Aluminum formwork cleaning and washing equipment

CN116475137BActive Publication Date: 2026-08-21POWER (TIANJIN) TECH LTD CO
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Patent Information

Application Number
CN202310560502.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-05-17
Publication Date
2026-08-21
Estimated Expiration
2043-05-17

AI Technical Summary

Technical Problem

[0004]为了弥补以上不足,本申请提供了一种铝模板清理清洗设备,旨在改善清洗范围有限的问题

Benefits of technology

[0040]在一种具体的实施方案中,所述滑套的一端和所述滤网的一侧均与所述管体的内壁密封贴合。

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Abstract

The application provides an aluminum template cleaning and washing device and belongs to the technical field of high-pressure cleaning equipment. The aluminum template cleaning and washing device comprises a shell, a sliding rail, a driving motor and a high-pressure pump. A rotating shaft is rotatably installed in the shell, the rotating shaft is key-connected with a rotating disc, and a connecting rod is hingedly connected to the rotating disc. The sliding rail is fixed in the shell, a sliding block is rotatably installed on the surface of the sliding rail, one end of the connecting rod is hingedly connected to the sliding block, a bracket is arranged at the top end of the sliding block, and a flushing pipeline is installed on the surface of the bracket. The aluminum template is cleaned by the water flushing mode of the high-pressure pump and the flushing pipeline. The rotating shaft and the rotating disc are driven to rotate by the driving motor, the connecting rod on the surface of the rotating disc pulls the sliding block, the bracket and the flushing pipeline to move back and forth continuously, the flushing range of the flushing pipeline is increased by the movement, and the cleaning effect of the aluminum template is greatly improved.
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Description

Technical Field

[0001] This application relates to the field of high-pressure cleaning equipment, and more specifically, to an aluminum template cleaning and washing device. Background Technology

[0002] Aluminum alloy formwork is a type of formwork suitable for concrete engineering, made primarily of aluminum alloy profiles through machining and welding processes. The full name of aluminum alloy formwork is aluminum alloy formwork for concrete engineering. It is a new generation of formwork system following plywood formwork, combined steel formwork system, steel frame wood (bamboo) plywood system, large formwork system, and early stripping formwork system.

[0003] With the widespread use of aluminum formwork, rental companies, manufacturers, and even construction teams have large quantities of uncleaned aluminum formwork piled up on construction sites. While aluminum formwork can be reused after cleaning, it is a building formwork with large dimensions, and the cleaning range of cleaning equipment is limited, making it difficult to clean aluminum formwork effectively. Summary of the Invention

[0004] To overcome the above shortcomings, this application provides an aluminum template cleaning device, which aims to improve the problem of limited cleaning range.

[0005] This application provides an aluminum template cleaning device, including a housing, a slide rail, a drive motor, and a high-pressure pump. A rotating shaft is rotatably mounted inside the housing, and a turntable is keyed to the shaft. A connecting rod is hinged to the eccentric part of the turntable. The slide rail is fixed inside the housing, and a slider is slidably mounted on its surface. One end of the connecting rod is hinged to the slider, and a bracket is provided at the top of the slider. A flushing pipe is mounted on the surface of the bracket. The drive motor is connected to the housing, and its output shaft is drively connected to the rotating shaft. The high-pressure pump is located at the top of the housing, and its output end is connected to the flushing pipe.

[0006] In the above process, the input end of the high-pressure pump is connected to the municipal water source. The high-pressure pump can deliver water to the flushing pipeline, which sprays the water onto the surface of the aluminum template to flush it. When the drive motor is started, it drives the rotating shaft and turntable to rotate. This causes the connecting rod on the surface of the turntable to pull the slider back and forth continuously, thereby causing the bracket and flushing pipeline to move back and forth continuously. This movement increases the flushing range of the flushing pipeline, greatly improving the cleaning effect of the aluminum template.

[0007] In one specific implementation, the top of the housing is provided with a cover, and the surface of the cover is provided with a groove corresponding to the slider.

[0008] In the above implementation process, a cover is provided to seal the top of the housing, and the slide groove is provided to effectively prevent the cover from affecting the movement of the slider.

[0009] In one specific implementation, the bracket is a U-shaped rod, and both ends of the bracket extend downward to both sides of the housing, with the flushing pipe located at the top of the bracket.

