Stone alkali efflorescence treatment device
By designing a stone alkali reflux treatment device including push plates, stirring components, cleaning components, water absorption components and coating components, the building quality and service life problems caused by the stone alkali reflux phenomenon are solved, and efficient cleaning and uniform application of protective agents are achieved, reducing the risk of alkali reflux.
Patent Information
- Application Number
- CN202421924647.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-09
- Publication Date
- 2025-06-13
- Estimated Expiration
- 2034-08-09
AI Technical Summary
Stone is prone to alkali reflux during construction, which affects the quality and service life of the building. The existing technology mainly relies on manual cleaning efficiency and is difficult to apply protective agents evenly.
A stone alkali reflux treatment device is designed, including push plate, stirring assembly, cleaning assembly, water absorption assembly and coating assembly. Through the walking assembly, it moves to the stone alkali reflux area, mixes cleaning agent and water with the agitator, and cleanses the cleaning assembly for brushing and cleaning, the water absorption assembly recycles sewage, and the coating assembly evenly applies protective agent.
The cleaning efficiency of the stone alkali rebate area is improved, and the coating is made more uniform through water absorption treatment, reducing the risk of alkali rebate caused by contact with water on the stone surface, and ensuring the improvement of building quality and service life.
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Figure CN222970419U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of stone materials, in particular to a device for treating stone material efflorescence. Background Art
[0002] In recent years, with the rapid development of the construction industry, stone materials, as an important building material, have been widely used in various construction projects. However, some stone materials have shown the phenomenon of efflorescence during the construction process, which has seriously affected the construction quality and service life.
[0003] As time goes by, when the moisture on the stone panel evaporates completely, it crystallizes into a white powdery substance, forming alkali spots and alkali immersion phenomena. If not treated in time, the white substances on the stone surface will agglomerate, making the cleaning more troublesome. At present, mostly workers use brushes to clean the stone surface and then apply a protective agent. The manual cleaning efficiency is low, and it is difficult to apply the protective agent evenly. Summary of the Utility Model
[0004] The technical problem to be solved by the utility model is: in view of the above problems, to provide a device for treating stone material efflorescence.
[0005] The technical solution adopted by the utility model is: a device for treating stone material efflorescence, characterized by comprising:
[0006] A push plate, at the bottom of which there is a traveling component for driving the push plate to move to the stone material efflorescence area;
[0007] A stirring component, arranged at the top of the advancing end of the push plate, for stirring and mixing a cleaning agent and water to form a cleaning liquid;
[0008] A cleaning component, arranged at the bottom of the advancing end of the push plate, corresponding to and communicating with the stirring component, for brushing and cleaning the stone material efflorescence area by means of the cleaning liquid;
[0009] A water absorption component, arranged at the middle position of the push plate, for recovering the sewage generated during the cleaning process of the cleaning component;
[0010] A coating component, arranged at the end of the push plate far from the advancing end, for coating the cleaned stone material efflorescence area.
[0011] By means of the above technical means, the device is moved to the area where the stone needs to be processed by the walking component. The cleaning agent and water are mixed by the stirring component to form a cleaning liquid. The cleaning component uses the cleaning liquid to clean the efflorescence area of the stone and generates sewage. The water absorption component absorbs the generated sewage for subsequent coating. Finally, the coating component performs coating treatment on the surface of the stone, so that the surface of the stone is isolated from water and the risk of efflorescence caused by contact with water is reduced.
[0012] In some embodiments, the stirring component includes a mixing tank, a stirring rod, and a first driving motor. The mixing tank is installed on the top of the push plate. A pipe orifice for adding the cleaning agent and water is provided on the top of the mixing tank. The stirring rod is installed in the mixing tank. The first driving motor is installed on the outer side wall of the mixing tank. The output end of the first driving motor is connected to the end of the stirring rod. A discharge pipe communicating with the cleaning component is provided at the bottom of the mixing tank, and a pipe valve for easy control is provided in the discharge pipe.
[0013] In some embodiments, the cleaning component includes a brush roller and a second driving motor. The brush roller is rotatably connected to the bottom of the push plate through a mounting block. The brush roller is correspondingly communicated with the output end of the stirring component. The second driving motor is provided on the mounting block, and the output end of the second driving motor is connected to the end of the brush roller.
[0014] In some embodiments, the water absorption component includes a water absorber, a sewage bucket, a fixing column, a water scraping plate, and a water absorption trough body. The water absorber and the sewage bucket are arranged at the middle position on the top of the push plate. The water absorber and the sewage bucket are communicated through a pipe. The water scraping plate is installed on the bottom of the push plate through the fixing column. The water absorption trough body is provided on the side wall of the water scraping plate. The output end of the water absorber faces the water absorption trough body.
