Gravel material thin layer slope rolling device
By designing a thin-layer slope rolling device of gravel material including a vibrating roller, a rolling hoist and a walking mechanism, the problem of the excavator being unable to be in place is solved, and efficient and low-cost slope construction is achieved, and strong adaptability is achieved.
Patent Information
- Application Number
- CN202422440730.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-10
- Publication Date
- 2025-08-22
- Estimated Expiration
- 2034-10-10
AI Technical Summary
In the prior art, the slope rolling device of the excavator as a mobile ground anchor cannot be placed in place when the construction environment is complex, resulting in low construction efficiency and high cost, and additional construction platforms are required to increase the project volume.
A thin-layer slope rolling device of gravel material including a vibrating roller, a rolling hoist, a walking mechanism and a traction mechanism is designed. The winding mechanism is connected with the pulling ear, and the walking mechanism can move stably through the guide rail to adapt to different slope environments.
It improves construction efficiency, reduces construction costs, reduces dependence on large equipment, is highly adaptable, and can operate efficiently in a variety of slope environments.
Smart Images

Figure CN223255977U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of water conservancy project foundation construction equipment, in particular to a sand and gravel thin layer slope rolling device. Background Art
[0002] As temporary or permanent cofferdam structures in water conservancy projects, dikes possess unique engineering characteristics. They typically need to be constructed quickly to withstand the challenges of natural conditions such as currents, wind and waves. At the same time, dikes must possess a certain degree of stability and bearing capacity to ensure their safety and stability under conditions such as water level fluctuations and erosion.
[0003] Thin-layer slope rolling construction technology is an efficient embankment construction method. It is achieved by layering gravel onto the slope and using suitable compaction equipment to achieve the desired compaction and stability.
[0004] Existing slope rollers use excavators as mobile anchors. Due to the excavators' bulk, they require a sufficiently spacious construction site to accommodate them. For dikes with complex construction environments where excavators cannot be positioned, moving the roller becomes a technical challenge. Continuing to use the excavators as mobile anchors requires constructing a platform to facilitate the excavator's work, which inadvertently increases the workload, reduces construction efficiency, and increases economic costs. There is an urgent need for a device that can improve construction efficiency by rolling thin layers of gravel into slopes. Summary of the Invention
[0005] The technical problem to be solved by the utility model is to overcome the shortcomings of the prior art and provide a sand and gravel thin layer slope rolling device with simple structure, low cost and small footprint.
[0006] The technical solution adopted to solve the above technical problems is: a thin layer of gravel slope rolling device, including a vibrating rolling wheel, a vibrating rolling wheel and a rolling winch are arranged on the mobile cart, the rolling winch is located on the rear side of the movement direction of the vibrating rolling wheel, the wire rope of the rolling winch is connected to the vibrating rolling wheel, and pulling ears are arranged on the left and right sides of the mobile cart, and a traction mechanism is arranged on the left or right side of the mobile cart, and the traction mechanism is connected to the pulling ears through a wire rope. The mobile cart is provided with a miter plate on the front side of the bottom plate and a walking mechanism at the bottom. The plane where the vibrating rolling wheel is located on the upper surface of the bottom plate is an inclined surface inclined toward the slope surface, and the walking direction of the walking mechanism is perpendicular to the movement direction of the vibrating rolling wheel.
[0007] As a preferred technical solution, the traveling mechanism 4 includes a traveling wheel mechanism and a guide rail. Four traveling wheel mechanisms are matched on two guide rails, and two traveling wheel mechanisms are matched on each guide rail.
[0008] As an optimal technical solution, the guide rail is I-shaped; the walking wheel mechanism is: a main walking wheel is provided in the middle of the mounting frame, and auxiliary walking wheels matching the side surfaces of the guide rail are provided on the left and right sides, and the main walking wheel runs on the upper surface of the guide rail.
[0009] As a preferred technical solution, the traction mechanism is a winch.
[0010] The beneficial effects of the utility model are as follows:
[0011] This new type of construction has a simple structure and is easy to operate. It can complete the slope rolling task in a shorter time, thereby improving construction efficiency. Compared with the traditional technology of using an excavator as a mobile anchor, this new type of construction has a low production cost, reduces the dependence on large construction equipment, reduces construction costs, and can operate in a variety of slope environments, showing strong adaptability. BRIEF DESCRIPTION OF THE DRAWINGS
[0012] Figure 1 It is a structural diagram of the present utility model.
[0013] Figure 2 yes Figure 1 Top view of .
