Treatment device for solidifying and stabilizing slope greening soil

By introducing a low-speed motor-driven mixing box and blowing assembly into the slope greening treatment device, the problems of long mixing time of soil curing agent and inconvenient storage of liquid guide hoses are solved, and efficient mixing and beautiful soil curing treatment are achieved.

CN223151207UActive Publication Date: 2025-07-25YANGZHOU ZHUBO ENVIRONMENTAL ENG CO LTD
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Patent Information

Application Number
CN202422356437.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-26
Publication Date
2025-07-25
Estimated Expiration
2034-09-26

AI Technical Summary

Technical Problem

The existing slope greening treatment device has a single mixed structure, which leads to a long mixing time between soil curing agent and diluted water, affects the curing efficiency, and lacks a liquid guide hose storage structure, resulting in inconvenience in use and poor aesthetics.

Method used

A processing device including a mixing box and a blowing component driven by a low-speed motor is designed. The transmission rod and the mixing mesh plate are driven by a low-speed motor to mix liquid soil curing agent and diluted water, and air blowing in by an air pump to improve mixing uniformity. It is equipped with a protective case and a storage rod to store liquid guide hose.

Benefits of technology

It improves the mixing uniformity and efficiency of soil curing agent and diluted water, simplifies the storage process of the liquid guide hose, and improves the aesthetics of the device and the convenience of operation.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223151207U_ABST
Patent Text Reader

Abstract

The utility model provides a treatment device for solidifying and stabilizing slope greening soil, which comprises a supporting base plate, a solidifying treatment assembly is arranged on the upper end face of the supporting base plate, an air blowing assembly is arranged at the left end of the solidifying treatment assembly, and a low-speed motor drives a transmission rod to rotate at a low speed, so that the transmission rod can drive a follow-up rod and a connecting rod to rotate at a low speed together. A connecting rod can drive a mixing screen plate to rotate to mix the liquid soil stabilizer and dilution water in the mixing box, an air pump can be started to blow air into an air inlet cavity, and the air inlet cavity can guide air into a plurality of spiral nozzles through an air guide cavity and a one-way valve; air is sprayed outwards by the plurality of spiral nozzles and enters the liquid soil stabilizer and the dilution water to be fused, so that the mixing uniformity and efficiency of the liquid soil stabilizer and the dilution water are improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of slope greening soil solidification, in particular to a treatment device for slope greening soil solidification and stability. Background Technique

[0002] Slope greening is a new ecological slope protection method that can effectively protect the exposed slope surface. It is combined with the traditional engineering slope protection to effectively realize the ecological vegetation restoration of the slope surface. Before greening the slope, a corresponding treatment device is needed to spray the soil solidifying agent on the surface of the slope soil for solidification and stability treatment, and then a layer of greening planting soil is laid on the surface of the solidified slope soil for planting and greening, so as to ensure the stability of the slope soil and improve the beauty of the slope at the same time.

[0003] However, the mixing structure in the existing treatment device is single, resulting in the need for long-term stirring to fully mix the soil solidifying agent and dilution water during actual use, thus affecting the subsequent slope soil solidification efficiency. In addition, the existing treatment device does not have a storage structure for the liquid guide hose, so that the liquid guide hose can only be scattered and stacked on the mobile platform after use. This storage method not only makes the liquid guide hose prone to cross entanglement during subsequent taking, but also has poor use aesthetics. Content of the Utility Model

[0004] The purpose of the utility model is to provide a treatment device for slope greening soil solidification and stability to solve the problems put forward in the above background technique.

[0005] To achieve the above purpose, the utility model provides the following technical scheme:

[0006] A treatment device for slope greening soil solidification and stability, including a push-pull handlebar and a support base plate. The left side of the upper end surface of the support base plate is fixedly connected with a push-pull handlebar. A solidification treatment component is arranged on the upper end surface of the support base plate, and the solidification treatment component is used for solidifying and stabilizing the slope soil. An air blowing component is arranged at the left end of the solidification treatment component, and the air blowing component is used to improve the mixing uniformity of the solidification treatment component.

