Auxiliary equipment for mechanical and electrical installation

The electromechanical clamp and lifting platform driven by a dual-axis motor and hydraulic device solves the problem of manual handling of existing electromechanical installation equipment, realizes automatic adjustment of equipment height and improves stability, and improves the adaptability and service life of the equipment.

CN223342341UActive Publication Date: 2025-09-16中华人民共和国京唐港海关
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Patent Information

Application Number
CN202422667371.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-03
Publication Date
2025-09-16
Estimated Expiration
2034-11-03

AI Technical Summary

Technical Problem

Existing electromechanical installation equipment requires operators to manually carry heavy equipment, lacks automation and flexibility, and leads to operational limitations.

Method used

A dual-axis motor drives the electromechanical clamp to clamp the device, and the hydraulic device inside the beam drives the lifting platform to rise and fall. The synchronous gear and threaded rod are used to realize automatic adjustment of the equipment height, reducing operator intervention.

Benefits of technology

It realizes automatic adjustment of equipment height and improves stability, reduces the labor intensity of operators, improves the adaptability and stability of equipment, and extends the service life of hydraulic devices.

✦ Generated by Eureka AI based on patent content.

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Abstract

Mechanical and electrical installation auxiliary equipment comprises an equipment base, a wheel assembly, a center wheel, a synchronous wheel shaft rod, a rack and a threaded rod, the side portion of the equipment base is fixedly connected with the wheel assembly, the rear portion of the equipment base is fixedly connected with an equipment stand column, and the upper portion of the equipment stand column is fixedly connected with a cross beam; a guide groove is formed in the side portion of the lifting table, the guide cylinder is matched with the guide groove, the guide cylinder is connected with the guide groove, the guide groove slides in the guide cylinder, the interior of the cross beam is fixedly connected with a hydraulic device, and the lower portion of the hydraulic device is fixedly connected with a rewinding wheel support. And the rewinding wheel bracket adapts to the rewinding wheel shaft rod and is connected with the rewinding wheel shaft rod.
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Description

Technical Field

[0001] The utility model relates to the field of electromechanical installation, in particular to electromechanical installation auxiliary equipment. Background Art

[0002] An existing patent (Announcement No.: CN116728360A) proposes an electromechanical installation auxiliary device. It includes: a base, wherein the four corners of the middle portion of the top of the base are rotatably connected to connecting rods 1, the end of connecting rod 1 away from the base is rotatably connected to connecting rods 2, and the ends of connecting rods 2 away from connecting rod 1 are rotatably connected to the four corners of the bottom end of the support base. The front and rear sides of the top of the support base are provided with notches, and the front and rear sides of the top of the support base are provided with limit slots. Electric push rods are symmetrically mounted on the inner side walls of the support base, and the driving ends of the electric push rods on the same side are installed with stabilizing splints. However, this device "electric push rods are symmetrically mounted on the inner side walls of the support base" wherein the equipment relies on the support base on the top of the base for lifting. During the placement process, if the equipment is heavy, the operator needs to manually move the electromechanical equipment to the top of the support base for lifting, which has certain limitations. Summary of the Invention

[0003] In response to the above-mentioned deficiencies in the prior art, the utility model provides a device that moves the equipment to the front of the electromechanical device, clamps the electromechanical device through a dual-axis motor-driven electromechanical clamp, and drives the lifting platform to move up and down in cooperation with the hydraulic device inside the beam, so that the height of the equipment can be adjusted according to the actual electromechanical installation requirements, without the need for the operator to move the electromechanical device, thereby providing an adaptable electromechanical installation auxiliary device.

[0004] The purpose of this utility model is achieved through the following technical solutions:

[0005] The cam is fixedly connected to the wheel assembly by the hydraulic cylinder, and the cam is fixedly connected to the wheel assembly by the hydraulic cylinder.

[0006] The interior of the center wheel shaft is fixedly connected to the center wheel, the head end of the steel belt is fixedly connected to the rear of the crossbeam, the upper part of the lifting platform is fixedly connected to the steel belt frame, the end of the steel belt is fixedly connected to the steel belt frame, the rear part of the steel belt rotates at the bottom of the rewinding wheel, the front part of the steel belt rotates at the top of the center wheel, and the rear of the lifting platform is fixedly connected to the synchronous wheel bracket.