[0010] In the above process, the bracket is placed on the surface of the housing, which restricts the direction of movement of the bracket and makes the movement of the bracket more stable.

[0011] In one specific implementation, the two side walls of the housing are provided with limiting strips, and the two downwardly extending ends of the bracket are slidably sleeved on the corresponding limiting strips.

[0012] In the above implementation process, when the bracket moves, the limiting strip can restrict the direction of movement of the bracket, which can make the movement of the bracket more stable.

[0013] In one specific implementation, the flushing pipeline includes a water supply pipeline and a flushing pipeline. The water supply pipeline is located at the upper end of the bracket and is connected to the output end of the high-pressure pump via a telescopic pipe. One end of the flushing pipeline is connected to the water supply pipeline, and the other end of the flushing pipeline is connected to a flushing nozzle.

[0014] In the above implementation process, the telescopic pipe can not only allow the high-pressure pump to deliver water to the water supply pipe, but also allow the telescopic pipe to extend and retract as the water supply pipe moves with the bracket, ensuring the stability of the water supply. The flushing pipe can deliver the water in the water supply pipe to the flushing nozzle, thereby spraying the water.

[0015] In one specific implementation, the upper surface of the bracket is provided with at least two protrusions for supporting the water supply pipe.

[0016] In the above implementation process, the protrusions are provided so that the bracket can better support the water supply pipe.

[0017] In one specific implementation, at least two flushing pipes are provided at intervals along the length of the water supply pipe, and the flushing pipes and the flushing nozzles are provided in a one-to-one correspondence.

[0018] In the above implementation process, setting up multiple flushing pipes and multiple flushing nozzles can increase the range of water spraying.

[0019] In one specific implementation, the flushing pipe is an L-shaped bend, and the flushing nozzle is inclined downwards.

[0020] In the above process, the downward-sloping flushing nozzles spray water in a tilted column, which has a stronger sewage discharge capacity when flushing aluminum formwork and greatly improves the flushing effect of aluminum formwork.

[0021] In one specific implementation, the telescopic tube is either a telescopic stainless steel tube or a corrugated tube.

[0022] In one specific embodiment, a base is provided at the lower end of the housing, and the drive motor is located at the lower end of the housing.

[0023] In the above implementation process, a base is added to support and erect the shell, increasing the distance between the shell and the ground.

[0024] In one specific embodiment, a fixed ring is provided inside the housing, and a moving ring is provided inside the fixed ring. The lower end of the moving ring is in clearance fit with the inner bottom of the housing. The side wall of the moving ring is in clearance fit with the inner wall of the fixed ring. An annular groove is formed on the side wall of the moving ring. A screw is threadedly connected to the side wall of the fixed ring, and a hemispherical protrusion is installed at the end of the screw facing the moving ring. The hemispherical protrusion is slidably inserted into the annular groove formed on the side wall of the moving ring. A bearing plate is installed at the upper end of the moving ring.

[0025] In the above process, the hemispherical protrusion at the end of the screw supports the moving ring, allowing the moving ring to rotate inside the fixed ring. This allows the carrier plate to rotate. When multiple aluminum templates are placed on the surface of the carrier plate, the rotating carrier plate can sequentially transport the multiple aluminum templates to the flushing pipeline for flushing. This provides strong continuity, greatly reducing the downtime of the high-pressure pump. Furthermore, while one aluminum template on the surface of the carrier plate is being flushed, other flushed aluminum templates on the surface of the carrier plate can be replaced simultaneously, achieving the effect of flushing and material replacement without interruption. This effectively saves the time for replacing aluminum templates and greatly improves efficiency.

[0026] Furthermore, the moving ring body is supported by the screw and the hemispherical protrusion at its end, and the moving ring body is rotatably installed inside the fixed ring body, thereby rotatably installing the bearing plate inside the housing. Compared with traditional bearing-type connectors, it is only necessary to rotate the screw to move the screw and the hemispherical protrusion, and move the hemispherical protrusion out of the annular groove on the side wall of the moving ring body, so that the moving ring body can be disassembled, making disassembly and assembly more convenient.

