame to realize overall support of the device, the lower surface of the chassis frame is provided with a moving wheel of a universal wheel structure, the moving wheel can realize random movement of the device, the movement efficiency of the device under large-area construction conditions is improved, a stable structure with adjustable angle and height is arranged on the front surface of the chassis frame to realize stable support of the device;
[0017] 2. The device sets up a main frame on the upper surface of the chassis frame, a lifting structure is slidably arranged on the surface of the main frame, and a lifting structure is slidably arranged on the surface of the lifting structure; the combination and superposition of the main frame, the lifting structure and the lifting structure realize two-section three-segment lifting of the pipeline, the overall height of the device is reduced, the device can quickly enter each floor through the construction elevator, does not hinder the entry and exit of various doorways, and has a wide application range;
[0018] 3. The lifting structure and the lifting structure of the device are independently driven by a lifting motor and a lifting motor, respectively, the flexibility of the device in lifting the pipeline is improved, the lifting motor and the lifting motor are connected with a battery arranged on the surface of the chassis frame, the device is not affected by the temporary power supply line of the construction operation, can be used in a humid or slightly water-involved environment, and can be used away from the distribution box, and has strong environmental applicability. BRIEF DESCRIPTION OF DRAWINGS
[0019] Figure 1 It is a front view structural schematic diagram of the utility model.
[0020] Figure 2 It is rear view structure schematic view of the utility model;
[0021] Figure 3 It is chassis frame structure schematic view of the utility model;
[0022] Figure 4 It is main frame structure schematic view of the utility model;
[0023] Figure 5 It is lifting frame structure schematic view of the utility model;
[0024] Figure 6 It is lifting frame structure schematic view of the utility model;
[0025] Figure 7 It is the utility model Figure 2 Structure schematic view in A place of the utility model;
[0026] Figure 8 It is the utility model Figure 2 Structure schematic view in B place of the utility model;
[0027] Figure 9 It is side section structure schematic view of the utility model.
[0028] In the drawing: 1, chassis frame; 2, moving wheel; 3, rotating shaft; 4, support beam; 5, fixed support column; 6, pin; 7, adjusting support; 8, stabilizing support; 9, adjusting handle; 10, moving frame; 11, control panel; 12, main frame; 13, lifting frame; 14, hoop; 15, lifting top pulley; 16, lifting steel wire rope; 17, lifting motor; 18, lifting limit block; 19, lifting limit column; 20, lifting frame; 21, lifting lifting pulley; 22, lifting top pulley; 23, lifting steel wire rope; 24, lifting motor; 25, steel tank; 26, lifting limit block. Specific implementation
[0029] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the utility model.
[0030] Please refer to Figures 1-9The utility model provides a technical scheme: an electromechanical pipeline installation efficient auxiliary device, including chassis frame 1, moving wheel 2, pivot 3, support beam 4, fixed pillar 5, dowel 6, adjusting support 7, stable support 8, adjusting handle 9, moving frame 10, control panel 11, main frame 12, lifting frame 13, hoop 14, lifting top pulley 15, lifting steel wire rope 16, lifting motor 17, lifting limit block 18, lifting limit column 19, lifting frame 20, lifting lifting pulley 21, lifting top pulley 22, lifting steel wire rope 23, lifting motor 24, steel tank 25, lifting limit block 26.