[0007] The synchronous wheel bracket is adapted to the synchronous wheel axle rod, the synchronous wheel bracket is connected to the synchronous wheel axle rod, the synchronous wheel axle rod rotates inside the synchronous wheel bracket, the side of the synchronous wheel axle rod is fixedly connected to the synchronous gear, the inside of the equipment column is fixedly connected to the rack, and a clamp groove is provided inside the lifting platform.

[0008] The synchronous gear is engaged with the front part of the rack, and the inside of the clamp groove is fixedly connected to the dual-axis motor. The inside of the clamp groove has a threaded rod shaft groove, the side of the dual-axis motor is fixedly connected to the threaded rod, the threaded rod shaft groove is adapted to the threaded rod, and the threaded rod shaft groove is connected to the threaded rod. Beneficial effects

[0009] 1. During the use of the electromechanical installation auxiliary equipment of the utility model, after the equipment is moved to the front of the electromechanical equipment, the electromechanical clamp is driven by the dual-axis motor to clamp the electromechanical equipment, and the hydraulic device inside the beam is used to drive the lifting platform to rise and fall, so that the height of the equipment can be adjusted according to the actual electromechanical installation requirements. During this period, the operator does not need to move the electromechanical equipment, thereby realizing the adaptability of the equipment.

[0010] 2. During the use of the electromechanical installation auxiliary equipment of the utility model, the lifting platform is driven to rise and fall by the hydraulic device inside the crossbeam, and the synchronous gear at the rear of the lifting platform is engaged with the front of the rack, so that the two ends of the lifting platform are lifted synchronously to avoid local overweight and offset, thereby increasing the stability of the equipment.

[0011] 3. During the use of the electromechanical installation auxiliary equipment of the present invention, the two sets of hydraulic devices on the side of the beam jointly drive the internal steel belt to rise and fall, so that the two sets of hydraulic devices can jointly output power, thereby reducing the load of a single set of hydraulic devices, thereby increasing the service life of the equipment. BRIEF DESCRIPTION OF THE DRAWINGS

[0012] Figure 1 This is a structural schematic diagram of an electromechanical installation auxiliary device described in the utility model.

[0013] Figure 2 This is a schematic diagram of the three-dimensional assembly structure of an electromechanical installation auxiliary device described in the present utility model.

[0014] Figure 3 It is a partial cross-sectional three-dimensional assembly diagram of a crossbeam structure of an electromechanical installation auxiliary equipment described in the present invention.

[0015] Figure 4This is a schematic diagram of the three-dimensional assembly of a lifting platform structure for electromechanical installation auxiliary equipment described in the present utility model. DETAILED DESCRIPTION

[0016] The present invention will be described in further detail below with reference to the accompanying drawings and embodiments:

[0017] Example 1:

[0018] An electromechanical installation auxiliary device includes an equipment base 01, a wheel assembly 02, a center wheel 14, a synchronous wheel shaft rod 18, a rack 20, and a threaded rod 24. The side of the equipment base 01 is fixedly connected to the wheel assembly 02, the rear of the equipment base 01 is fixedly connected to the equipment column 03, the upper part of the equipment column 03 is fixedly connected to the crossbeam 04, the side of the crossbeam 04 has a sub-bracket 05, the inside of the sub-bracket 05 is fixedly connected to the equipment column 03, the front of the equipment column 03 is fixedly connected to the guide cylinder 06, the side of the lifting platform 07 has a guide groove 08, the guide cylinder 06 is adapted to the guide groove 08, the guide cylinder 06 is connected to the guide groove 08, the guide groove 08 slides inside the guide cylinder 06, and the inside of the crossbeam 04 is fixedly connected to the hydraulic device 09. Electromechanical installation auxiliary device During use, the two groups of hydraulic devices 09 on the side of the crossbeam 04 jointly drive the internal steel belt 15 to rise and fall, so that the two groups of hydraulic devices 09 can jointly output force, thereby reducing the load of the single group of hydraulic devices 09, thereby increasing the service life of the equipment. The lower part of the hydraulic device 09 is fixedly connected to the rewinding wheel bracket 10, and the rewinding wheel bracket 10 is adapted to the rewinding wheel axle 11. The rewinding wheel bracket 10 is connected to the rewinding wheel axle 11, and the rewinding wheel axle 11 rotates inside the rewinding wheel bracket 10. The rewinding wheel 28 is fixedly connected inside the rewinding wheel axle 11. The crossbeam 04 has a center wheel axle groove 12 inside, and the center wheel axle groove 12 is adapted to the center wheel axle 13. The center wheel axle groove 12 is connected to the center wheel axle 13, and the center wheel axle 13 rotates inside the center wheel axle groove 12.