[0027] In one specific implementation, the turntable is fastened with a driving gear ring, the bearing plate is fastened with a driven gear ring, and the driving gear ring and the driven gear ring mesh with each other.

[0028] In the above implementation process, under the meshing transmission of the active gear ring and the passive gear ring, the drive motor can drive the carrier plate to rotate when the drive turntable rotates. The effect of driving the carrier plate to rotate can be achieved without adding a separate motor, which greatly reduces the cost. Furthermore, the simultaneous rotation of the turntable and the carrier plate allows the continuously reciprocating flushing pipeline to flush multiple aluminum templates on the surface of the carrier plate, which is more convenient for use.

[0029] In one specific implementation, the fixed ring, the moving ring, and the bearing disk are coaxially arranged, and the connection between the bearing disk and the moving ring is integrally formed.

[0030] In the above process, the one-piece molding design can improve the connection strength between the bearing plate and the moving ring.

[0031] In one specific implementation, the screw and the hemispherical protrusion are arranged in a one-to-one correspondence, and at least three screws are equidistantly arranged along the circumferential direction of the fixed ring body.

[0032] In the above implementation process, setting multiple screws and multiple hemispherical protrusions can better support the moving ring body and make the moving ring body more stable.

[0033] In one specific implementation, the sidewall of the bearing plate is provided with an annular groove for mounting the passive gear ring.

[0034] In the above implementation process, the annular groove is set to facilitate the installation of the passive gear ring.

[0035] In one specific implementation, the upper end face of the bearing plate is concave and conical, and a tube is provided at the center of the bearing plate. Limiting blocks are provided at intervals on the upper end face of the bearing plate. A water inlet hole is opened on the side wall of the tube above the bearing plate. The bottom end of the tube extends to the outside of the shell. A magnetic attractor is installed on the side wall of the tube.

[0036] In the above implementation process, the magnetic chuck can be a magnet. Specifically, the magnetic chuck can be cylindrical, with the upper end face of the support plate recessed to facilitate the concentration of the rinsing water at the pipe body. Furthermore, the water enters the pipe body through the water inlet hole on the side wall of the pipe body, and the magnetic chuck can attract magnetic substances in the water, which helps to remove the magnetic substances from the water and prevents the magnetic substances from being discharged into the outside world with the water, thus reducing environmental pollution.

[0037] Understandably, the magnetic material attracted by this magnet can be an iron-containing impurity.

[0038] In one specific implementation, at least three magnetic accumulators are spaced apart along the circumference of the tube. A conical base is slidably inserted into the inside of the tube, and a sliding sleeve is fixed to the side wall of the conical base. The sliding sleeve and the magnetic accumulator are arranged in a one-to-one correspondence. The sliding sleeve is a U-shaped sleeve, and the two ends of the sliding sleeve extend downward and fit onto the surface of the corresponding magnetic accumulator. A filter screen is installed between two adjacent sliding sleeves.

[0039] In the above process, the magnetic chuck can support the sliding sleeve, which in turn supports the filter screen. The sliding sleeve is placed above the magnetic chuck. When the water flows from top to bottom onto the surface of the filter screen, the filter screen can filter the water. The magnetic material attracted by the magnetic chuck will adhere to the surface of the sliding sleeve. The sliding sleeve separates the magnetic material from the magnetic chuck, greatly reducing the possibility of magnetic material adhering to the surface of the magnetic chuck. This can reduce the possibility of magnetic material scratching the magnetic chuck and effectively protect the magnetic chuck.

[0040] In one specific implementation, one end of the sliding sleeve and one side of the filter screen are both sealed and fitted to the inner wall of the tube.

[0041] In the above process, the sealed fit reduces the possibility of water passing between the inner wall of the pipe and the filter screen, which is more conducive to water filtration.

[0042] Beneficial effects: This application provides an aluminum formwork cleaning device, which cleans the aluminum formwork by rinsing it with water using a high-pressure pump and a flushing pipeline. The drive motor drives the rotating shaft and turntable to rotate, causing the connecting rod on the surface of the turntable to pull the slider, bracket and flushing pipeline to move back and forth continuously. This movement increases the flushing range of the flushing pipeline, greatly improving the cleaning effect of the aluminum formwork.

