Cleaning device for glass fiber concrete slab mold

By designing an automated glass fiber concrete slab mold cleaning device, mechanized transfer and multiple cleanings are achieved, solving the problems of high labor intensity and health risks of traditional manual cleaning, improving cleaning efficiency and protecting the health of staff.

CN223130991UActive Publication Date: 2025-07-22WUHU DINGFU LANDSCAPE MATERIALS CO LTD
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Patent Information

Application Number
CN202422392872.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-30
Publication Date
2025-07-22
Estimated Expiration
2034-09-30

AI Technical Summary

Technical Problem

Traditional artificially cleaned glass fiber concrete slab metal molds have high labor intensity and low efficiency, and it is not conducive to health when the staff comes into contact with cleaning liquid and glass fiber mixtures.

Method used

A cleaning device including a main frame, a transportation part, a cleaning part, a drying part, a liquid circulation part and a control part is designed. It uses mechanized transfer and multiple cleaning, combined with high-pressure nozzles and electric heat drying to achieve automated cleaning.

Benefits of technology

It greatly reduces labor intensity, significantly improves cleaning efficiency, and protects the health of staff.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model provides a cleaning device of glass fiber concrete slab mould, including main body frame, transportation part, cleaning part, drying part, liquid circulation part and control part, main body frame includes base, cleaning seat, transportation transfer plate and storage pipe, transportation part includes gripping mechanism and power mechanism, and the cleaning part includes gripping mechanism and power mechanism. The cleaning part comprises a fixed cleaning mechanism and a movable cleaning mechanism, the drying part comprises a displacement mechanism, a drying mechanism and a storage mechanism, and the liquid circulation part comprises a condensation plate, a collection tank, an annular collection pool, a suction pump, a supply pump, a sedimentation pool and a filter residue pool. The mechanical transfer of the metal mold can be realized, and the labor intensity is greatly reduced; the working surface of the metal mold is cleaned for multiple times mechanically, so that the cleaning efficiency is remarkably improved; a worker does not need to contact with the cleaning liquid and the mixture containing the glass fibers, and the body health of the worker is facilitated.
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Description

Technical Field

[0001] The utility model relates to the field of glass fiber concrete plates, in particular to a cleaning device for a glass fiber concrete plate mold. Background Art

[0002] Glass fiber cement board is made by mixing materials such as ordinary portland cement, fly ash, fine sand, water, etc. in a certain proportion, and at the same time adding glass fiber bundles of a certain length, stirring evenly and then pouring into a mold, and demolding after pressing. In the production of glass fiber cement board, a kind of fastening device for a template of a regenerated glass fiber concrete member disclosed in Chinese Patent CN220008190U may be adopted, which includes a first servo motor, a support rod installed at the surface output end position of the first servo motor, cavity sleeve boxes are connected to the four corners of the surface of the disc plate, and square frames are connected to the outside of the cavity sleeve boxes. Through the 90-degree interval rotation of the disc plate at the output end of the first servo motor, the square frame on each side can be controlled to align with the extrusion module for forming and processing glass fiber concrete members, and batch processing can be carried out by rotating in sequence. The upper surface of the corresponding finished product storage box can turn the mold box under the rotation of the second servo motor to automatically pour out the products inside.

[0003] When producing glass fiber concrete members, especially glass fiber concrete plates, such as using the above patent, in order to effectively ensure the smoothness of their surfaces, metal molds (iron molds or iron-containing alloy molds) are mostly used. After the metal mold of the glass fiber concrete plate is used, it needs to be manually cleaned. Traditional manual cleaning has the following defects:

[0004] First, the metal mold is heavy in mass, and the labor intensity of manually transferring and cleaning is large.

[0005] Second, repeated cleaning operations are boring and seriously affect the cleaning efficiency.

[0006] Third, the staff is in long-term contact with the cleaning liquid and the mixture containing glass fiber, which is not conducive to physical health. Summary of the Utility Model

[0007] The utility model provides a cleaning device for a glass fiber concrete plate mold, which can effectively solve the problems mentioned in the background art.

[0008] In order to achieve the above purpose, the utility model adopts the following technical solutions:

[0009] A cleaning device for a glass fiber concrete plate mold includes a main body frame, a transportation part, a cleaning part, a drying part, a liquid circulation part and a control part.