[0031] Chassis frame 1 is isosceles trapezoidal structure, and the lower surface four corners of chassis frame 1 are provided with moving wheel 2 respectively, and moving wheel 2 is universal wheel structure, and the rear surface of chassis frame 1 is fixedly connected with moving frame 10, and moving frame 10 is curved structure to the back, and the top of moving frame 10 is fixed with control panel 11 by mounting piece, and the front surface of chassis frame 1 is provided with stable structure, and stable structure realizes stable support to device using adjustable support structure, and stable structure includes pivot 3, and pivot 3 is upper and lower through cylinder structure, and pivot 3 is fixedly installed at the front surface of chassis frame 1, and one side of pivot 3 is provided with support beam 4, and one end of support beam 4 is fixedly connected with fixed pillar 5, and fixed pillar 5 and support beam 4 form L-shaped structure, and fixed pillar 5 is rotatably connected in the inner wall of pivot 3, and the surface of pivot 3 is provided with dowel 6 and fixed pillar 5 between formation detachable connection, and the other end of support beam 4 is provided with threaded sleeve, and the threaded sleeve on the surface of support beam 4 is screwly connected with adjusting support 7, and the lower end of adjusting support 7 is fixedly connected with stable support 8, and the upper end of adjusting support 7 is fixedly connected with adjusting handle 9, and the front surface of chassis frame 1 is provided with 2 groups of identical stable structure symmetrically;
[0032] As Figure 1 , Figure 2 and Figure 3As shown, when the device is used, the operation of the device can be controlled to stop by using the control panel 11, the device can be pushed by the handheld moving frame 10, and the device can be easily pushed to the set position by cooperating with the moving wheels 2 arranged on the lower surface of the chassis frame 1. When the device moves to the set position, the stable structure is used to realize the fixed support of the device. The stable support 8 in the stable structure is in contact with the ground to support the chassis frame 1. The handheld adjusting handle 9 is adjusted. The adjusting handle 9 is rotated to drive the adjusting support 7 to rotate in the threaded sleeve on the surface of the support beam 4. The adjusting support 7 is rotated to drive the stable support 8 to adjust the height, so as to adjust the support height of the chassis frame 1. The pin 6 is detached from the fixed support column 5. At this time, the fixed support column 5 can drive the support beam 4 to rotate in the rotating shaft 3. After rotation is completed, the pin 6 is connected with the fixed support column 5 again, the fixed support column 5 and the rotating shaft 3 are fixed, the angle between the two support beams 4 changes, the chassis frame 1 can be better supported, and the device can be quickly disassembled when not in use.
[0033] The upper surface of the chassis frame 1 is fixedly provided with a main frame 12. The main frame 12 is a hollow rectangular structure formed by welding square steel pipes. The lower end of the main frame 12 is fixedly connected to the upper surface of the chassis frame 1. The surface of the main frame 12 is provided with a lifting structure. The lifting structure can realize the lifting of the pipeline once in the up-down sliding process of the mechanism on the surface of the main frame 12. The lifting structure comprises a lifting frame 13. The lifting frame 13 is a hollow rectangular structure formed by welding square steel pipes. The rear surface of the lifting frame 13 is fixedly connected with a hoop 14. The hoop 14 is slidingly connected to the surface of the main frame 12. The inner surface of the top end of the main frame 12 is fixedly provided with a lifting top pulley 15. The surface of the lifting top pulley 15 is provided with a lifting steel wire rope 16. One end of the lifting steel wire rope 16 is fixedly connected to the surface of the lifting frame 13. The other end of the lifting steel wire rope 16 is connected to the rope wheel surface of the output end of a lifting motor 17. The lifting motor 17 is fixedly installed on the surface of the chassis frame 1. The lifting motor 17 is connected with a storage battery arranged on the surface of the chassis frame 1. The top of the main frame 12 is provided with a lifting limiting block 18. The bottom surface of the lifting frame 13 is provided with a lifting limiting column 19. The lifting limiting column 19 is arranged in alignment with the lifting limiting block 18. The lower surface of the lifting limiting block 18 is provided with a sensor connected with the power supply of the lifting motor 17.
[0034] As Figure 4 , Figure 5 , Figure 6 and Figure 7As shown, the pipeline to be lifted is placed on the surface of the steel groove 25 of the lifting frame 20, and as the lifting frame 20 and the lifting frame 13 move synchronously, the lifting motor 17 is started, the lifting motor 17 drives the lifting steel wire rope 16 to wind on the surface of the rope wheel, under the action of the lifting top pulley 15, the lifting steel wire rope 16 drives the lifting frame 13 to slide up and down on the surface of the main frame 12, the main frame 12 drives the lifting frame 20 to move synchronously, realizing the first lifting process of the pipeline, when the lifting limiting column 19 at the bottom of the lifting frame 13 contacts the lifting limiting block 18 at the top of the main frame 12, the sensor at this position controls the lifting motor 17 to stop, preventing the lifting structure from losing stability.