[0015] In some embodiments, the two water scraping plates are symmetrically arranged in an "eight" shape.
[0016] In some embodiments, the coating component includes a coating tank and a coating roller. The coating tank is arranged at the end of the push plate away from the advancing end. A pipe orifice for adding a protective agent is provided on the top of the coating tank. The coating roller is rotatably connected to the bottom of the push plate. A discharge pipe corresponding to the coating roller is provided at the bottom of the coating tank, and a pipe valve for easy control is provided inside the discharge pipe.
[0017] In some embodiments, the walking component includes pulleys. The pulleys are evenly installed at the bottom of the push plate. A cart handle is connected to the end of the push plate away from the advancing end.
[0018] The beneficial effects of the present utility model are:
[0019] 1. Move this device to the area where stone efflorescence occurs through the walking component. First, use the stirring component to stir and mix the cleaning agent and water to form a cleaning solution. Then, use the cleaning component to clean the area where stone efflorescence occurs with the cleaning solution. During the cleaning process, the cleaning component will generate some sewage. Use the water absorption component to recover the sewage for subsequent coating. Finally, use the coating component to coat the cleaned area where stone efflorescence occurs with a protective agent that can isolate the stone surface from water, reducing the risk of efflorescence caused by the contact between the stone surface and water. The cleaning efficiency of this device for the area where stone efflorescence occurs is higher. The water absorption treatment before coating makes the coating more uniform. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] Figure 1 is a schematic structural diagram of the first perspective of this application.
[0021] Figure 2 is a schematic structural diagram of the second perspective of this application.
[0022] Figure 3 is a schematic structural diagram of the third perspective of this application.
[0023] DESCRIPTION OF THE REFERENCE NUMERALS:
[0024] 1. Push plate; 2. Mixing tank; 3. Coating tank; 4. Pipe orifice; 5. First driving motor; 6. Stirring rod; 7. Discharge pipe; 8. Water absorber; 9. Sewage bucket; 10. Second driving motor; 11. Brush roller; 12. Coating roller; 13. Water scraping plate; 14. Water absorption tank body; 15. Fixed column.
[0025] This specification includes references to "one embodiment" or "embodiments". The appearance of the phrase "in one embodiment" or "in embodiments" does not necessarily refer to the same embodiment. Specific features, structures, or characteristics may be combined in any suitable manner consistent with this disclosure.
[0026] "Comprising", this term is open-ended. As used in the appended claims, this term does not exclude additional structures or steps.
[0027] "First", "second", etc. As used herein, these terms serve as labels for the nouns before them and do not imply any type of ordering (e.g., spatial, temporal, logical, etc.). DETAILED DESCRIPTION OF THE EMBODIMENTS
[0028] In order to enable those skilled in the art of this technology to better understand the solution of this utility model, the technical solution of this utility model will be further described below in conjunction with specific embodiments.
[0029] In conjunction with Figures 1 to 3As shown in the figure, this embodiment is a stone alkali return treatment device, including a push plate 1, a walking component, a stirring component, a cleaning component, a water absorption component and a coating component. A walking component is provided at the bottom of the push plate 1, and the walking component is used to drive the push plate 1 to move to the stone alkali return area. The stirring component is arranged at the top of the advancing end of the push plate 1, and the stirring component is used to stir and mix the cleaning agent and water to form a cleaning liquid. The cleaning component is arranged at the bottom of the advancing end of the push plate 1, and the cleaning component is correspondingly communicated with the stirring component. The cleaning component is used to brush and clean the stone alkali return area with the cleaning liquid. The water absorption component is arranged at the middle position of the push plate 1, and the water absorption component is used to recover the sewage generated during the cleaning process of the cleaning component. The coating component is arranged at the end of the push plate 1 away from the advancing end, and the coating component is used to coat the cleaned stone alkali return area.
[0030] In some embodiments, the stirring component includes a mixing tank 2, a stirring rod 6, and a first driving motor 5. The mixing tank 2 is installed on the top of the push plate 1. A pipe orifice 4 for adding the cleaning agent and water is provided at the top of the mixing tank 2. A stirring rod 6 is installed inside the mixing tank 2. A first driving motor 5 is installed on the outer side wall of the mixing tank 2, and the output end of the first driving motor 5 is connected to the end of the stirring rod 6. A discharge pipe 7 communicating with the cleaning component is provided at the bottom of the mixing tank 2, and a pipe valve for easy control is provided in the discharge pipe 7.