[0010] Specifically, the main frame includes a base, a cleaning seat, an operating carrier and a storage tube. The base includes a rectangular hollow container, and a rectangular pin hole is arranged on the upper bottom plate. The cleaning seat is symmetrically arranged on the base through a pillar, and a rectangular through hole is arranged on the side plate. The operating carrier is arranged on the base through a pillar, and is located above the cleaning seat, and a strip through hole is arranged on it. The storage tube is arranged on the base, and is located on the right side of the cleaning seat, and a "U"-shaped opening through groove is arranged on the right side plate.

[0011] Specifically, the transport part includes a grabbing mechanism and a power mechanism. The power mechanism includes a servo motor, a movable carrier plate 1, a limit column 1 and a buffer block; the servo motor, a reel 1, a slide rail 1 and a limit column 1 are symmetrically arranged on the operating carrier plate; the movable carrier plate 1 is slidably connected to the slide rail 1; the servo motor and the reel 1 are connected through a reduction gear box transmission; the reel 1 and the movable carrier plate 1 are connected through a traction rope; the buffer block is arranged on the limit column 1 through a reset spring. The grabbing mechanism includes a mounting carrier plate 1, an electric telescopic rod 1 and an electromagnet 1; the mounting carrier plate 1 is arranged on the lower bottom surface of the movable carrier plate 1 through a connecting column and is located below a strip through hole 1; the electric telescopic rod 1 is arranged on the lower bottom surface of the mounting carrier plate 1; the electromagnet 1 is arranged on the movable end of the electric telescopic rod 1 through an elastic telescopic rod.

[0012] Specifically, the cleaning part includes a fixed cleaning mechanism and a movable cleaning mechanism.

[0013] More specifically, the fixed cleaning mechanism includes a trapezoidal carrier plate, a high-pressure nozzle 1, a protective side plate and a collecting bucket. The trapezoidal carrier plate is arranged on the cleaning seat; the high-pressure nozzle 1 is arranged equidistantly on the trapezoidal carrier plate, respectively located on the upper bottom surface, the left side surface and the right side surface of the trapezoidal carrier plate; the protective side plates are symmetrically arranged on the side plates of the cleaning seat; the collecting bucket is arranged on the side plates of the cleaning seat, and is located below the protective side plates.

[0014] More specifically, the movable cleaning mechanism includes a screw stepper motor 1, a movable carrier plate 2, a screw stepper motor 2, a mounting box, a movable cleaning table and a high-pressure nozzle 2. The screw stepper motor 1 is arranged in the cleaning seat; the slide bar 1 is symmetrically arranged on the side plate of the cleaning seat, located above the collecting bucket; the movable carrier plate 2 is slidably connected to the slide bar 1 through a limit block, and a rectangular through hole 2 is arranged on it; the movable carrier plate 2 is connected to the nut seat of the screw stepper motor 1; the mounting box and the slide bar 2 are arranged on the movable carrier plate 2; the side plate of the mounting box is provided with a strip through hole 2; the screw stepper motor 2 is arranged in the mounting box; the movable cleaning table is a round table body, slidably connected to the slide bar 2; the movable cleaning table and the nut seat of the screw stepper motor 2 are connected by an "L"-shaped connecting frame; the high-pressure nozzle 2 is arranged on the movable cleaning table, located on the side of the round table body and the upper bottom plate.

[0015] Specifically, the drying part includes a displacement mechanism, a drying mechanism, and a storage mechanism. The displacement mechanism includes a screw jack, a movable limit box, and a push rod motor. The screw jack is arranged inside the base. The movable limit box is arranged on the movable end of the screw jack and includes a "hui"-shaped hollow container, on the side plate of which there are circular pin holes 1 and 2. The push rod motor is arranged inside the movable limit box, and a limit post is arranged on its movable end. The limit post is slidably connected inside the circular pin hole 1. The drying mechanism includes heating wire 1, heating wire 2, fan 1, and fan 2. Heating wire 1 is arranged inside the circular pin hole 1. Fan 1 is arranged inside the movable limit box. Fan 2 and heating wire 2 are arranged on the base, and heating wire 2 is located above fan 2. The storage mechanism includes an electric lifting device and a storage rack structure. The electric lifting device is arranged inside the base, and its movable end is slidably connected inside a rectangular pin hole. The storage rack structure is detachably connected to the movable end of the electric lifting device and includes a square bottom plate and an "n"-shaped limit frame. The "n"-shaped limit frames are arranged on the square bottom plate at equal intervals and are distributed in a rectangle.