[0007] Preferably, the curing component includes a low-speed motor, a transmission rod, a mixing tank, a plugging box cover, a feeding hopper, a connecting rod, a mixing screen plate, a valve, a high-pressure water pump, a liquid guide hose, and a spray head. A mixing tank is fixedly connected to the left side of the upper end surface of the support substrate. A plugging box cover is installed on the upper end surface of the mixing tank. A feeding hopper is fixedly connected to the middle position of the upper end surface of the plugging box cover. A valve is installed at the lower side outlet of the right end surface of the mixing tank. A high-pressure water pump is installed at the outlet of the right end surface of the valve. A liquid guide hose is connected to the outlet of the upper end surface of the high-pressure water pump. A spray head is installed at the outlet end of the liquid guide hose. A low-speed motor is installed on the right end surface of the mixing tank. A transmission rod is installed at the left end of the low-speed motor. A connecting rod is arranged on the lower side of the circumferential side of the transmission rod. A mixing screen plate is arranged at the lower end of the connecting rod.

[0008] Preferably, the air blowing component includes a follower rod, an air pump, a support plate, and an air inlet cavity. A support plate is fixedly connected to the left end surface of the mixing tank. An air pump is installed on the upper end surface of the support plate. An air inlet cavity is opened on the left side inside the transmission rod. A follower rod is arranged on the upper side of the circumferential side of the transmission rod.

[0009] Preferably, an air guide cavity is opened inside the follower rod, and the air guide cavity is communicated with the air inlet cavity. A plurality of one-way valves are installed on the circumferential side of the follower rod. A spiral nozzle is installed at the outlet of the lower end surface of the one-way valve. A sealing retaining ring is embedded on the left end surface of the air inlet cavity.

[0010] Preferably, a protective shell is fixedly connected to the right side of the upper end surface of the support substrate. A storage rod is fixedly connected to the middle position inside the protective shell.

[0011] Preferably, mechanical seals are symmetrically installed on the left and right sides of the inner wall of the mixing tank. The plugging box cover is of a detachable structure.

[0012] Preferably, a movable caster with a foot brake is installed on the left side of the lower end surface of the support substrate. A fixed caster with a foot brake is installed on the right side of the lower end surface of the support substrate.

[0013] Compared with the prior art, the beneficial effects of the utility model are:

[0014] 1. During the process of solidifying and stabilizing the slope soil, by driving the transmission rod to rotate slowly with a low-speed motor, the transmission rod can drive the follower rod and the connecting rod to rotate slowly together. The connecting rod will drive the mixing mesh plate to rotate to mix the liquid soil stabilizer and dilution water inside the mixing tank. After the mixing is completed, start the high-pressure water pump, so that the mixed liquid soil stabilizer inside the mixing tank is sprayed out through the liquid guide hose and the spray head to spray the slope soil area, so that the sprayed liquid soil stabilizer can solidify and stabilize the slope soil. Moreover, the fixedly connected protective shell and storage rod also facilitate the staff to wind and store the unused liquid guide hose for protection, which not only improves the aesthetic appearance of the device, but also facilitates the staff to take and use the guiding hose later;

[0015] 2. By starting the air pump, the air pump can blow air into the air inlet cavity, and the air inlet cavity will guide the air to multiple spiral nozzles through the air guide cavity and the one-way valve, so that the multiple spiral nozzles spray the air outwards and into the liquid soil stabilizer and dilution water to fuse, thereby improving the mixing uniformity and efficiency of the liquid soil stabilizer and the dilution water. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 is a schematic diagram of the main structure of the present utility model;

[0017] Figure 2 is a front sectional view of the air blowing component and the solidification treatment component of the present utility model;

[0018] Figure 3 is a rear view of the solidification treatment component of the present utility model;

[0019] Figure 4 is a partial structure diagram of the air blowing component and the solidification treatment component of the present utility model;

[0020] Figure 5 is Figure 2 an enlarged view of A in

[0021] In the figure: 1. Push-pull handle rod; 2. Support base plate; 3. Movable caster with brake; 4. Air blowing component; 41. Follower rod; 42. Air pump; 43. Support plate; 44. One-way valve; 45. Spiral nozzle; 46. Sealing ring; 47. Air inlet cavity; 48. Air guide cavity; 5. Solidification treatment component; 51. Low-speed motor; 52. Transmission rod; 53. Mixing tank; 531. Mechanical seal; 54. Sealing box cover; 55. Feeding hopper; 56. Connecting rod; 57. Mixing mesh plate; 58. Valve; 59. High-pressure water pump; 511. Protective shell; 512. Liquid guide hose; 513. Storage rod; 514. Spray head; 6. Fixed caster with brake. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0022] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.

