Electric film paving equipment applied to high slope

By designing an electric membrane laying device with components such as the support body and rotating working wheels, the safety hazards and non-standard construction problems in the construction of geosynthetic composite materials on high slopes have been solved, realizing automated and precise laying, and improving construction safety and material utilization efficiency.

CN223660835UActive Publication Date: 2025-12-12SINOHYDRO BUREAU 6 CO LTD
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Patent Information

Application Number
CN202423123317.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-17
Publication Date
2025-12-12
Estimated Expiration
2034-12-17

AI Technical Summary

Technical Problem

Existing geosynthetic composite materials pose safety hazards and construction irregularities due to free fall during high slope construction, making it difficult to achieve automated construction and precise laying.

Method used

An electric membrane laying device was designed, comprising a support body, a support fixing beam, a support moving pulley, a support pulley limiting device, and a track support. It utilizes rotating working wheels, positioning auxiliary moving wheels, and infrared limiting devices to achieve precise laying and safe construction of geosynthetic composite materials.

Benefits of technology

It has enabled automated construction of geosynthetic composite materials for high slopes, reduced the risks of manual operation, improved construction safety and laying accuracy, reduced waste generation, and increased recyclability.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides electric film laying equipment applied to a high slope. The electric film laying equipment comprises a support body, a support fixing beam, support moving pulleys, support pulley limiting devices and a track support. The support fixing beam is fixedly connected with the support body, the equipment has obvious advantages in laying the geotechnical composite material on the high slope from top to bottom, after the equipment is assembled, the laying equipment can be moved through manual or mechanical traction, and the movement is convenient and fast; the to-be-lapped position of the geotechnical composite material is controlled through infrared, the placement position of equipment is accurately adjusted, and the laying precision of the subsequent geotechnical material is guaranteed; after the equipment is in place, the geotechnical composite material needing to be laid is placed on the rotating working wheel and connected with the positioning auxiliary movable rotating wheel, the switch system is started, the motor provides kinetic energy for the rotating working wheel, the geotechnical composite material is manually pulled downwards until laying is completed, operation and control are easy, the arrangement quality effect is remarkable, construction safety is guaranteed, and labor force is reduced.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a film laying equipment technical field especially to a kind of applied to high slope electric film laying equipment. BACKGROUND

[0002] The main function of composite geotechnical composite material is to prevent seepage. The conventional laying of geotechnical composite material is mostly free falling from top to bottom, which is fast but prone to deviation. At the same time, secondary movement by manual is required, and free falling of geotechnical composite material can easily cause high kinetic energy, resulting in accidents. It is not safe and the construction is not standardized. Free falling of geotechnical composite material has high security risks.

[0003] In view of the above problems of the prior art, it is urgent to develop an electric laying device to realize automatic construction during the laying of geotechnical composite material, minimize personnel up and down, reduce the risk of personnel operation caused by free falling of geotechnical composite material, and ensure safety during the whole construction process. SUMMARY

[0004] To solve the above technical problems, the utility model provides a kind of applied to high slope electric film laying equipment, including support body, support fixed beam, support mobile pulley, support pulley limiting device and track support;The support fixed beam is fixedly connected with the support body, the support mobile pulley is arranged at the bottom of the support body, the support pulley limiting device is arranged on the side surface of the support body, and the track support is arranged on the support body;The track support is inlaid with a rotating wheel, the rotating wheel is connected with a positioning auxiliary movable rotating wheel, a rotating work wheel is further arranged on the support body, a first gear is connected to the rotating work wheel, a chain is connected to the first gear, a transmission bearing is connected to the chain, a second gear is arranged outside the transmission bearing, the chain is connected as a whole by the second gear and the transmission bearing, and an electric control assembly is arranged on the middle platform of the support body.

[0005] Preferably, the rotating work wheel is connected to the support body by a rotating work wheel fixing clamp.

[0006] Preferably, the electric control assembly includes a work wheel motor, an electric switch and an electric control device platform, the work wheel motor is arranged on the electric control device platform, and the work wheel motor and the electric switch are electrically connected.

[0007] Preferably, an infrared limiting device is fixedly arranged on the support body, the number of the infrared limiting devices is two, and they are arranged at the edge positions of the support body.

[0008] The utility model discloses an advantageous effect: the equipment has obvious advantage to lay geotechnical composite material from top to bottom on high slope, and after equipment assembly, the movement of laying equipment can be realized through manual or mechanical traction, and the movement is convenient, the position that geotechnical composite material needs to lap is controlled through infrared, and the laying precision of subsequent geotechnical material is guaranteed, after the equipment is in position, the geotechnical composite material that needs to lay is placed on the rotating work wheel, and is connected with the positioning auxiliary movable pulley, and the switch system is started, and the motor provides kinetic energy for the rotating work wheel, and the geotechnical composite material is manually pulled down until laying is completed, and the operation is simple, and the arrangement quality effect is remarkable, and the safety risk of free rolling of geotechnical composite material on high slope is not worried, construction safety is guaranteed, and labor is reduced, can be moved at any time, and the applicability is strong, and any redundant waste is not produced, and the recyclable value is improved.