[0016] Specifically, the liquid circulation part includes a condensation plate, a collection trough, an annular collection pool, a suction pump, a supply pump, a sedimentation tank, and a filter residue tank. The condensation plate is in a "V" shape and is arranged on the operating carrier plate through support column 3 and is located above the storage pipe. The collection troughs are arranged on both sides of the condensation plate for receiving condensed water. The sedimentation tank is arranged inside the base. The filter residue tank is arranged on the bottom plate of the sedimentation tank through a support column and includes a rectangular container 1, on the side plate of which there are filtrate through holes arranged at equal intervals. The supply pump is arranged on the side plate of the sedimentation tank. The annular collection pool is arranged on the base. The suction pump is arranged on the annular collection pool, and its liquid outlet end is located inside the sedimentation tank. The supply pump, high-pressure nozzle 1, and high-pressure nozzle 2 are connected through solenoid valves.

[0017] Specifically, the control part includes a control mechanism, a feedback mechanism, and a PLC controller. The control mechanism includes a start switch, a cleaning switch, and a pause switch. The feedback mechanism includes several distance sensor modules.

[0018] Furthermore, a filter residue plate is added inside the sedimentation tank.

[0019] Advantages over the prior art:

[0020] In the present utility model, through the integrated setting of the main body frame, the transportation part, the cleaning part, the drying part, the liquid circulation part, and the control part, the following functions are achieved:

[0021] Firstly, the mechanized transfer of metal molds is realized, greatly reducing the labor intensity.

[0022] Secondly, the mechanical cleaning of the working surface of metal molds is realized for multiple times, significantly improving the cleaning efficiency.

[0023] Thirdly, the staff do not need to contact the cleaning liquid and the mixture containing glass fiber, which is beneficial to the health of the staff. BRIEF DESCRIPTION OF THE DRAWINGS

[0024] Figure 1 is a schematic top view structure diagram of the present utility model;

[0025] Figure 2 is a schematic top view partial sectional structure diagram of the present utility model Figure 1 ;

[0026] Figure 3 is a schematic top view partial sectional structure diagram of the present utility model Figure 2 ;

[0027] Figure 4 is a schematic front view partial sectional structure diagram of the present utility model;

[0028] Figure 5 is a schematic front view partial enlarged sectional structure diagram of the present utility model;

[0029] Figure 6 is a schematic system structure diagram of the present utility model.

[0030] In the figure: 101. Base, 102. Cleaning seat, 103. Running carrier plate, 201. Servo motor, 202. First movable carrier plate, 203. Buffer block, 204. First electric telescopic rod, 205. First electromagnet, 301. Trapezoidal carrier plate, 302. Protective side plate, 303. Collection hopper, 304. First lead screw stepping motor, 305. Second movable carrier plate, 306. Installation box, 307. Second lead screw stepping motor, 308. Movable cleaning table, 401. Lead screw lifter, 402. Movable limit box, 403. Push rod motor, 404. Second fan, 405. Second heating wire, 406. Electric lifting device, 407. Storage rack structure, 501. Condensing plate, 502. Sedimentation tank, 503. Slag filtration tank. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0031] Example 1, referring to the attached Figures 1-6 , a cleaning device for a glass fiber concrete slab mold, including a main frame, a transportation part, a cleaning part, a drying part, a liquid circulation part and a control part.

[0032] The main frame includes a base 101, a cleaning seat 102, a running carrier plate 103 and a storage pipe.

[0033] The base 101 includes a first cuboid hollow container.

[0034] Rectangular pin holes are provided on the upper bottom plate of the first cuboid hollow container.

[0035] The cleaning seat 102 is symmetrically arranged on the base 101 through a support column.

[0036] A rectangular through hole 1 is provided on the side plate of the cleaning seat 102 .

[0037] The running carrier 103 is disposed on the base 101 through a second support and is located above the cleaning seat 102 .

[0038] A strip-shaped through hole 1 is provided on the running carrier plate 103 .

[0039] The storage tube is disposed on the base 101 and is located on the right side of the cleaning base 102 .