[0031] Through the pipe orifice 4 at the top of the mixing tank 2, it is convenient for the staff to add a certain proportion of water and cleaning agent into the inside of the mixing tank 2, and then start the first driving motor 5 to drive the stirring rod 6 to rotate, so that the water and the cleaning agent are evenly mixed to form a cleaning liquid for subsequent use.
[0032] Furthermore, the cleaning component includes a brush roller 11 and a second driving motor 10. The brush roller 11 is rotatably connected to the bottom of the push plate 1 through a mounting block. The position of the brush roller 11 corresponds to the position of the discharge pipe 7. The brush roller 11 and the mixing tank 2 are on the same horizontal center line and the same vertical center line. A second driving motor 10 is provided outside the mounting block, and the output end of the second driving motor 10 is connected to the end of the brush roller 11.
[0033] By controlling the opening of the discharge pipe 7 at the bottom of the mixing tank 2 through the pipe valve, the stirred cleaning liquid flows to the surface of the brush roller 11 through the discharge pipe 7. The second driving motor 10 can be used to drive the brush roller 11 to rotate, and the rotating brush roller 11 can brush and clean the stone alkali return position.
[0034] In some embodiments, the water absorption assembly includes a water absorber 8, a sewage bucket 9, a fixing column 15, a wiper 13 and a water absorption tank body 14. The water absorber 8 and the sewage bucket 9 are arranged at the middle position on the top of the push plate 1. The water absorber 8 and the sewage bucket 9 are connected through a pipeline. The wiper 13 is installed at the bottom of the push plate 1 through the fixing column 15. The fixing column 15 can support the wiper 13 to keep its structure stable during the water wiping process. Specifically, in this embodiment, the two groups of wipers 13 are symmetrically arranged in an "eight" shape, which can guide the water during the advancement of the push plate 1 to make the cleaning cleaner. The side wall of the wiper 13 is provided with a water absorption tank body 14, and the output end of the water absorber 8 faces the water absorption tank body 14.
[0035] The output end of the water absorber 8 generates a certain suction force on the water absorption tank body 14 of the wiper 13. During the advancement of the push plate 1, the water absorption tank body 14 is used to absorb the sewage on the stone surface, and then the sewage flows into the interior of the sewage bucket 9 through the pipeline of the water absorber 8 for subsequent centralized treatment, and the sewage on the stone surface is treated in time for subsequent coating.
[0036] In some embodiments, the coating assembly includes a coating box 3 and a coating roller 12. The coating box 3 is arranged at the end of the top of the push plate 1 away from the advancing end. The top of the coating box 3 is provided with a pipe orifice 4 for filling the protective agent. The coating roller 12 is rotatably connected to the bottom of the push plate 1. The coating roller 12 and the coating box 3 are on the same vertical center line. The bottom of the coating box 3 is provided with a discharge pipeline 7 corresponding to and communicating with the coating roller 12, and a pipeline valve for easy control is arranged inside the discharge pipeline 7.
[0037] The protective agent is added into the interior of the coating box 3 through the pipe orifice 4 at the top of the coating box 3. During the advancement of the push plate 1, the protective agent can be discharged from the interior of the discharge pipeline 7 at the bottom of the coating box 3 onto the surface of the coating roller 12. The coating roller 12 is in contact with the stone surface and can keep rotating during the advancement process, so as to realize uniform coating of the protective agent on the stone surface. The protective agent can isolate the stone surface from water and prevent the stone surface from reacting with water to appear the phenomenon of efflorescence.
[0038] In some embodiments, the traveling assembly includes pulleys. The pulleys are uniformly installed at the bottom of the push plate 1. A cart handle is connected to the end of the push plate 1 away from the advancing end, so as to facilitate the staff to push the device to work.
[0039] The implementation principle of an embodiment of a stone efflorescence treatment device is as follows:
[0040] First, the staff adds a certain proportion of water and cleaning agent into the mixing tank 2 through the pipe orifice 4 at the top of the mixing tank 2, and then uses the first driving motor 5 to drive the stirring rod 6 to rotate, so that the water and cleaning agent in the mixing tank 2 are fully stirred and evenly mixed to form a cleaning solution for subsequent use. Start the second driving motor 10 to drive the brush roller 11 to rotate. The cleaning solution in the mixing tank 2 flows to the surface of the brush roller 11 through the inside of the discharge pipe 7, and the position of the stone surface where alkali returns is scrubbed during the continuous rotation of the brush roller 11.