[0035] The surface of the lifting structure is provided with a lifting structure, which can realize the second lifting process of the pipeline, the lifting structure comprises a lifting frame 20, the lifting frame 20 is an H-shaped frame structure formed by welding square steel pipes, one side surface of the lifting frame 20 is slidably connected with the surface of the lifting frame 13, the surface of the lifting frame 20 is fixedly provided with a lifting lifting pulley 21, the lifting lifting pulley 21 is a fixed pulley structure, the lifting lifting pulley 21 is correspondingly provided with a lifting top pulley 22, the lifting top pulley 22 is fixedly arranged at the top of the lifting frame 13, a lifting steel wire rope 23 is arranged between the lifting lifting pulley 21 and the lifting top pulley 22, one end of the lifting steel wire rope 23 is fixedly connected with the surface of the lifting frame 13, the other end of the lifting steel wire rope 23 is connected with the rope wheel surface provided on the output end of the lifting motor 24 after passing through the lifting lifting pulley 21 and the lifting top pulley 22 in sequence, the lifting motor 24 is connected with the battery, the upper surface of the lifting frame 20 is provided with a steel groove 25, the steel groove 25 is a U-shaped structure, the top of the lifting frame 13 is provided with lifting limiting blocks 26 on both sides, the lower surface of the lifting limiting block 26 is aligned with the sensor arranged on the upper surface of the lifting frame 20, the sensor on the surface of the lifting frame 20 is connected with the lifting motor 24;
[0036] As shown in Figure 6 , Figure 7 , Figure 8 and Figure 9 , the lifting motor 24 is started, the lifting motor 24 drives the lifting steel wire rope 23 to wind on the surface of the rope wheel, under the action of the lifting lifting pulley 21 and the lifting top pulley 22, the lifting steel wire rope 23 drives the lifting frame 20 to slide up and down on the surface of the lifting frame 13, thereby realizing the second lifting process of the pipeline, when the sensor on the upper surface of the lifting frame 20 contacts the lifting limiting block 26 at the top of the lifting frame 13, the sensor controls the lifting motor 24 to stop, preventing the lifting structure from losing stability.
[0037] Working principle: when using the electromechanical pipeline installation efficient auxiliary device, the chassis frame 1 and the moving wheel 2 can be used to move the device conveniently, the device moves to the set position, the stable support 8 and the support beam 4 can be used to support the device, the support height of the stable support 8 can be adjusted, at the same time, the support angle of the support beam 4 can be adjusted, the corresponding adjustment of the stable support 8 and the support beam 4 can increase the stability of the device support, the pipeline to be lifted is placed on the surface of the steel groove 25 of the lifting frame 20, the lifting motor 17 is started, the lifting motor 17 and the lifting steel wire rope 16 can drive the lifting frame 13 to slide up and down on the surface of the main frame 12, realize the first lifting process of the pipeline, the lifting motor 24 is started, the lifting motor 24 and the lifting steel wire rope 23 can drive the lifting frame 20 to slide up and down on the surface of the lifting frame 13, realize the second lifting process of the pipeline, the separately arranged lifting motor 17 and the lifting motor 24 can be started or operated in linkage, the pipeline is lifted to the height, at the same time, the overall height of the device is low, it is convenient to enter and exit various doorways, increase the use range, increase the practicability of the whole.
[0038] Although the embodiments of the utility model have been shown and described, it can be understood by those skilled in the art that various changes, modifications, replacements and variations can be made to these embodiments without departing from the principles and spirits of the utility model, the scope of the utility model is defined by the appended claims and its equivalents.
Claims
1. A high-efficiency auxiliary device for electromechanical pipeline installation, comprising a chassis frame (1), wherein the chassis frame (1) is an isosceles trapezoidal structure, and four corners of the lower surface of the chassis frame (1) are respectively provided with casters (2), wherein the casters (2) are universal casters, and a movable frame (10) is fixedly connected to the rear surface of the chassis frame (1), wherein the movable frame (10) is a backward-bending structure, and a control panel (11) is fixed to the top of the movable frame (10) by a mounting component, characterized in that: The front surface of the chassis frame (1) is provided with a stabilizing structure, which realizes stable support of the device by using an adjustable support structure, the stabilizing structure comprises a rotating shaft (3), the rotating shaft (3) is a through cylinder structure from top to bottom, the rotating shaft (3) is fixedly installed on the front surface of the chassis frame (1), one side of the rotating shaft (3) is provided with a support beam (4), one end of the support beam (4) is fixedly connected with a fixed support column (5), the fixed support column (5) and the support beam (4) form an L-shaped structure.