[0009] It should be understood that the foregoing general description and the following detailed description are only exemplary and explanatory, and cannot limit the utility model. BRIEF DESCRIPTION OF DRAWINGS

[0010] Figure 1 A front elevation view of the utility model is provided.

[0011] Figure 2 A side elevation view of the utility model is provided.

[0012] Among them, 1 - support body, 2 - support fixed beam, 3 - support mobile pulley, 4 - support pulley limiting device, 5 - track support, 6 - rotating wheel, 7 - positioning auxiliary movable pulley, 8 - rotating work wheel fixed clamp, 9 - rotating work wheel, 16 - infrared limiting device, 100 - electric control assembly, 101 - work wheel motor, 111 - electric switch, 121 - first gear, 131 - chain, 141 - transmission bearing, 142 - second gear, 151 - electric control equipment platform. DETAILED DESCRIPTION

[0013] Reference Figure 1 A front elevation view of the utility model is provided.

[0014] Participation Figure 2 A side elevation view of the utility model is provided.

[0015] The utility model relates to a kind of applied high slope electric membrane laying equipment, including support body 1, support fixed beam 2, support moving pulley 3, support pulley limiting device 4 and track support 5;The support fixed beam 2 is fixedly connected with the support body 1, the support moving pulley 3 is arranged at the bottom of the support body 1, the support pulley limiting device 4 is arranged on the side of the support body 1, and the track support 5 is arranged on the support body 1;The track support 5 is inlaid with rotating wheel 6, the rotating wheel 6 is connected with positioning auxiliary movable rotating wheel 7, rotating work wheel 9 is further provided on the support body 1, first gear 121 is connected on the rotating work wheel 9, chain 131 is connected on the first gear 121, transmission bearing 141 is connected on the chain 131, second gear 142 is provided outside the transmission bearing 141, the chain 131 is connected as a whole by the second gear 142 and the transmission bearing 141, and electric control assembly 100 is provided on the middle platform of the support body 1.

[0016] Wherein, the support body 1 can be composed of channel steel with a wall thickness of 6mm into a triangle, then a plane is formed by connecting the top channel steel, and the two bottom angles of the triangle are welded with two steel pipes with a diameter of 50mm to form a support; The support fixed beam 2 is welded and connected with the support body 1 by 2 channel steels, and is overlapped with the bottom steel pipe of the triangular support, to ensure that the support does not deform during movement; The support moving pulley 3 is connected with the bottom of the support body 1 by 6 groups of rotating wheels with a diameter of 5cm, forming a track for moving the device.

[0017] The support pulley limiting device 4 is composed of 4 groups of 30cm long round steel and sleeve, the sleeve is welded and connected with the side of the support body 1, then the built-in movable adjustable long round steel is used as a fixed point, the end of the round steel is set as L-shaped, the sleeve is reserved with an opening, the L-shaped round steel enters the reserved opening, i.e. the round steel contacts the ground, to play a fixing role, after use, the L-shaped round steel is lifted to a position outside the opening of the sleeve, i.e. unlocked, and the device has moving conditions.

[0018] The track support 5 is a support composed of channel steel, welded on the support body 1. The B side support can be folded, when the geocomposite material is placed on the rotating work wheel 101, the track support is folded, so that the rotating wheel 6 is connected with the positioning auxiliary movable rotating wheel 7. Ensure that the geocomposite material does not deviate greatly when rotating.

[0019] The rotating wheel 6 is embedded in the track support 5 and connected with the positioning auxiliary movable rotating wheel 7 for controlling the direction of the geocomposite material in rotation. When the rotating working wheel 9 rotates, it drives the rotation of the geocomposite material and the positioning auxiliary movable rotating wheel 7, thereby driving the rotation of the rotating wheel 6, so that the positioning auxiliary movable rotating wheel 7 and the track support 5 play a good lubricating effect.

[0020] The positioning auxiliary movable rotating wheel 7 is composed of one roller with a diameter of 20 cm and can be detached to ensure that the geocomposite material does not fall off when it is small. When the geocomposite material passes through the positioning auxiliary movable rotating wheel and is connected with the rotating wheel 6, due to the self-gravity of the geocomposite material, it has a downward pressure to increase the friction between the rotating working wheel 9 and the geocomposite material in rotation, so that it works normally.

[0021] Preferably, the rotating working wheel fixing clamp 8 is bolted to the top of the support body 1, and the rotating working wheel 9 is connected with the support body 1 through the rotating working wheel fixing clamp 8. The rotating working wheel fixing clamp 8 is bolted to the top of the support body 1 by two clamps for fixing the rotating working wheel 9.