[0023] Please refer to Figures 1-5 , the present invention provides a technical solution:

[0024] Embodiment 1:

[0025] A treatment device for solidifying and stabilizing the soil for slope greening includes a push-pull handle 1 and a support substrate 2. The push-pull handle 1 is fixedly connected to the left side of the upper end face of the support substrate 2. The push-pull handle 1 facilitates the staff to manually push and pull the support substrate 2. A foot-brake movable caster 3 is installed on the left side of the lower end face of the support substrate 2, and a foot-brake fixed caster 6 is installed on the right side of the lower end face of the support substrate 2. The foot-brake movable caster 3 and the foot-brake fixed caster 6 not only make it more labor-saving and convenient for the support substrate 2 to move, but also have the self-locking ability themselves. A solidification treatment component 5 is arranged on the upper end face of the support substrate 2, and the solidification treatment component 5 is used for solidifying and stabilizing the slope soil. A blowing component 4 is arranged at the left end of the solidification treatment component 5, and the blowing component 4 is used to improve the mixing uniformity of the solidification treatment component 5.

[0026] The solidification treatment component 5 includes a low-speed motor 51, a transmission rod 52, a mixing box 53, a sealing box cover 54, a feeding hopper 55, a connecting rod 56, a mixing mesh plate 57, a valve 58, a high-pressure water pump 59, a liquid guide hose 512 and a spray head 514. The mixing box 53 is fixedly connected to the left side of the upper end face of the support substrate 2. The mixing box 53 can temporarily store a certain amount of liquid soil solidifying agent. The sealing box cover 54 is installed on the upper end face of the mixing box 53. The sealing box cover 54 is a detachable structure. The detachable sealing box cover 54 can not only seal the upper end face of the mixing box 53, but also facilitate the staff to maintain and clean the inside of the mixing box 53 later. The middle position of the upper end face of the sealing box cover 54 is fixedly connected with a feeding hopper 55. The feeding hopper 55 facilitates the staff to introduce the required amount of liquid soil solidifying agent and dilution water into the mixing box 53. A protective cover is clamped on the upper end face of the feeding hopper 55. The protective cover prevents the liquid soil solidifying agent inside the mixing box 53 from splashing out through the feeding hopper 55 to the outside.

[0027] A valve 58 is installed at the lower side outlet of the right end face of the mixing tank 53. The valve 58 facilitates the staff to control the on-off of the liquid soil curing agent flowing into the high-pressure water pump 59. A high-pressure water pump 59 is installed at the outlet of the right end face of the valve 58. When the high-pressure water pump 59 is working, it can pump the liquid soil curing agent inside the mixing tank 53 into the liquid guiding hose 512. The outlet at the upper end face of the high-pressure water pump 59 is connected to the liquid guiding hose 512. The outlet end of the liquid guiding hose 512 is installed with a spray head 514. The liquid guiding hose 512 can guide the liquid soil curing agent into the spray head 514 so that the spray head 514 can spray the liquid soil curing agent outwards to solidify the slope soil. A low-speed motor 51 is installed on the right end face of the mixing tank 53. When the low-speed motor 51 is working, it can drive the transmission rod 52 to rotate at a low speed. The left end of the low-speed motor 51 is installed with the transmission rod 52. The transmission rod 52 is connected to the follower rod 41 and the connecting rod 56 by welding. The transmission rod 52 can drive the follower rod 41 and the connecting rod 56 to rotate together. The lower side of the circumferential side of the transmission rod 52 is provided with the connecting rod 56. The connecting rod 56 is connected to the mixing mesh plate 57 by welding. The lower end of the connecting rod 56 is provided with the mixing mesh plate 57. The connecting rod 56 can drive the mixing mesh plate 57 to rotate together so that the rotating mixing mesh plate 57 can mix the liquid soil curing agent and the dilution water inside the mixing tank 53.

[0028] On the upper right side of the upper end face of the support substrate 2, a protective shell 511 is fixedly connected. The protective shell 511 is connected to the liquid guiding hose 512 in the storage state and the support substrate 2 by welding. The protective shell 511 can protect the liquid guiding hose 512 in the storage state. In the middle position inside the protective shell 511, a storage rod 513 is fixedly connected. The storage rod 513 facilitates the staff to wind and store the unused liquid guiding hose 512. On the left and right sides of the inner wall of the mixing tank 53, mechanical seals 531 are symmetrically installed. The mechanical seals 531 are matched with the transmission rod 52. The mechanical seals 531 make the sealing performance between the transmission rod 52 and the mixing tank 53 better. On the left side of the front end face of the mixing tank 53, a control panel is installed. And the output end of the control panel is connected to the air pump 42, the high-pressure water pump 59 and the low-speed motor 51 through wires respectively. The control panel facilitates the staff to control the air pump 42, the high-pressure water pump 59 and the low-speed motor 51 to work according to requirements. Since the detailed structure and working principle inside the control panel are relatively mature in the prior art, no more details will be described here.