[0014] Among them: vibrating rolling wheel 1, rolling winch 2, mobile cart 3, traveling mechanism 4, mounting frame 41, main traveling wheel 42, auxiliary traveling wheel 43, guide rail 5, traction mechanism 6. DETAILED DESCRIPTION
[0015] The present invention will be further described in detail below with reference to the accompanying drawings and examples, but the present invention is not limited to the following embodiments.
[0016] exist Figure 1 、 2 In the embodiment of the thin-layer gravel slope rolling device, a mobile cart 3 is provided with a vibrating rolling wheel 1 and a rolling winch 2. The rolling winch 2 is located on the rear side of the vibrating rolling wheel 1 in its direction of movement. The steel wire rope of the rolling winch 2 is connected to the vibrating rolling wheel 1. Pull ears are welded to the left and right sides of the mobile cart 3. A traction mechanism 6 is fixedly mounted on the ground on one side of the mobile cart 3 perpendicular to its direction of movement. The traction mechanism 6 is connected to the pull ear via a steel wire rope. The traction mechanism 6 is a winch. The mobile cart 3 has a miter plate inclined at the front side of its base plate and a running mechanism 4 at the bottom. The running direction of the running mechanism 4 is perpendicular to the direction of movement of the vibrating rolling wheel 1. The plane on the upper surface of the base plate where the vibrating rolling wheel 1 is located is an inclined surface inclined toward the slope surface. The inclined surface cooperates with the miter plate to accommodate slope operations.
[0017] The traveling mechanism 4 includes a traveling wheel mechanism and a guide rail 5. Four traveling wheel mechanisms are matched and mounted on two guide rails 5, and two traveling wheel mechanisms are matched and mounted on each guide rail 5. The guide rail 5 is an I-shaped guide rail for the traveling wheel mechanism to be clamped on the guide rail 5, thereby improving the stability of the mobile vehicle 3.
[0018] The wheel mechanism of this embodiment includes a mounting frame 41, a main wheel 42, and auxiliary wheels 43. The main wheel 42 is fixedly mounted in the middle of the mounting frame 41, and auxiliary wheels 43 are mounted on the left and right sides to match the side surfaces of the guide rail 5. The auxiliary wheels 43 are used to provide additional support to help the device maintain stability on slopes. The main wheel 42 runs on the upper surface of the track.
[0019] The working principle of this utility model is as follows:
[0020] The guide rail 5 is laid above the slope to be constructed. The utility model is arranged at one end of the slope. The rolling winch 2 lowers the vibrating rolling wheel 1, and the vibrating rolling wheel 1 moves along the slope to the bottom of the slope. The vibrating rolling wheel 1 is manually turned on, and the rolling winch 2 pulls up the vibrating rolling wheel 1. The vibrating rolling wheel 1 rolls the slope while moving upward along the slope. When it reaches the mobile cart 3, the vibrating rolling wheel 1 is manually turned off to stop working. The winch as the traction mechanism 6 pulls the mobile cart 3 to move one workstation to carry out the rolling work at the next workstation until the entire slope is completed.
Claims
1. A device for rolling a thin layer of gravel on a slope, comprising a vibrating rolling wheel, characterized in that: The mobile cart is provided with a vibrating rolling wheel and a rolling winch. The rolling winch is located at the rear side of the movement direction of the vibrating rolling wheel. The wire rope of the rolling winch is connected to the vibrating rolling wheel. Pulling ears are provided on the left and right sides of the mobile cart. A traction mechanism is provided on the left or right side of the mobile cart. The traction mechanism is connected to the pulling ears through a wire rope. The mobile cart is provided with a miter plate on the front side of the bottom plate and a walking mechanism at the bottom. The plane where the vibrating rolling wheel is located on the upper surface of the bottom plate is an inclined surface inclined toward the slope surface, and the walking direction of the walking mechanism is perpendicular to the movement direction of the vibrating rolling wheel.
2. The device for rolling a thin layer of gravel on a slope according to claim 1, characterized in that: The traveling mechanism comprises a traveling wheel mechanism and a guide rail. Four traveling wheel mechanisms are matched on two guide rails, and two traveling wheel mechanisms are matched on each guide rail.
3. The device for rolling a thin layer of gravel on a slope according to claim 2, characterized in that: The guide rail is I-shaped; the walking wheel mechanism is: a main walking wheel is provided in the middle of the mounting frame, and auxiliary walking wheels matching the side surfaces of the guide rail are provided on the left and right sides, and the main walking wheel runs on the upper surface of the guide rail.
4. The device for rolling a thin layer of gravel on a slope according to claim 1, characterized in that: The traction mechanism is a winch.