[0043] When cleaning aluminum formwork, the cleaning equipment requires that the previous aluminum formwork be removed after rinsing before the next aluminum formwork is placed in the cleaning area for cleaning. This makes it inconvenient to rinse multiple aluminum formwork continuously, which seriously affects the rinsing efficiency.

[0044] The meshing transmission of the active and passive gear rings causes the drive motor to rotate the rotating turntable, which in turn drives the carrier plate to rotate. When multiple aluminum templates are placed on the surface of the carrier plate, the rotating carrier plate can sequentially transport the aluminum templates to the flushing pipeline for flushing. This ensures high continuity and significantly reduces the downtime of the high-pressure pump. Furthermore, while one aluminum template on the carrier plate is being flushed, other flushed aluminum templates on the carrier plate can be replaced simultaneously, achieving the effect of flushing and material replacement without interruption. This effectively saves time when changing aluminum templates and greatly improves efficiency.

[0045] Furthermore, the moving ring body is supported by the screw and the hemispherical protrusion at its end, and the moving ring body is rotatably installed inside the fixed ring body, thereby rotatably installing the bearing plate inside the housing. Compared with traditional bearing-type connectors, it is only necessary to rotate the screw to move the screw and the hemispherical protrusion, and move the hemispherical protrusion out of the annular groove on the side wall of the moving ring body, so that the moving ring body can be disassembled, making disassembly and assembly more convenient.

[0046] The water used for cleaning aluminum formwork contains a large number of impurities, which can easily cause environmental pollution when discharged along with the water.

[0047] When rinsing the aluminum template on the surface of the bearing plate, the bearing plate with a concave upper end can concentrate the rinsing water into the pipe body. The water will enter the pipe body through the water inlet hole on the side wall of the pipe body. When the water flows from top to bottom to the surface of the filter screen, the filter screen can filter the water. The magnetic material attracted by the magnetic body will be adsorbed onto the surface of the sliding sleeve, thereby preventing magnetic material and impurities from being discharged into the outside world with the water and reducing environmental pollution.

[0048] In addition, the sliding sleeve separates the magnetic material from the magnetic body, greatly reducing the possibility of magnetic material adhering to the surface of the magnetic body and reducing the possibility of magnetic material scratching the magnetic body, thus effectively protecting the magnetic body. Attached Figure Description

[0049] To more clearly illustrate the technical solutions of the embodiments of this application, the drawings used in the embodiments will be briefly introduced below. It should be understood that the following drawings only show some embodiments of this application and should not be regarded as a limitation of the scope. For those skilled in the art, other related drawings can be obtained from these drawings without creative effort.

[0050] Figure 1 This is a schematic diagram of the aluminum template cleaning and washing equipment provided in the embodiments of this application;

[0051] Figure 2 A schematic diagram of the connection structure between the housing and the carrier disk provided for an embodiment of this application;

[0052] Figure 3 A schematic diagram of the shell structure provided for an embodiment of this application;

[0053] Figure 4 A schematic diagram of the connection structure between the drive motor and the slider provided in the embodiments of this application;

[0054] Figure 5 A schematic diagram of the flushing pipeline and high-pressure pump connection structure provided for an embodiment of this application;

[0055] Figure 6 A schematic diagram of the bearing plate structure from below, provided for an embodiment of this application;

[0056] Figure 7 A schematic diagram of the connection structure between the fixed ring and the moving ring provided in the embodiments of this application;

[0057] Figure 8 A schematic diagram of the internal structure of the tube provided for an embodiment of this application.

[0058] In the diagram: 100-Housing; 110-Rotating shaft; 120-Turntable; 130-Connecting rod; 140-Housing cover; 150-Limiting strip; 200-Slide rail; 210-Slider; 220-Bracket; 230-Flushing pipe; 231-Water supply pipe; 232-Flushing pipe; 233-Telescopic pipe; 234-Flushing nozzle; 300-Drive motor; 400-High pressure pump; 500-Base; 600-Fixed ring; 610-Moving ring; 620-Screw; 630-Hemispherical protrusion; 640-Bearing plate; 650-Active gear ring; 660-Passive gear ring; 700-Pipe body; 710-Limiting block; 720-Magnetic suction body; 730-Conical base; 740-Sliding sleeve; 750-Filter screen. Detailed Implementation

[0059] The technical solutions in the embodiments of this application will now be described with reference to the accompanying drawings.