[0019] Example 2:

[0020] The center wheel shaft 13 of the utility model is fixedly connected to the center wheel 14, the head end of the steel belt 15 is fixedly connected to the rear of the crossbeam 04, the upper part of the lifting platform 07 is fixedly connected to the steel belt frame 16, the end of the steel belt 15 is fixedly connected to the steel belt frame 16, the rear part of the steel belt 15 rotates at the lower part of the rewinding wheel 28, the front part of the steel belt 15 rotates at the upper part of the center wheel 14, and the rear part of the lifting platform 07 is fixedly connected to the synchronous wheel bracket 17.

[0021] Example 3:

[0022] The synchronous wheel bracket 17 of the utility model is adapted to the synchronous wheel axle rod 18, the synchronous wheel bracket 17 is connected to the synchronous wheel axle rod 18, the synchronous wheel axle rod 18 rotates inside the synchronous wheel bracket 17, the side of the synchronous wheel axle rod 18 is fixedly connected to the synchronous gear 19, and the inside of the equipment column 03 is fixedly connected to the rack 20. During the use of the electromechanical installation auxiliary equipment, the lifting platform 07 is driven to rise and fall by the hydraulic device 09 inside the beam 04, and the synchronous gear 19 at the rear of the lifting platform 07 is engaged with the front of the rack 20, so that the two ends of the lifting platform 07 are lifted synchronously to avoid local overweight and offset, thereby increasing the stability of the equipment. The lifting platform 07 is provided with a clamp groove 21.

[0023] Example 4:

[0024] The synchronous gear 19 described in the present invention is engaged with the front part of the rack 20, and the inside of the clamp slot 21 is fixedly connected to the dual-axis motor 22. During the use of the electromechanical installation auxiliary equipment, after the equipment is moved to the front of the electromechanical, the electromechanical clamp 27 is driven by the dual-axis motor 22 to clamp the electromechanical equipment, and the hydraulic device 09 inside the beam 04 is used to drive the lifting platform 07 to rise and fall, so that the equipment can be adjusted to its height according to the actual electromechanical installation requirements. During this period, the operator does not need to move the electromechanical equipment. With the adaptability of this equipment, a threaded rod shaft groove 23 is provided inside the clamp slot 21, and the side of the dual-axis motor 22 is fixedly connected to the threaded rod 24. The threaded rod shaft groove 23 is adapted to the threaded rod 24, and the threaded rod shaft groove 23 is connected to the threaded rod 24.

[0025] Example 5:

[0026] The threaded rod 24 of the present invention rotates inside the threaded rod shaft groove 23, the clamp groove 21 is adapted to the clamping platform 25, the clamp groove 21 is connected to the clamping platform 25, the clamping platform 25 slides inside the clamp groove 21, the electromechanical clamp 27 has a clamp seat 26 at the rear, and the front of the clamping platform 25 is fixedly connected to the clamp seat 26.

[0027] Example 6:

[0028] The installation steps of the utility model are as follows: fix the side of the equipment base 01 to the wheel assembly 02, fix the rear of the equipment base 01 to the equipment column 03, fix the upper part of the equipment column 03 to the crossbeam 04, fix the inside of the sub-bracket 05 to the equipment column 03, fix the front of the equipment column 03 to the guide cylinder 06, slide the guide groove 08 inside the guide cylinder 06, fix the inside of the crossbeam 04 to the hydraulic device 09, fix the lower part of the hydraulic device 09 to the rewinding wheel bracket 10, rotate the rewinding wheel axle 11 inside the rewinding wheel bracket 10, fix the rewinding wheel 28 inside the rewinding wheel axle 11, rotate the center wheel axle 13 inside the center wheel axle groove 12, fix the inside of the center wheel axle 13 to the center wheel 14, and fix the head end of the steel belt 15 to the rear of the crossbeam 04 Then, fix the upper part of the lifting platform 07 to the steel belt frame 16, fix the end of the steel belt 15 to the steel belt frame 16, rotate the rear part of the steel belt 15 at the bottom of the rewinding wheel 28, rotate the front part of the steel belt 15 on the upper part of the center wheel 14, fix the rear part of the lifting platform 07 to the synchronous wheel bracket 17, rotate the synchronous wheel shaft rod 18 inside the synchronous wheel bracket 17, fix the side of the synchronous wheel shaft rod 18 to the synchronous gear 19, fix the inside of the equipment column 03 to the rack 20, engage the synchronous gear 19 at the front of the rack 20, fix the inside of the clamp slot 21 to the dual-axis motor 22, fix the side of the dual-axis motor 22 to the threaded rod 24, rotate the threaded rod 24 inside the threaded rod shaft groove 23, slide the clamp platform 25 inside the clamp slot 21, and fix the front of the clamp platform 25 to the clamp seat 26.