[0040] A "U"-shaped opening through groove 1 is arranged on the right side plate of the storage tube.

[0041] The transport part includes a grabbing mechanism and a power mechanism.

[0042] The power mechanism includes a servo motor 201 , a movable carrier plate 202 , a limiting column 1 and a buffer block 203 .

[0043] The servo motor 201 , the reel 1 , the slide rail 1 , and the limit column 1 are symmetrically arranged on the operating carrier plate 103 .

[0044] The movable carrier plate 202 is slidably connected to the slide rail 1.

[0045] The servo motor 201 and the reel 1 are connected via a reduction gear box.

[0046] The reel 1 and the movable carrier plate 1 202 are connected by a traction rope.

[0047] The buffer block 203 is arranged on the limiting column 1 through a return spring.

[0048] The grabbing mechanism includes a mounting plate 1, an electric telescopic rod 204 and an electromagnet 205.

[0049] The mounting plate 1 is disposed on the lower bottom surface of the movable carrier 1 202 through the connecting column and is located below the strip-shaped through hole 1.

[0050] The electric telescopic rod 204 is arranged on the lower bottom surface of the mounting plate 1.

[0051] The electromagnet 205 is arranged on the movable end of the electric telescopic rod 204 through an elastic telescopic rod.

[0052] The cleaning part includes a fixed cleaning mechanism and a movable cleaning mechanism.

[0053] The fixed cleaning mechanism includes a trapezoidal carrier plate 301 , a high-pressure nozzle 1 , a protective side plate 302 and a collecting bucket 303 .

[0054] The trapezoidal carrier plate 301 is disposed on the cleaning seat 102 .

[0055] The high-pressure nozzles are equidistantly arranged on the trapezoidal carrier plate 301, and are respectively located on the upper bottom surface, the left side surface and the right side surface of the trapezoidal carrier plate 301.

[0056] The protective side plates 302 are symmetrically arranged on the side plates of the cleaning base 102.

[0057] The collecting hopper 303 is arranged on the side plate of the cleaning base 102 and is located below the protective side plate 302.

[0058] The movable cleaning mechanism includes a lead screw stepper motor 304, a movable carrier plate 305, a lead screw stepper motor 307, a mounting box 306, a movable cleaning table 308 and a high-pressure nozzle 2.

[0059] The lead screw stepper motor 304 is arranged inside the cleaning base 102.

[0060] A pair of slide bars are symmetrically arranged on the side plates of the cleaning base 102 and are located above the collecting hopper 303.

[0061] The movable carrier plate 305 is slidably connected to the slide bar 1 through a limit block.

[0062] The movable carrier plate 305 is connected to the nut seat of the lead screw stepper motor 304.

[0063] A rectangular through hole 2 is provided on the movable carrier plate 305.

[0064] The mounting box 306 and the slide bar 2 are arranged on the movable carrier plate 305.

[0065] A strip-shaped through hole 2 is provided on the side plate of the mounting box 306.

[0066] The lead screw stepper motor 307 is arranged inside the mounting box 306.

[0067] The movable cleaning table 308 is slidably connected to the slide bar 2.

[0068] The movable cleaning table 308 and the nut seat of the lead screw stepper motor 307 are connected by an "L"-shaped connecting frame.

[0069] The movable cleaning table 308 is in the shape of a frustum of a cone.

[0070] The high-pressure nozzle 2 is arranged on the movable cleaning table 308; the high-pressure nozzle 2 is located on the side surface and the upper bottom plate of the frustum of a cone.

[0071] The drying part includes a displacement mechanism, a drying mechanism and a storage mechanism.

[0072] The displacement mechanism includes a screw jack 401, a movable limit box 402 and a push rod motor 403.

[0073] The screw elevator 401 is arranged inside the base 101.

[0074] The movable limit box 402 is arranged on the movable end of the screw elevator 401.

[0075] The movable limit box 402 includes a "hui"-shaped hollow container.

[0076] Circular pin holes one and two are arranged on the side plate of the "hui"-shaped hollow container.

[0077] The push rod motor 403 is arranged inside the movable limit box 402.

[0078] A limit post is arranged on the movable end of the push rod motor 403.

[0079] The limit post is slidably connected inside the circular pin hole one.