[0060] Please see Figures 1-8 This application provides an aluminum template cleaning device, including a housing 100, a slide rail 200, a drive motor 300, and a high-pressure pump 400.

[0061] The slide rail 200 is located inside the housing 100, while the drive motor 300 and the high-pressure pump 400 are both connected to the housing 100.

[0062] A rotating shaft 110 is rotatably mounted inside the housing 100. The rotating shaft 110 is keyed to a turntable 120. A connecting rod 130 is hinged to the eccentric part of the turntable 120.

[0063] The slide rail 200 is fixed inside the housing 100, and a slider 210 is slidably mounted on the surface of the slide rail 200. One end of the connecting rod 130 is hinged to the slider 210. A bracket 220 is provided at the top of the slider 210, and a flushing pipe 230 is mounted on the surface of the bracket 220.

[0064] The drive motor 300 is connected to the housing 100, and the output shaft of the drive motor 300 is connected to the rotating shaft 110 in a transmission connection.

[0065] The high-pressure pump 400 is located at the top of the housing 100, and the output end of the high-pressure pump 400 is connected to the flushing pipeline 230.

[0066] In the above implementation process, the input end of the high-pressure pump 400 is connected to the municipal water source. The high-pressure pump 400 can deliver water to the flushing pipe 230. The flushing pipe 230 sprays water onto the surface of the aluminum template, thus flushing the aluminum template. When the drive motor 300 is started, the drive motor 300 drives the rotating shaft 110 and the turntable 120 to rotate. This causes the connecting rod 130 on the surface of the turntable 120 to pull the slider 210 back and forth continuously, thereby causing the bracket 220 and the flushing pipe 230 to move back and forth continuously. By moving, the flushing range of the flushing pipe 230 is increased, which greatly improves the cleaning effect of the aluminum template.

[0067] In one specific embodiment, a cover 140 is provided at the top of the housing 100, and a groove corresponding to the slider 210 is formed on the surface of the cover 140.

[0068] In the above implementation process, a cover 140 is provided to close the top of the housing 100, and the slide groove is provided to effectively prevent the cover 140 from affecting the movement of the slider 210.

[0069] In one specific implementation, the bracket 220 is a U-shaped rod, and both ends of the bracket 220 extend downward to both sides of the housing 100, with the flushing pipe 230 located at the top of the bracket 220.

[0070] In the above implementation process, the bracket 220 is fitted onto the surface of the housing 100, and the housing 100 can restrict the direction of movement of the bracket 220, making the movement of the bracket 220 more stable.

[0071] In one specific implementation, the two side walls of the housing 100 are provided with limiting strips 150, and the two downwardly extending ends of the bracket 220 are slidably sleeved on the corresponding limiting strips 150.

[0072] In the above implementation process, when the bracket 220 moves, the limiting strip 150 can restrict the direction of movement of the bracket 220, which can make the movement of the bracket 220 more stable.

[0073] In one specific implementation, the flushing pipeline 230 includes a water supply pipeline 231 and a flushing pipeline 232. The water supply pipeline 231 is located at the upper end of the bracket 220 and is connected to the output end of the high-pressure pump 400 through a telescopic pipe 233. One end of the flushing pipeline 232 is connected to the water supply pipeline 231, and the other end of the flushing pipeline 232 is connected to a flushing nozzle 234.

[0074] In the above implementation process, the telescopic pipe 233 is set up so that the high-pressure pump 400 can deliver water to the water supply pipe 231. When the water supply pipe 231 moves with the bracket 220, the telescopic pipe 233 can extend and retract to ensure the stability of the water supply. The flushing pipe 232 can deliver the water in the water supply pipe 231 to the flushing nozzle 234, thereby spraying the water.

[0075] In one specific implementation, the upper surface of the bracket 220 is provided with at least two protrusions for supporting the water supply pipe 231.

[0076] In the above implementation process, the protrusion is provided so that the bracket 220 can better support the water supply pipe 231.

[0077] In one specific implementation, at least two flushing pipes 232 are provided at intervals along the length of the water supply pipe 231, and the flushing pipes 232 and the flushing nozzles 234 are provided in a one-to-one correspondence.