[0041] Then, a certain suction force is generated on the water suction tank body 14 of the water scraping plate 13 by the water suction device 8. During the advancement of the push plate 1, the sewage on the stone surface is absorbed through the water suction tank body 14, and then the sewage flows into the inside of the sewage bucket 9 through the pipe of the water suction device 8 for subsequent centralized treatment, cleaning the sewage on the stone surface, and facilitating the subsequent coating.
[0042] As the push plate 1 further advances, the protective agent is discharged from the inside of the discharge pipe 7 to the surface of the coating roller 12. The coating roller 12 is in contact with the ground, so that the protective agent is evenly applied to the stone surface during the advancement process. The protective agent can isolate the stone surface from water, thereby preventing the stone surface from reacting with water to cause the phenomenon of alkali return.
[0043] The above are all the preferred embodiments of the present invention, and the protection scope of the present invention is not limited accordingly. Therefore, all equivalent changes made according to the structure, shape, and principle of the present invention should be covered within the protection scope of the present invention.
Claims
1. A stone alkali treatment device, characterized in that: include: A push plate (1) is provided with a walking assembly at the bottom thereof, wherein the walking assembly is used to drive the push plate (1) to move to a stone alkali return area; A stirring assembly is arranged on the top of the travel end of the push plate (1), and is used to stir and mix the cleaning agent and water to form a cleaning liquid; A cleaning component is arranged at the bottom of the travel end of the push plate (1), the cleaning component is correspondingly connected to the stirring component, and the cleaning component is used to scrub and clean the alkali return area of the stone with the help of the cleaning liquid; A water absorption component is arranged in the middle of the push plate (1), and is used to recover the sewage generated during the cleaning process of the cleaning component; A coating component is arranged at the end of the push plate (1) away from the travel end, and the coating component is used to apply coating to the cleaned stone alkali return area.
2. The stone alkali treatment device according to claim 1, characterized in that: The stirring assembly comprises a mixing box (2), a stirring rod (6), and a first drive motor (5); the mixing box (2) is mounted on the top of the push plate (1); a nozzle (4) for filling cleaning agent and water is provided on the top of the mixing box (2); the stirring rod (6) is installed in the mixing box (2); the first drive motor (5) is installed on the outer wall of the mixing box (2); the output end of the first drive motor (5) is connected to the end of the stirring rod (6); a discharge pipe (7) connected to the cleaning assembly is provided at the bottom of the mixing box (2); a pipe valve for easy control is provided in the discharge pipe (7).
3. The stone alkali treatment device according to claim 1, characterized in that: The cleaning component comprises a brush roller (11) and a second drive motor (10); the brush roller (11) is rotatably connected to the bottom of the push plate (1) via a mounting block; the brush roller (11) is correspondingly connected to the output end of the stirring component; the mounting block is provided with the second drive motor (10); the output end of the second drive motor (10) is connected to the end of the brush roller (11).
4. The stone alkali treatment device according to claim 1, characterized in that: The water absorption assembly comprises a water absorber (8), a sewage bucket (9), a fixing column (15), a wiper plate (13) and a water absorption trough body (14); the water absorber (8) and the sewage bucket (9) are arranged at the middle position of the top of the push plate (1); the water absorber (8) and the sewage bucket (9) are connected through a pipeline; the wiper plate (13) is installed at the bottom of the push plate (1) through the fixing column (15); the water absorption trough body (14) is arranged on the side wall of the wiper plate (13); and the output end of the water absorber (8) faces the water absorption trough body (14).
5. The stone alkali treatment device according to claim 4 is characterized in that: The two groups of wiper blades (13) are symmetrically arranged in an "eight" shape.
6. The stone alkali treatment device according to claim 1, characterized in that: The paint assembly comprises a paint box (3) and a paint roller (12); the paint box (3) is arranged at the end of the top of the push plate (1) away from the travel end; the top of the paint box (3) is provided with a pipe opening (4) for filling a protective agent; the paint roller (12) is rotatably connected to the bottom of the push plate (1); the bottom of the paint box (3) is provided with a discharge pipe (7) corresponding to the paint roller (12); the inside of the discharge pipe (7) is provided with a pipe valve for easy control.
7. The stone alkali treatment device according to claim 1, characterized in that: The walking assembly comprises pulleys, and the pulleys are evenly mounted on the bottom of the push plate (1); the end of the push plate (1) away from the traveling end is connected to a trolley handle.