[0029] Embodiment 2:

[0030] On the basis of Embodiment 1, in this embodiment, by starting the air pump 42, the air pump 42 can blow air into the air inlet cavity 47, and the air inlet cavity 47 will guide the air into the multiple spiral nozzles 45 through the air guiding cavity 48 and the one-way valve 44, so that the multiple spiral nozzles 45 spray the air outwards and enter the liquid soil curing agent and the dilution water to be fused, thereby improving the mixing uniformity and efficiency of the liquid soil curing agent and the dilution water.

[0031] The air blowing assembly 4 includes a follower rod 41, an air pump 42, a support plate 43 and an air inlet chamber 47. A support plate 43 is fixedly connected to the left end face of the mixing tank 53. The support plate 43 is connected to the mixing tank 53 by welding. The support plate 43 can support and fix the air pump 42. The air pump 42 is installed on the upper end face of the support plate 43. The outlet of the air pump 42 is communicated with the inlet of the air inlet chamber 47. When the air pump 42 works, it can blow air into the air inlet chamber 47. An air inlet chamber 47 is formed on the left side inside the transmission rod 52. The air inlet chamber 47 can conduct air to the air guiding chamber 48. A follower rod 41 is arranged on the upper side of the circumferential surface of the transmission rod 52. The follower rod 41 not only has the ability to assist in stirring, but also can support the one-way valve 44. An air guiding chamber 48 is formed inside the follower rod 41, and the air guiding chamber 48 is communicated with the air inlet chamber 47. The outlet of the air guiding chamber 48 is communicated with the inlet of the one-way valve 44. The air guiding chamber 48 can conduct air to a plurality of one-way valves 44. A plurality of one-way valves 44 are installed on the circumferential surface of the follower rod 41, and the plurality of one-way valves 44 have the same specifications. The one-way valve 44 prevents external liquid soil curing agent and dilution water from entering the air guiding chamber 48 through the spiral nozzle 45. A spiral nozzle 45 is installed at the outlet of the lower end face of the one-way valve 44. A plurality of spiral nozzles 45 are installed, and the plurality of spiral nozzles 45 have the same specifications. The plurality of spiral nozzles 45 can eject air outwards. A sealing ring 46 is embedded on the left end face of the air inlet chamber 47, and the sealing ring 46 makes the sealing between the air inlet chamber 47 and the outlet of the air pump 42 better.

[0032] Working principle: During the process of solidifying and stabilizing the slope soil, the staff first move this device to the required position beside the slope. At this time, lock the movable caster wheels 3 with foot brakes and the fixed caster wheels 6 with foot brakes to prevent the support base plate 2 from moving again. Then connect the input end of the control panel to an external power supply through a wire. After the connection is completed, open the protective cover and pour the required amount of external liquid soil stabilizer and dilution water into the mixing tank 53 through the input hopper 55. After pouring, snap the protective cover onto the upper end of the input hopper 55. At this time, the low-speed motor 51 can be started to drive the transmission rod 52 to rotate at a low speed. The transmission rod 52 will drive the follower rod 41 and the connecting rod 56 to rotate at a low speed together. Furthermore, the connecting rod 56 will drive the mixing mesh plate 57 to rotate to mix the liquid soil stabilizer and dilution water inside the mixing tank 53. At the same time, start the air pump 42, and the air pump 42 can blow air into the air inlet cavity 47. The air inlet cavity 47 will conduct the air to the air guide cavity 48. Then the air guide cavity 48 will conduct the air to multiple spiral nozzles 45 through multiple one-way valves 44 so that the multiple spiral nozzles 45 can spray the air outwards. And the spiral nozzles 45 will also rotate together with the follower rod 41, making the sprayed air enter and blend with the liquid soil stabilizer and dilution water, thereby improving the mixing uniformity and efficiency of the liquid soil stabilizer and dilution water. When the liquid soil stabilizer and dilution water inside the mixing tank 53 are mixed for the required time, first turn off the air pump 42 and the low-speed motor 51 respectively. Then take out the spray head 514 and the liquid guide hose 512 from inside the protective shell 511, and align the spray head 514 with the slope soil area to be solidified. Immediately afterwards, another staff member opens the valve 58 and starts the high-pressure water pump 59 to make the high-pressure water pump 59 work to pump the mixed liquid soil stabilizer inside the mixing tank 53 into the liquid guide hose 512. The liquid guide hose 512 will conduct the liquid soil stabilizer to the spray head 514. Then the spray head 514 will spray the liquid soil stabilizer outwards to spray the slope soil area, so that the sprayed liquid soil stabilizer can solidify and stabilize the slope soil. When all the liquid soil stabilizer inside the mixing tank 53 is pumped out, first turn off the high-pressure water pump 59 and the valve 58, and then wind and store the liquid guide hose 512 on the annular side of the storage rod 513.