[0078] In the above implementation process, setting up multiple flushing pipes 232 and multiple flushing nozzles 234 can increase the range of water spraying.

[0079] In one specific implementation, the flushing pipe 232 is an L-shaped bend, and the flushing nozzle 234 is inclined downward.

[0080] In the above process, the downward-sloping flushing nozzle 234 sprays water in an inclined column, which has a stronger sewage discharge capacity when flushing aluminum formwork and greatly improves the flushing effect of aluminum formwork.

[0081] In one specific implementation, the telescopic tube 233 is either a telescopic stainless steel tube or a corrugated tube.

[0082] In one specific embodiment, a base 500 is provided at the lower end of the housing 100, and a drive motor 300 is located at the lower end of the housing 100.

[0083] In the above implementation process, a base 500 is added to support and erect the shell 100, thereby increasing the distance between the shell 100 and the ground.

[0084] When cleaning aluminum formwork, the cleaning equipment requires that the previous aluminum formwork be removed after rinsing before the next aluminum formwork is placed in the cleaning area for cleaning. This makes it inconvenient to rinse multiple aluminum formwork continuously, which seriously affects the rinsing efficiency.

[0085] In one specific embodiment, a fixed ring 600 is provided inside the housing 100, and a movable ring 610 is provided inside the fixed ring 600. The lower end of the movable ring 610 is clearance-fitted with the inner bottom of the housing 100. The side wall of the movable ring 610 is clearance-fitted with the inner wall of the fixed ring 600. An annular groove is formed on the side wall of the movable ring 610. A screw 620 is threadedly connected to the side wall of the fixed ring 600. A hemispherical protrusion 630 is installed at the end of the screw 620 facing the movable ring 610. The hemispherical protrusion 630 is slidably inserted into the annular groove formed on the side wall of the movable ring 610. A bearing plate 640 is installed at the upper end of the movable ring 610.

[0086] In the above implementation process, the hemispherical protrusion 630 at the end of the screw 620 supports the moving ring 610, allowing the moving ring 610 to rotate inside the fixed ring 600. This allows the bearing plate 640 to rotate. When multiple aluminum templates are placed on the surface of the bearing plate 640, the rotating bearing plate 640 can sequentially transport the multiple aluminum templates to the flushing pipe 230 for flushing. This provides strong continuity and greatly reduces the downtime of the high-pressure pump 400. Furthermore, while one aluminum template on the surface of the bearing plate 640 is being flushed, other flushed aluminum templates on the surface of the bearing plate 640 can be replaced simultaneously, achieving the effect of flushing and material replacement without interruption. This effectively saves the time for replacing aluminum templates and greatly improves efficiency.

[0087] Furthermore, the moving ring 610 is supported by the screw 620 and the hemispherical protrusion 630 at its end, and the moving ring 610 is rotatably installed inside the fixed ring 600, thereby rotatably installing the bearing plate 640 inside the housing 100. Compared with traditional bearing-type connectors, it is only necessary to rotate the screw 620 to move the screw 620 and the hemispherical protrusion 630, and move the hemispherical protrusion 630 out of the annular groove on the side wall of the moving ring 610, so that the moving ring 610 can be disassembled, making disassembly and assembly more convenient.

[0088] In one specific implementation, the turntable 120 is fastened with a driving gear ring 650, and the bearing plate 640 is fastened with a driven gear ring 660, and the driving gear ring 650 and the driven gear ring 660 mesh and drive each other.

[0089] In the above implementation process, under the meshing transmission of the active gear ring 650 and the passive gear ring 660, the drive motor 300 can drive the carrier plate 640 to rotate when the drive turntable 120 rotates. The effect of driving the carrier plate 640 to rotate can be achieved without adding a separate motor, which greatly reduces the cost. Furthermore, the simultaneous rotation of the turntable 120 and the carrier plate 640 allows the continuously reciprocating flushing pipe 230 to flush multiple aluminum templates on the surface of the carrier plate 640, which is more convenient for use.

[0090] In one specific implementation, the fixed ring 600, the moving ring 610, and the bearing disk 640 are coaxially arranged, and the connection between the bearing disk 640 and the moving ring 610 is integrally formed.