[0080] The drying mechanism includes a heating wire one, a heating wire two 405, a fan one, and a fan two 404.

[0081] The heating wire one is arranged inside the circular pin hole one.

[0082] The fan one is arranged inside the movable limit box 402.

[0083] The fan two 404 and the heating wire two 405 are arranged on the base 101; the heating wire two 405 is located above the fan two 404.

[0084] The storage mechanism includes an electric lifting device 406 and a storage rack structure 407.

[0085] The electric lifting device 406 is arranged inside the base 101; the movable end of the electric lifting device 406 is slidably connected inside a rectangular pin hole.

[0086] The storage rack structure 407 is detachably connected to the movable end of the electric lifting device 406.

[0087] The storage rack structure 407 includes a square bottom plate and an "n"-shaped limit frame.

[0088] The "n"-shaped limit frames are arranged on the square bottom plate at equal intervals; they are distributed in a rectangular pattern.

[0089] The liquid circulation part includes a condensation plate 501, a collection tank, an annular collection pool, a suction pump, a supply pump, a sedimentation tank 502, and a slag filtration tank 503.

[0090] The condensation plate 501 is arranged on the operating carrier plate 103 through a support column three and is located above the storage tube.

[0091] The condensation plate 501 is in a "V" shape.

[0092] The collection tank is arranged on both sides of the condensation plate 501 for receiving condensed water.

[0093] The sedimentation tank 502 is arranged inside the base 101.

[0094] The filter residue tank 503 is arranged on the bottom plate of the sedimentation tank 502 through columns.

[0095] The filter residue tank 503 includes a first rectangular container.

[0096] Filter liquid through holes are equidistantly arranged on the side plates of the first rectangular container.

[0097] The supply pump is arranged on the side plate of the sedimentation tank 502.

[0098] The annular collection tank is arranged on the base 101.

[0099] The extraction pump is arranged on the annular collection tank; the liquid outlet end of the extraction pump is located inside the sedimentation tank 502.

[0100] The supply pump, the first high-pressure nozzle, and the second high-pressure nozzle are connected through solenoid valves.

[0101] The control part includes a control mechanism, a feedback mechanism, and a PLC controller.

[0102] The control mechanism includes a start switch, a cleaning switch, and a pause switch.

[0103] The start switch, the cleaning switch, and the pause switch are arranged on the side plate of the transport seat.

[0104] The feedback mechanism includes a first distance sensor module, a second distance sensor module, a third distance sensor module, and a fourth distance sensor module.

[0105] The first distance sensor module is arranged on the lower bottom surface of the first mounting carrier plate for assisting the PLC controller to detect the position of the mold.

[0106] The second distance sensor module is arranged on the trapezoidal carrier plate 301 for assisting the PLC controller to detect the position of the mold.

[0107] The third distance sensor module is arranged on the second movable carrier plate 305 for assisting the PLC controller to detect the position of the mold.

[0108] The fourth distance sensor module is arranged on the movable limit box 402 for assisting the PLC controller to detect the position of the mold.

[0109] Working principle and usage method:

[0110] First step, presetting:

[0111] Press the start switch to conduct a no-load test on this device.

[0112] Stack the molds to be cleaned (ferroalloy molds for producing glass fiber concrete plates) to the left of the cleaning seat 102, under the moving carrier plate 103.

[0113] Step 2, cleaning:

[0114] Press the cleaning switch, and the PLC controller outputs a signal to the servo motor 201; the servo motor 201 drives the movable carrier plate 1 202 to move above the mold to be cleaned; the distance sensor module 1 outputs a signal to the PLC controller, and the PLC controller outputs a signal to the electric telescopic rod 1 204 and the electromagnet 1 205.

[0115] The electric telescopic rod 1 204 drives the electromagnet 1 205 to move downward; the electromagnet 1 205 starts after a delay to complete the grasping of the mold. The servo motor 201 drives the mold to move above the fixed cleaning mechanism; the distance sensor module 2 outputs a signal to the PLC controller, and the PLC controller outputs a signal to the supply pump and the solenoid valve.

[0116] The supply pump and the solenoid valve are started, and the high-pressure nozzle 1 starts to clean the mold at three angles.