[0022] Preferably, the electric control assembly 100 includes a working wheel motor 101, an electric switch 111 and an electric control device platform 151. The working wheel motor 101 is arranged on the electric control device platform 151, and the working wheel motor 101 and the electric switch 111 are electrically connected.

[0023] The rotating working wheel 9 is connected with the top platform of the support body 1 through the rotating working wheel fixing clamp 8 by two rollers with a diameter of 30 cm. In addition, the first gear 121 and the second gear 142 are connected with the rotating working wheel 9 as a whole by the two gears, respectively, so that the rotating working wheel 9 is driven to rotate when the gears rotate. After the working wheel motor 101 is started, the rotating gears provide kinetic energy to the rotating working wheel 9 while rotating, so that the rotating working wheel 9 rotates. The working wheel motor 101 is a 2kW rotating machine for providing kinetic energy to the rotating working wheel and is fixed on the middle platform of the support body 1. The electric switch 11 is used to control the operation of the electric device.

[0024] The transmission bearing 141 is externally provided with the second gear 142 and forms a whole with the first gear 121 through the chain 13. The electric control device platform 151 is fixed with the support body 1 by a wooden board and is used to place the working wheel motor 101 and the transmission bearing 141.

[0025] Preferably, the bracket body 1 is fixedly provided with infrared limiting devices 16, the number of the infrared limiting devices 16 is two, and the two infrared limiting devices 16 are arranged at the edge positions of the bracket body 1. The two infrared limiting devices 16 are fixed at the edges of the bracket body 1, the overlapping position and width of the geotechnical composite material are determined through the infrared rays, the installation precision is ensured, and the secondary manual transportation of the geotechnical composite material caused by improper overlapping is reduced.

[0026] In application, the equipment is moved to the working position through manual or mechanical traction, then the infrared limiting device 16 is started, the overlapping position of the geotechnical composite material is determined, the positioning auxiliary movable rotating wheel 7 is disassembled and inserted into the center position of the geotechnical composite material, the planned geotechnical composite material is placed on the rotating working wheel 9 through hoisting equipment, the positioning auxiliary movable rotating wheel 7 and the rotating wheel 6 are connected, then the electric switch 111 is started, the working wheel motor 101 provides power, the motor rotates, the two end gears of the rotating working wheel 9 rotate through the chain. The geotechnical composite material is manually pulled to walk down the slope until the geotechnical composite material is laid in the fixed position, that is, the high-precision slope geotechnical composite material laying work is completed.

[0027] The utility model discloses the common knowledge or usual technical means in the prior art of the utility model not disclosed. The specification and the embodiment are only regarded as exemplary, and the true scope and spirit of the utility model are indicated by the following claims.

[0028] It should be understood that the utility model is not limited to the precise structure described above and shown in the drawings, and various modifications and changes can be made without departing from the scope thereof. The scope of the utility model is limited only by the appended claims.

Claims

1. An electric membrane laying device for high slopes, characterized in that, The system includes a support body (1), a support fixing beam (2), a support moving pulley (3), a support pulley limiting device (4), and a track support (5); the support fixing beam (2) is fixedly connected to the support body (1), the support moving pulley (3) is located at the bottom of the support body (1), the support pulley limiting device (4) is located on the side of the support body (1), and the track support (5) is located on the support body (1); a rotating wheel (6) is embedded in the track support (5), and a positioning auxiliary movable rotating wheel is connected to the rotating wheel (6). 7) The support body (1) is also provided with a rotating working wheel (9), a first gear (121) is connected to the rotating working wheel (9), a chain (131) is connected to the first gear (121), a transmission bearing (141) is connected to the chain (131), a second gear (142) is provided outside the transmission bearing (141), the chain (131) is connected to the transmission bearing (141) as a whole through the second gear (142) and the transmission bearing (141), and an electrical control component (100) is provided on the middle platform of the support body (1).

2. The electric membrane laying equipment for high slopes according to claim 1, characterized in that, The top of the support body (1) is bolted with a rotating working wheel fixing clamp (8), and the rotating working wheel (9) is connected to the support body (1) through the rotating working wheel fixing clamp (8).

3. The electric membrane laying equipment for high slopes according to claim 1, characterized in that, The electrical control assembly (100) includes a wheel motor (101), an electric switch (111), and an electrical control equipment platform (151). The wheel motor (101) is mounted on the electrical control equipment platform (151), and the wheel motor (101) and the electric switch (111) are electrically connected.

4. The electric membrane laying equipment for high slopes according to claim 1, characterized in that, An infrared limiting device (16) is fixedly installed on the support body (1). There are two infrared limiting devices (16), which are respectively installed at the edge of the support body (1).