[0091] In the above implementation process, the one-piece molding design can improve the connection strength between the bearing plate 640 and the moving ring 610.

[0092] In one specific implementation, the screw 620 and the hemispherical protrusion 630 are arranged in a one-to-one correspondence, and at least three screws 620 are equidistantly arranged along the circumferential direction of the fixed ring body 600.

[0093] In the above implementation process, setting multiple screws 620 and multiple hemispherical protrusions 630 can better support the moving ring body 610, making the moving ring body 610 more stable.

[0094] In one specific embodiment, the sidewall of the carrier plate 640 is provided with an annular groove for mounting the passive gear ring 660.

[0095] In the above implementation process, the annular groove is set to facilitate the installation of the passive gear ring 660.

[0096] The water used for cleaning aluminum formwork contains a large number of impurities, which can easily cause environmental pollution when discharged along with the water.

[0097] In one specific implementation, the upper end face of the support plate 640 is concave and conical, and a tube 700 is provided at the center of the support plate 640. Limiting blocks 710 are provided at intervals on the upper end face of the support plate 640. A water inlet hole is opened on the side wall of the tube 700 above the support plate 640. The bottom end of the tube 700 extends to the outside of the housing 100. A magnetic attractor 720 is installed on the side wall of the tube 700.

[0098] In the above implementation process, the magnetic accumulator 720 can be a magnet. Specifically, the magnetic accumulator 720 can be cylindrical, with the upper end face of the bearing plate 640 recessed to facilitate the concentration of the rinsing water at the pipe body 700. Furthermore, the water enters the pipe body 700 through the water inlet hole on the side wall of the pipe body 700, and the magnetic accumulator 720 can attract magnetic substances in the water, which is beneficial for removing magnetic substances from the water and preventing magnetic substances from being discharged into the outside world with the water, thus reducing environmental pollution.

[0099] Understandably, the magnetic material attracted by the magnetic 720 can be iron-containing impurities.

[0100] In one specific implementation, at least three magnetic accumulators 720 are spaced apart along the circumferential direction of the tube body 700. A conical base 730 is slidably inserted into the inside of the tube body 700, and a sliding sleeve 740 is fixed to the side wall of the conical base 730. The sliding sleeve 740 and the magnetic accumulators 720 are arranged in a one-to-one correspondence. The sliding sleeve 740 is a U-shaped sleeve, and both ends of the sliding sleeve 740 extend downward and fit onto the surface of the corresponding magnetic accumulator 720. A filter screen 750 is installed between two adjacent sliding sleeves 740.

[0101] In the above implementation process, the magnetic 720 can support the sliding sleeve 740, and thus support the filter screen 750. The sliding sleeve 740 is placed above the magnetic 720. When the water flows from top to bottom onto the surface of the filter screen 750, the filter screen 750 can filter the water. The magnetic material attracted by the magnetic 720 will adhere to the surface of the sliding sleeve 740. The sliding sleeve 740 separates the magnetic material from the magnetic 720, which greatly reduces the possibility of the magnetic material adhering to the surface of the magnetic 720. This can reduce the possibility of the magnetic material scratching the magnetic 720 and effectively protect the magnetic 720.

[0102] In one specific implementation, one end of the sliding sleeve 740 and one side of the filter screen 750 are both sealed and fitted to the inner wall of the tube body 700.

[0103] In the above process, the sealed fit reduces the possibility of water passing between the inner wall of the pipe 700 and the filter screen 750, which is more conducive to water filtration.

[0104] Specifically, when using the aluminum formwork cleaning equipment, the high-pressure pump 400 is started, which delivers water to the flushing pipe 230. The flushing pipe 230 sprays water onto the surface of the aluminum formwork to flush it. The drive motor 300 is started, which drives the rotating shaft 110 and the turntable 120 to rotate. This causes the connecting rod 130 on the surface of the turntable 120 to pull the slider 210 back and forth continuously, thereby causing the bracket 220 and the flushing pipe 230 to move back and forth continuously. This movement increases the flushing range of the flushing pipe 230, greatly improving the cleaning effect of the aluminum formwork.