[0029] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. It should be pointed out that ordinary technicians in this technical field can make several improvements and modifications without departing from the technical principles of the present invention. These improvements and modifications should also be regarded as within the scope of protection of the present invention.

Claims

1. An electromechanical installation auxiliary device, characterized in that : It includes an equipment base (01), a wheel assembly (02), a center wheel (14), a synchronous wheel shaft rod (18), a rack (20), and a threaded rod (24). The side of the equipment base (01) is fixedly connected to the wheel assembly (02). The rear of the equipment base (01) is fixedly connected to the equipment column (03). The upper part of the equipment column (03) is fixedly connected to the crossbeam (04). The side of the crossbeam (04) has a sub-bracket (05). The inside of the sub-bracket (05) is fixedly connected to the equipment column (03). The front of the equipment column (03) is fixedly connected to the guide cylinder (06). The side of the lifting platform (07) has a guide groove (08). The guide cylinder (06) is adapted to the guide groove (08). The guide cylinder (06) is connected to the guide groove (08). The guide groove (08) slides inside the guide cylinder (06), the interior of the crossbeam (04) is fixedly connected to the hydraulic device (09), the lower part of the hydraulic device (09) is fixedly connected to the rewinding wheel bracket (10), the rewinding wheel bracket (10) is adapted to the rewinding wheel axle rod (11), the rewinding wheel bracket (10) is connected to the rewinding wheel axle rod (11), the rewinding wheel axle rod (11) rotates inside the rewinding wheel bracket (10), the rewinding wheel (28) is fixedly connected inside the rewinding wheel axle rod (11), the crossbeam (04) has a central wheel axle groove (12) inside, the central wheel axle groove (12) is adapted to the central wheel axle rod (13), the central wheel axle groove (12) is connected to the central wheel axle rod (13), and the central wheel axle rod (13) rotates inside the central wheel axle groove (12).

2. The electromechanical installation auxiliary device according to claim 1, characterized in that The center wheel shaft (13) is fixedly connected to the center wheel (14) inside, the head end of the steel belt (15) is fixedly connected to the rear of the crossbeam (04), the upper part of the lifting platform (07) is fixedly connected to the steel belt frame (16), the end of the steel belt (15) is fixedly connected to the steel belt frame (16), the rear part of the steel belt (15) rotates at the lower part of the rewinding wheel (28), the front part of the steel belt (15) rotates at the upper part of the center wheel (14), and the rear part of the lifting platform (07) is fixedly connected to the synchronous wheel bracket (17).

3. The electromechanical installation auxiliary device according to claim 2, characterized in that The synchronous wheel bracket (17) is adapted to the synchronous wheel axle rod (18), the synchronous wheel bracket (17) is connected to the synchronous wheel axle rod (18), the synchronous wheel axle rod (18) rotates inside the synchronous wheel bracket (17), the side of the synchronous wheel axle rod (18) is fixedly connected to the synchronous gear (19), the interior of the equipment column (03) is fixedly connected to the rack (20), and the interior of the lifting platform (07) has a clamp groove (21).

4. The electromechanical installation auxiliary device according to claim 3, characterized in that The synchronous gear (19) is engaged with the front of the rack (20), the inside of the fixture groove (21) is fixedly connected to the dual-axis motor (22), the inside of the fixture groove (21) has a threaded rod shaft groove (23), the side of the dual-axis motor (22) is fixedly connected to the threaded rod (24), the threaded rod shaft groove (23) is adapted to the threaded rod (24), and the threaded rod shaft groove (23) is connected to the threaded rod (24).

5. The electromechanical installation auxiliary device according to claim 3, characterized in that : The threaded rod (24) rotates inside the threaded rod shaft groove (23), the clamp groove (21) is adapted to the clamp table (25), the clamp groove (21) is connected to the clamp table (25), the clamp table (25) slides inside the clamp groove (21), the electromechanical clamp (27) has a clamp seat (26) at the rear, and the clamp table (25) is fixedly connected to the clamp seat (26) at the front.

Citation Information

Patent Citations

  • Mechanical and electrical installation auxiliary device

    CN116728360A