2. An electromechanical pipe installation efficient auxiliary device according to claim 1, characterized in that: The fixed support column (5) is rotatably connected to the inner wall of the rotating shaft (3), the surface of the rotating shaft (3) is provided with a pin (6) penetratingly arranged between the fixed support column (5), and the pin (6) and the fixed support column (5) form a detachable connection, the other end of the support beam (4) is provided with a threaded sleeve, a adjusting support (7) is threadedly connected in the threaded sleeve on the surface of the support beam (4), the lower end of the adjusting support (7) is fixedly connected with a stabilizing support (8), the upper end of the adjusting support (7) is fixedly connected with an adjusting handle (9), and the front surface of the chassis frame (1) is symmetrically provided with two groups of same stabilizing structures.
3. A mechanical-electrical pipe installation efficient auxiliary device according to claim 1, characterized in that: The upper surface of the chassis frame (1) is fixedly installed with a main frame (12), the main frame (12) is a hollow rectangular structure welded by square steel pipes, the lower end of the main frame (12) is fixedly connected to the upper surface of the chassis frame (1), and the surface of the main frame (12) is provided with a lifting structure.
4. An electromechanical pipe installation efficient auxiliary device according to claim 3, characterized in that: The lifting structure comprises a lifting frame (13), the lifting frame (13) is a hollow rectangular structure welded by square steel pipes, the rear surface of the lifting frame (13) is fixedly connected with a hoop (14), the hoop (14) is slidably connected to the surface of the main frame (12), the inner surface of the main frame (12) is fixedly provided with a lifting top pulley (15) at the top end, the surface of the lifting top pulley (15) is provided with a lifting steel wire rope (16), one end of the lifting steel wire rope (16) is fixedly connected to the surface of the lifting frame (13), the other end of the lifting steel wire rope (16) is connected to the rope wheel surface of the output end of a lifting motor (17), the lifting motor (17) is fixedly installed on the surface of the chassis frame (1), the lifting motor (17) is connected with a storage battery arranged on the surface of the chassis frame (1), the top of the main frame (12) is provided with a lifting limiting block (18), the bottom surface of the lifting frame (13) is provided with a lifting limiting column (19), the lifting limiting column (19) is arranged in alignment with the lifting limiting block (18), and the lower surface of the lifting limiting block (18) is provided with a sensor connected with the power supply of the lifting motor (17).
5. An electromechanical pipe installation efficient auxiliary device according to claim 3, characterized in that: The surface of the lifting structure is provided with a lifting structure, which can realize a secondary lifting process of the pipeline.
6. An electromechanical pipe installation efficiency assisting device according to claim 5, characterized in that: The lifting structure includes a lifting frame (20), the lifting frame (20) is a square steel pipe welded H-shaped frame structure, one side surface of the lifting frame (20) is in sliding connection with the surface of the lifting frame (13), the surface of the lifting frame (20) is fixedly provided with a lifting lifting pulley (21), the lifting lifting pulley (21) is a fixed pulley structure, the lifting lifting pulley (21) is correspondingly provided with a lifting top pulley (22), the lifting top pulley (22) is fixedly arranged on the top of the lifting frame (13), a lifting steel wire rope (23) is arranged between the lifting lifting pulley (21) and the lifting top pulley (22), one end of the lifting steel wire rope (23) is fixedly connected with the surface of the lifting frame (13), the other end of the lifting steel wire rope (23) is sequentially connected with the rope wheel surface provided on the output end of the lifting motor (24) after passing through the lifting lifting pulley (21) and the lifting top pulley (22), the lifting motor (24) is connected with the battery, the upper surface of the lifting frame (20) is provided with a steel groove (25), the steel groove (25) is a U-shaped structure, the two sides of the top of the lifting frame (13) are provided with lifting limit blocks (26), the lower surface of the lifting limit block (26) is aligned with the sensor provided on the upper surface of the lifting frame (20), and the sensor on the surface of the lifting frame (20) is connected with the lifting motor (24).