[0105] The above description is merely an embodiment of this application and is not intended to limit the scope of protection of this application. Various modifications and variations can be made to this application by those skilled in the art. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this application should be included within the scope of protection of this application. It should be noted that similar reference numerals and letters in the following figures indicate similar items; therefore, once an item is defined in one figure, it does not need to be further defined and explained in subsequent figures.

Claims

1. An aluminum formwork cleaning and washing device, characterized in that, include A housing (100) has a rotating shaft (110) rotatably mounted inside the housing (100), and a turntable (120) is keyed to the rotating shaft (110). A connecting rod (130) is hinged to the eccentric part of the turntable (120). A slide rail (200) is fixed inside the housing (100), and a slider (210) is slidably mounted on the surface of the slide rail (200). One end of the connecting rod (130) is hinged to the slider (210). A bracket (220) is provided at the top of the slider (210), and a flushing pipe (230) is installed on the surface of the bracket (220). A drive motor (300) is connected to the housing (100), and the output shaft of the drive motor (300) is connected to the rotating shaft (110) in a transmission connection. A high-pressure pump (400) is disposed at the top of the housing (100), and the output end of the high-pressure pump (400) is connected to the flushing pipeline (230); The housing (100) has a fixed ring (600) inside, and a moving ring (610) is provided inside the fixed ring (600). The lower end of the moving ring (610) is in clearance fit with the bottom end of the housing (100). The side wall of the moving ring (610) is in clearance fit with the inner wall of the fixed ring (600). The side wall of the moving ring (610) is provided with an annular groove. The side wall of the fixed ring (600) is threaded with a screw (620). A hemispherical protrusion (630) is installed at the end of the screw (620) facing the moving ring (610). The hemispherical protrusion (630) is slidably inserted into the annular groove opened in the side wall of the moving ring (610). A bearing plate (640) is installed at the upper end of the moving ring (610). The turntable (120) is fastened with a drive gear ring (650), and the bearing plate (640) is fastened with a driven gear ring (660), and the drive gear ring (650) and the driven gear ring (660) mesh and drive each other.

2. The aluminum template cleaning and washing equipment according to claim 1, characterized in that, The top of the housing (100) is provided with a cover (140), and the surface of the cover (140) is provided with a groove corresponding to the slider (210).

3. The aluminum template cleaning and washing equipment according to claim 1, characterized in that, The bracket (220) is a U-shaped rod, and both ends of the bracket (220) extend downward to both sides of the housing (100), and the flushing pipe (230) is located at the top of the bracket (220).

4. The aluminum template cleaning and washing equipment according to claim 1, characterized in that, The two side walls of the housing (100) are provided with limiting strips (150), and the two ends of the bracket (220) extending downward are slidably sleeved on the corresponding limiting strips (150).

5. The aluminum template cleaning and washing equipment according to claim 1, characterized in that, The flushing pipeline (230) includes a water supply pipeline (231) and a flushing pipeline (232). The water supply pipeline (231) is located at the upper end of the bracket (220), and the water supply pipeline (231) is connected to the output end of the high-pressure pump (400) through a telescopic pipe (233). One end of the flushing pipeline (232) is connected to the water supply pipeline (231), and the other end of the flushing pipeline (232) is connected to a flushing nozzle (234).

6. The aluminum template cleaning and washing equipment according to claim 5, characterized in that, The upper surface of the bracket (220) is provided with at least two protrusions for supporting the water supply pipe (231).

7. The aluminum formwork cleaning and washing equipment according to claim 5, characterized in that, At least two flushing pipes (232) are provided at intervals along the length of the water supply pipe (231), and the flushing pipes (232) and the flushing nozzles (234) are provided in a one-to-one correspondence.

8. The aluminum template cleaning and washing equipment according to claim 5, characterized in that, The flushing pipe (232) is an L-shaped bend, and the flushing nozzle (234) is inclined downward.

9. The aluminum template cleaning and washing equipment according to claim 5, characterized in that, The telescopic tube (233) can be either a telescopic stainless steel tube or a corrugated tube.

10. The aluminum template cleaning and washing equipment according to claim 1, characterized in that, A base (500) is provided at the lower end of the housing (100), and the drive motor (300) is located at the lower end of the housing (100).

Citation Information

Patent Citations

  • Rapid cleaning device for food production and processing

    CN213103521U