[0117] After that, the servo motor 201 drives the movable carrier plate 1 202 to move above the movable cleaning mechanism; the distance sensor module 3 outputs a signal to the PLC controller, and the PLC controller outputs a signal to the lead screw stepper motor 1 304, the solenoid valve, and the lead screw stepper motor 2 307.

[0118] The lead screw stepper motor 2 307 drives the movable cleaning table 308 to move orderly, the solenoid valve is started, the high-pressure nozzle 2 starts to clean the mold, and the lead screw stepper motor 1 304 drives the movable carrier plate 2 305 to move orderly. Thus, the cleaning of the mold is completed.

[0119] Step 3, drying:

[0120] The servo motor 201 drives the movable carrier plate 1 202 to move above the storage tube after a delay; the electric telescopic rod 1 204 drives the mold to move onto the movable limit box 402, and the electromagnet 1 205 is turned off. The distance sensor module 4 outputs a signal to the PLC controller, and the PLC controller outputs a signal to the heating wire 1, the heating wire 2 405, the fan 1, the fan 2 404, the lead screw lift 401, the push rod motor 403, and the electric lifting device 406.

[0121] The heating wire 1, the heating wire 2 405, the fan 1, and the fan 2 404 are started to dry the mold. The lead screw lift 401 drives the movable limit box 402 to move downward; the push rod motor 403 retracts. After that, the lead screw lift 401 drives the movable limit box 402 to move upward; the electric lifting device 406 moves down one unit distance to complete the storage of the mold; at the same time, it facilitates the entry of subsequent molds.

[0122] Embodiment 2. On the basis of Embodiment 1, a filter residue plate is additionally arranged in the sedimentation tank 502.

[0123] For the lead screw stepping motors of the present utility model, all of them include a servo motor, a ball screw pair, and a nut seat; the servo motor is in screw drive with the ball screw pair. The ball screw pair includes a combination of a ball screw, a ball nut, a rotary steel ball, and a circulation member. The nut seat is connected to the ball nut of the ball screw pair.

Claims

1. A cleaning device for a glass fiber concrete slab mold, characterized in that: The invention comprises a main frame, a transport part, a cleaning part, a drying part, a liquid circulation part and a control part; the main frame comprises a base (101), a cleaning seat (102), a running carrier plate (103) and a storage tube; the transport part comprises a grabbing mechanism and a power mechanism; the cleaning part comprises a fixed cleaning mechanism and a movable cleaning mechanism; the fixed cleaning mechanism comprises a trapezoidal carrier plate (301), a high-pressure nozzle 1, a protective side plate (302) and a collecting bucket (303); the movable cleaning mechanism comprises a screw stepper motor 1 (304), a movable carrier plate 2 (305), a screw stepper motor 2 (307), an installation box (306), a movable cleaning table (308) and a high-pressure nozzle 2; the screw stepper motor 1 (304) is arranged in the cleaning seat (102); the sliding rod 1 is arranged on the side plate of the cleaning seat (102) and is located in the collecting bucket. (303); the movable carrier plate 2 (305) is slidably connected to the slide bar 1 through a limit block; the movable carrier plate 2 (305) is connected to the nut seat of the screw stepper motor 1 (304); the installation box (306) and the slide bar 2 are arranged on the movable carrier plate 2 (305); the screw stepper motor 2 (307) is arranged in the installation box (306); the movable cleaning table (308) is slidably connected to the slide bar 2; the movable cleaning table (308) and the nut seat of the screw stepper motor 2 (307) are connected through an "L"-shaped connecting frame; the high-pressure nozzle 2 is arranged on the movable cleaning table (308); the drying part includes a displacement mechanism, a drying mechanism and a storage mechanism; the liquid circulation part includes a condensation plate (501), a collecting tank, an annular collection pool, a suction pump, a supply pump, a sedimentation tank (502) and a filter residue pool (503).

2. The cleaning device for a glass fiber concrete slab mold according to claim 1, characterized in that: The trapezoidal carrier plate (301) is arranged on the cleaning seat (102); the high-pressure nozzle is arranged on the trapezoidal carrier plate (301), and is respectively located on the upper bottom surface, the left side surface, and the right side surface of the trapezoidal carrier plate (301); the protective side plate (302) is arranged on the side plate of the cleaning seat (102); and the collecting bucket (303) is arranged on the side plate of the cleaning seat (102), and is located below the protective side plate (302).