[0033] Although the embodiments of the present invention have been shown and described, those of ordinary skill in the art can understand that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principles and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A treatment device for slope greening soil solidification and stabilization, comprising a push-pull handlebar (1) and a support substrate (2), characterized in that: On the left side of the upper end face of the support substrate (2), a push-pull handle rod (1) is fixedly connected. On the upper end face of the support substrate (2), a curing treatment component (5) is arranged, and the curing treatment component (5) is used for curing and stabilizing the slope soil. On the left end of the curing treatment component (5), a blowing component (4) is arranged, and the blowing component (4) is used to improve the mixing uniformity of the curing treatment component (5).

2. The treatment device for slope greening soil solidification and stabilization according to claim 1, characterized in that: The curing treatment component (5) includes a low-speed motor (51), a transmission rod (52), a mixing box (53), a sealing box cover (54), a feeding hopper (55), a connecting rod (56), a mixing mesh plate (57), a valve (58), a high-pressure water pump (59), a liquid guide hose (512), and a spray head (514). On the left side of the upper end face of the support substrate (2), a mixing box (53) is fixedly connected. On the upper end face of the mixing box (53), a sealing box cover (54) is installed. In the middle position of the upper end face of the sealing box cover (54), a feeding hopper (55) is fixedly connected. At the lower side outlet of the right end face of the mixing box (53), a valve (58) is installed. At the outlet of the right end face of the valve (58), a high-pressure water pump (59) is installed. At the outlet of the upper end face of the high-pressure water pump (59), a liquid guide hose (512) is connected. At the outlet end of the liquid guide hose (512), a spray head (514) is installed. On the right end face of the mixing box (53), a low-speed motor (51) is installed. On the left end of the low-speed motor (51), a transmission rod (52) is installed. On the lower side of the circumferential side of the transmission rod (52), a connecting rod (56) is arranged. At the lower end of the connecting rod (56), a mixing mesh plate (57) is arranged.

3. The treatment device for slope greening soil solidification and stabilization according to claim 2, characterized in that: The blowing component (4) includes a follower rod (41), an air pump (42), a support plate (43), and an air inlet cavity (47). On the left end face of the mixing box (53), a support plate (43) is fixedly connected. On the upper end face of the support plate (43), an air pump (42) is installed. On the left side inside the transmission rod (52), an air inlet cavity (47) is opened. On the upper side of the circumferential side of the transmission rod (52), a follower rod (41) is arranged.

4. A treatment device for slope greening soil solidification and stabilization according to claim 3, characterized in that: Inside the follower rod (41), an air guide cavity (48) is opened, and the air guide cavity (48) is communicated with the air inlet cavity (47). On the circumferential side of the follower rod (41), a plurality of one-way valves (44) are installed. At the outlet of the lower end face of the one-way valve (44), a spiral nozzle (45) is installed. On the left end face of the air inlet cavity (47), a sealing ring (46) is embedded.

5. A treatment device for slope greening soil solidification and stabilization according to claim 1, characterized in that: On the right side of the upper end face of the support substrate (2), a protective shell (511) is fixedly connected. In the middle position inside the protective shell (511), a storage rod (513) is fixedly connected.

6. The treatment device for slope greening soil solidification and stabilization according to claim 2, characterized in that: On the left and right sides of the inner wall of the mixing box (53), mechanical seals (531) are symmetrically installed. The sealing box cover (54) is of a detachable structure.

7. A treatment device for slope greening soil solidification and stabilization according to claim 1, characterized in that: On the left side of the lower end face of the support substrate (2), a movable caster with a foot brake (3) is installed. On the right side of the lower end face of the support substrate (2), a fixed caster with a foot brake (6) is installed.