3. The cleaning device for a glass fiber concrete slab mold according to claim 1, characterized in that: The power mechanism comprises a servo motor (201), a movable carrier plate (202), a limiting column (201) and a buffer block (203); the servo motor (201), a reel (201), a slide rail (201) and a limiting column (203) are arranged on the operating carrier plate (103); the movable carrier plate (202) is slidably connected to the slide rail (202); the servo motor (201) and the reel (201) are connected by a reduction gear box; the reel (201) and the movable carrier plate (202) are connected by a traction rope; and the buffer block (203) is arranged on the limiting column (201) via a reset spring.

4. The cleaning device for a glass fiber concrete slab mold according to claim 1, characterized in that: The grabbing mechanism comprises a mounting plate 1, an electric telescopic rod 1 (204) and an electromagnet 1 (205); the mounting plate 1 is arranged on the lower bottom surface of the movable mounting plate 1 (202) through a connecting column and is located below the strip-shaped through hole 1; the electric telescopic rod 1 (204) is arranged on the lower bottom surface of the mounting plate 1; and the electromagnet 1 (205) is arranged on the movable end of the electric telescopic rod 1 (204) through an elastic telescopic rod.

5. The cleaning device for a glass fiber concrete slab mold according to claim 1, characterized in that: The base (101) comprises a rectangular hollow container, on the upper bottom plate of which a rectangular pin hole is arranged; the cleaning seat (102) is arranged on the base (101) through a pillar, and a rectangular through hole is arranged on the side plate of the cleaning seat; the operation carrier (103) is arranged on the base (101) through a pillar and is located above the cleaning seat (102); the storage tube is arranged on the base (101) and is located on the right side of the cleaning seat (102), and a "U"-shaped opening through groove is arranged on the right side plate of the cleaning seat.

6. The cleaning device for a glass fiber concrete slab mold according to claim 1, characterized in that: The displacement mechanism comprises a screw lift (401), a movable limit box (402) and a push rod motor (403); the screw lift (401) is arranged in a base (101); the movable limit box (402) is arranged on the movable end of the screw lift (401), and comprises a "U"-shaped hollow container, and a circular pin hole 1 and a circular pin hole 2 are arranged on the side plate of the movable limit box; the push rod motor (403) is arranged in the movable limit box (402), and a limit column is arranged on the movable end of the movable limit box; the limit column is slidably connected in the circular pin hole 1.

7. The cleaning device for a glass fiber concrete slab mold according to claim 1, characterized in that: The drying mechanism comprises a heating wire 1, a heating wire 2 (405), a fan 1 and a fan 2 (404); the heating wire 1 is arranged in a circular pin hole 1; the fan 1 is arranged in a movable limit box (402); the fan 2 (404) and the heating wire 2 (405) are arranged on a base (101); the heating wire 2 (405) is located above the fan 2 (404).

8. The cleaning device for a glass fiber concrete slab mold according to claim 1, characterized in that: The storage mechanism comprises an electric lifting device (406) and a storage rack structure (407); the electric lifting device (406) is arranged in a base (101), and its movable end is slidably connected to a rectangular pin hole; the storage rack structure (407) is detachably connected to the movable end of the electric lifting device (406), and comprises a square bottom plate and an "n"-shaped limit frame; the "n"-shaped limit frame is arranged on the square bottom plate and is distributed in a rectangular shape.

9. The cleaning device for a glass fiber concrete slab mold according to claim 1, characterized in that: The condensation plate (501) is in a "V" shape, and is arranged on the operating carrier plate (103) through a support column and is located above the storage tube; the collecting tank is arranged on both sides of the condensation plate (501); the filter residue pool (503) is arranged on the bottom plate of the sedimentation tank (502) through a support column; the filter residue pool (503) includes a rectangular container, and a filtrate through hole is arranged on the side plate of the sedimentation tank (502); the supply pump is arranged on the side plate of the sedimentation tank (502); and the suction pump is arranged on the annular collection pool, and the liquid outlet end of the pump is located in the sedimentation tank (502).

10. The cleaning device for a glass fiber concrete slab mold according to claim 1, characterized in that: The movable cleaning table (308) is in the shape of a frustum.

Citation Information

Patent Citations

  • Regenerated glass fiber concrete member template fastening device

    CN220008190U